WO2017121017A1 - 一种右脑开发系统和方法 - Google Patents

一种右脑开发系统和方法 Download PDF

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Publication number
WO2017121017A1
WO2017121017A1 PCT/CN2016/074772 CN2016074772W WO2017121017A1 WO 2017121017 A1 WO2017121017 A1 WO 2017121017A1 CN 2016074772 W CN2016074772 W CN 2016074772W WO 2017121017 A1 WO2017121017 A1 WO 2017121017A1
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Prior art keywords
writing
pen
right brain
brain development
control system
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PCT/CN2016/074772
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English (en)
French (fr)
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邢云龙
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邢云龙
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    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09BEDUCATIONAL OR DEMONSTRATION APPLIANCES; APPLIANCES FOR TEACHING, OR COMMUNICATING WITH, THE BLIND, DEAF OR MUTE; MODELS; PLANETARIA; GLOBES; MAPS; DIAGRAMS
    • G09B11/00Teaching hand-writing, shorthand, drawing, or painting
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/03Arrangements for converting the position or the displacement of a member into a coded form
    • G06F3/041Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09BEDUCATIONAL OR DEMONSTRATION APPLIANCES; APPLIANCES FOR TEACHING, OR COMMUNICATING WITH, THE BLIND, DEAF OR MUTE; MODELS; PLANETARIA; GLOBES; MAPS; DIAGRAMS
    • G09B19/00Teaching not covered by other main groups of this subclass

Definitions

  • Embodiments of the present invention relate to the field of medical care technologies, and in particular, to a right brain development system and method.
  • the brain is the most complex structure and function in the living body. It is the command that accepts external signals, generates feelings, forms consciousness, conducts logical thinking, and issues instructions. It controls the daily language, thinking, feelings, emotions, and movements of human beings. And other high-level activities.
  • the human brain is also an extremely sophisticated and complete information processing system, and is the backbone for the acquisition, storage, processing, processing and integration of environmental information inside and outside the human body.
  • the human brain is divided into two hemispheres, and we are used to calling them the left and right brains.
  • the left brain is mainly responsible for human reason, language, writing, analysis, etc.
  • the right brain is mainly responsible for music, image, experience, and intuitive understanding.
  • the right brain is more "feeling", and we often say “creative thinking” is more The product of the right brain.
  • Right brain development is to use a variety of methods suitable for right brain work to activate the right brain, so that the great potential of the right brain can be played.
  • Develop rich imagination hidden in the right brain endless creativity, high-speed right brain memory, fast understanding, and correct intuitive ability.
  • Using the right brain can not only neutralize the stress of our left brain, but more importantly, we can multi-source combination of our logical thinking to produce more ways of thinking, which is the true meaning of whole-brain thinking. Because of the participation of the right brain, the singularity and linear thinking mode realizes the essential changes, produces higher-level thoughts and outputs human true wisdom.
  • Chinese patent document CN201191457Y discloses a right-brain calligraphy copybook, which has a binding area on the right or top side, and the front side of the copybook page is reversely printed with a hollow word, a solid word or a shadow word. Place at least one page in the middle of each two-page copy page.
  • the right brain calligraphy copybook is copied or tracing, and the right brain cell activation and development are realized under the dual influence of physiological function and physical action.
  • the calligraphy copybooks involved in the utility model patent are flat and relatively simple and simple, so the stimulating effect on the human body is also weak, and the effect of activation and development of the right brain cells that can be achieved is relatively poor.
  • the embodiments of the present invention are directed to overcoming the above drawbacks and provide a right brain development system and method.
  • an embodiment of the present invention provides a right brain development system including a writing panel and a writing pen, and the right brain development system further includes an electronic control system;
  • the writing panel includes a writing area and a display portion, the writing area is a flat shape, and the writing pen can be written on the surface thereof; the writing pen includes a pen portion and a writing head.
  • the writing area is divided into N-block arrays, N being an integer multiple of three.
  • a pressure sensor is disposed on the back of the writing area relative to the writing surface;
  • Each of the array blocks is provided with a pressure sensor that senses the pressure generated when the writing pen is written thereon.
  • the display portion is an LED display screen, and the stroke color displayed by the display portion is composed of a color corresponding to the triggered pressure sensor.
  • the pen tip can slide up and down with respect to the pen portion
  • a base of the pen tip having a guide block inserted into a longitudinal sliding groove on the outer portion of the sheath portion; a pen portion a plug is arranged in the center of the outer casing, and the base of the pen head is connected with the plug by a spring; the longitudinal chute on the outer part of the pen part is provided with a travel switch, when the pen head abuts on the writing panel and under the pressure of the hand, The pen portion partially moves downward along the guide block against the spring force until the guide block triggers the travel switch, the travel switch activates the electronic control system and the pressure sensor; when a stroke is written, the pen is raised, and the tip of the pen is moved by the spring force and the pen holder Partially slip away.
  • protrusions are further provided on the outer surface portion of the pen holder that are gripped, and the protrusions are circular protrusions or strip-shaped protrusions.
  • the three projections may be vibrating or may generate heat or may generate a weak stimulation current.
  • the user writes on the writing area using the writing pen
  • the pressure sensor provided on the writing area senses the passage of the writing head of the writing pen, and sends the information to the electronic control system according to the position corresponding to the pressure sensor.
  • the information and the color information form a corresponding stroke and display it on the display portion;
  • the electronic control system further forms a somatosensory stimulus corresponding to the three protrusions on the outer surface of the hand portion of the pen holder according to the position information corresponding to the pressure sensor.
  • an embodiment of the present invention provides a copybook for the right brain development system or the right brain development method, the copybook including a reverse type of groove-type light-colored printing.
  • an embodiment of the present invention provides a right brain development system, including: a writing panel and a writing pen;
  • the writing panel further includes an electronic control system
  • the writing panel includes a writing area and a display area, and the writing area and the display area are both connected to the control system;
  • the writing area senses the pressure of the writing pen and converts the pressure into a writing signal that is transmitted to the electronic control system, the electronic control system processing the writing signal and outputting to the display area display.
  • the writing area is a plurality of array writing areas that are integer multiples of three.
  • a plurality of pressure sensors are disposed on the back of the writing area relative to the writing surface;
  • the plurality of pressure sensors are evenly distributed in the writing area for sensing the pressure generated by the writing pen writing in the writing area.
  • the writing area is formed by injection molding of nano silicon nitride powder filler wear-resistant polyethylene plastic.
  • the nano-silicon nitride powder filler wear-resistant polyethylene plastic injection molding material comprises a master batch having a mass fraction of 70% to 89%, a filler of 1% to 20%, and a mother liquor of 10% to 29%;
  • the masterbatch includes mass fraction: chlorinated polyethylene resin with a melt index ranging from 8 to 18 g/10 min, 95% to 98.15%, carbon black 1% to 4.15%, zinc chloride 0.3% to 3.45%, stearic acid. Sodium 0.3% to 3.45%, N,N'-diphenyl-p-phenylenediamine 0.1% to 3.25%, diethylene glycol 0.05% to 3.2%, and diethyldithiocarbamate 0.1% to 3.25%;
  • the mother liquor includes a mass fraction of 25% to 35% of the chlorinated polyethylene resin and 65% to 75% of the chloroform;
  • the filler includes a mass fraction of 25% to 35% of the nano-silicon nitride powder and 65% to 75% of the chloroform.
  • the display area is an LED display screen.
  • the electronic control system processes the writing signal and outputs a display signal displaying a different color to the LED display screen to be displayed in the display area.
  • the display area displays a writing path.
  • the writing pen comprises a pen tip and a pen holder
  • the pen tip is movably connected to the pen holder;
  • a writing pressure detecting device is further disposed between the pen tip and the pen holder.
  • the writing pressure detecting device comprises: a stroke switch and an elastic supporting device;
  • One end of the elastic support member is in contact with one end of the stroke switch, and the other end of the elastic support member is connected with a pen Head contact; the other end of the device stroke switch is in contact with the pen holder;
  • the writing pressure detecting device is disposed in the pen holder.
  • the base of the pen tip has a guide block inserted into a longitudinal sliding slot on the outer portion of the pen portion; the outer portion of the outer portion of the pen holder portion is provided with a plug;
  • the base of the pen tip and the plug are connected by a spring; the longitudinal chute on the outer part of the pen part is provided with a travel switch at the end, when the pen head abuts on the writing panel, and under the pressure of the hand, the pen part overcomes the spring force along the guide block Move down until the guide block triggers the travel switch, which activates the electronic control system and the pressure sensor; when a stroke is written, the pen is lifted, and the tip is slid away from the barrel portion by the spring force of the spring.
  • the tip is made of soft rubber.
  • the pen tip comprises an ethylene-vinyl carbamate copolymer having a mass fraction of 50% to 60%, an ethylene-butene copolymer of 14% to 24%, an ethylene propylene diene rubber of 5% to 15%, and 6 % to 16% of ethylene-acrylic acid copolymer, 8% to 18% of anti-wear agent, 3% to 13% of filler, 1.0% to 11% of magnesium oxide, 0.5% to 10.5% of stearic acid, 0.8 % to 10.8% sodium stearate, 0.5% to 10.5% bridging agent, and 1.2% to 11.2% foaming agent.
  • an ethylene-vinyl carbamate copolymer having a mass fraction of 50% to 60%, an ethylene-butene copolymer of 14% to 24%, an ethylene propylene diene rubber of 5% to 15%, and 6 % to 16% of ethylene-acrylic acid copolymer, 8% to 18% of anti-wear agent, 3% to 13% of filler,
  • the writing pen has a triangular cross section.
  • the outer surface of the writing pen is provided with a protrusion.
  • the protrusion is communicatively coupled to the electronic control system, the electronic control system processes the writing signal and outputs a control signal to cause the protrusion to generate a stimulation current or vibration.
  • the text reverse printing and/or the groove printing copybook is further included;
  • the reverse groove printing and/or reverse printing of the text can be changed by the user through the groove guidance when the user reverses the groove letter, and can change the thinking mode and activate the right brain cells.
  • the embodiment of the present invention further provides a right brain development method, wherein the heat absorption applied to the foregoing includes:
  • the writing area sensing the pressure of the writing pen and converting the pressure into a writing signal transmitted to the electronic control system, the electronic control system processing the writing signal and outputting to the display area display.
  • the electronic control system processing the writing signal and outputting to the display area display comprises:
  • the electronic control system processes the writing signal and outputs a display signal displaying a different color to the display area for display in the display area.
  • the electronic control system further includes the writing signal and transmitting a somatosensory stimulation signal to the writing pen, and the writing pen receives the somatosensory stimulation signal to generate a writing somatosensory stimulus.
  • the brain must change the thinking mode and cognitive mode of the left brain. By mirroring the right brain, it enters the right brain and reverses the brain.
  • the left and right brain thinking modes and cognitive modes are continuously exchanged, and the trigger activation of the right brain cells is simultaneously performed, and the triggering of the right brain cells is realized on the physiological function level of the brain. Activation and application, thus achieving the goal of right brain development.
  • an embodiment of the present invention further provides a right brain development system, including: a writing panel and a writing pen;
  • the writing panel further includes an electronic control system
  • the writing panel includes a writing area and a display area, and the writing area and the display area are both connected to the control system;
  • the display area displays a reverse text, guiding the user to write a reverse text in the writing area
  • the writing area senses the pressure of the writing pen and converts the pressure into a writing signal that is transmitted to the electronic control system, the electronic control system processes the writing signal and outputs control to the display area
  • the signal causes the display area to display text written by the user, stimulating the user to use the right brain.
  • the writing area is a plurality of array writing areas that are integer multiples of three.
  • a plurality of pressure sensors are disposed on the back of the writing area relative to the writing surface;
  • the plurality of pressure sensors are evenly distributed in the writing area for sensing the pressure generated by the writing pen writing in the writing area.
  • the writing area is formed by injection molding of nano silicon nitride powder filler wear-resistant polyethylene plastic.
  • the nano-silicon nitride powder filler wear-resistant polyethylene plastic injection molding material comprises a master batch having a mass fraction of 70% to 89%, a filler of 1% to 20%, and a mother liquor of 10% to 29%;
  • the masterbatch includes mass fraction: chlorinated polyethylene resin with a melt index ranging from 8 to 18 g/10 min, 95% to 98.15%, carbon black 1% to 4.15%, zinc chloride 0.3% to 3.45%, stearic acid. Sodium 0.3% to 3.45%, N,N'-diphenyl-p-phenylenediamine 0.1% to 3.25%, diethylene glycol 0.05% to 3.2%, and diethyldithiocarbamate 0.1% to 3.25%;
  • the mother liquor includes a mass fraction of 25% to 35% of the chlorinated polyethylene resin and 65% to 75% of the chloroform;
  • the filler includes a mass fraction of 25% to 35% of the nano-silicon nitride powder and 65% to 75% of the chloroform.
  • the display area is an LED display screen.
  • the electronic control system processes the writing signal and outputs a display signal displaying a different color to the LED display screen to be displayed in the display area.
  • the writing area and the display area are touch display screens.
  • the display area displays a writing path.
  • the writing pen comprises a pen tip and a pen holder
  • the pen tip is movably connected to the pen holder;
  • a writing pressure detecting device is further disposed between the pen tip and the pen holder.
  • the writing pressure detecting device comprises: a stroke switch and an elastic supporting device;
  • One end of the elastic support member is in contact with one end of the stroke switch, and the other end of the elastic support member is in contact with the pen tip; the other end of the device stroke switch is in contact with the pen holder;
  • the writing pressure detecting device is disposed in the pen holder.
  • the base of the pen tip has a guide block inserted into a longitudinal sliding slot on the outer portion of the pen portion; the outer portion of the outer portion of the pen holder portion is provided with a plug;
  • the base of the pen tip and the plug are connected by a spring; the longitudinal chute on the outer part of the pen part is provided with a travel switch at the end, when the pen head abuts on the writing panel, and under the pressure of the hand, the pen part overcomes the spring force along the guide block Move down until the guide block triggers the travel switch, which activates the electronic control system and the pressure sensor; when a stroke is written, the pen is lifted, and the tip is slid away from the barrel portion by the spring force of the spring.
  • the tip is made of soft rubber.
  • the pen tip comprises an ethylene-vinyl carbamate copolymer having a mass fraction of 50% to 60%, an ethylene-butene copolymer of 14% to 24%, an ethylene propylene diene rubber of 5% to 15%, and 6 % to 16% of ethylene-acrylic acid copolymer, 8% to 18% of anti-wear agent, 3% to 13% of filler, 1.0% to 11% of magnesium oxide, 0.5% to 10.5% of stearic acid, 0.8 % to 10.8% sodium stearate, 0.5% to 10.5% bridging agent, and 1.2% to 11.2% foaming agent.
  • an ethylene-vinyl carbamate copolymer having a mass fraction of 50% to 60%, an ethylene-butene copolymer of 14% to 24%, an ethylene propylene diene rubber of 5% to 15%, and 6 % to 16% of ethylene-acrylic acid copolymer, 8% to 18% of anti-wear agent, 3% to 13% of filler,
  • the writing pen has a triangular cross section.
  • the outer surface of the writing pen is provided with a protrusion.
  • the protrusion is communicatively coupled to the electronic control system, the electronic control system processes the writing signal and outputs a control signal to cause the protrusion to generate a stimulation current or vibration.
  • the invention provides a method for developing a right brain, which is characterized by being applied to the above system, include:
  • the display area displays a reverse text, guiding the user to write a reverse text in the writing area
  • the electronic control system processes the writing signal and to the display
  • the area outputs a control signal that causes the display area to display text written by the user, stimulating the user to use the right brain.
