WO2024079512A1 - 保健装置及保健方法 - Google Patents
保健装置及保健方法 Download PDFInfo
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Classifications
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61H—PHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
- A61H23/00—Percussion or vibration massage, e.g. using supersonic vibration; Suction-vibration massage; Massage with moving diaphragms
- A61H23/02—Percussion or vibration massage, e.g. using supersonic vibration; Suction-vibration massage; Massage with moving diaphragms with electric or magnetic drive
- A61H23/0218—Percussion or vibration massage, e.g. using supersonic vibration; Suction-vibration massage; Massage with moving diaphragms with electric or magnetic drive with alternating magnetic fields producing a translating or oscillating movement
- A61H23/0236—Percussion or vibration massage, e.g. using supersonic vibration; Suction-vibration massage; Massage with moving diaphragms with electric or magnetic drive with alternating magnetic fields producing a translating or oscillating movement using sonic waves, e.g. using loudspeakers
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61H—PHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
- A61H39/00—Devices for locating or stimulating specific reflex points of the body for physical therapy, e.g. acupuncture
- A61H39/007—Stimulation by mechanical vibrations, e.g. ultrasonic
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61H—PHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
- A61H2205/00—Devices for specific parts of the body
- A61H2205/08—Trunk
- A61H2205/083—Abdomen
Definitions
- the present invention relates to a health care device and a health care method, and more particularly to a health care device and a health care method for transmitting low-frequency waves to the human body for human health care.
- Background technology Currently known health care methods such as scraping, cupping, acupuncture, massage, etc., although they can achieve the purpose of health care, they also have their disadvantages, for example: scraping will damage the skin and increase the risk of infection; cupping has a similar effect to scraping, but it requires the cup body to contact the skin during use, so the cleanliness and hygiene of the cup body are questionable; acupuncture, the needle invades the corresponding acupuncture points of the human body, so there is an invasive risk; massage, although there is no invasive risk, but it depends on others to help relax the muscles.
- the improvement of the above-mentioned acupuncture health care method is a health care device that uses non-invasive radiation for human acupuncture points.
- the microwave oscillator used in the microwave acupuncture instrument has an oscillation frequency of up to 1000-2000 MHz, which can easily cause damage due to excessive radiation (energy).
- microwave acupuncture instruments also need to correspond to human acupuncture points to work, but ordinary people are not professionals related to traditional Chinese medicine, and cannot accurately identify each person's acupuncture points, so microwave acupuncture instruments are not actually universal health care devices. Therefore, it is a trend in the industry to develop health care devices and health care methods that are easy to operate, accurately identify the use position, and are non-invasive, non-contact, and will not cause harm due to excessive energy risks.
- the present invention is mainly based on the recognition that the main tissues and organs of the human body (referring to the organism, not artificial tissues or organs) have inherent oscillation frequencies, such as 8-12Hz for the head, 4-6Hz for the chest, 5Hz for the heart, 6-9Hz for the abdomen, 1.2Hz for the blood flow frequency, and 1.8Hz for the bone tissue.
- a part of the human body When a part of the human body is in a low-frequency wave field of 0-20HZ, such as low-frequency electromagnetic waves, and for example bass waves or infrasound waves (which are relatively called ultrasound or ultrasonic waves above 20kHz), if the sound pressure intensity (Sound Pressure Level, in dB) reaches a certain threshold, the elastic wall of the outer layer of the tissue and organ corresponding to this part will first enter a vibrating state, and then this vibration will be transmitted to the inside of the tissue and organ.
- Sound Pressure Level, in dB Sound Pressure Level
- the frequency of the bass wave is synchronized with the aforementioned inherent oscillation frequency of the tissue and organ, resonance will be generated, and the tissue and organ will be stimulated to the greatest extent at this time.
- the resonance caused by the bass wave acts on the tissues and organs, it also acts on the cell structure of the tissues and organs, such as the mitochondria of the cells. It is the main site for oxidative phosphorylation and synthesis of adenosine triphosphate (ATP), providing chemical energy for cell activities, so it is called the "powerhouse of the cell”.
- ATP adenosine triphosphate
- ATP involves the membrane potential (membrane potential, transmembrane potential or membrane voltage) of the cell membrane.
- the cell membrane is a thin film composed of a phospholipid bilayer (lipid bilayer or phospholipid bilayer).
- the cell membrane of almost all cellular organisms is mainly composed of a phospholipid bilayer.
- the inside of the phospholipid bilayer is full of dielectrics, so the cell membrane composed of a phospholipid bilayer is equivalent to a capacitor in terms of electrical properties.
- the structure of the cell membrane not only contains a phospholipid bilayer, but also proteins. Some of these proteins act as ion channels to allow ions (such as positively charged sodium ions Na+ and potassium ions K+) to be transported across the cell membrane.
- ATP hydrolase ATP hydrolase
- Na + -K + pump can regulate the concentration of sodium and potassium ions inside and outside the cell membrane so that the membrane potential can be regulated, for example, from action potential to resting membrane potential.
- the cell membrane is at resting membrane potential.
- the action potential generated by the cell membrane in the resting membrane potential state when properly stimulated usually goes through the following stages in sequence: polarization, depolarization, repolarization, hyperpolarization.
- the membrane potential of the action potential will be lower than the resting membrane potential.
- long-term stimulation such as stress
- long-term human inflammation or long-term lack of ATP and/or ATPase
- the membrane potential is equivalent to the voltage of the battery.
- the membrane potential of the action potential in the above-mentioned overpolarization stage will be lower than the resting membrane potential, wherein the membrane potential of the action potential in the overpolarization stage can be understood as the residual power (voltage) of the battery after it has been used and has been depleted, and the resting membrane potential can be corresponded to the initial power (voltage) that has not been consumed or has been recharged.
- the membrane potential of the action potential in the overpolarization stage can be understood as the residual power (voltage) of the battery after it has been used and has been depleted
- the resting membrane potential can be corresponded to the initial power (voltage) that has not been consumed or has been recharged.
- the cells when the body is under stress or inflammation for a long time, the cells are also in a "battery power consumption" state in the overpolarization stage for a long time, so the cells cannot perform or maintain their proper functions, and the human tissues and organs also show pathological phenomena or the person shows fatigue.
- low-frequency waves of a certain intensity and/or frequency act on cells, the energy of the waves can be converted
- the activity of ATPase is increased for heat energy, biochemical energy and bioelectric energy, thus affecting ATPase to assist the membrane potential of the action potential in the overpolarization stage to return to the resting membrane potential, which makes the aforementioned "battery” corresponding to the human body cell return to the full charge (voltage) of the resting membrane potential from the "battery power consumption” state of the membrane potential in the overpolarization stage.
- low-frequency waves can "charge" cells in the overpolarization stage, so the use of low-frequency waves on tissues and organs can repair damaged tissues under the stimulation of low-frequency waves and restore normal functions.