  • the electronic control system processing the writing signal and outputting to the display area display comprises:
  • the electronic control system processes the writing signal and outputs a display signal displaying a different color to the display area according to the writing pressure, and displays the display signal in the display area.
  • the electronic control system further includes the writing signal and transmitting a somatosensory stimulation signal to the writing pen, and the writing pen receives the somatosensory stimulation signal to generate a writing somatosensory stimulus.
  • the embodiment of the invention overcomes the interference and influence of the inertial thinking of the traditional writing mode on the development of the right brain, and the left hand pen and the pen need to control the brain cell group of the brain region to re-coordinate and control the strength of the left hand pen, rush, hold the pen, Once the process of pen movement is formed, the corresponding functional cells in the brain area are effectively developed and applied. Only in the hand-stimulation and pen-holding stimulation, it can significantly improve the stimulation of the right brain and strengthen the development of the right brain.
  • the user can significantly improve the stimulation of the right brain and strengthen the development of the right brain when writing with the left hand in reverse.
  • the right brain is used in the study, which not only can improve the memory and understanding, but more importantly, the physiological condition of the right brain is used to decompress the learning burden of the left brain, and the learning of happy learning is easy.
  • the significance of it For adults, including middle-aged and elderly people, and the people of all walks of life, the development and application of the right brain will have greater significance and influence.
  • the traditional writing form and the thinking mode are completely subverted when the left hand executes the pen and reverse writing, and the reverse text is first converted to the right brain through the mirror image of the left brain, and the left and right brains respectively retain two at the same time.
  • the opposite text stroke structure, the reverse text will restart the unused right brain cells for storage, and then direct the left hand to write it.
  • the strokes of Chinese characters are complex and versatile, and the mirror image of each character does not repeat the inherent characteristics. It constantly triggers more brain cells that have not been used to store different text images, so that the base of brain cell development activation is increasing. .
  • the endogenous peptides are also automatically generated during the activation of the brain cells, which is also called dopamine.
  • Dopamine is a liaison between brain cells, also called a happy factor, human thinking and behavior. The fast and slow response is directly related to dopamine. More importantly, brain sub-health diseases such as Parkinson's, forgetfulness, and Alzheimer's disease are associated with decreased and decreased dopamine activity.
  • the right brain cells are simultaneously stimulated to stimulate the quantitative production of dopamine, and the process produces a happy and pleasant physiological reaction on the dopamine. Happiness can make people positive, and happiness can make people healthy.
  • the embodiments of the present invention also play an important role in detoxification, which is the compensatory property of quantum spin of brain cells.
  • the drug addicted brain through the embodiment of the present invention, guides the development of the right brain cell, and compensates for the damaged specific brain region and the reward system.
  • the left hand executes the reverse continuous writing, and always stimulates a deep brain. It is the area of the ventral tegmental area (VTA) of the midbrain.
  • VTA ventral tegmental area
  • the nerve cells originating from the VTA region extend into the nucleus of the "sentiment center" of the brain. At the cellular level, the production of pleasure can be explained by the action of dopamine.
  • neurons release dopamine and transmit a "happy" signal to the latter neuron through the action of receptors on the postsynaptic membrane.
  • drug addiction is that drugs destroy the balance of brain dopamine, and the damage to brain cells is irreversible. Once drug addiction is added, dopamine will rely on drug stimulation to produce. Once the drug's effect is over, the factor of dopamine, which is responsible for making happiness, drops sharply, making drug users unhappy. And develop new cells in the right brain, and use the inherent compensatory function of brain cells to bear the brain cell function damaged by drugs. Can, balance dopamine, get rid of drug addiction and regain happiness.
  • the user writes on the writing area using the writing pen
  • the pressure sensor provided on the writing area senses the passage of the writing head of the writing pen, and sends the writing information to the electronic control system.
  • the electronic control system forms a corresponding stroke according to the position information and the color information corresponding to the pressure sensor and displays it on the display portion; the electronic control system further forms three outer surfaces of the hand grip portion of the writing pen according to the position information corresponding to the pressure sensor.
  • the corresponding body stimuli are raised.
  • the reverse text when writing in the left hand and reverse writing, the traditional writing form and thinking mode are completely subverted, and the reverse text is first converted to the right brain through the mirror image of the left brain, and the left and right brains are simultaneously retained in the brain. Two opposite text stroke structures, the reverse text will restart the unused right brain cells for storage, and then direct the left hand to write it.
  • the user can additionally obtain color stimulation and body sensation stimulation, can significantly improve the stimulation of the right brain, provide power to maintain brain activity and cellular energy, and strengthen the development of the right brain.
  • FIG. 1 is a schematic structural view of a writing panel in an embodiment of the present invention.
  • Figure 2 is a schematic view of a writing panel in one embodiment of the present invention.
  • FIG. 3 is a schematic structural view of a writing panel in an embodiment of the present invention.
  • Figure 4 is a schematic view of a writing pen in one embodiment of the present invention.
  • Figure 5 is a detailed structural view of a writing pen in an embodiment of the present invention.
  • Figure 6 is a cross-sectional view showing the grip portion of the writing pen in an embodiment of the present invention.
  • Figure 7 is an exemplary copybook in one embodiment of the invention.
  • the present invention provides a right brain development system and method, and the present invention will be described in detail below by three embodiments.
  • a right brain development system in accordance with the present invention includes a writing panel and a writing pen, the right brain development system also including an electronic control system and a power source.
  • the writing panel includes a writing area 1 and a display portion 2, the writing area being a flat shape, and the writing pen can be written on the surface thereof.
  • the writing pen includes a pen portion 3 and a pen tip 4.
  • the copybook includes the groove type light-colored printing.
  • the reverse text is formed by printing a dent on the paper in the form of a letterpress indentation, and the left hand is reversely written.
  • the copybook can be used in a single sheet or bound into a book; the copybook can be prominent due to its three-dimensional effect.
  • the stimulating effect is enhanced; at the same time, the copybook can also be used independently of the embodiment of the present invention, that is, the conventional dark pen is used for reverse writing along the groove copy, which overcomes the difficulty of the flat printed copybook user to copy or copy the stroke.
  • the side of the writing area 1 has a clip or sleeve that secures the writing pen.
  • the writing area 1 is divided into N-block arrays, N is an integer multiple of 3, and more preferably, the writing area 1 is divided into arrays having the same number of horizontal rows and columns. As illustrated in Figure 2, an embodiment having three horizontal rows and three columns is shown, where N is equal to nine.
  • the writing area 1 may preferably be made of a glass or plastic material with a pressure sensor relative to the back of the writing surface, wherein each array block is provided with a pressure sensor that senses the writing of the writing pen thereon The pressure generated.
  • the pressure sensor can also be placed on the surface of the writing surface or embedded inside the writing area.
  • the sensor is disposed adjacent to a central location of the array block.
  • the pressure sensor The array blocks divided into the writing areas 1 are sequentially numbered; preferably, they are numbered sequentially from left to right in the horizontal row, and the next row is sequentially numbered in the last row of the previous row, as exemplarily shown in FIG.
  • the number is related to the position of the array block, and corresponds to three different colors, for example, three colors of red, yellow and blue, that is, the maximum number N is an integer multiple of 3, which is in the order of red, yellow and blue from 1 onwards.
  • 1-1, 1-2, 1-3 represent red, yellow and blue, respectively, 1-4, 1-5, 1-6 repeats represent red, yellow and blue, respectively, 1-7, 1-8 , 1-9 repeats represent red, yellow and blue respectively.
  • the electronic control system When the pressure generated by the writing pen on the writing head is sensed by the pressure sensor on the back of the array block, they will send their respective representative position and color information to the electronic control system, and the electronic control system will generate the writing stroke and the color of the stroke. Send to display section 2 for display.
  • the electronic control system numbers each pressure sensor. After the numbering is completed, the position coordinate information and color information corresponding to each pressure sensor are stored in the electronic control system for calling.
  • the writing area 1 is injection molded from a plastic material, and the raw materials used in the injection molding include, by weight percentage, a master batch: a chlorinated polyethylene resin having a melt index ranging from 8 to 18 g/10 min.
  • the writing area is spliced from a plurality of separate array blocks such that the user can conveniently change the size and shape of the writing area.
  • the display portion is an LED display screen, and the display screen can display a plurality of characters; when the displayed number of characters is full, all the characters are cleared, and then the display is continued from the beginning.
  • the display portion is substantially synchronized with the writing pen, that is, the writing pen writes a stroke, and the display portion can display a stroke; or a stroke is written to a certain position, and the display portion can be displayed to the position.
  • the color of the stroke is preferably formed by superimposing and superimposing the colors corresponding to the induced pressure sensor.
  • the color of the stroke preferably instantly displays the color corresponding to the pressure sensor touched by the pen tip.
  • the pen tip slides over the second and fifth positions. 9 arrays, the display part shows the strokes " ⁇ " from top to bottom and the color is yellow, yellow and blue.
  • the three primary colors corresponding to the pressure sensor are mixed and superimposed according to the respective chromaticity ratios, and the same three primary colors.
  • Can have the same initial chroma setting can also be superimposed according to other setting rules, such as multiplying the initial chroma by one-third or one-fifth of the number, so that when a stroke is written down At the end of the game, the displayed strokes will be brighter and therefore more stimulating.
  • the color depth or brightness of the stroke displayed by the display portion is related to the pressure value sensed by the pressure sensor, and is positively correlated, that is, the greater the pressure value, the deeper the color depth of the displayed stroke or the higher the brightness High;
  • the thickness of the stroke displayed on the display portion is related to the pressure application time sensed by each pressure sensor, and is positively correlated, that is, the longer the pressure time is applied, the thicker the stroke is.
  • the writing pen includes a pen portion 3 and a pen tip 4; the pen tip 4 may be made of a hard material or a soft material.
  • a soft material is preferably used to protect the surface of the writing board.
  • the soft material can be, for example, rubber.
  • the rubber comprises the following parts by weight: ethylene-vinyl carbamate copolymer 50% to 64%, ethylene-butene copolymer 18% to 22%, ethylene propylene diene rubber 6% to 10%, Ethylene-acrylic acid copolymer 8% to 12%, anti-wear agent 10% to 12%, filler 4% to 6%, magnesium oxide 1.0% to 1.2%, stearic acid 0.5% to 0.6%, sodium stearate 0.8 % to 1.0%, bridging agent 0.8% to 0.9%, and foaming agent 3.2% to 3.8%.
  • the pen tip 4 is slidable up and down with respect to the pen portion 3, wherein the pen tip 4 has There is a base having a guide block (not shown) that is inserted into a longitudinal chute on the outer casing of the sheath portion 3.
  • the plug portion 3 is provided with a plug at the center of the outer casing, and the base of the pen tip 4 and the plug are connected by a spring.
  • a stroke switch is arranged at the end of the longitudinal chute on the outer casing of the pen holder portion 3, when the pen tip 4 abuts against the writing panel, and under the pressure of the hand, the pen portion 3 moves downward along the guide block against the spring force until the guide block triggers the stroke
  • a switch that activates components such as electronic control systems and sensors.
  • FIG. 6 which schematically shows a cross section of the grip portion of the writing pen holder; since the user generally refers to three fingers when holding the pen, the cross section of the writing pen pen grip portion according to the embodiment of the present invention is substantially triangular.
  • the three sides of the triangle transition through a short straight line or a short arc.
  • the protrusions are respectively provided on the outer surface portion of the pen holder that is gripped, and the protrusions may be, for example, circular protrusions or strip-shaped protrusions.
  • the three protrusions correspond to the aforementioned pressure sensors in sequence. For example, if the sensors numbered 1-1, 1-2, and 1-3 in FIG.
  • the three projections are vibrating or may generate heat or may generate a weak stimulation current.
  • the pressure sensor triggered by the writing pen sends the number information to the electronic control system, and the control system then controls the corresponding protrusion to vibrate, of course, It is to change the vibration frequency or amplitude, but in general the protrusions can produce different stimuli for writing fingers depending on the writing.
  • Embodiments that can generate heat or generate a weak stimulus current are similar to this and will not be described here.
  • the right brain development system of the embodiment of the present invention When the right brain development system of the embodiment of the present invention is used for developing the right brain, the user writes on the writing area using the writing pen, and the pressure sensor provided on the writing area senses the passage of the writing head of the writing pen and sends the information to the electronic control.
  • the electronic control system forms a corresponding stroke according to position information and color information corresponding to the pressure sensor and displays the corresponding stroke on the display portion; the electronic control system further forms an outer surface of the grip portion of the writing pen pen according to the position information corresponding to the pressure sensor
  • the three bulges correspond to the somatosensory stimulation.
  • the user can additionally obtain the color stimulation and the somatosensory stimulation of the hand when writing, and can significantly improve the stimulation degree of the right brain and strengthen the development of the right brain.
  • an embodiment of the present invention provides a right brain development system, including: a writing panel 10 and a writing pen; the writing panel 10 further includes an electronic control system; the writing panel 10 includes a writing area 1 and a display area 2, and a writing area Both the display area 2 and the display area 2 are connected to the control system; the writing area 1 senses the pressure of the writing pen and converts the pressure into a writing signal for transmission to the electronic control system, and the electronic control system processes the writing signal and outputs it to the display area 2 for display.
  • the writing area 1 can be divided into a plurality of areas according to different habits of different users, and the area is preferably a plurality of array writing areas divided into integer multiples of three. More preferably, the array in which the writing area 1 is divided has the same number of horizontal rows and columns. As illustrated in Figure 2, an embodiment having three horizontal rows and three columns is shown, where N is equal to nine.
  • a plurality of pressure sensors are disposed on the back of the writing area 1 with respect to the writing surface; a plurality of pressure sensors are evenly distributed in the writing area for sensing the writing pen in the writing area.
  • Each of the array blocks is provided with a pressure sensor that senses the pressure generated by the writing pen on which the writing pen is written.
  • the pressure sensor can also be placed on the surface of the writing surface or embedded inside the writing area.
  • the sensor is disposed at a central position of the array block nearby.
  • the electronic control system numbers each pressure sensor.
  • the pressure sensor is sequentially numbered according to the array block into which the writing area 1 is divided; preferably, the numbers are sequentially numbered from left to right in the horizontal row, and the next row is sequentially numbered in the last row of the previous row, as exemplarily shown in FIG. That's it.
  • the number is related to the position of the array block, and corresponds to three different colors, for example, three colors of red, yellow and blue, that is, the maximum number N is an integer multiple of 3, which is in the order of red, yellow and blue from 1 onwards.
  • 1-1, 1-2, 1-3 represent red, yellow and blue, respectively, 1-4, 1-5, 1-6 repeats represent red, yellow and blue, respectively, 1-7, 1-7 , 1-9 repeats represent red, yellow and blue respectively.
  • the pressure generated by the writing pen on the writing head is sensed by the pressure sensor on the back of the array block, they will send their respective representative position and color information to the electronic control system, and the electronic control system will generate the writing stroke and the color of the stroke. Send to display area 2 for display.
  • the color depth or brightness of the stroke displayed by the display portion is related to the pressure value sensed by the pressure sensor, and is positively correlated, that is, the greater the pressure value, the deeper the color depth of the displayed stroke or the higher the brightness High;
  • the thickness of the stroke displayed on the display portion is related to the pressure application time sensed by each pressure sensor, and is positively correlated, that is, the longer the pressure time is applied, the thicker the stroke is.
  • the writing area is formed by injection molding of nano-silicon nitride powder filler wear-resistant polyethylene plastic.