- the Schumann Resonance frequency in the Extremely Low Frequency (ELF) of low-frequency waves is 7.83 Hz, which is exactly the same as the frequency of the hippocampus of the mammalian brain.
- the a wave and 9 wave of the human brain are also close to 8Hz. Therefore, the National Aeronautics and Space Administration (NASA) installed Schumann wave generators in manned space capsules to maintain the physical and mental health of astronauts in space.
- NSA National Aeronautics and Space Administration
- the low-frequency wave increasing the activity of ATPase please refer to "Effects of low frequency magnetic fields on Na,K-ATPase activity, M. Blank, L. Soo, V.
- low-frequency waves can activate cells and "charge" cells in the overpolarization stage, so low-frequency waves can be used in "cell activation technology". It is particularly noted here that low-frequency waves can also include electromagnetic waves such as electric waves, magnetic waves or light waves, or bass waves.
- the present invention also recognizes that according to the theory of traditional Chinese medicine, the human navel is the Shenque point and is the place where the Ren meridian, Du meridian, Dai meridian and Chong meridian pass through, so when the Shenque point is stimulated, the internal organs can be connected through the meridians to adjust the whole body. Furthermore, according to the theory of Western medicine, the navel is the thinnest part of the epidermal stratum corneum in the abdomen of the human body and there is no fat tissue under the navel, so its barrier function is the weakest. In addition, in addition to the microcirculatory blood vessels of general skin, the navel skin also has a rich venous network and hypogastric artery branches.
- the human navel is easy to identify its position and does not vary with the height or fatness of a person. Therefore, using the navel as a health care device at the corresponding position of the human body will have the advantage of enabling the user to accurately identify the use position.
- the present invention also recognizes that a low-frequency wave transmitter that can generate low-frequency waves (such as low-frequency radio waves, low-frequency magnetic waves, and low-frequency sound waves) can be made to emit low-frequency waves toward the navel in a manner that does not contact the navel to achieve an effect similar to acupuncture, so that a non-invasive and non-contact health care method can be achieved.
- the bass wave transmitter that can generate bass waves is placed in a manner that does not contact the navel, and the bass wave transmitter emits bass waves toward the navel to achieve an effect similar to acupuncture, so that a non-invasive and non-contact health care method can be achieved.
- bass waves, low-frequency sound waves and low-frequency sound waves referred to in the present invention have the same meaning. If the bass waves are directly used as components of the health care device, it can be avoided. Avoid the risk of excessive energy generated by high-frequency microwave oscillators and causing harm, and at the same time avoid the adverse effects of radio or magnetic waves on some people with special constitutions.
- acupuncture can increase the content of interferon gamma (Interferon gamma, y-IFN) and neuropeptide beta-endorphin (B endorphin) to activate NK cells (natural killer cells), and NK cells will also secrete cytokines (cytokines), which can regulate inflammatory responses.
- NK cells are a type of lymphocyte with large particles in the cytoplasm and are immune cells. They are developed from bone marrow lymphoid stem cells and are mainly distributed in peripheral blood (including blood in microcirculatory blood vessels) and spleen. There are also small amounts in lymph nodes and other tissues.
- the navel is the thinnest part of the epidermal stratum corneum in the abdomen of the human body and there is no fat tissue under the navel, so its barrier function is the weakest.
- the navel skin also has a rich venous network and hypogastric artery branches.
- the activity of Na + -K + ATPase of activated T cells in the blood of the microcirculatory blood vessels of the navel skin will also be increased, so the activity of activated T cells can be improved; in other words, when the bass wave transmitter is used to transmit bass waves toward the navel, the activated T cells with low activity can be "charged” to restore their activity, so that the activated T cells after being “charged” can be re-tested.
- the efficacy of the health care device of the present invention can be verified by simply detecting the changes in the content of NK cells, B cells or activated T cells in the blood; of course, the toxicity of NK cell strains to cancer tumor cell strains (K562) can also be used, for example, the toxicity of samples mixed and cultured with NK cell to target cell ratio (Effector to target cell ratio, E/T ratio) is measured, and the difference of the results is compared to verify the feasibility of the present invention.
- the present invention provides a health care method, in which a low-frequency wave of a predetermined frequency is emitted toward a navel of a user at a predetermined position in front of the navel and at a predetermined distance from the navel by a low-frequency wave transmitter.
- the present invention provides a health care device, which is arranged in front of a navel of a user and at a predetermined position with a predetermined distance from the navel, and the health care device at least comprises a low frequency wave transmitter.
- the present invention provides another health care method, which is arranged in front of a navel of a user and at a predetermined position with a predetermined distance from the navel, and the health care device transmits a predetermined frequency wave toward the navel.
- the health care device at least comprises: a low-frequency wave transmitter, a cylinder and a cone;
- the cylinder has a cylinder top surface, a cylinder bottom surface and a cylinder body whose two ends are respectively connected to the cylinder top surface and the cylinder bottom surface;
- the cone has a vertex, a cone bottom surface and a cone body whose two ends are respectively connected to the vertex and the cone bottom surface; and, the cylinder top surface and the cone bottom surface are correspondingly connected, and the low-frequency wave transmitter is connected to the cylinder bottom surface.
- the predetermined position is located on a virtual bottom surface of a virtual cone with the navel as a virtual vertex, and the predetermined distance is between 5 and 8 centimeters; and, the predetermined position is located at the center of the virtual bottom surface, the virtual cone is a cone and the predetermined position is located at the center of the circular virtual bottom surface and the predetermined distance is the distance between the center of the circle and the navel.
- the vertex is located at the predetermined position.
- the vertex is further provided with a vertical rod body facing away from the bottom surface of the cone, and the length direction of the rod body coincides with a cone bottom surface normal line passing through a cone bottom surface center of the cone bottom surface and faces the navel.
- a rod tip of the rod body is located at the predetermined position.
- the present invention provides a health care device, which at least includes: a low-frequency wave transmitter, a cylinder and a cone; the cylinder has a cylinder top surface, a cylinder bottom surface and a cylinder body with two ends connected to the cylinder top surface and the cylinder bottom surface respectively; the cone has a vertex, a cone bottom surface and a cone body with two ends connected to the vertex and the cone bottom surface respectively; and the cylinder top surface is correspondingly connected to the cone bottom surface, and the low-frequency wave transmitter is connected to the cylinder bottom surface; wherein the low-frequency wave transmitter can emit a low-frequency wave of a predetermined frequency.
- the present invention provides a health care device, which at least comprises: a low-frequency wave transmitter and a cone; the cone has a vertex, a cone bottom surface and a cone body with two ends respectively connected to the vertex and the cone bottom surface; and the low-frequency wave transmitter is connected to the cone bottom surface; wherein the low-frequency wave transmitter can transmit a low-frequency wave of a predetermined frequency.