  • the nano-silicon nitride powder filler wear-resistant polyethylene plastic injection molding material comprises a master batch with a mass fraction of 70% to 89%, a filler of 1% to 20%, and a mother liquor of 10% to 29%;
  • the masterbatch includes mass fraction: chlorinated polyethylene resin with a melt index ranging from 8 to 18 g/10 min, 95% to 98.15%, carbon black 1% to 4.15%, zinc chloride 0.3% to 3.45%, stearic acid. Sodium 0.3% to 3.45%, N,N'-diphenyl-p-phenylenediamine 0.1% to 3.25%, diethylene glycol 0.05% to 3.2%, and diethyldithiocarbamate 0.1% to 3.25%;
  • the mother liquor includes a mass fraction of 25% to 35% of the chlorinated polyethylene resin and 65% to 75% of the chloroform;
  • the filler includes a mass fraction of 25% to 35% of the nano-silicon nitride powder and 65% to 75% of the chloroform.
  • the display area is an LED display.
  • the electronic control system processes the writing signal and outputs a display signal showing a different color to the LED display screen to be displayed in the display area.
  • the display can display multiple texts; when the number of displayed texts is full, all text is cleared and then continues from the beginning.
  • the display portion is substantially synchronized with the writing pen, that is, the writing pen writes a stroke, and the display portion can display a stroke; or a stroke is written to a certain position, and the display portion can be displayed to the position.
  • the color of the stroke is preferably formed by superimposing and superimposing the colors corresponding to the induced pressure sensor.
  • the color of the stroke preferably instantly displays the color corresponding to the pressure sensor touched by the pen tip.
  • the pen tip slides over the second and fifth positions. 9 arrays, the display part shows the strokes " ⁇ " from top to bottom and the color is yellow, yellow and blue.
  • the writing area 1 and the display area 2 are touch display screens.
  • the touch display screen displays reverse text, guiding the user to write reverse text on the touch display screen; the touch display screen senses the pressure of the writing pen and converts the pressure into a writing signal for transmission to the electronic control system, and the electronic control system processes the writing signal And outputting a control signal to the touch display screen, so that the touch display screen displays the text written by the user, stimulating the user to use the right brain.
  • the display area displays the user's writing path in real time according to the control of the electronic control system.
  • the writing pen includes a pen tip 4 and a pen holder 3; the pen tip 4 is movably connected to the pen holder 3; and a writing pressure detecting device is further disposed between the pen tip 4 and the pen holder 3.
  • the writing pressure detecting device comprises: a stroke switch 31 and an elastic supporting device 32; one end of the elastic supporting member 32 is in contact with one end of the stroke switch 31, and the other end of the elastic supporting member 32 is in contact with the writing head 4; The other end of the travel switch 31 is in contact with the pen holder 3; the pen holder is preferably provided with a cavity 30, and the writing pressure detecting device is disposed on the pen holder 3 Inside the cavity 30.
  • the resilient support 32 is preferably a spring.
  • the base of the pen tip has a guide block inserted into a longitudinal sliding slot on the outer portion of the outer portion of the pen holder; a plug is disposed at the center of the outer portion of the outer portion of the pen holder; the base of the pen tip is connected with the plug by a spring; the longitudinal chute on the outer portion of the outer portion of the pen holder is disposed at the end a travel switch, when the pen head abuts against the writing panel, and under the pressure of the hand, the pen portion moves downward along the guide block against the spring force until the guide block triggers the travel switch, the travel switch activates the electronic control system and the pressure sensor; When a stroke is written, the pen is lifted, and the pen head slides away from the pen portion by the spring force of the spring.
  • the pen tip 4 includes a guide block 41 that is slidable up and down with respect to the pen holder portion 3, wherein the pen tip 4 has a base having a guide block 41 inserted into a longitudinal chute on the outer casing of the pen holder portion 3.
  • the pen portion 3 moves downward along the guide block against the spring force until the guide block triggers the travel switch, which activates the electronic control system and components such as sensors.
  • the stroke switch 31 is turned off.
  • the opening and closing of the switch has corresponding indicators to indicate the user.
  • the writing strength of the user can be reminded, and the writing force of the writer is prevented from being too light, so that the pressure sensor cannot be accurately sensed, thereby causing the problem that the writing display fails.
  • the writer needs to use a certain amount of power, so the writing is slow, which is beneficial to the stimulation.
  • the pen tip 4 may be a hard material or a soft material.
  • the sensor is effectively protected, and the pen tip is preferably made of soft rubber.
  • the pen tip comprises an ethylene-vinyl carbamate copolymer having a mass fraction of 50% to 60%, an ethylene-butene copolymer of 14% to 24%, an ethylene propylene diene rubber of 5% to 15%, and 6% to 16%.
  • % ethylene-acrylic acid copolymer 8% to 18% anti-wear agent, 3% to 13% filler, 1.0% to 11% magnesium oxide, 0.5% to 10.5% stearic acid, 0.8% to 10.8 % sodium stearate, 0.5% to 10.5% bridging agent, 1.2% to 11.2% foaming agent.
  • the pen grip portion of the writing pen of the embodiment of the present invention has a triangular cross section. Further for the comfort of the pen, the three corners of the triangle are chamfered, ie a transition between the three sides via a short straight line or a short arc.
  • the outer surface of the writing pen is provided with a projection.
  • the protrusions are communicatively coupled to an electronic control system that processes the writing signal and outputs a control signal for the protrusion to generate a stimulation current or vibration. Specifically, if the writing speed of the writing signal received by the electronic control system is too fast, the electronic control system causes the protrusion to generate a stimulation current or vibration according to the writing signal and outputting the control signal.
  • the three protrusions correspond to the aforementioned pressure sensors in sequence. For example, if the sensors numbered 1-1, 1-2, and 1-3 in FIG. 2 correspond to one protrusion in sequence, then 1-4, 1-5 1-6 also corresponds to three protrusions in the same order, and so on.
  • the three projections are vibrating or may generate heat or may generate a weak stimulation current.
  • the pressure sensor triggered by the writing pen sends the number information to the electronic control system, and the control system then controls the corresponding protrusion to vibrate, of course, It is to change the vibration frequency or amplitude, but in general the protrusions can produce different stimuli for writing fingers depending on the writing.
  • Embodiments that can generate heat or generate a weak stimulus current are similar to this and will not be described here.
  • the right brain development system of the embodiment of the present invention When the right brain development system of the embodiment of the present invention is used for developing the right brain, the user writes on the writing area using the writing pen, and the pressure sensor provided on the writing area senses the passage of the writing head of the writing pen and sends the information to the electronic control.
  • the electronic control system forms a corresponding stroke according to position information and color information corresponding to the pressure sensor and displays the corresponding stroke on the display portion; the electronic control system further forms an outer surface of the grip portion of the writing pen pen according to the position information corresponding to the pressure sensor
  • the three bulges correspond to the somatosensory stimulation.
  • the user can additionally obtain the color stimulation and the somatosensory stimulation of the hand when writing, and can significantly improve the stimulation degree of the right brain and strengthen the development of the right brain.
  • the right brain development system provided by the embodiment of the present invention further includes reverse printing of characters and/or Groove printed copybook;
  • the reverse groove printing and/or reverse printing of the text can be changed by the user through the groove guidance when the user reverses the groove letter, and can change the thinking mode and activate the right brain cells.
  • an embodiment of the present invention further provides a right brain development method applied to the above system, where the method is applied to the right brain development system described above:
  • the writing pen is written in the writing area, the writing area senses the pressure of the writing pen and converts the pressure into a writing signal and transmits it to the electronic control system, and the electronic control system processes the writing signal and outputs it to the display area display, stimulating the user to use the right brain.
  • the right brain development method provided by the embodiment of the present invention is described in detail below.
  • the electronic control system processing the writing signal and outputting to the display area display includes the electronic control system processing the writing signal and outputting a display signal displaying a different color to the display area for display in the display area.
  • the electronic control system further includes a writing signal and transmits a somatosensory stimulation signal to the writing pen, and the writing pen receives the somatosensory stimulation signal to generate a writing somatosensory stimulus.
  • the brain must change the thinking mode and cognitive mode of the left brain. By mirroring the right brain, it enters the right brain and reverses the thinking. Completion of writing, in the process of copying the script in the Linyi book, the brain's left and right brain thinking mode and cognitive mode are continuously exchanged, and the trigger activation of the right brain cells is simultaneously performed, and the triggering and activation of the right brain cells are realized on the physiological function level of the brain. And application, thus achieving the purpose of right brain development.
  • the right brain development system of the embodiment of the present invention When the right brain development system of the embodiment of the present invention is used for developing the right brain, the user writes on the writing area using the writing pen, and the pressure sensor provided on the writing area senses the passage of the writing head of the writing pen and sends the information to the electronic control.
  • the electronic control system forms a corresponding stroke according to position information and color information corresponding to the pressure sensor and displays the corresponding stroke on the display portion; the electronic control system further forms an outer surface of the grip portion of the writing pen pen according to the position information corresponding to the pressure sensor
  • the three bulges correspond to the somatosensory stimulation.
  • the user can additionally obtain the color stimulation and the somatosensory stimulation of the hand when writing, and can significantly improve the stimulation degree of the right brain and strengthen the development of the right brain.
  • the embodiment of the present invention provides a right brain development system.
  • the system includes: a writing panel 10 and a writing pen; the writing panel 10 further includes an electronic control system; the writing panel 10 includes a writing area 1 and a display area 2, Both the writing area 1 and the display area 2 are connected to the control system; the display area 2 displays the reverse text, guiding the user to write the reverse text in the writing area 1; the writing area 1 senses the pressure of the writing pen and converts the pressure into a writing signal to the
  • the electronic control system processes the writing signal and outputs a control signal to the display area 2 to cause the display area 2 to display the text written by the user, stimulating the user to use the right brain.
  • the following is a detailed description of the embodiment of the present invention and the provided right brain development system.
  • the writing area 1 can be divided into a plurality of areas according to different habits of different users, and the area is preferably a plurality of array writing areas divided into integer multiples of three. More preferably, the array in which the writing area 1 is divided has the same number of horizontal rows and columns. As illustrated in Figure 2, an embodiment having three horizontal rows and three columns is shown, where N is equal to nine.
  • a plurality of pressure sensors are disposed on the back of the writing area 1 with respect to the writing surface; a plurality of pressure sensors are evenly distributed in the writing area for sensing the writing pen in the writing area.
  • Each of the array blocks is provided with a pressure sensor that senses the pressure generated by the writing pen on which the writing pen is written.
  • the pressure sensor can also be placed on the surface of the writing surface or embedded inside the writing area.
  • the sensor is disposed adjacent to a central location of the array block.
  • the electronic control system numbers each pressure sensor and completes the numbering.
  • the position coordinate information and color information corresponding to each pressure sensor are then stored in the electronic control system for recall.
  • the pressure sensor is sequentially numbered according to the array block into which the writing area 1 is divided; preferably, the numbers are sequentially numbered from left to right in the horizontal row, and the next row is sequentially numbered in the last row of the previous row, as exemplarily shown in FIG. That's it.
  • the number is related to the position of the array block, and corresponds to three different colors, for example, three colors of red, yellow and blue, that is, the maximum number N is an integer multiple of 3, which is in the order of red, yellow and blue from 1 onwards.
  • 1-1, 1-2, 1-3 represent red, yellow and blue, respectively, 1-4, 1-5, 1-6 repeats represent red, yellow and blue, respectively, 1-7, 1-7 , 1-9 repeats represent red, yellow and blue respectively.
  • the pressure generated by the writing pen on the writing head is sensed by the pressure sensor on the back of the array block, they will send their respective representative position and color information to the electronic control system, and the electronic control system will generate the writing stroke and the color of the stroke. Send to display area 2 for display.
  • the color depth or brightness of the stroke displayed by the display portion is related to the pressure value sensed by the pressure sensor, and is positively correlated, that is, the greater the pressure value, the deeper the color depth of the displayed stroke or the higher the brightness High;
  • the thickness of the stroke displayed on the display portion is related to the pressure application time sensed by each pressure sensor, and is positively correlated, that is, the longer the pressure time is applied, the thicker the stroke is.
  • the writing area is formed by injection molding of nano-silicon nitride powder filler wear-resistant polyethylene plastic.
  • the nano-silicon nitride powder filler wear-resistant polyethylene plastic injection molding material comprises a master batch with a mass fraction of 70% to 89%, a filler of 1% to 20%, and a mother liquor of 10% to 29%;
  • the masterbatch includes mass fraction: chlorinated polyethylene resin with a melt index ranging from 8 to 18 g/10 min, 95% to 98.15%, carbon black 1% to 4.15%, zinc chloride 0.3% to 3.45%, stearic acid. Sodium 0.3% to 3.45%, N,N'-diphenyl-p-phenylenediamine 0.1% to 3.25%, diethylene glycol 0.05% to 3.2%, and diethyldithiocarbamate 0.1% to 3.25%;
  • the mother liquor includes a mass fraction of 25% to 35% of the chlorinated polyethylene resin and 65% to 75% of the chloroform;
  • the filler includes a mass fraction of 25% to 35% of the nano-silicon nitride powder and 65% to 75% of the chloroform.
  • the display area is an LED display.
  • the electronic control system processes the writing signal and outputs a display signal showing a different color to the LED display screen to be displayed in the display area.
  • the display can display multiple texts; when the number of displayed texts is full, all text is cleared and then continues from the beginning.
  • the display portion is substantially synchronized with the writing pen, that is, the writing pen writes a stroke, and the display portion can display a stroke; or a stroke is written to a certain position, and the display portion can be displayed to the position.
  • the color of the stroke is preferably formed by superimposing and superimposing the colors corresponding to the induced pressure sensor.
  • the color of the stroke preferably instantly displays the color corresponding to the pressure sensor touched by the pen tip.
  • the pen tip slides over the second and fifth positions. 9 arrays, the display part shows the strokes " ⁇ " from top to bottom and the color is yellow, yellow and blue.
  • the writing area 1 and the display area 2 are touch display screens.
  • the touch display screen displays reverse text, guiding the user to write reverse text on the touch display screen; the touch display screen senses the pressure of the writing pen and converts the pressure into a writing signal for transmission to the electronic control system, and the electronic control system processes the writing signal And outputting a control signal to the touch display screen, so that the touch display screen displays the text written by the user, stimulating the user to use the right brain.
  • the display area displays the user's writing path in real time according to the control of the electronic control system.
  • the writing pen includes a pen tip 4 and a pen holder 3; the pen tip 4 is movably connected to the pen holder 3; and a writing pressure detecting device is further disposed between the pen tip 4 and the pen holder 3.
  • the writing pressure detecting device comprises: a stroke switch 31 and an elastic supporting device 32; one end of the elastic supporting member 32 is in contact with one end of the stroke switch 31, and the other end of the elastic supporting member 32 is in contact with the writing head 4; The other end of the stroke switch 31 is in contact with the sheath 3; the sheath is preferably provided with a cavity 30, and the writing pressure detecting means is disposed in the cavity 30 of the sheath 3.
  • the resilient support 32 is preferably a spring.
  • the base of the pen tip has a housing that is inserted into the pen portion a guide block in the longitudinal chute; a plug is disposed in the center of the outer portion of the pen holder; the base of the pen tip is connected with the plug by a spring; the longitudinal chute on the outer part of the outer part of the pen holder is provided with a travel switch, and when the pen head abuts on the writing On the panel, under the pressure of the hand, the pen portion moves downward along the guide block against the spring force until the guide block triggers the travel switch, which activates the electronic control system and the pressure sensor; when writing a stroke, lifts the writing The pen is slid away from the pen portion by the spring force of the spring.