- the predetermined frequency is between 1.27 and 1.81 Hz.
- the predetermined frequency is 1.45 Hz.
- the cone is an integrally formed wooden cone.
- the present invention provides another health care method, in front of a navel of a user and at a predetermined position at a predetermined distance from the navel, a health care device as described above is arranged, and the low-frequency wave of the predetermined frequency is transmitted toward the navel by the health care device as described above.
- the health care device and health care method proposed by the inventors can achieve health care effects of convenient operation, accurate identification of the use position, non-invasive, non-contact, and no risk of excessive energy causing harm.
- FIG1 is a schematic diagram of the health care method of the present invention when it is implemented;
- FIG2 is a schematic diagram of the structure of the health care device of the present invention when performing the health care method;
- FIG3 is a schematic diagram of the structure of the health care device of the present invention;
- FIG4 is a schematic diagram of the structure of the health care device provided with a pipeline of the present invention;
- FIG5 is a schematic diagram of the structure of the health care device of the present invention provided with an upright rod;
- FIG6 is a schematic diagram of the structure of the health care device of the present invention provided on a frame;
- FIG7 is a schematic diagram of the structure of the low-frequency wave transmitter of the health care device of the present invention provided on the bottom surface of the cone.
- a health care method provided by the present invention, at a predetermined position P in front of a navel 11 of a user 1 and forming a predetermined distance D from the navel 11, a low-frequency wave W of a predetermined frequency is emitted toward the navel 11 by a low-frequency wave transmitter 2.
- the aforementioned "front” refers to the front of the abdomen of the human body and corresponds to the "back” indicated by the back of the human body.
- the predetermined position P is located on a virtual bottom surface S2 of a virtual cone S with the navel 11 as a virtual vertex S1, so that the predetermined distance D is not greater than 8 cm, or the predetermined distance is not less than 5 cm, or the predetermined distance D is between 5 and 8 cm.
- the predetermined position P is located at the center of the virtual bottom surface S2, for example, the virtual cone S is a cone and the predetermined position P is located at the center of the circular virtual bottom surface S2 and the predetermined distance D is the distance between the center and the navel 11, which is between 5 and 8 cm.
- the low-frequency wave transmitter 2 is preferably a bass wave transducer, so the low-frequency wave W can be a bass wave.
- the structure of the bass wave transducer includes a power supply 21 and a vibrator 22, the vibrator 22 is electrically connected to the power supply 21, the vibrator 22 is a disc-shaped piezoelectric ceramic transducer, the piezoelectric ceramic transducer is made of a piezoelectric material polarized in the thickness direction, the power supply 21 provides power to the vibrator 22 so that the vibrator 22 vibrates in the thickness direction to generate the bass wave of the predetermined frequency, wherein the predetermined frequency is not greater than 1.81 Hz, or the predetermined frequency is not less than 1.27 Hz, or the predetermined frequency is between 1.27 and 1.81 Hz. Optimally, the predetermined frequency is 1.45 Hz.
- the present invention also provides a health care device, which is arranged in front of a navel 11 of a user 1 and forms a predetermined position P with a predetermined distance D from the navel 11, and the health care device at least includes a low-frequency wave transmitter 2 0 ⁇ Detection method and effect 1>
- the aforementioned health care method was performed on personnel A1 and personnel A2, wherein the predetermined distance D was 5 cm, the predetermined frequency was 1.45 Hz, and the low-frequency wave was a bass wave.
- Personnel A1 was 74 years old, male; and personnel A2 was 72 years old, female.
- Table 1 It can be seen from Table 1 that the activated T cell content of person A1 before executing the aforementioned health care method was 6.2%, and the activated T cell content after executing the aforementioned health care method increased to 12.8%, with a change rate of 206.5%, that is, the activated T cell content increased by 106.5%.
- the activated T cell content of person A2 before executing the aforementioned health care method was 5.3%, and the activated T cell content after executing the aforementioned health care method increased to 7.9%, with a change rate of 149%, that is, the activated T cell content increased by 49%.
- a health care method provided by the present invention can promote the proliferation of activated T cells, and the activated T cell content can be increased as long as it is executed for 2 hours at a time, and the increase of 49% can still be maintained even after 42 days.
- the health care method of the present invention is effective and can maintain a long-term health care effect.
- the aforementioned health care method was performed on 14 people respectively, wherein the predetermined distance D was 5 cm, the predetermined frequency was 1.45 Hz, and the low frequency wave was a bass wave.
- blood samples were drawn from the 14 people and sent to a medical laboratory for immunological examination to test the percentage of B cell (CD 19+).
- B cell B cell
- 2 hours after performing the aforementioned health care method blood samples were drawn from the 14 people again and sent to a medical laboratory for immunological examination to test the percentage of B cell content.
- the average results of the 14 people are recorded in Table 2 described below.
- Table II From Table 2, it can be seen that the average B cell content of the 14 people before the implementation of the above health care method was 12.2%, and the average B cell content after the implementation of the above health care method increased to 13.6%, with a change rate of 111.4%, that is, the B cell content increased by 11.4%. Therefore, the health care method provided by the present invention can promote the proliferation of B cells, and the B cell content can be increased as long as it is implemented once for 2 hours. Obviously, the health care method of the present invention has an effective health care effect.
- the aforementioned health care method was performed on personnel B1 and B2, wherein the predetermined distance D was 5 cm, the predetermined frequency was 1.45 Hz, and the low-frequency wave was a bass wave.
- blood samples were drawn from personnel B1 and B2.
- the NK cells in the blood and the cancer cell line (K562) in the two blood sampling samples were mixed and co-cultured at a ratio of 6.25: 1 (Effector: Target), and then the death of the cancer cell line was analyzed.
- the percentage of NK cell's ability to kill the cancer cell line can be obtained (the relevant technology can be operated with reference to Taiwan Invention Patent Announcement No. 1439275), and the results are recorded in Table 3 described below.
- Table 3 From Table 3, it can be seen that the killing ability of the NK cell line of the B1 person before executing the aforementioned health care method to the cancer cell line (K562) was 24.3%, and the killing ability after executing the aforementioned health care method increased to 33.6%, with a change rate of 138.3%, that is, the killing ability increased by 38.3%.
- the killing ability of the NK cell line of the B2 person before executing the aforementioned health care method to the cancer cell line (K562) was 5.5%, and the killing ability after executing the aforementioned health care method increased to 7.2%, with a change rate of 131%, that is, the killing ability increased by 31%. Therefore, a health care method provided by the present invention can increase the killing ability of the NK cell line to the cancer cell line (K562). Obviously, the health care method of the present invention is highly effective and can maintain long-term health care effects. Please refer to Figures 2 and 3.
- the present invention also provides a health care device 100 that can be used to execute the aforementioned health care method.
- the health care device 100 includes: the aforementioned low-frequency wave transmitter 2, a column 3 and a cone 4.