  • the pen tip 4 includes a guide block 41 that is slidable up and down with respect to the pen holder portion 3, wherein the pen tip 4 has a base having a guide block 41 inserted into a longitudinal chute on the outer casing of the pen holder portion 3.
  • the pen portion 3 moves downward along the guide block against the spring force until the guide block triggers the travel switch, which activates the electronic control system and components such as sensors.
  • the stroke switch 31 is turned off.
  • the opening and closing of the switch has corresponding indicators to indicate the user.
  • the writing strength of the user can be reminded, and the writing force of the writer is prevented from being too light, so that the pressure sensor cannot be accurately sensed, thereby causing the problem that the writing display fails.
  • the writer needs to use a certain amount of power, so the writing is slow, which is beneficial to the stimulation.
  • the pen tip 4 may be a hard material or a soft material.
  • the sensor is effectively protected, and the pen tip is preferably made of soft rubber.
  • the pen tip comprises an ethylene-vinyl carbamate copolymer having a mass fraction of 50% to 60%, an ethylene-butene copolymer of 14% to 24%, an ethylene propylene diene rubber of 5% to 15%, and 6% to 16%.
  • % ethylene-acrylic acid copolymer 8% to 18% anti-wear agent, 3% to 13% filler, 1.0% to 11% magnesium oxide, 0.5% to 10.5% stearic acid, 0.8% to 10.8 % sodium stearate, 0.5% to 10.5% bridging agent, 1.2% to 11.2% foaming agent.
  • the pen grip portion of the writing pen of the embodiment of the present invention has a triangular cross section. Further for the comfort of the pen, the three corners of the triangle are chamfered, ie a transition between the three sides via a short straight line or a short arc.
  • the outer surface of the writing pen is provided with a projection.
  • the protrusions are communicatively coupled to an electronic control system that processes the writing signal and outputs a control signal for the protrusion to generate a stimulation current or vibration. Specifically, if the writing speed of the writing signal received by the electronic control system is too fast, the electronic control system causes the protrusion to generate a stimulation current or vibration according to the writing signal and outputting the control signal.
  • the three protrusions correspond to the aforementioned pressure sensors in sequence. For example, if the sensors numbered 1-1, 1-2, and 1-3 in FIG. 2 correspond to one protrusion in sequence, then 1-4, 1-5 1-6 also corresponds to three protrusions in the same order, and so on.
  • the three projections are vibrating or may generate heat or may generate a weak stimulation current.
  • the pressure sensor triggered by the writing pen sends the number information to the electronic control system, and the control system then controls the corresponding protrusion to vibrate, of course, It is to change the vibration frequency or amplitude, but in general the protrusions can produce different stimuli for writing fingers depending on the writing.
  • Embodiments that can generate heat or generate a weak stimulus current are similar to this and will not be described here.
  • the right brain development system of the embodiment of the present invention When the right brain development system of the embodiment of the present invention is used for developing the right brain, the user writes on the writing area using the writing pen, and the pressure sensor provided on the writing area senses the passage of the writing head of the writing pen and sends the information to the electronic control.
  • the electronic control system forms a corresponding stroke according to position information and color information corresponding to the pressure sensor and displays the corresponding stroke on the display portion; the electronic control system further forms an outer surface of the grip portion of the writing pen pen according to the position information corresponding to the pressure sensor
  • the three bulges correspond to the somatosensory stimulation.
  • the user can additionally obtain the color stimulation and the somatosensory stimulation of the hand when writing, and can significantly improve the stimulation degree of the right brain and strengthen the development of the right brain.
  • an embodiment of the present invention further provides a right brain development method applied to the above system, including: displaying a reverse text in a display area Word, guide the user to write reverse text in the writing area; use the writing pen to write in the writing area, the writing area senses the pressure of the writing pen and convert the pressure into a writing signal and transmit it to the electronic control system, and the electronic control system processes the writing signal and displays it The area outputs a control signal that causes the display area to display the text written by the user, stimulating the user to use the right brain.
  • the right brain development method provided by the embodiment of the present invention is described in detail below.
  • the electronic control system processing the writing signal and outputting to the display area display includes: the electronic control system processes the writing signal and outputs a display signal displaying a different color to the display area according to the writing pressure, and displays the display signal in the display area.
  • the electronic control system further includes a writing signal and transmits a somatosensory stimulation signal to the writing pen, and the writing pen receives the somatosensory stimulation signal to generate a writing somatosensory stimulus.
  • the user writes on the writing area using the writing pen
  • the pressure sensor provided on the writing area senses the passage of the writing head of the writing pen, and sends the writing information.
  • the electronic control system forms a corresponding stroke according to the position information and the color information corresponding to the pressure sensor and displays it on the display portion; the electronic control system further forms the hand portion of the writing pen pen according to the position information corresponding to the pressure sensor
  • the three protrusions on the outer surface are corresponding to the somatosensory stimulation.
  • the reverse text when writing in the left hand and reverse writing, the traditional writing form and thinking mode are completely subverted, and the reverse text is first converted to the right brain through the mirror image of the left brain, and the left and right brains are simultaneously retained in the brain. Two opposite text stroke structures, the reverse text will restart the unused right brain cells for storage, and then direct the left hand to write it.
  • the user can additionally obtain color stimulation and body sensation stimulation, can significantly improve the stimulation of the right brain, provide power to maintain brain activity and cellular energy, and strengthen the development of the right brain.
  • embodiments of the present application can be provided as a method, system, or computer program product.
  • the present application can take the form of an entirely hardware embodiment, an entirely software embodiment, or an embodiment in combination of software and hardware.
  • the application can take the form of a computer program product embodied on one or more computer-usable storage media (including but not limited to disk storage, CD-ROM, optical storage, etc.) including computer usable program code.
  • the computer program instructions can also be stored in a computer readable memory that can direct a computer or other programmable data processing device to operate in a particular manner, such that the instructions stored in the computer readable memory produce an article of manufacture comprising the instruction device.
  • Device implementation can also be stored in a computer readable memory that can direct a computer or other programmable data processing device to operate in a particular manner, such that the instructions stored in the computer readable memory produce an article of manufacture comprising the instruction device.
  • These computer program instructions can also be loaded onto a computer or other programmable data processing device such that a series of operational steps are performed on a computer or other programmable device to produce computer-implemented processing for execution on a computer or other programmable device.
  • the instructions provide steps for implementing the functions specified in one or more of the flow or in a block or blocks of a flow diagram.
  • the user writes on the writing area using the writing pen
  • the pressure sensor provided on the writing area senses the passage of the writing head of the writing pen, and sends the writing information to the electronic control system.
  • the electronic control system forms a corresponding stroke according to the position information and the color information corresponding to the pressure sensor and displays it on the display portion; the electronic control system further forms three outer surfaces of the hand grip portion of the writing pen according to the position information corresponding to the pressure sensor.
  • the corresponding body stimuli are raised.
  • the traditional writing form and thinking mode are completely subverted, and the reverse text is first converted to the right brain through the mirror image of the left brain, and the left and right brains are simultaneously retained in the brain.
  • the reverse text will restart the unused right brain cells for storage, and then direct the left hand to write it.
  • the user can additionally obtain color stimulation and hand stimulation, can significantly improve the stimulation of the right brain, provide power to maintain brain activity and cellular energy, strengthen the development of the right brain, and have industrial practicality. Sex.

Abstract

一种右脑开发系统和方法,系统包括:书写面板(10)和书写笔,以及电子控制系统;书写面板(10)包括书写区域(1)和显示区域(2),书写区域(1)和显示区域(2)均与控制系统连接;显示区域(2)显示反向文字,引导用户在书写区域(1)书写反向文字;书写区域(1)感测书写笔的压力并将压力转化成书写信号传输至电子控制系统,电子控制系统处理书写信号并向显示区域(2)输出控制信号,使显示区域(2)显示用户书写的文字,刺激用户使用右脑。使用系统书写时,能够额外地得到色彩刺激和手的体感刺激,显著提高右脑的刺激程度,提供用以维持大脑活性和细胞能量的动力,加强对于右脑的开发。

Description

一种右脑开发系统和方法 技术领域
本发明实施例涉及医疗保健技术领域,尤其涉及一种右脑开发系统和方法。
背景技术
大脑是生物体内结构和功能最复杂的组织,是接受外界信号、产生感觉、形成意识、进行逻辑思维、发出指令产生行为的指挥部,它掌管着人类每天的语言、思维、感觉、情绪、运动等高级活动。人脑也是极为精巧和完善的信息处理系统,是人体内外环境信息获得、存储、处理、加工和整合的中枢。人的大脑分为左右两个半球,我们习惯于称它们为左脑和右脑。左脑主要负责人类的理性、语言、文字、分析等,右脑主要负责音乐、形象、经验、直观等认识,因而右脑“感觉”更强,我们常说的“创造性思维”也更多是右脑的产物。右脑开发就是使用各种适合右脑工作的方法来激活右脑,使右脑的巨大潜能得到发挥。开发右脑中隐藏的丰富想象力、无穷的创造力、高速的右脑记忆能力、快速的理解力、正确的直觉能力。利用右脑,不仅能够中和缓解我们左脑的压力,更为重要的是对我们的逻辑思维可以进行多源组合而产生更多的思维出路,这也就是全脑思维的真正意义。因为右脑的参与,将具有单一性和直线型的思维模式实现了本质上的变化,产生更高级的思想而输出人类真正的智慧。但是现实生活中,大多数情况下,人类左脑的使用和开发相对于右脑来说要多得多。中国专利文献CN201191457Y公开了一种右脑书法字帖,该字帖右侧或顶部设有装订区域,字帖页正面反向印刷空心字、实体字或暗影字。每两页字帖页中间放置至少一页描摹页。通过左手执笔对右脑书法字帖进行临摹或描红,在生理功能、物理作用的双重影响下实现右脑细胞活化、开发。但是该实用新型专利所涉及的书法字帖为平面印刷且较为简单和单一,因此对于人体的刺激作用也较为微弱,进而所能实现的右脑细胞活化、开发的效果也就相对较差。
发明内容
本发明实施例旨在克服上述缺陷,提供一种右脑开发系统和方法。
一方面本发明实施例提供一种右脑开发系统,包括书写面板和书写笔,该右脑开发系统还包括电子控制系统;
书写面板包括书写区域和显示部分,书写区域为平板状,书写笔可在其表面上书写;书写笔包括笔杆部分和笔头。
可选地,所述书写区域被分割成N块阵列,N为3的整数倍。
可选地,所述书写区域的相对于书写面的背部设有压力传感器;
其中,
每一个阵列块都设置有压力传感器,所述压力传感器可感应书写笔在其上书写时所产生的压力。
可选地,所述显示部分为LED显式屏,显示部分所显示的笔划颜色由所触发的压力传感器所对应的颜色组成。
可选地,所述笔头可相对于笔杆部分上下滑动;
其中,
所述笔头的基底具有插入所述笔杆部分外壳上的纵向滑槽内的导块;笔杆部 分外壳中心设置有一个堵头,笔头的基底与堵头之间借助弹簧连接;笔杆部分外壳上的纵向滑槽尽头设置行程开关,当笔头抵靠在书写面板上,且在人手的压力下,笔杆部分克服弹簧弹力沿着导块向下运动,直至导块触发行程开关,该行程开关激活电子控制系统以及压力传感器;写完一个笔划时,抬起书写笔,笔头借助于弹簧的弹力与笔杆部分滑动离开。
可选地,在笔杆处于被握的外表面部分上还分别设置有三个凸起,该凸起是圆形凸起或条状凸起。
可选地,三个凸起可震动或者可发热或者可产生微弱的刺激电流。
可选地,使用者使用书写笔在书写区域上进行书写,书写区域上设置的压力传感器感应书写笔的笔头的经过,并将信息发送至电子控制系统,该电子控制系统根据压力传感器对应的位置信息和颜色信息形成对应的笔划并将其显示在显示部分上;电子控制系统还根据压力传感器对应的位置信息形成书写笔笔杆手握部分外表面的三个凸起相应的体感刺激。
另一方面本发明实施例提供一种用于所述的右脑开发系统或右脑开发方法的字帖,该字帖包括凹槽型浅色印刷的反向文字。
另一方面,本发明实施例提供一种右脑开发系统,包括:书写面板和书写笔;
所述书写面板还包括电子控制系统;
所述书写面板包括书写区域和显示区域,所述书写区域和显示区域均与所述控制系统连接;
所述书写区域感测书写笔的压力并将所述压力转化成书写信号传输至所述电子控制系统,所述电子控制系统处理所述书写信号并输出至所述显示区域显示。
可选地,所述书写区域为3的整数倍的多个阵列书写区域。
可选地,所述书写区域的相对于书写面的背部设有多个压力传感器;
所述多个压力传感器均匀分布在所述书写区域,用于感应书写笔在书写区域书写所产生的压力。
可选地,所述书写区域是纳米氮化硅粉体填料耐磨聚乙烯塑料注塑形成。
可选地,所述纳米氮化硅粉体填料耐磨聚乙烯塑料注塑原料包括质量分数为70%~89%的母料、1%~20%的填料、10%~29%的母液;
其中,
母料包括质量分数为:熔融指数范围在8~18g/10min之间的氯化聚乙烯树脂95%~98.15%、炭黑1%~4.15%、氯化锌0.3%~3.45%、硬脂酸钠0.3%~3.45%、N,N’-二苯基对苯二胺0.1%~3.25%、二甘醇0.05%~3.2%、二乙基二硫代氨基甲酸锌0.1%~3.25%;
母液包括质量分数为:氯化聚乙烯树脂25%~35%融入三氯甲烷65%~75%;
填料包括质量分数为:纳米氮化硅粉体25%~35%,加入三氯甲烷65%~75%。
可选地,所述显示区域为LED显示屏。
可选地,所述电子控制系统处理所述书写信号并向所述LED显示屏输出显示不同颜色的显示信号在所述显示区域显示。
可选地,所述显示区域显示书写路径。
可选地,所述书写笔包括笔头和笔杆;
所述笔头与所述笔杆活动连接;
所述笔头和笔杆之间还设置有书写压力检测装置。
可选地,所述书写压力检测装置包括:行程开关和弹性支撑装置;
所述弹性支撑件一端和所述行程开关一端接触,所述弹性支撑件另一端与笔 头接触;装置行程开关另一端与所述笔杆接触;
所述书写压力检测装置设置在所述笔杆内。
可选地,所述笔头的基底具有插入所述笔杆部分外壳上的纵向滑槽内的导块;所述笔杆部分外壳中心设置有一个堵头;
笔头的基底与堵头之间借助弹簧连接;笔杆部分外壳上的纵向滑槽尽头设置行程开关,当笔头抵靠在书写面板上,且在人手的压力下,笔杆部分克服弹簧弹力沿着导块向下运动,直至导块触发行程开关,该行程开关激活电子控制系统以及压力传感器;写完一个笔划时,抬起书写笔,笔头借助于弹簧的弹力与笔杆部分滑动离开。
可选地,所述笔头是软质橡胶制成。
可选地,所述笔头包括质量分数为50%~60%的乙烯-甲酸乙烯共聚物、14%~24%的乙烯-丁烯共聚物、5%~15%的三元乙丙橡胶、6%~16%的乙烯-丙烯酸共聚物、8%~18%的耐磨剂、3%~13%的填充剂、1.0%~11%的氧化镁、0.5%~10.5%的硬脂酸、0.8%~10.8%的硬脂酸钠、0.5%~10.5%的架桥剂、1.2%~11.2%的发泡剂。
可选地,所述书写笔截面呈三角形。
可选地,所述书写笔外表面设置有突起。
可选地,所述突起与所述电子控制系统通信连接,所述电子控制系统处理所述书写信号并输出控制信号使所述突起用于产生刺激电流或振动。
可选地,还包括文字反向印刷和/或凹槽印刷的字帖;
文字的反向凹槽印刷和/或反向印刷,使用者在临摹反向凹槽字帖时,通过凹槽引导进行临摹,能够改变思维模式和激活右脑细胞。
另一方面,本发明实施例还一种右脑开发方法,其特征在于,应用于上述的吸热包括:
使用书写笔在书写区域书写,书写区域感测书写笔的压力并将所述压力转化成书写信号传输至所述电子控制系统,所述电子控制系统处理所述书写信号并输出至所述显示区域显示。
可选地,所述电子控制系统处理所述书写信号并输出至所述显示区域显示包括:
所述电子控制系统处理所述书写信号并向所述显示区域输出显示不同颜色的显示信号,在所述显示区域显示。
可选地,还包括所述电子控制系统所述书写信号并向形成体感刺激信号传输至所述书写笔,所述书写笔接收所述体感刺激信号产生书写体感刺激。
可选地,还包括使用反向字帖进行临摹书写,因书写反向文字,大脑必须改变左脑的思维模式和认知模式,通过对右脑进行镜像,进入右脑逆向思维,双脑共同协调才能完成书写,在临摹书写字帖过程中,大脑左右脑思维模式和认知模式进行连续互换,同时对右脑细胞的触发活化同步进行,在大脑生理机能层面上实现了右脑细胞的触发、活化和应用,因此达到右脑开发的目的。
另一方面,本发明实施例还提供一种右脑开发系统,包括:书写面板和书写笔;
所述书写面板还包括电子控制系统;
所述书写面板包括书写区域和显示区域,所述书写区域和显示区域均与所述控制系统连接;
所述显示区域显示反向文字,引导用户在书写区域书写反向文字;
所述书写区域感测书写笔的压力并将所述压力转化成书写信号传输至所述电子控制系统,所述电子控制系统处理所述书写信号并向所述显示区域输出控制 信号,使所述显示区域显示用户书写的文字,刺激用户使用右脑。
可选地,所述书写区域为3的整数倍的多个阵列书写区域。
可选地,所述书写区域的相对于书写面的背部设有多个压力传感器;
所述多个压力传感器均匀分布在所述书写区域,用于感应书写笔在书写区域书写所产生的压力。
可选地,所述书写区域是纳米氮化硅粉体填料耐磨聚乙烯塑料注塑形成。
可选地,所述纳米氮化硅粉体填料耐磨聚乙烯塑料注塑原料包括质量分数为70%~89%的母料、1%~20%的填料、10%~29%的母液;
其中,
母料包括质量分数为:熔融指数范围在8~18g/10min之间的氯化聚乙烯树脂95%~98.15%、炭黑1%~4.15%、氯化锌0.3%~3.45%、硬脂酸钠0.3%~3.45%、N,N’-二苯基对苯二胺0.1%~3.25%、二甘醇0.05%~3.2%、二乙基二硫代氨基甲酸锌0.1%~3.25%;
母液包括质量分数为:氯化聚乙烯树脂25%~35%融入三氯甲烷65%~75%;
填料包括质量分数为:纳米氮化硅粉体25%~35%,加入三氯甲烷65%~75%。
可选地,所述显示区域为LED显示屏。
可选地,所述电子控制系统处理所述书写信号并向所述LED显示屏输出显示不同颜色的显示信号在所述显示区域显示。
可选地,所述书写区域和所述显示区域为触控显示屏。
可选地,所述显示区域显示书写路径。
可选地,所述书写笔包括笔头和笔杆;
所述笔头与所述笔杆活动连接;
所述笔头和笔杆之间还设置有书写压力检测装置。
可选地,所述书写压力检测装置包括:行程开关和弹性支撑装置;
所述弹性支撑件一端和所述行程开关一端接触,所述弹性支撑件另一端与笔头接触;装置行程开关另一端与所述笔杆接触;
所述书写压力检测装置设置在所述笔杆内。
可选地,所述笔头的基底具有插入所述笔杆部分外壳上的纵向滑槽内的导块;所述笔杆部分外壳中心设置有一个堵头;
笔头的基底与堵头之间借助弹簧连接;笔杆部分外壳上的纵向滑槽尽头设置行程开关,当笔头抵靠在书写面板上,且在人手的压力下,笔杆部分克服弹簧弹力沿着导块向下运动,直至导块触发行程开关,该行程开关激活电子控制系统以及压力传感器;写完一个笔划时,抬起书写笔,笔头借助于弹簧的弹力与笔杆部分滑动离开。