- the column 3 is preferably a cylindrical body, and has a column top surface 31, a column bottom surface 32, and a column body 33 with two ends respectively connected to the column top surface 31 and the column bottom surface 32.
- the cone 4 has a vertex 40, a cone bottom surface 41 and a cone body 42 connected to the vertex 40 and the cone bottom surface 41 at two ends.
- the top surface 31 of the column is correspondingly connected to the bottom surface 41 of the cone, for example, by welding or screwing.
- the column 3 and the cone 4 are respectively a metal column and a metal cone. More preferably, the column 3 and the cone 4 are integrally formed, in other words, the top surface 31 of the column, the column body 33, the cone body 42 and the vertex 40 are integrally formed.
- the low-frequency wave transmitter 2 is connected to the bottom surface 32 of the column.
- the low-frequency wave transmitter 2 is directly connected to the bottom surface 32 of the column, for example, the low-frequency wave transmitter 2 is welded or screwed to the bottom surface 32 of the column, so when the power supply 21 is started, the vibration element 22 will generate the low-frequency wave W of the predetermined frequency (please refer to Figure 1 again). Then, The low-frequency wave W is transmitted to the bottom surface 32 of the column, and then transmitted to the cone bottom surface 41 and the vertex 40 of the cone 4 in sequence by the column body 33.
- the cone 4 is formed into a cone shape by the wider cone bottom surface 41 and the narrower vertex 40, so that the energy of the low-frequency wave W is more concentrated when it is transmitted to the vertex 40. Therefore, when the low-frequency wave W is transmitted to the vertex 40, the energy of the low-frequency wave W is concentrated to the maximum, and it is emitted from the vertex 40 toward the navel 11; because the vertex 40 of the cone 4 is a tip, the low-frequency wave W can form a principle similar to "tip discharge" in electricity, and the energy of the low-frequency wave W is concentrated at the vertex 40 and released and emitted toward the navel 11. It is particularly noted that at this time, the vertex 40 is located at the predetermined position P. Please refer to FIG. 4.
- the low-frequency wave transmitter 2 is connected to the bottom surface 32 of the column by a pipe 5.
- the low frequency wave W is transmitted from the low frequency wave transmitter 2 to the bottom surface 32 of the column through the pipe 5, and then transmitted to the top point 40 as described above and emitted toward the navel 11.
- the arrangement of the pipe 5 can keep the power source 21 and/or the vibrator 22 of the low frequency wave transmitter 2 away from the human body to prevent the electronic devices that have been injected into the human body from being interfered.
- a vertical rod 401 is further provided at the vertex 40, which faces away from the cone bottom surface 41.
- the rod 401 is a metal rod such as a metal wire or line, and the length direction of the rod 401 coincides with the cone bottom surface normal N passing through the cone bottom surface center C of the cone bottom surface 41 and faces the navel H. Therefore, the energy of the low-frequency wave W can be further guided to be concentrated on a rod tip 402 of the rod 401 and released and emitted toward the navel 11. It is particularly noted that at this time, the rod tip 402 is located at the predetermined position P.
- the health care device 100 is provided on a frame 200, the user 1 lies flat on a platform (not shown), the frame 200 is set on the platform, and the health care device 100 is located above the user's navel.
- the health care device 100 may also include: the aforementioned low-frequency wave transmitter 2 and the cone 4, but not the column 3.
- the low-frequency wave transmitter 2 is disposed on the cone bottom surface 41 .
- the low-frequency wave transmitter 2 is connected to the cone bottom surface 41 .
- the low-frequency wave transmitter 2 is directly connected to the cone bottom surface 41 .
- the low-frequency wave transmitter 2 is fixed to the cone bottom surface 41 by adhesion, welding or screws. Therefore, when the power supply 21 is activated, the vibration element 22 generates the low-frequency wave W of the predetermined frequency (please refer to FIG. 1 again) .
- the low-frequency wave W is transmitted to the cone bottom surface 41 and the vertex 40 of the cone 4 .
- the cone 4 is formed into a cone shape by the wider cone bottom surface 41 and the narrower cone 40 .
- the energy of the low-frequency wave W is more concentrated as it is transmitted to the vertex 40 .
- the cone 4 is an integrally formed wooden cone.
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Abstract
一种保健装置及保健方法,保健方法于一使用者的一肚脐的前方且与该肚脐形成一预设距离的一预设位置,以一低频发射器(2)朝该肚脐发射一预定频率的一低频波。保健装置则至少包括低频发射器(2)及一椎体(4)。预定频率介于1.27至1.81Hz之间,预设距离为介于5至8公分之间。保健装置及保健方法可以增加血液中活化T细胞、B细胞的含量,以及增加NK细胞株对癌肿瘤细胞株的毒杀能力,以达到可便利操作、精确辨识使用位置,且非侵入式、非接触式、不会有过渡能量风险而造成伤害的保健功效。
Description
保健装置及保健方法 技术领域 本发明涉及一种保健装置及保健方法,尤其涉及一种将低频波传递至人体以进行人体 保健的保健装置及保健方法。 背景技术 目前已知的保健方式例如有刮职 拔罐、 针灸、 按摩等, 虽然可以达到保健的目的, 但也有其缺点, 例如: 刮物会使得皮肤受损, 而增加感染的风险; 拔罐效果与刮物接近, 但是使用上需要以罐体与皮肤接触, 因此罐体的清洁与卫生堪虑; 针灸, 以针侵入人体所 对应的穴位, 因此有侵入性风险; 按摩, 虽然没有侵入性风险, 但是却要仰赖他人帮助放 松肌肉。 前述针灸保健方式的改良, 有如微波针灸仪对人体穴位采用非侵入式辐射的保健装 置, 微波针灸仪采用的微波振荡器其震荡频率高达 1000-2000兆赫(MHz), 这很容易因为 过度辐射(能量)而造成伤害。 实言之, 微波针灸仪也是需要对应人体穴位才能发挥功效, 然而一般人却不是中医相关的专业人士, 并无法精确地辨认出每个人各自的穴位, 所以微 波针灸仪实际上并不是可以普遍化的保健装置。 因此, 开发具有可便利操作、 精确辨识使用位置, 且非侵入式、 非接触式、 不会有过 度能量风险而造成伤害的保健装置及保健方法, 实为业界的趋势。 发明内容 本发明主要是基于认知到人体主要组织器官(指的是有机体, 而非人工组织或器官)具 有固有的震荡频率, 例如头部为 8-12Hz, 胸腔为 4-6Hz, 心脏为 5Hz, 腹腔为 6-9Hz, 血 液流动频率为 1.2Hz,骨头组织为 1.8Hz o当人体的某一部位处于 0-20HZ的低频波场域时, 例如低频率的电磁波, 又例如低音波或称为次声波(其相对称呼为高于 20kHz的超音波或 超声波), 若其声压强度(Sound Pressure Level, 单位为 dB)达到一定的阈值, 则会先使得位 于此部位所对应的组织器官外层的弹性壁先进入振动的状态,接着这个振动会传导给组织 器官的内部。特别地, 当低音波的频率与组织器官的前述固有震荡频率同步时就会产生共 振, 此时组织器官所受到的刺激最大。 当以低音波所引发的共振方式作用于组织器官时, 其同时也会作用于组织器官的细胞结构例如细胞的粒线体(mitochondrion), 粒线体是细胞
内氧化磷酸化和合成三磷酸腺昔 (ATP)的主要场所, 为细胞的活动提供了化学能量, 所以 有 "细胞的发电站” (the powerhouse of the cell)之称。
ATP 涉及了细胞膜的膜电位 (membrane potential、 transmembrane potential或 membrane voltage), 细胞膜是由磷脂双分子层 (lipid bilayer或 phospholipid bilayer)组成的薄膜, 几 乎所有细胞生物的细胞膜都主要由磷脂双分子层构成的, 磷脂双分子层内部充满电介质, 故而磷脂双分子层构成的细胞膜在电学性质上等效为一个电容器。细胞膜的结构中不只有 磷脂双分子层, 还有蛋白质, 其中一些蛋白质扮演离子通道的角色以使得离子 (例如带正 电的钠离子 Na+及钾离子 K+)可以进行跨越细胞膜而进行运输。 这种现象可以用物理学来 理解, 也就是说细胞膜这个电容器是一个漏电的电容器, 漏电电流 (离子传输)穿越了电容 器。 另外, 前述低音波所引发的共振作用于粒线体也会影响一些酶例如 ATP 水解酶 (ATPase)与细胞膜的结合状态及酶的活性。 