可选地,所述笔头是软质橡胶制成。
可选地,所述笔头包括质量分数为50%~60%的乙烯-甲酸乙烯共聚物、14%~24%的乙烯-丁烯共聚物、5%~15%的三元乙丙橡胶、6%~16%的乙烯-丙烯酸共聚物、8%~18%的耐磨剂、3%~13%的填充剂、1.0%~11%的氧化镁、0.5%~10.5%的硬脂酸、0.8%~10.8%的硬脂酸钠、0.5%~10.5%的架桥剂、1.2%~11.2%的发泡剂。
可选地,所述书写笔截面呈三角形。
可选地,所述书写笔外表面设置有突起。
可选地,所述突起与所述电子控制系统通信连接,所述电子控制系统处理所述书写信号并输出控制信号使所述突起用于产生刺激电流或振动。
另一方面,发明提供一种右脑开发方法,其特征在于,应用于上述的系统, 包括:
所述显示区域显示反向文字,引导用户在书写区域书写反向文字;
使用书写笔在书写区域书写,所述书写区域感测书写笔的压力并将所述压力转化成书写信号传输至所述电子控制系统,所述电子控制系统处理所述书写信号并向所述显示区域输出控制信号,使所述显示区域显示用户书写的文字,刺激用户使用右脑。
可选地,所述电子控制系统处理所述书写信号并输出至所述显示区域显示包括:
所述电子控制系统处理所述书写信号并按书写压力轻重向所述显示区域输出显示不同颜色的显示信号,在所述显示区域显示。
可选地,还包括所述电子控制系统所述书写信号并向形成体感刺激信号传输至所述书写笔,所述书写笔接收所述体感刺激信号产生书写体感刺激。
本发明实施例克服了传统书写方式的惯性思维对开发右脑的干扰、影响,左手执笔、握笔更需要相关控制脑区的脑细胞群进行重新协调控制左手执笔的力度、缓急,握笔、运笔的过程一旦形成习惯,相应的脑区功能细胞即得到有效的开发应用。仅仅在执笔、握笔阶段的手感刺激,就能够显著提高右脑的刺激程度,加强对于右脑的开发。
借助于本发明实施例,使用者在用左手反向书写时,能够显著提高右脑的刺激程度,加强对于右脑的开发。
本发明实施例对于广大青少年来讲,在学习中里用到右脑,不仅能够提高记忆力、理解力,更为重要的是以右脑的生理条件为左脑的学习负担解压,实现快乐学习轻松学习的重要意义。而对于成年人,也包括中老年人,以及社会各阶层人士右脑开发和应用的意义、影响会更大。
本发明实施例在使用过程中,左手执笔和逆向书写时,完全颠覆了传统书写形式和思维模式,逆向的文字首先要通过左脑的镜像转换到右脑,在大脑左右脑各自同时保留了两个相向相同的文字笔画结构,逆向的文字会重新启动未曾用过的右脑细胞进行储存,之后再指挥左手将其书写出来。特别是中文汉字的笔画繁复多变性,每个文字的镜像都不会重复的固有特性,不断的触发更多未曾使用的脑细胞来储存不同的文字镜像,使脑细胞开发活化的基数不断累加增多。
本发明实施例在开发活化大脑细胞的同时,脑细胞被触发活化过程中,会自动产生内啡肽,也称多巴胺,多巴胺是大脑细胞间的联络员,也称快乐因子,人的思维和行为反应的快与慢和多巴胺有着直接的关系。更重要的是,帕金森、健忘、老年痴呆症等大脑亚健康疾病,都与多巴胺的活性降低、减少有关。本发明实施例在开发右脑细胞的同时,刺激多巴胺的定量产生,其过程产生快乐、愉悦的生理反应即在于多巴胺上。快乐能让人积极向上,快乐能让人身心健康。
本发明实施例在戒毒方面上也有重要作用,其在于大脑细胞量子自旋的代偿特性。吸毒成瘾的大脑,通过本发明实施例引导开发右脑细胞过程中,会弥补被损伤的特定脑区和奖赏系统(reward system),左手执笔逆连续不断逆向书写,一直刺激一个位于大脑深层称为中脑腹侧被盖区(ventral tegmental area简称VTA)的区域。从VTA区起源的神经细胞延伸至大脑的“快感中心”依状神经核中。在细胞水平上,快感的产生可以用多巴胺(dopamine)的作用解释。在依状神经核部位,神经元释放多巴胺,通过对突触后膜上的受体的作用向后一个神经元传递“快乐”的信号。吸毒成瘾的主要原因是毒品破坏了大脑多巴胺的平衡,且对脑细胞的伤害是不可逆的。吸毒一旦成瘾,多巴胺就会依赖毒品刺激才会产生,毒品作用一旦结束,承担着制造快乐的因子“多巴胺”急剧下降,使吸毒者痛不欲生。而开发右脑新的细胞,利用脑细胞固有的代偿功能,承担被毒品损伤的脑细胞功 能,均衡多巴胺,摆脱毒瘾重拾快乐。
本发明实施例提供的右脑开发系统和方法中,用户使用书写笔在书写区域上进行书写,书写区域上设置的压力传感器感应书写笔的笔头的经过,并将书写信息发送至电子控制系统,该电子控制系统根据压力传感器对应的位置信息和颜色信息形成对应的笔划并将其显示在显示部分上;电子控制系统还根据压力传感器对应的位置信息形成书写笔笔杆手握部分外表面的三个凸起相应的体感刺激。通过本发明实施例提供的技术方案,左手执笔和逆向书写时,完全颠覆了传统书写形式和思维模式,逆向的文字首先要通过左脑的镜像转换到右脑,在大脑左右脑各自同时保留了两个相向相同的文字笔画结构,逆向的文字会重新启动未曾用过的右脑细胞进行储存,之后再指挥左手将其书写出来。使用者在书写时,能够额外地得到色彩刺激和手的体感刺激,能够显著提高右脑的刺激程度,能提供用以维持大脑活性和细胞能量的动力,加强对于右脑的开发。
附图说明
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动性的前提下,还可以根据这些附图获得其他的附图。
图1是本发明一个实施例中书写面板结构示意图;
图2是本发明一个实施例中书写面板的示意图;
图3是本发明一个实施例中书写面板结构示意图;
图4是本发明一个实施例中书写笔的示意图;
图5是本发明一个实施例中书写笔的详细结构示意图;
图6是本发明一个实施例中书写笔手握部分截面示意图;
图7是本发明一个实施例中一种示例性字帖。
具体实施方式
本发明提供一种右脑开发系统和方法,下面分别通过三个实施例分别对本发明展开详细的说明。
实施例1
参见图2和图4,根据本发明的右脑开发系统包括书写面板和书写笔,该右脑开发系统也包括电子控制系统和电源。书写面板包括书写区域1和显示部分2,书写区域为平板状,书写笔可在其表面上书写。书写笔包括笔杆部分3和笔头4。当书写笔在书写区域的表面进行书写时,可例如按照中国专利文献CN201191457Y所公开的书法字帖进行临摹;或者按照如图7所示例性显示的字帖临摹,该字帖包括凹槽型浅色印刷的反向文字,其采用凸版压痕形式在纸张上印刷凹痕逆向浅色文字形成,临摹时进行左手逆向书写,该字帖可以单张使用或装订成册使用;该字帖由于具有立体感,能够显著增强刺激作用;同时,该字帖也可以独立于本发明实施例而使用,即使用常规的深色笔沿着凹槽字帖进行逆向书写,克服了平面印刷字帖使用者很难临摹或临摹笔画难以控制的问题。在一个实施例中,书写区域1侧部具有固定书写笔的夹子或者套管。
在一个优选实施例中,书写区域1被分割成N块阵列,N为3的整数倍,更优选地,书写区域1被分割成的阵列具有相同数量的横排和纵列。如图2所例示,其中显示了一个具有三个横排和三个纵列的实施例,此时N等于9。书写区域1优选地可以采用玻璃或者塑料材料制成,其相对于书写面的背部设有压力传感器,其中每一个阵列块都设置有压力传感器,该压力传感器可感应书写笔在其上书写时所产生的压力。当然,该压力传感器也可以设置于书写面上表面或者嵌入书写区域内部。优选地,传感器设置于阵列块的中央位置附近。该压力传感器 按照书写区域1被分割成的阵列块依次编号;优选地,按照横排从左至右顺序编号,下一排依次按上一排最后一个数字继续顺序编号,如图2示例性显示的那样。其中,该编号与阵列块的位置相关,而且与三种不同颜色对应,例如可以是红黄蓝三种颜色,即最大编号N为3的整数倍,其从1开始依次按照红黄蓝的顺序不断重复,如图2示例,1-1、1-2、1-3分别代表红黄蓝,1-4、1-5、1-6重复分别代表红黄蓝,1-7、1-8、1-9重复分别代表红黄蓝。当书写笔在其上书写时所产生的压力被阵列块背面的压力传感器感应时,它们会将各自代表的位置和颜色信息发送给电子控制系统,电子控制系统会生成书写笔划以及该笔划的颜色发送至显示部分2进行显示。在一个优选实施例中,电子控制系统对各压力传感器进行编号,编号完毕之后各压力传感器对应的位置坐标信息和颜色信息即存储于电子控制系统中,以便调用。在一个优选实施例中,书写区域1采用塑料材料注塑成型,注塑成型时所使用的原料以重量百分比计包括:母料:熔融指数范围在8~18g/10min之间的氯化聚乙烯树脂95%~98%、炭黑1%~3%、氯化锌0.3%~0.5%、硬脂酸钠0.3%~0.5%、N,N’-二苯基对苯二胺0.1%~0.2%、二甘醇0.05%~0.2%、二乙基二硫代氨基甲酸锌0.1%~0.4%;母液:氯化聚乙烯树脂25~35%融入三氯甲烷65~75%;填料:纳米氮化硅粉体25%~35%,加入三氯甲烷65%~75%;纳米氮化硅粉体填料耐磨聚乙烯塑料:母料70%~85%、填料1%~5%、母液10%~25%。在一个优选实施例中,书写区域由多个独立的阵列块拼接而成,这样使用者可方便地改变书写区域的大小和形状。
优选地,该显示部分为LED显式屏,该显示屏可显示多个文字;当显示文字数量满额时,即清除全部文字,然后从头开始继续显示。优选地,该显示部分可与书写笔基本保持同步,也就是说书写笔写完一个笔划,显示部分即可显示一个笔划;或者一个笔划写到某个位置,显示部分即可显示到该位置。优选地,当写完一个笔划再显示时,该笔划的颜色优选由得到感应的压力传感器所对应的各颜色混合叠加形成。当一个笔划写到某个位置、显示部分即可显示到该位置时,该笔划的颜色优选地即时显示笔头所触及的压力传感器所对应的颜色,例如图2中,笔头滑过第2、5、9块阵列,显示部分则显示出自上而下逐段颜色为黄黄蓝的笔划“捺”。
在一个优选实施例中,当显示部分所显示的笔划颜色由所触发的压力传感器所对应的三原色混合叠加而成时,压力传感器所对应的三原色按照各自的色度比例进行混合叠加,相同的三原色可以具有相同的初始色度设置,当然也可以按照其他设置规则,例如按照初始色度与编号的三分之一或者五分之一次方值相乘后进行叠加,这样当一个笔划向下写至快结束时,显示频所显示的笔划会更加鲜亮,因而也能够产生更大刺激度。
在一个优选实施例中,显示部分所显示的笔划的颜色深度或者亮度与压力传感器所感应到的压力值有关,且正相关,即压力值越大,显示的笔划的颜色深度越深或者亮度越高;显示部分所显示的笔划的粗细程度与各压力传感器所感应到的压力施加时间有关,且正相关,即压力时间施加越长,笔划越粗。
参见图4,书写笔包括笔杆部分3和笔头4;笔头4可采用硬质材料制成也可以采用软质材料制成。优选采用软质材料,这样可以保护书写板表面。该软质材料例如可以是橡胶。在一个优选实施例中,该橡胶包括以下重量份成分:乙烯-甲酸乙烯共聚物50%~64%、乙烯-丁烯共聚物18%~22%、三元乙丙橡胶6%~10%、乙烯-丙烯酸共聚物8%~12%、耐磨剂10%~12%、填充剂4%~6%、氧化镁1.0%~1.2%、硬脂酸0.5%~0.6%、硬脂酸钠0.8%~1.0%、架桥剂0.8%~0.9%、发泡剂3.2%~3.8%。
在一个优选实施例中,笔头4可相对于笔杆部分3上下滑动,其中笔头4具 有基底,该基底具有插入笔杆部分3外壳上的纵向滑槽内的导块(未示出)。笔杆部分3外壳中心设置有一个堵头,笔头4的基底与堵头之间借助弹簧连接。笔杆部分3外壳上的纵向滑槽尽头设置行程开关,当笔头4抵靠在书写面板上,且在人手的压力下,笔杆部分3克服弹簧弹力沿着导块向下运动,直至导块触发行程开关,该行程开关激活电子控制系统以及传感器等元件。写完一个笔划时,抬起书写笔,笔头4借助于弹簧的弹力与笔杆部分3滑动离开,行程开关断开。开关的开闭具有对应的指示灯来对使用者进行指示。借助于该设置,可提醒使用者的书写力度,防止书写者书写力度过轻而导致压力传感器无法精确感应,进而导致书写显示失败的问题。同时,由于该设置,书写者需要使用一定力量,因此书写则比较缓慢,有利刺激作用的发挥。
参见图6,其示意性地显示了书写笔笔杆手握部分的截面;由于使用者握笔时通常涉及三根指头,因此根据本发明实施例的书写笔笔杆手握部分的截面基本上呈三角形,为了握笔的舒适性,三角形的三个边之间经由短直线或者短弧线过渡。优选地,在笔杆处于被握的外表面部分上还分别设置有三个凸起,该凸起可以例如是圆形凸起,也可以是条状凸起。该三个凸起与前述的压力传感器依次对应,举例来说,如果图2中的1-1、1-2、1-3编号的传感器依次对应一个凸起,那么1-4、1-5、1-6也按相同顺序对应三个凸起,依此类推。当然,采用其他对应规则也是可以的。优选地,该三个凸起可震动或者可发热或者可产生微弱的刺激电流。以可震动为例,当书写笔在书写面板上书写一个笔划时,书写笔所触发的压力传感器会将编号信息发送给电子控制系统,该控制系统然后控制对应的凸起进行振动,当然也可以是改变振动频率或者是振幅,但总之是凸起能够根据书写产生对于书写手指的不同的刺激。可发热或者可产生微弱的刺激电流的实施方式与此类似,此处不在赘述。
利用本发明实施例的右脑开发系统进行右脑开发时,使用者使用书写笔在书写区域上进行书写,书写区域上设置的压力传感器感应书写笔的笔头的经过,并将信息发送至电子控制系统,该电子控制系统根据压力传感器对应的位置信息和颜色信息形成对应的笔划并将其显示在显示部分上;电子控制系统还根据压力传感器对应的位置信息形成书写笔笔杆手握部分外表面的三个凸起相应的体感刺激。
借助于本发明实施例,使用者在书写时,能够额外地得到色彩刺激和手的体感刺激,能够显著提高右脑的刺激程度,加强对于右脑的开发。
实施例2
如图1所示,本发明实施例提供一种右脑开发系统,包括:书写面板10和书写笔;书写面板10还包括电子控制系统;书写面板10包括书写区域1和显示区域2,书写区域1和显示区域2均与控制系统连接;书写区域1感测书写笔的压力并将压力转化成书写信号传输至电子控制系统,电子控制系统处理书写信号并输出至显示区域2显示。
如图2所示,书写区域1可以根据不同用户的不同习惯划分为多个区域,该区域优选是划分为3的整数倍的多个阵列书写区域。更优地,书写区域1被分割成的阵列具有相同数量的横排和纵列。如图2所例示,其中显示了一个具有三个横排和三个纵列的实施例,此时N等于9。
如图1、图2所示,本发明实施例中,书写区域1的相对于书写面的背部设有多个压力传感器;多个压力传感器均匀分布在书写区域,用于感应书写笔在书写区域书写所产生的压力。其中每一个阵列块都设置有压力传感器,该压力传感器可感应书写笔在其上书写时所产生的压力。当然,该压力传感器也可以设置于书写面上表面或者嵌入书写区域内部。优选地,传感器设置于阵列块的中央位置 附近。在一个优选实施例中,电子控制系统对各压力传感器进行编号,编号完毕之后各压力传感器对应的位置坐标信息和颜色信息即存储于电子控制系统中,以便调用。该压力传感器按照书写区域1被分割成的阵列块依次编号;优选地,按照横排从左至右顺序编号,下一排依次按上一排最后一个数字继续顺序编号,如图2示例性显示的那样。其中,该编号与阵列块的位置相关,而且与三种不同颜色对应,例如可以是红黄蓝三种颜色,即最大编号N为3的整数倍,其从1开始依次按照红黄蓝的顺序不断重复,如图2示例,1-1、1-2、1-3分别代表红黄蓝,1-4、1-5、1-6重复分别代表红黄蓝,1-7、1-7、1-9重复分别代表红黄蓝。当书写笔在其上书写时所产生的压力被阵列块背面的压力传感器感应时,它们会将各自代表的位置和颜色信息发送给电子控制系统,电子控制系统会生成书写笔划以及该笔划的颜色发送至显示区域2进行显示。在一个优选实施例中,显示部分所显示的笔划的颜色深度或者亮度与压力传感器所感应到的压力值有关,且正相关,即压力值越大,显示的笔划的颜色深度越深或者亮度越高;显示部分所显示的笔划的粗细程度与各压力传感器所感应到的压力施加时间有关,且正相关,即压力时间施加越长,笔划越粗。
为了进一步保护书写区域的传感器损坏,有效的保护传感器,书写区域是纳米氮化硅粉体填料耐磨聚乙烯塑料注塑形成。纳米氮化硅粉体填料耐磨聚乙烯塑料注塑原料包括质量分数为70%~89%的母料、1%~20%的填料、10%~29%的母液;其中,
母料包括质量分数为:熔融指数范围在8~18g/10min之间的氯化聚乙烯树脂95%~98.15%、炭黑1%~4.15%、氯化锌0.3%~3.45%、硬脂酸钠0.3%~3.45%、N,N’-二苯基对苯二胺0.1%~3.25%、二甘醇0.05%~3.2%、二乙基二硫代氨基甲酸锌0.1%~3.25%;
母液包括质量分数为:氯化聚乙烯树脂25%~35%融入三氯甲烷65%~75%;
填料包括质量分数为:纳米氮化硅粉体25%~35%,加入三氯甲烷65%~75%。
优选地,显示区域为LED显示屏。电子控制系统处理书写信号并向LED显示屏输出显示不同颜色的显示信号在显示区域显示。该显示屏可显示多个文字;当显示文字数量满额时,即清除全部文字,然后从头开始继续显示。优选地,该显示部分可与书写笔基本保持同步,也就是说书写笔写完一个笔划,显示部分即可显示一个笔划;或者一个笔划写到某个位置,显示部分即可显示到该位置。优选地,当写完一个笔划再显示时,该笔划的颜色优选由得到感应的压力传感器所对应的各颜色混合叠加形成。当一个笔划写到某个位置、显示部分即可显示到该位置时,该笔划的颜色优选地即时显示笔头所触及的压力传感器所对应的颜色,例如图2中,笔头滑过第2、5、9块阵列,显示部分则显示出自上而下逐段颜色为黄黄蓝的笔划“捺”。
更进一步地,如图3所示,书写区域1和显示区域2为触控显示屏。触控显示屏显示反向文字,引导用户在触控显示屏书写反向文字;触控显示屏感测书写笔的压力并将压力转化成书写信号传输至电子控制系统,电子控制系统处理书写信号并向触控显示屏输出控制信号,使触控显示屏显示用户书写的文字,刺激用户使用右脑。显示区域实时根据电子控制系统的控制显示用户的书写路径。