ATPase是一个可以分解 ATP以产生能量的酶, 并且可以活化 Na*及 KL 因此又称为 Na+-K* ATPase或 Na+-K*泵 (Na+-K* pump), Na+-K+ 泵可以调节细胞膜内外的钠离子与钾离子浓度而使得膜电位获得调节, 例如由动作电位 (action potential)回复到静止膜电位 (resting membrane potential) o 首先, 细胞膜处于静止膜 电位,接着静止膜电位状态的细胞膜受到适当刺激而产生的动作电位通常依序经历下列几 个阶段 : 极化 (polarization)、 去极化 (depolarization)、 再极化 (repolarization)、 过极化 (hyperpolarization), 尤其是在过极化阶段时动作电位的膜电位会低于静止膜电位, 此时必 须仰赖 Na+-K+泵在过极化阶段协助动作电位的膜电位回复到静止膜电位。因此,可以理解 的是, 长期在刺激 (例如压力)下或长期人体发炎状态下, 或者长期缺乏 ATP及/或 ATPase, 则会使得细胞长期处于过极化阶段而使得膜电位会低于静止膜电位。 基于前述对细胞膜在电学性质上等效为电容器 (或电池)的理解, 膜电位就相当于电池 的电压, 前述过极化阶段时动作电位的膜电位会低于静止膜电位, 其中过极化阶段时动作 电位的膜电位可以被理解为电池于被使用后已经耗损电量后的残余电量 (电压), 静止膜电 位则可以被对应为未被耗损电量或重新被充满电量的初始电量 (电压)。 据统计, 人体内平 均有 37.2兆个细胞, 换言之人体内平均有 37.2兆个“电池”。 可以被理解的是, 当身体 长期处于压力或发炎时, 细胞也是对应地长期处于过极化阶段的 “电池电量耗损”状态, 因此细胞无法进行或维持其应有的功能,人体组织器官也因而呈现病理现象或人呈现疲惫 现象。 然而, 此时如果以一定强度及 /或频率的低频波作用于细胞时, 波的能量可被转化
为热能、生物化学能和生物电能而增加了 ATPase的活性, 从而影响 ATPase在过极化阶段 协助动作电位的膜电位回复到静止膜电位, 这使得对应于人体细胞的前述 “电池”, 由前 述过极化阶段时的膜电位的 “电池电量耗损 ”状态, 回复到静止膜电位的充满电量的初始 电量 (电压)。 换言之, 低频波可以对处于过极化阶段的细胞进行 “充电”, 因此以低频波 作用于组织器官可以使受损的组织可以在低频波刺激下得到修复而恢复正常的功能 o有关 于低频波与生物体关系的例子之一, 例如低频波中的极低频 (Extremely Low Frequency, ELF)中的舒曼共振 (Schumann Resonance)频率是 7.83赫兹, 恰好和哺乳动物脑的海马体的 频率相同,尤其人类大脑的 a波与 9波也近于 8Hz,因此美国国家航空暨太空总署 (NASA) 在载人太空仓里装上舒曼波产生器, 以维持太空人在太空中的身心健康。有关于低频波增 加 ATPase的活性,可以参见 "Effects of low frequency magnetic fields on Na,K-ATPase activity, M. Blank, L. Soo, V. Papstein, Bi oel ectrochemi stry and Bioenergetics 38 (1995) 267-273",其中 运用 0-70Hz的低频波 (磁波), 使得 Na+-K+ ATPase的活性增加 5-10%。 换言之, 低频波可 以使得细胞活化而对处于过极化阶段的细胞进行 “充电”, 因而低频波可以运用于 “细胞 活化技术” 。 在此特别说明的是, 低频波也可包含电波、 磁波或光波等电磁波, 或者低 音波。 本发明另外认知到按照中医的理论, 人体肚脐是神阙穴且是任脉、 督脉、 带脉、 冲脉 通过之处, 因而当刺激神阙穴时就能够通过经络联系五脏六腑而调整全身。再者依照西医 的理论, 肚脐是人体腹部中表皮角质层最薄之处而且肚脐下并无脂肪组织, 因此其屏障功 能最弱。 另外, 肚脐皮肤除了一般皮肤所具有的微循环血管之外, 还还具有丰富的静脉网 及腹下动脉分支, 因此只要对肚脐皮肤微循环血管内血液的进行某种作用或改变, 就可以 将此作用或改变带入人体血液循环系统中。而且, 人体肚脐很容易辨识其位置也不会因人 的身高胖瘦而异, 因此以肚脐做为保健装置施用在人体的对应位置, 则会有令使用者能够 精确辨识使用位置的优势。 本发明另外认知到将可产生低频波 (例如低频电波、 低频磁波、 低频音波)的低频波发 射器以不与肚脐接触的方式, 使低频波发射器朝向肚脐发射低频波以达成类似针灸的效 果, 则可以达到非侵入式、 非接触式的保健方式。 较佳地, 将可产生低音波的低音波发射 器以不与肚脐接触的方式, 使低音波发射器朝向肚脐发射低音波以达成类似针灸的效果, 则可以达到非侵入式、 非接触式的保健方式, 特别说明的是, 本发明所指的低音波、 低频 率的音波及低频音波是相同的意思。如果直接使用低音波做为保健装置的元件, 则可以避
免高频率微波振荡器所产生的过度能量风险而造成伤害的问题, 同时也可以避免电波或磁 波对部分具有特殊体质的人所产生的不良影响。 由于认知到低音波可以达成类似针灸的效果,且针灸对免疫系统的影响是针灸可以增 加干扰素伽玛 (Interferon gamma, y-IFN)及神经胜肽 beta-endorphin( B脑内啡)的含量而激活 NK 细胞 (natural killer cell), NK细胞也会分泌细胞激素 (cytokine), 细胞激素则可以调控发 炎反应。 NK细胞是一种细胞质中具有大颗粒的淋巴球而为免疫细胞, 是由骨髓淋巴样干 细胞发育而成, 主要分布于外周血 (包含微循环血管内血液)和脾脏, 在淋巴结和其他组织 中也有少量存在。 基于前述 “肚脐是人体腹部中表皮角质层最薄之处而且肚脐下并无脂肪组织, 因此其 屏障功能最弱。 另外, 肚脐皮肤除了一般皮肤所具有的微循环血管之外, 还还具有丰富的 静脉网及腹下动脉分支, 因此只要对肚脐皮肤微循环血管内血液的进行某种作用或改变, 就可以将此作用或改变带入人体血液循环系统中”, 因此, 当以低音波发射器朝向肚脐发 射低音波, 则会引发类似针灸的效果, 使得肚脐皮肤微循环血管内血液中的 Y -IFN及 |3 脑内啡的含量会增加而激活 NK细胞、 B细胞 (B celL B lymphocyte)及活化 T细胞 (Active T cell、 Active T lymphocyte), 并且因为 NK细胞、 B细胞及活化 T细胞分泌细胞激素而可以 调控发炎反应或分泌抗体。另外, 当以低音波发射器朝向肚脐发射低音波, 则也会使得肚 脐皮肤微循环血管内血液中的活化 T细胞的 Na+-K+ ATPase的活性增加, 所以可以使活化 T 细胞的活性提升; 换言之, 当以低音波发射器朝向肚脐发射低音波, 可以对活性低的 活化 T细胞进行 “充电 ”使其恢复活性, 而使得被 “充电 ”后的活化 T细胞可以重新被检 验得知。所以, 只要检测血液中 NK细胞、 B细胞或活化 T细胞的含量变化即可验证本发 明保健装置的功效; 当然, 也可以用 NK细胞株对癌肿瘤细胞株 (K562)的毒杀能力, 例如 以 NK细胞对目标细胞比例 (Effector to target cell ratio, E/T ratio)混和培养的样品测量毒杀 能力, 并对结果差异性作比较, 以验证本发明的可行性。 基于上述说明, 本发明提供一种保健方法, 于一使用者的一肚脐的前方且与该肚脐形 成一预定距离的一预定位置, 以一低频波发射器朝该肚脐发射一预定频率的一低频波。 基于上述说明, 本发明提供一种保健装置, 该保健装置设置于一使用者的一肚脐的前 方且与该肚脐形成一预定距离的一预定位置, 该保健装置至少包含一低频波发射器。 基于上述说明, 本发明提供又一种保健方法, 于一使用者的一肚脐的前方且与该肚脐 形成一预定距离的一预定位置, 设置一保健装置, 以该保健装置朝该肚脐发射一预定频率