如图4所示,书写笔包括笔头4和笔杆3;笔头4与笔杆3活动连接;笔头4和笔杆3之间还设置有书写压力检测装置。优选地,如图5所示,书写压力检测装置包括:行程开关31和弹性支撑装置32;弹性支撑件32的一端和行程开关31的一端接触,弹性支撑件32另一端与笔头4接触;装置行程开关31的另一端与笔杆3接触;笔杆优选设置有空腔30,书写压力检测装置设置在笔杆3 的空腔30内。弹性支撑件32优选是弹簧。笔头的基底具有插入笔杆部分外壳上的纵向滑槽内的导块;笔杆部分外壳中心设置有一个堵头;笔头的基底与堵头之间借助弹簧连接;笔杆部分外壳上的纵向滑槽尽头设置行程开关,当笔头抵靠在书写面板上,且在人手的压力下,笔杆部分克服弹簧弹力沿着导块向下运动,直至导块触发行程开关,该行程开关激活电子控制系统以及压力传感器;写完一个笔划时,抬起书写笔,笔头借助于弹簧的弹力与笔杆部分滑动离开。笔头4包括导块41,导块41可相对于笔杆部分3上下滑动,其中笔头4具有基底,该基底具有插入笔杆部分3外壳上的纵向滑槽内的导块41。在人手的压力下,笔杆部分3克服弹簧弹力沿着导块向下运动,直至导块触发行程开关,该行程开关激活电子控制系统以及传感器等元件。写完一个笔划时,抬起书写笔,笔头4借助于弹簧的弹力与笔杆部分3滑动离开,行程开关31断开。开关的开闭具有对应的指示灯来对使用者进行指示。借助于该设置,可提醒使用者的书写力度,防止书写者书写力度过轻而导致压力传感器无法精确感应,进而导致书写显示失败的问题。同时,由于该设置,书写者需要使用一定力量,因此书写则比较缓慢,有利刺激作用的发挥。
在本发明实施例中,笔头4可以硬质材料也可以是软质材料,为了进一步保护书写区域的传感器损坏,有效的保护传感器,笔头优选是软质橡胶制成。具体的,笔头包括质量分数为50%~60%的乙烯-甲酸乙烯共聚物、14%~24%的乙烯-丁烯共聚物、5%~15%的三元乙丙橡胶、6%~16%的乙烯-丙烯酸共聚物、8%~18%的耐磨剂、3%~13%的填充剂、1.0%~11%的氧化镁、0.5%~10.5%的硬脂酸、0.8%~10.8%的硬脂酸钠、0.5%~10.5%的架桥剂、1.2%~11.2%的发泡剂。
如图6所示,由于使用者握笔时通常涉及三根指头,为了进一步提高用户使用笔杆的舒适度,本发明实施例的书写笔笔杆手握部分截面呈三角形。进一步地为了握笔的舒适性,三角形的三个角设置有倒角,即三个边之间经由短直线或者短弧线过渡。
如图6所示,书写笔外表面设置有突起。突起与电子控制系统通信连接,电子控制系统处理书写信号并输出控制信号使突起用于产生刺激电流或振动。具体地,如果电子控制系统接收到的书写信号书写速度过快,则电子控制系统根据书写信号并输出控制信号使突起用于产生刺激电流或振动。该三个凸起与前述的压力传感器依次对应,举例来说,如果图2中的1-1、1-2、1-3编号的传感器依次对应一个凸起,那么1-4、1-5、1-6也按相同顺序对应三个凸起,依此类推。当然,采用其他对应规则也是可以的。优选地,该三个凸起可震动或者可发热或者可产生微弱的刺激电流。以可震动为例,当书写笔在书写面板上书写一个笔划时,书写笔所触发的压力传感器会将编号信息发送给电子控制系统,该控制系统然后控制对应的凸起进行振动,当然也可以是改变振动频率或者是振幅,但总之是凸起能够根据书写产生对于书写手指的不同的刺激。可发热或者可产生微弱的刺激电流的实施方式与此类似,此处不在赘述。
利用本发明实施例的右脑开发系统进行右脑开发时,使用者使用书写笔在书写区域上进行书写,书写区域上设置的压力传感器感应书写笔的笔头的经过,并将信息发送至电子控制系统,该电子控制系统根据压力传感器对应的位置信息和颜色信息形成对应的笔划并将其显示在显示部分上;电子控制系统还根据压力传感器对应的位置信息形成书写笔笔杆手握部分外表面的三个凸起相应的体感刺激。
借助于本发明实施例,使用者在书写时,能够额外地得到色彩刺激和手的体感刺激,能够显著提高右脑的刺激程度,加强对于右脑的开发。
如图7所示,本发明实施例提供的右脑开发系统还包括文字反向印刷和/或 凹槽印刷的字帖;
文字的反向凹槽印刷和/或反向印刷,使用者在临摹反向凹槽字帖时,通过凹槽引导进行临摹,能够改变思维模式和激活右脑细胞。
为了进一步体现本发明实施例提供的一种右脑开发系统的优越性,本发明实施例还提供一种应用于上述系统的右脑开发方法,该方法应用于上述的右脑开发系统包括:使用书写笔在书写区域书写,书写区域感测书写笔的压力并将压力转化成书写信号传输至电子控制系统,电子控制系统处理书写信号并输出至显示区域显示,刺激用户使用右脑。下面对本发明实施例提供的右脑开发方法详细说明。
具体地,电子控制系统处理书写信号并输出至显示区域显示包括:电子控制系统处理书写信号并向显示区域输出显示不同颜色的显示信号,在显示区域显示。
具体地,还包括电子控制系统书写信号并向形成体感刺激信号传输至书写笔,书写笔接收体感刺激信号产生书写体感刺激。
具体地,还包括使用反向字帖进行临摹书写,因书写反向文字,大脑必须改变左脑的思维模式和认知模式,通过对右脑进行镜像,进入右脑逆向思维,双脑共同协调才能完成书写,在临摹书写字帖过程中,大脑左右脑思维模式和认知模式进行连续互换,同时对右脑细胞的触发活化同步进行,在大脑生理机能层面上实现了右脑细胞的触发、活化和应用,因此达到右脑开发的目的。
在此,需要说明的是,本发明实施例提供的右脑开发方法的具体步骤与上述右脑开发系统的工作过程大致相同,在此就不再一一赘述了。
利用本发明实施例的右脑开发系统进行右脑开发时,使用者使用书写笔在书写区域上进行书写,书写区域上设置的压力传感器感应书写笔的笔头的经过,并将信息发送至电子控制系统,该电子控制系统根据压力传感器对应的位置信息和颜色信息形成对应的笔划并将其显示在显示部分上;电子控制系统还根据压力传感器对应的位置信息形成书写笔笔杆手握部分外表面的三个凸起相应的体感刺激。
借助于本发明实施例,使用者在书写时,能够额外地得到色彩刺激和手的体感刺激,能够显著提高右脑的刺激程度,加强对于右脑的开发。
实施例3
本发明实施例提供一种右脑开发系统,如图1所示,该系统包括:书写面板10和书写笔;书写面板10还包括电子控制系统;书写面板10包括书写区域1和显示区域2,书写区域1和显示区域2均与控制系统连接;显示区域2显示反向文字,引导用户在书写区域1书写反向文字;书写区域1感测书写笔的压力并将压力转化成书写信号传输至电子控制系统,电子控制系统处理书写信号并向显示区域2输出控制信号,使显示区域2显示用户书写的文字,刺激用户使用右脑。下面对本发明实施例和提供的右脑开发系统展开详细的说明。
如图2所示,书写区域1可以根据不同用户的不同习惯划分为多个区域,该区域优选是划分为3的整数倍的多个阵列书写区域。更优地,书写区域1被分割成的阵列具有相同数量的横排和纵列。如图2所例示,其中显示了一个具有三个横排和三个纵列的实施例,此时N等于9。
如图1、图2所示,本发明实施例中,书写区域1的相对于书写面的背部设有多个压力传感器;多个压力传感器均匀分布在书写区域,用于感应书写笔在书写区域书写所产生的压力。其中每一个阵列块都设置有压力传感器,该压力传感器可感应书写笔在其上书写时所产生的压力。当然,该压力传感器也可以设置于书写面上表面或者嵌入书写区域内部。优选地,传感器设置于阵列块的中央位置附近。在一个优选实施例中,电子控制系统对各压力传感器进行编号,编号完毕 之后各压力传感器对应的位置坐标信息和颜色信息即存储于电子控制系统中,以便调用。该压力传感器按照书写区域1被分割成的阵列块依次编号;优选地,按照横排从左至右顺序编号,下一排依次按上一排最后一个数字继续顺序编号,如图2示例性显示的那样。其中,该编号与阵列块的位置相关,而且与三种不同颜色对应,例如可以是红黄蓝三种颜色,即最大编号N为3的整数倍,其从1开始依次按照红黄蓝的顺序不断重复,如图2示例,1-1、1-2、1-3分别代表红黄蓝,1-4、1-5、1-6重复分别代表红黄蓝,1-7、1-7、1-9重复分别代表红黄蓝。当书写笔在其上书写时所产生的压力被阵列块背面的压力传感器感应时,它们会将各自代表的位置和颜色信息发送给电子控制系统,电子控制系统会生成书写笔划以及该笔划的颜色发送至显示区域2进行显示。在一个优选实施例中,显示部分所显示的笔划的颜色深度或者亮度与压力传感器所感应到的压力值有关,且正相关,即压力值越大,显示的笔划的颜色深度越深或者亮度越高;显示部分所显示的笔划的粗细程度与各压力传感器所感应到的压力施加时间有关,且正相关,即压力时间施加越长,笔划越粗。
为了进一步保护书写区域的传感器损坏,有效的保护传感器,书写区域是纳米氮化硅粉体填料耐磨聚乙烯塑料注塑形成。纳米氮化硅粉体填料耐磨聚乙烯塑料注塑原料包括质量分数为70%~89%的母料、1%~20%的填料、10%~29%的母液;其中,
母料包括质量分数为:熔融指数范围在8~18g/10min之间的氯化聚乙烯树脂95%~98.15%、炭黑1%~4.15%、氯化锌0.3%~3.45%、硬脂酸钠0.3%~3.45%、N,N’-二苯基对苯二胺0.1%~3.25%、二甘醇0.05%~3.2%、二乙基二硫代氨基甲酸锌0.1%~3.25%;
母液包括质量分数为:氯化聚乙烯树脂25%~35%融入三氯甲烷65%~75%;
填料包括质量分数为:纳米氮化硅粉体25%~35%,加入三氯甲烷65%~75%。
优选地,显示区域为LED显示屏。电子控制系统处理书写信号并向LED显示屏输出显示不同颜色的显示信号在显示区域显示。该显示屏可显示多个文字;当显示文字数量满额时,即清除全部文字,然后从头开始继续显示。优选地,该显示部分可与书写笔基本保持同步,也就是说书写笔写完一个笔划,显示部分即可显示一个笔划;或者一个笔划写到某个位置,显示部分即可显示到该位置。优选地,当写完一个笔划再显示时,该笔划的颜色优选由得到感应的压力传感器所对应的各颜色混合叠加形成。当一个笔划写到某个位置、显示部分即可显示到该位置时,该笔划的颜色优选地即时显示笔头所触及的压力传感器所对应的颜色,例如图2中,笔头滑过第2、5、9块阵列,显示部分则显示出自上而下逐段颜色为黄黄蓝的笔划“捺”。
更进一步地,如图3所示,书写区域1和显示区域2为触控显示屏。触控显示屏显示反向文字,引导用户在触控显示屏书写反向文字;触控显示屏感测书写笔的压力并将压力转化成书写信号传输至电子控制系统,电子控制系统处理书写信号并向触控显示屏输出控制信号,使触控显示屏显示用户书写的文字,刺激用户使用右脑。显示区域实时根据电子控制系统的控制显示用户的书写路径。
如图4所示,书写笔包括笔头4和笔杆3;笔头4与笔杆3活动连接;笔头4和笔杆3之间还设置有书写压力检测装置。优选地,如图5所示,书写压力检测装置包括:行程开关31和弹性支撑装置32;弹性支撑件32的一端和行程开关31的一端接触,弹性支撑件32另一端与笔头4接触;装置行程开关31的另一端与笔杆3接触;笔杆优选设置有空腔30,书写压力检测装置设置在笔杆3的空腔30内。弹性支撑件32优选是弹簧。笔头的基底具有插入笔杆部分外壳上 的纵向滑槽内的导块;笔杆部分外壳中心设置有一个堵头;笔头的基底与堵头之间借助弹簧连接;笔杆部分外壳上的纵向滑槽尽头设置行程开关,当笔头抵靠在书写面板上,且在人手的压力下,笔杆部分克服弹簧弹力沿着导块向下运动,直至导块触发行程开关,该行程开关激活电子控制系统以及压力传感器;写完一个笔划时,抬起书写笔,笔头借助于弹簧的弹力与笔杆部分滑动离开。笔头4包括导块41,导块41可相对于笔杆部分3上下滑动,其中笔头4具有基底,该基底具有插入笔杆部分3外壳上的纵向滑槽内的导块41。在人手的压力下,笔杆部分3克服弹簧弹力沿着导块向下运动,直至导块触发行程开关,该行程开关激活电子控制系统以及传感器等元件。写完一个笔划时,抬起书写笔,笔头4借助于弹簧的弹力与笔杆部分3滑动离开,行程开关31断开。开关的开闭具有对应的指示灯来对使用者进行指示。借助于该设置,可提醒使用者的书写力度,防止书写者书写力度过轻而导致压力传感器无法精确感应,进而导致书写显示失败的问题。同时,由于该设置,书写者需要使用一定力量,因此书写则比较缓慢,有利刺激作用的发挥。
在本发明实施例中,笔头4可以硬质材料也可以是软质材料,为了进一步保护书写区域的传感器损坏,有效的保护传感器,笔头优选是软质橡胶制成。具体的,笔头包括质量分数为50%~60%的乙烯-甲酸乙烯共聚物、14%~24%的乙烯-丁烯共聚物、5%~15%的三元乙丙橡胶、6%~16%的乙烯-丙烯酸共聚物、8%~18%的耐磨剂、3%~13%的填充剂、1.0%~11%的氧化镁、0.5%~10.5%的硬脂酸、0.8%~10.8%的硬脂酸钠、0.5%~10.5%的架桥剂、1.2%~11.2%的发泡剂。
如图6所示,由于使用者握笔时通常涉及三根指头,为了进一步提高用户使用笔杆的舒适度,本发明实施例的书写笔笔杆手握部分截面呈三角形。进一步地为了握笔的舒适性,三角形的三个角设置有倒角,即三个边之间经由短直线或者短弧线过渡。
如图6所示,书写笔外表面设置有突起。突起与电子控制系统通信连接,电子控制系统处理书写信号并输出控制信号使突起用于产生刺激电流或振动。具体地,如果电子控制系统接收到的书写信号书写速度过快,则电子控制系统根据书写信号并输出控制信号使突起用于产生刺激电流或振动。该三个凸起与前述的压力传感器依次对应,举例来说,如果图2中的1-1、1-2、1-3编号的传感器依次对应一个凸起,那么1-4、1-5、1-6也按相同顺序对应三个凸起,依此类推。当然,采用其他对应规则也是可以的。优选地,该三个凸起可震动或者可发热或者可产生微弱的刺激电流。以可震动为例,当书写笔在书写面板上书写一个笔划时,书写笔所触发的压力传感器会将编号信息发送给电子控制系统,该控制系统然后控制对应的凸起进行振动,当然也可以是改变振动频率或者是振幅,但总之是凸起能够根据书写产生对于书写手指的不同的刺激。可发热或者可产生微弱的刺激电流的实施方式与此类似,此处不在赘述。
利用本发明实施例的右脑开发系统进行右脑开发时,使用者使用书写笔在书写区域上进行书写,书写区域上设置的压力传感器感应书写笔的笔头的经过,并将信息发送至电子控制系统,该电子控制系统根据压力传感器对应的位置信息和颜色信息形成对应的笔划并将其显示在显示部分上;电子控制系统还根据压力传感器对应的位置信息形成书写笔笔杆手握部分外表面的三个凸起相应的体感刺激。
借助于本发明实施例,使用者在书写时,能够额外地得到色彩刺激和手的体感刺激,能够显著提高右脑的刺激程度,加强对于右脑的开发。
为了进一步体现本发明实施例提供的一种右脑开发系统的优越性,本发明实施例还提供一种应用于上述系统的右脑开发方法,包括:显示区域显示反向文 字,引导用户在书写区域书写反向文字;使用书写笔在书写区域书写,书写区域感测书写笔的压力并将压力转化成书写信号传输至电子控制系统,电子控制系统处理书写信号并向显示区域输出控制信号,使显示区域显示用户书写的文字,刺激用户使用右脑。下面对本发明实施例提供的右脑开发方法详细说明。
具体地,电子控制系统处理书写信号并输出至显示区域显示包括:电子控制系统处理书写信号并按书写压力轻重向显示区域输出显示不同颜色的显示信号,在显示区域显示。
具体地,还包括电子控制系统书写信号并向形成体感刺激信号传输至书写笔,书写笔接收体感刺激信号产生书写体感刺激。
在此,需要说明的是,本发明实施例提供的右脑开发方法的具体步骤与上述右脑开发系统的工作过程大致相同,在此就不再一一赘述了。
综上所述,本发明实施例提供的右脑开发系统和方法中,用户使用书写笔在书写区域上进行书写,书写区域上设置的压力传感器感应书写笔的笔头的经过,并将书写信息发送至电子控制系统,该电子控制系统根据压力传感器对应的位置信息和颜色信息形成对应的笔划并将其显示在显示部分上;电子控制系统还根据压力传感器对应的位置信息形成书写笔笔杆手握部分外表面的三个凸起相应的体感刺激。通过本发明实施例提供的技术方案,左手执笔和逆向书写时,完全颠覆了传统书写形式和思维模式,逆向的文字首先要通过左脑的镜像转换到右脑,在大脑左右脑各自同时保留了两个相向相同的文字笔画结构,逆向的文字会重新启动未曾用过的右脑细胞进行储存,之后再指挥左手将其书写出来。使用者在书写时,能够额外地得到色彩刺激和手的体感刺激,能够显著提高右脑的刺激程度,能提供用以维持大脑活性和细胞能量的动力,加强对于右脑的开发。
本领域内的技术人员应明白,本申请的实施例可提供为方法、系统、或计算机程序产品。因此,本申请可采用完全硬件实施例、完全软件实施例、或结合软件和硬件方面的实施例的形式。而且,本申请可采用在一个或多个其中包含有计算机可用程序代码的计算机可用存储介质(包括但不限于磁盘存储器、CD-ROM、光学存储器等)上实施的计算机程序产品的形式。
本申请是参照根据本申请实施例的方法、设备(系统)、和计算机程序产品的流程图和/或方框图来描述的。应理解可由计算机程序指令实现流程图和/或方框图中的每一流程和/或方框、以及流程图和/或方框图中的流程和/或方框的结合。可提供这些计算机程序指令到通用计算机、专用计算机、嵌入式处理机或其他可编程数据处理设备的处理器以产生一个机器,使得通过计算机或其他可编程数据处理设备的处理器执行的指令产生用于实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能的装置。
这些计算机程序指令也可存储在能引导计算机或其他可编程数据处理设备以特定方式工作的计算机可读存储器中,使得存储在该计算机可读存储器中的指令产生包括指令装置的制造品,该指令装置实现