的一低频波; 其中, 该保健装置至少包含: 一低频波发射器、 一柱体及一锥体; 该柱体具 有一柱体顶面、 一柱体底面及两端分别与该柱体顶面及该柱体底面相接的一柱身; 该锥体 具有一顶点、 一锥体底面及两端分别与该顶点及该锥体底面相接的一锥身; 以及, 该柱体 顶面与该锥体底面对应相接合, 且该低频波发射器与该柱体底面相连接。 于一实施例中, 该预定位置位于以该肚脐为一虚拟顶点的一虚拟锥体的一虚拟底面 上, 该预定距离为介于 5至 8公分之间; 且, 该预定位置位于该虚拟底面的中心, 该虚拟 锥体为圆锥体且该预定位置是位于圆形的该虚拟底面的圆心且该预定距离为圆心与该肚 脐的距离。 其中, 该顶点是位于该预定位置。 于一实施例中, 该顶点还设置有朝向远离该锥体底面的方向的一呈直立式的棒体, 且 该棒体的长度方向与通过该锥体底面的一锥体底面中心的一锥体底面法线重合并朝向该 肚脐。 其中, 该棒体的一棒体尖端是位于该预定位置。 基于上述说明, 本发明提供一种保健装置, 其至少包含 :一低频波发射器、 一柱体及 一锥体; 该柱体具有一柱体顶面、一柱体底面及两端分别与该柱体顶面及该柱体底面相接 的一柱身; 该锥体具有一顶点、 一锥体底面及两端分别与该顶点及该锥体底面相接的一锥 身; 以及,该柱体顶面与该锥体底面对应相接合,且该低频波发射器与该柱体底面相连接; 其中, 该低频波发射器能够发射一预定频率的一低频波。 或者, 本发明提供一种保健装置, 其至少包含: 一低频波发射器及一锥体; 该锥体具 有一顶点、 一锥体底面及两端分别与该顶点及该锥体底面相接的一锥身; 以及, 该低频波 发射器与该锥体底面相连接; 其中, 该低频波发射器能够发射一预定频率的一低频波。 于一实施例中, 该预定频率为介于 1.27至 1.81Hz之间。 于一实施例中, 该预定频率为 1.45Hzo 于一实施例中, 该锥体为一体成型的木制锥体。 基于上述说明, 本发明提供再一种保健方法, 于一使用者的一肚脐的前方且与该肚脐 形成一预定距离的一预定位置, 设置一如前所述的保健装置, 以一如前所述的保健装置朝 该肚脐发射该预定频率的该低频波。 借以, 本发明人所提出的保健装置及保健方法达到可便利操作、 精确辨识使用位置, 且非侵入式、 非接触式、 不会有过度能量风险而造成伤害的保健功效。 附图说明 图 1是本发明的保健方法于实施时的示意图;
图 2是本发明于执行保健方法时的保健装置的结构示意图; 图 3是本发明的保健装置的结构示意图; 图 4是本发明设置有管路的保健装置的结构示意图; 图 5是本发明设置有直立式的棒体的保健装置的结构示意图; 图 6是本发明的保健装置设置于架体的结构示意图; 图 7是本发明的保健装置的低频波发射器设置于锥体底面的结构示意图。 具体实施方式 为利了解本发明的技术特征、 内容与优点及其所能达成的功效, 现将本发明配合附图 的表达形式详细说明如下, 而其中所使用的附图, 其主旨仅为示意及辅助说明书之用, 未 必为本发明实施后的真实比例与精准配置, 故不应就所附的附图的比例与配置关系解读、 局限本发明于实际实施上的权利范围, 合先叙明。 请参阅图 1 ,本发明所提供的一种保健方法,于一使用者 1的一肚脐 11的前方且与该 肚脐 11形成一预定距离 D的一预定位置 P, 以一低频波发射器 2朝该肚脐 11发射一预定 频率的一低频波 W。 前述 “前方”指人体的腹部方向的前方并与人体背部所指的 “后方” 相对应, 该预定位置 P位于以该肚脐 11为一虚拟顶点 S1的一虚拟锥体 S的一虚拟底面 S2上, 使得该预定距离 D为不大于 8公分, 或该预定距离为不小于 5公分, 或该预定距 离 D为介于 5至 8公分之间。 较佳地, 该预定位置 P位于该虚拟底面 S2的中心, 例如该 虚拟锥体 S为圆锥体且该预定位置 P是位于圆形的该虚拟底面 S2的圆心且该预定距离 D 为圆心与该肚脐 11的距离其介于 5至 8公分之间。 该低频波发射器 2较佳为一低音波换能器, 因此该低频波 W可以为一低音波, 该低 音波换能器的结构中包含一电源 21及一振动件 22, 该振动件 22与该电源 21电性连接, 该振动件 22为一呈圆盘状的压电陶瓷换能器, 该压电陶瓷换能器采用厚度方向极化的压 电材料所制成, 该电源 21提供电力给该振动件 22使得该振动件 22于厚度方向振动而产 生该预定频率的该低音波, 其中该预定频率为不大于 1.81Hz, 或该预定频率为不小于 1.27Hz, 或该预定频率为介于 1.27至 1.81Hz之间。 最佳地, 该预定频率为 1.45Hz。 换言之, 本发明也提供一种保健装置, 该保健装置设置于一使用者 1的一肚脐 11的 前方且与该肚脐 11形成一预定距离 D的一预定位置 P, 该保健装置至少包含一低频波发 射器 20
<检测方法及效果一> 对 Al人员及 A2人员执行前述保健方法, 其中该预定距离 D为 5公分, 该预定频率 为 1.45Hz, 该低频波为低音波。 A1人员的年龄是 74岁, 男性; A2人员的年龄是 72岁, 女性。 于执行前述保健方法之前, 对 A1人员及 A2人员抽血取样送交医学检验所进行免 疫学检查, 检验活化 T细胞含量百分比。 于执行前述保健方法 2小时之后的第 19天也同 样再次对 A1人员抽血取样送交医学检验所进行免疫学检查, 而于执行前述保健方法 2小 时之后的第 42天也同样再次对 A2人员抽血取样送交医学检验所进行免疫学检查,也是同 样检验活化 T细胞含量百分比, 并将结果记载于后述表一。 表一
从表一可以得知, A1人员于执行前述保健方法之前的活化 T细胞含量为 6.2%, 于执 行前述保健方法之后的活化 T细胞含量则增加为 12.8%,变化率为 206.5%, 也就是活化 T 细胞含量增加了 106.5%。 A2人员于执行前述保健方法之前的活化 T细胞含量为 5.3%, 于执行前述保健方法之后的活化 T细胞含量则增加为 7.9%, 变化率为 149%, 也就是活化 T细胞含量增加了 49%。因此,本发明所提供的一种保健方法可以促使活化 T细胞的增生, 且只要单次执行 2小时就可以使得活化 T细胞含量增加, 即使经过 42天之后仍然可以维 持 49%的增加量。 显然地, 本发明的保健方法深具有效且可以维持长久的保健功效。
<检测方法及效果二〉 对 14位人员分别执行前述保健方法, 其中该预定距离 D为 5公分, 该预定频率为 1.45Hz, 该低频波为低音波。 于执行前述保健方法之前, 对 14位人员分别抽血取样送交 医学检验所进行免疫学检查, 检验 B细胞 (CD 19+)含量百分比。 于执行前述保健方法 2小 时之后的第 19天也同样再次对 14位人员抽血取样送交医学检验所进行免疫学检查,也是 同样检验 B细胞含量百分比。 将 14位人员的平均结果记载于后述表二。
表二
从表二可以得知, 14位人员于执行前述保健方法之前的平均 B细胞含量为 12.2%, 于执行前述保健方法之后的平均 B细胞含量则增加为 13.6%,变化率为 111.4%,也就是 B 细胞含量增加了 11.4%。 因此, 本发明所提供的一种保健方法可以促使 B细胞的增生, 且 只要单次执行 2小时就可以使得 B细胞含量增加。显然地,本发明的保健方法深具有效的 保健功效。
<检测方法及效果三> 对 B1人员及 B2人员执行前述保健方法, 其中该预定距离 D为 5公分, 该预定频率 为 1.45Hz, 该低频波为低音波。 于执行前述保健方法之前, 对 B1人员及 B2人员抽血取 样。于执行前述保健方法 2小时之后的第 19天也同样再次对 B1人员及 B2人员抽血取样。 将两次的抽 血取样的样品, 分别将血液中的 NK 细胞与癌肿瘤细胞株 (K562) , 以 6.25: 1 (Effector : Target)的比例混合共同培养, 再分析癌肿瘤细胞株的死亡情形, 可藉获得 NK 细胞毒杀癌肿瘤细胞株的能力百分比 (相关的技术则可以参考中国台湾发明专利公告 第 1439275号而进行操作), 并将结果记载于后述表三。 表三