在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能。
这些计算机程序指令也可装载到计算机或其他可编程数据处理设备上,使得在计算机或其他可编程设备上执行一系列操作步骤以产生计算机实现的处理,从而在计算机或其他可编程设备上执行的指令提供用于实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能的步骤。
最后需要说明的是,在本文中,诸如第一和第二等之类的关系术语仅仅用来将一个实体或者操作与另一个实体或操作区分开来,而不一定要求或者暗示这些实体或操作之间存在任何这种实际的关系或者顺序。而且,术语“包括”、“包含” 或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、物品或者设备不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、物品或者设备所固有的要素。在没有更多限制的情况下,由语句“包括一个……”限定的要素,并不排除在包括所述要素的过程、方法、物品或者设备中还存在另外的相同要素。术语“上”、“下”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本发明和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本发明的限制。除非另有明确的规定和限定,术语“安装”、“相连”、“连接”应做广义理解,例如,可以是固定连接,也可以是可拆卸连接,或一体地连接;可以是机械连接,也可以是电连接;可以是直接相连,
也可以通过中间媒介间接相连,可以是两个元件内部的连通。对于本领域的普通技术人员而言,可以根据具体情况理解上述术语在本发明中的具体含义。
本发明的说明书中,说明了大量具体细节。然而能够理解的是,本发明的实施例可以在没有这些具体细节的情况下实践。在一些实例中,并未详细示出公知的方法、结构和技术,以便不模糊对本说明书的理解。类似地,应当理解,为了精简本发明公开并帮助理解各个发明方面中的一个或多个,在上面对本发明的示例性实施例的描述中,本发明的各个特征有时被一起分组到单个实施例、图、或者对其的描述中。然而,并不应将该公开的方法解释呈反映如下意图:即所要求保护的本发明要求比在每个权利要求中所明确记载的特征更多的特征。更确切地说,如权利要求书所反映的那样,发明方面在于少于前面公开的单个实施例的所有特征。因此,遵循具体实施方式的权利要求书由此明确地并入该具体实施方式,其中每个权利要求本身都作为本发明的单独实施例。
最后应说明的是:以上各实施例仅用以说明本发明的技术方案,而非对其限制;尽管参照前述各实施例对本发明进行了详细的说明,本领域的普通技术人员应当理解:其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分或者全部技术特征进行等同替换;而这些修改或者替换,并不使相应技术方案的本质脱离本发明各实施例技术方案的范围,其均应涵盖在本发明的权利要求和说明书的范围当中。工业实用性
本发明实施例提供的右脑开发系统和方法中,用户使用书写笔在书写区域上进行书写,书写区域上设置的压力传感器感应书写笔的笔头的经过,并将书写信息发送至电子控制系统,该电子控制系统根据压力传感器对应的位置信息和颜色信息形成对应的笔划并将其显示在显示部分上;电子控制系统还根据压力传感器对应的位置信息形成书写笔笔杆手握部分外表面的三个凸起相应的体感刺激。通过本发明实施例提供的技术方案,左手执笔和逆向书写时,完全颠覆了传统书写形式和思维模式,逆向的文字首先要通过左脑的镜像转换到右脑,在大脑左右脑各自同时保留了两个相向相同的文字笔画结构,逆向的文字会重新启动未曾用过的右脑细胞进行储存,之后再指挥左手将其书写出来。使用者在书写时,能够额外地得到色彩刺激和手的体感刺激,能够显著提高右脑的刺激程度,能提供用以维持大脑活性和细胞能量的动力,加强对于右脑的开发,具备工业实用性。

Claims (50)

  1. 一种右脑开发系统,包括书写面板和书写笔,该右脑开发系统还包括电子控制系统;
    书写面板包括书写区域和显示部分,书写区域为平板状,书写笔可在其表面上书写;书写笔包括笔杆部分和笔头。
  2. 根据权利要求1所述的右脑开发系统,其特征在于,所述书写区域被分割成N块阵列,N为3的整数倍。
  3. 根据权利要求1或2任一项权利要求所述的右脑开发系统,其特征在于,所述书写区域的相对于书写面的背部设有压力传感器;
    其中,
    每一个阵列块都设置有压力传感器,所述压力传感器可感应书写笔在其上书写时所产生的压力。
  4. 根据前述任一项权利要求所述的右脑开发系统,其特征在于,所述显示部分为LED显式屏,显示部分所显示的笔划颜色由所触发的压力传感器所对应的颜色组成。
  5. 根据前述任一项权利要求所述的右脑开发系统,其特征在于,所述笔头可相对于笔杆部分上下滑动;
    其中,
    所述笔头的基底具有插入所述笔杆部分外壳上的纵向滑槽内的导块;笔杆部分外壳中心设置有一个堵头,笔头的基底与堵头之间借助弹簧连接;笔杆部分外壳上的纵向滑槽尽头设置行程开关,当笔头抵靠在书写面板上,且在人手的压力下,笔杆部分克服弹簧弹力沿着导块向下运动,直至导块触发行程开关,该行程开关激活电子控制系统以及压力传感器;写完一个笔划时,抬起书写笔,笔头借助于弹簧的弹力与笔杆部分滑动离开。
  6. 根据前述任一项权利要求所述的右脑开发系统,其特征在于,在笔杆处于被握的外表面部分上还分别设置有三个凸起,所述凸起是圆形凸起或条状凸起。
  7. 根据前述任一项权利要求所述的右脑开发系统,其特征在于,三个凸起可震动或者可发热或者可产生微弱的刺激电流。
  8. 利用前述任一项权利要求所述的右脑开发系统进行右脑开发的方法,其特征在于,使用者使用书写笔在书写区域上进行书写,书写区域上设置的压力传感器感应书写笔的笔头的经过,并将信息发送至电子控制系统,该电子控制系统根据压力传感器对应的位置信息和颜色信息形成对应的笔划并将其显示在显示部分上;电子控制系统还根据压力传感器对应的位置信息形成书写笔笔杆手握部分外表面的三个凸起相应的体感刺激。
  9. 一种用于前述权利要求1-7中任一项所述的右脑开发系统或权利要求8所述的右脑开发方法的字帖,其特征在于该字帖包括凹槽型浅色印刷的反向文字。
  10. 一种右脑开发系统,其特征在于,包括:书写面板和书写笔;
    所述书写面板还包括电子控制系统;
    所述书写面板包括书写区域和显示区域,所述书写区域和显示区域均与所述控制系统连接;
    所述书写区域感测书写笔的压力并将所述压力转化成书写信号传输至所述电子控制系统,所述电子控制系统处理所述书写信号并输出至所述显示区域显示。
  11. 根据权利要求10所述的右脑开发系统,其特征在于,所述书写区域为 3的整数倍的多个阵列书写区域。
  12. 根据权利要求10所述的右脑开发系统,其特征在于,所述书写区域的相对于书写面的背部设有多个压力传感器;
    所述多个压力传感器均匀分布在所述书写区域,用于感应书写笔在书写区域书写所产生的压力。
  13. 根据权利要求10所述的右脑开发系统,其特征在于,所述书写区域是纳米氮化硅粉体填料耐磨聚乙烯塑料注塑形成。
  14. 根据权利要求13所述的右脑开发系统,其特征在于,所述纳米氮化硅粉体填料耐磨聚乙烯塑料注塑原料包括质量分数为70%~89%的母料、1%~20%的填料、10%~29%的母液;
    其中,
    母料包括质量分数为:熔融指数范围在8~18g/10min之间的氯化聚乙烯树脂95%~98.15%、炭黑1%~4.15%、氯化锌0.3%~3.45%、硬脂酸钠0.3%~3.45%、N,N’-二苯基对苯二胺0.1%~3.25%、二甘醇0.05%~3.2%、二乙基二硫代氨基甲酸锌0.1%~3.25%;
    母液包括质量分数为:氯化聚乙烯树脂25%~35%融入三氯甲烷65%~75%;
    填料包括质量分数为:纳米氮化硅粉体25%~35%,加入三氯甲烷65%~75%。
  15. 根据权利要求10所述的右脑开发系统,其特征在于,所述显示区域为LED显示屏。
  16. 根据权利要求15所述的右脑开发系统,其特征在于,所述电子控制系统处理所述书写信号并向所述LED显示屏输出显示不同颜色的显示信号在所述显示区域显示。
  17. 根据权利要求10所述的右脑开发系统,其特征在于,所述显示区域显示书写路径。
  18. 根据权利要求10所述的右脑开发系统,其特征在于,所述书写笔包括笔头和笔杆;
    所述笔头与所述笔杆活动连接;
    所述笔头和笔杆之间还设置有书写压力检测装置。
  19. 根据权利要求18所述的右脑开发系统,其特征在于,所述书写压力检测装置包括:行程开关和弹性支撑装置;
    所述弹性支撑件一端和所述行程开关一端接触,所述弹性支撑件另一端与笔头接触;装置行程开关另一端与所述笔杆接触;
    所述书写压力检测装置设置在所述笔杆内。
  20. 根据权利要求19所述的右脑开发系统,其特征在于,所述笔头的基底具有插入所述笔杆部分外壳上的纵向滑槽内的导块;所述笔杆部分外壳中心设置有一个堵头;
    笔头的基底与堵头之间借助弹簧连接;笔杆部分外壳上的纵向滑槽尽头设置行程开关,当笔头抵靠在书写面板上,且在人手的压力下,笔杆部分克服弹簧弹力沿着导块向下运动,直至导块触发行程开关,该行程开关激活电子控制系统以及压力传感器;写完一个笔划时,抬起书写笔,笔头借助于弹簧的弹力与笔杆部分滑动离开。
  21. 根据权利要求18所述的右脑开发系统,所述笔头是软质橡胶制成。
  22. 根据权利要求18所述的右脑开发系统,所述笔头包括质量分数为50%~60%的乙烯-甲酸乙烯共聚物、14%~24%的乙烯-丁烯共聚物、5%~15%的三元乙丙橡胶、6%~16%的乙烯-丙烯酸共聚物、8%~18%的耐磨剂、3%~13%的 填充剂、1.0%~11%的氧化镁、0.5%~10.5%的硬脂酸、0.8%~10.8%的硬脂酸钠、0.5%~10.5%的架桥剂、1.2%~11.2%的发泡剂。
  23. 根据权利要求18所述的右脑开发系统,其特征在于,所述书写笔截面呈三角形。
  24. 根据权利要求18所述的右脑开发系统,其特征在于,所述书写笔外表面设置有突起。
  25. 根据权利要求24所述的右脑开发系统,其特征在于,所述突起与所述电子控制系统通信连接,所述电子控制系统处理所述书写信号并输出控制信号使所述突起用于产生刺激电流或振动。
  26. 根据权利要求10-25任意一项所述的右脑开发系统,其特征在于,还包括文字反向印刷和/或凹槽印刷的字帖;
    文字的反向凹槽印刷和/或反向印刷,使用者在临摹反向凹槽字帖时,通过凹槽引导进行临摹,能够改变思维模式和激活右脑细胞。
  27. 一种右脑开发方法,其特征在于,应用于权利要求10-26任意一项所述的吸热包括:
    使用书写笔在书写区域书写,书写区域感测书写笔的压力并将所述压力转化成书写信号传输至所述电子控制系统,所述电子控制系统处理所述书写信号并输出至所述显示区域显示。
  28. 根据权利要求27所述的右脑开发方法,其特征在于,所述电子控制系统处理所述书写信号并输出至所述显示区域显示包括:
    所述电子控制系统处理所述书写信号并向所述显示区域输出显示不同颜色的显示信号,在所述显示区域显示。
  29. 根据权利要求27所述的右脑开发方法,其特征在于,还包括所述电子控制系统所述书写信号并向形成体感刺激信号传输至所述书写笔,所述书写笔接收所述体感刺激信号产生书写体感刺激。
  30. 根据权利要求27所述的右脑开发方法,其特征在于,还包括使用反向字帖进行临摹书写,因书写反向文字,大脑必须改变左脑的思维模式和认知模式,通过对右脑进行镜像,进入右脑逆向思维,双脑共同协调才能完成书写,在临摹书写字帖过程中,大脑左右脑思维模式和认知模式进行连续互换,同时对右脑细胞的触发活化同步进行,在大脑生理机能层面上实现了右脑细胞的触发、活化和应用,因此达到右脑开发的目的。
  31. 一种右脑开发系统,其特征在于,包括:书写面板和书写笔;
    所述书写面板还包括电子控制系统;
    所述书写面板包括书写区域和显示区域,所述书写区域和显示区域均与所述控制系统连接;
    所述显示区域显示反向文字,引导用户在书写区域书写反向文字;
    所述书写区域感测书写笔的压力并将所述压力转化成书写信号传输至所述电子控制系统,所述电子控制系统处理所述书写信号并向所述显示区域输出控制信号,使所述显示区域显示用户书写的文字,刺激用户使用右脑。
  32. 根据权利要求31所述的右脑开发系统,其特征在于,所述书写区域为3的整数倍的多个阵列书写区域。
  33. 根据权利要求31所述的右脑开发系统,其特征在于,所述书写区域的相对于书写面的背部设有多个压力传感器;
    所述多个压力传感器均匀分布在所述书写区域,用于感应书写笔在书写区域书写所产生的压力。
  34. 根据权利要求31所述的右脑开发系统,其特征在于,所述书写区域是 纳米氮化硅粉体填料耐磨聚乙烯塑料注塑形成。
  35. 根据权利要求34所述的右脑开发系统,其特征在于,所述纳米氮化硅粉体填料耐磨聚乙烯塑料注塑原料包括质量分数为70%~89%的母料、1%~20%的填料、10%~29%的母液;
    其中,
    母料包括质量分数为:熔融指数范围在8~18g/10min之间的氯化聚乙烯树脂95%~98.15%、炭黑1%~4.15%、氯化锌0.3%~3.45%、硬脂酸钠0.3%~3.45%、N,N’-二苯基对苯二胺0.1%~3.25%、二甘醇0.05%~3.2%、二乙基二硫代氨基甲酸锌0.1%~3.25%;
    母液包括质量分数为:氯化聚乙烯树脂25%~35%融入三氯甲烷65%~75%;
    填料包括质量分数为:纳米氮化硅粉体25%~35%,加入三氯甲烷65%~75%。
  36. 根据权利要求31所述的右脑开发系统,其特征在于,所述显示区域为LED显示屏。
  37. 根据权利要求36所述的右脑开发系统,其特征在于,所述电子控制系统处理所述书写信号并向所述LED显示屏输出显示不同颜色的显示信号在所述显示区域显示。
  38. 根据权利要求31所述的右脑开发系统,其特征在于,所述书写区域和所述显示区域为触控显示屏。
  39. 根据权利要求31所述的右脑开发系统,其特征在于,所述显示区域显示书写路径。
  40. 根据权利要求31或38所述的右脑开发系统,其特征在于,所述书写笔包括笔头和笔杆;
    所述笔头与所述笔杆活动连接;
    所述笔头和笔杆之间还设置有书写压力检测装置。
  41. 根据权利要求40所述的右脑开发系统,其特征在于,所述书写压力检测装置包括:行程开关和弹性支撑装置;
    所述弹性支撑件一端和所述行程开关一端接触,所述弹性支撑件另一端与笔头接触;装置行程开关另一端与所述笔杆接触;
    所述书写压力检测装置设置在所述笔杆内。
  42. 根据权利要求39所述的右脑开发系统,其特征在于,所述笔头的基底具有插入所述笔杆部分外壳上的纵向滑槽内的导块;所述笔杆部分外壳中心设置有一个堵头;
    笔头的基底与堵头之间借助弹簧连接;笔杆部分外壳上的纵向滑槽尽头设置行程开关,当笔头抵靠在书写面板上,且在人手的压力下,笔杆部分克服弹簧弹力沿着导块向下运动,直至导块触发行程开关,该行程开关激活电子控制系统以及压力传感器;写完一个笔划时,抬起书写笔,笔头借助于弹簧的弹力与笔杆部分滑动离开。
  43. 根据权利要求40所述的右脑开发系统,所述笔头是软质橡胶制成。
  44. 根据权利要求40所述的右脑开发系统,所述笔头包括质量分数为50%~60%的乙烯-甲酸乙烯共聚物、14%~24%的乙烯-丁烯共聚物、5%~15%的三元乙丙橡胶、6%~16%的乙烯-丙烯酸共聚物、8%~18%的耐磨剂、3%~13%的填充剂、1.0%~11%的氧化镁、0.5%~10.5%的硬脂酸、0.8%~10.8%的硬脂酸钠、0.5%~10.5%的架桥剂、1.2%~11.2%的发泡剂。
  45. 根据权利要求40所述的右脑开发系统,其特征在于,所述书写笔截面呈三角形。
  46. 根据权利要求40所述的右脑开发系统,其特征在于,所述书写笔外表面设置有突起。
  47. 根据权利要求46所述的右脑开发系统,其特征在于,所述突起与所述电子控制系统通信连接,所述电子控制系统处理所述书写信号并输出控制信号使所述突起用于产生刺激电流或振动。
  48. 一种右脑开发方法,其特征在于,应用于权利要求31-47任意一项所述的系统,包括:
    所述显示区域显示反向文字,引导用户在书写区域书写反向文字;
    使用书写笔在书写区域书写,所述书写区域感测书写笔的压力并将所述压力转化成书写信号传输至所述电子控制系统,所述电子控制系统处理所述书写信号并向所述显示区域输出控制信号,使所述显示区域显示用户书写的文字,刺激用户使用右脑。
  49. 根据权利要求48所述的右脑开发方法,其特征在于,所述电子控制系统处理所述书写信号并输出至所述显示区域显示包括:
    所述电子控制系统处理所述书写信号并按书写压力轻重向所述显示区域输出显示不同颜色的显示信号,在所述显示区域显示。
  50. 根据权利要求48所述的右脑开发方法,其特征在于,还包括所述电子控制系统所述书写信号并向形成体感刺激信号传输至所述书写笔,所述书写笔接收所述体感刺激信号产生书写体感刺激。
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