从表三可以得知, Bl 人员于执行前述保健方法之前的 NK细胞株对癌肿瘤细胞株 (K562)的毒杀能力为 24.3%, 于执行前述保健方法之后的毒杀能力则增加为 33.6%, 变化 率为 138.3%, 也就是毒杀能力增加了 38.3%o B2人员于执行前述保健方法之前的 NK细 胞株对癌肿瘤细胞株 (K562)的毒杀能力为 5.5%,于执行前述保健方法之后的毒杀能力则增 加为 7.2%, 变化率为 131%, 也就是毒杀能力增加了 31%o 因此, 本发明所提供的一种保 健方法可以促使 NK细胞株对癌肿瘤细胞株 (K562)的毒杀能力增加。 显然地, 本发明的保 健方法深具有效且可以维持长久的保健功效。 请参阅图 2及图 3, 本发明又提供一种可用以执行前述保健方法的保健装置 100, 该 保健装置 100包含:前述该低频波发射器 2、一柱体 3及一锥体 4。该柱体 3较佳为圆柱体, 该柱体具有一柱体顶面 31、 一柱体底面 32及两端分别与该柱体顶面 31及该柱体底面 32 相接的一柱身 33。 该锥体 4具有一顶点 40、 一锥体底面 41及两端分别与该顶点 40及该 锥体底面 41相接的一锥身 42 „ 其中, 该柱体顶面 31与该锥体底面 41对应相接合例如以 焊接或螺丝锁固。较佳地, 该柱体 3及该锥体 4分别为金属柱体及金属锥体。 更佳地, 该 柱体 3及该锥体 4为一体成型, 换言之, 该柱体顶面 31、 该柱身 33、 该锥身 42及该顶点 40为一体成型。 该低频波发射器 2与该柱体底面 32相连接, 较佳地该低频波发射器 2与该柱体底面 32直接相连接, 例如该低频波发射器 2焊接或以螺丝锁固于该柱体底面 32, 因此当启动 该电源 21后会使得该振动件 22产生该预定频率的该低频波 W (请再度参阅图 1)。 接着, 该低频波 W传递至该柱体底面 32, 再接着利用该柱身 33依序往该锥体 4的该锥体底面 41及该顶点 40传递, 并利用该锥体 4由该锥体底面 41的较宽而往该顶点 40的较窄而成 形为锥形的设计, 而使该低频波 W越往该顶点 40传递时其能量越形聚集。 因此, 当该低 频波 W传递至该顶点 40时,该低频波 W其能量聚集到最大,且从该顶点 40朝该肚脐 11 发射; 由于该锥体 4的该顶点 40为一尖端, 因此该低频波 W可以形成类似电学中的 “尖 端放电 ”的原理而将该低频波 W的能量集中于该顶点 40而放出并且朝向该肚脐 11发射。 特别说明的是, 此时该顶点 40是位于该预定位置 P。 请参阅图 4, 于另一实施例中, 该低频波发射器 2以一管路 5与该柱体底面 32相连 接, 该低频波 W通过该管路 5而从该低频波发射器 2传递至该柱体底面 32, 接着如前所 述传递至该顶点 40并朝该肚脐 11发射。 利用该管路 5的设置可以使得该低频波发射器 2 的该电源 21及 /或该振动件 22远离人体, 以避免已经注入人体内部的电子装置受到干扰。
请参阅图 5, 于另一实施例中, 在该顶点 40还设置有朝向远离该锥体底面 41的方向 的一呈直立式的棒体 401 , 较佳地该棒体 401为金属棒体例如金属丝或线, 且该棒体 401 的长度方向与通过该锥体底面 41的锥体底面中心 C的锥体底面法线 N重合并朝向该肚脐 H o 因此, 可以更引导该低频波 W的能量集中于该棒体 401的一棒体尖端 402而放出并 且朝向该肚脐 11发射。 特别说明的是, 此时该棒体尖端 402是位于该预定位置 P。 请参阅图 6, 于另一实施例中, 该保健装置 100设置于一架体 200, 使用者 1平躺于 平台上(图未绘出), 该架体 200架设于平台上, 该保健装置 100位于使用者的肚脐上方。 如此, 使用者于保健过程也可以获得适当地休息。 请参阅图 7, 于另一实施例中, 该保健装置 100也可以是包含:前述该低频波发射器 2 及该锥体 4, 而不包含该柱体 3, 该低频波发射器 2设置于该锥体底面 41 , 该低频波发射 器 2与该锥体底面 41相连接, 较佳地该低频波发射器 2与该锥体底面 41直接相连接, 例 如该低频波发射器 2以黏着、 焊接或以螺丝锁固于该锥体底面 41 , 因此当启动该电源 21 后会使得该振动件 22产生该预定频率的该低频波 W(请再度参阅图 l)o接着,该低频波 W 传递至该锥体 4的该锥体底面 41及该顶点 40传递, 并利用该锥体 4由该锥体底面 41的 较宽而往该顶点 40的较窄而成形为锥形的设计, 而使该低频波 W越往该顶点 40传递时 其能量越形聚集。 较佳地, 该锥体 4为一体成型的木制锥体。 以上所述的实施例仅为说明本发明的技术思想及特点,其目的在使本领域技术人员能 够了解本发明的内容并据以实施, 当不能以的限定本发明的专利范围, 即凡依本发明所公 开的精神所作的均等变化或修饰, 仍应涵盖在本发明的专利范围内。
Claims
1.一种保健装置, 其至少包含:一低频波发射器 (2)及一锥体 (4); 该锥体 (4)具有一顶点 (40)、 一锥体底面 (41)及两端分别与该顶点 (40)及该锥体底面 (41)相接的一锥身 (42); 以及, 该低频波发射器 (2)与该锥体底面 (41湘连接; 其中, 该低频波发射器 (2)能够发射一预定频 率的一低频波 (W)。
2.如权利要求 1所述的保健装置, 其中, 该预定频率为介于 1.27至 1.81Hz之间。
3.如权利要求 2所述的保健装置, 其中, 该预定频率为 1.45Hz。
4.如权利要求 3所述的保健装置, 其中, 该低频波发射器 (2)为一低音波换能器, 该低 频波 (W)为一低音波。
5.如权利要求 4所述的保健装置, 其中, 该锥体 (4)为一体成型的木制锥体。
6.一种保健装置, 设置于一使用者 (1)的一肚脐 (11)的前方且与该肚脐 (11)形成一预定 距离 (D)的一预定位置 (P), 该保健装置至少包含一低频波发射器 (2)。
7.一种保健方法, 于一使用者 (1)的一肚脐 (11)的前方且与该肚脐 (11)形成一预定距离 (D)的一预定位置 (P), 以一如权利要求 1 所述的保健装置朝该肚脐 (11)发射该预定频率的 该低频波 (W)。
8.如权利要求 7所述的保健方法, 其中, 该预定频率为介于 1.27至 1.81Hz之间。
9.如权利要求 8所述的保健方法, 其中, 该预定频率为 L45Hz。
10.如权利要求 9所述的保健方法, 其中, 该低频波发射器 (2)为一低音波换能器, 该 低频波 (W)为一低音波。
11.如权利要求 10所述的保健方法, 其中, 该预定位置 (P)位于以该肚脐 (11)为一虚拟 顶点 (S1)的一虚拟锥体 (S)的一虚拟底面 (S2)上, 该预定距离 (D)为介于 5至 8公分之间; 该 预定位置 (P)位于该虚拟底面 (S2)的中心, 该虚拟锥体 (S)为圆锥体且该预定位置 (P)是位于 圆形的该虚拟底面 (S2)的圆心且该预定距离 (D)为圆心与该肚脐 (11)的距离, 且该顶点 (40) 是位于该预定位置 (P)。
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CN112043584A (zh) * | 2019-06-06 | 2020-12-08 | 张勋华 | 一种针灸装置 |
JP3227292U (ja) * | 2020-04-16 | 2020-08-13 | ハイボックス バイオテック インコーポレイテッドHivox Biotek Inc. | 電気刺激装置に電極増益効果をもたらす配線構造 |
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TWM628886U (zh) * | 2022-03-31 | 2022-06-21 | 李洲科技股份有限公司 | 保健裝置 |
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