WO2016078059A1 - Dispositif d'entraînement visuel et procédé de commande de ce dispositif - Google Patents

Dispositif d'entraînement visuel et procédé de commande de ce dispositif Download PDF

Info

Publication number
WO2016078059A1
WO2016078059A1 PCT/CN2014/091808 CN2014091808W WO2016078059A1 WO 2016078059 A1 WO2016078059 A1 WO 2016078059A1 CN 2014091808 W CN2014091808 W CN 2014091808W WO 2016078059 A1 WO2016078059 A1 WO 2016078059A1
Authority
WO
WIPO (PCT)
Prior art keywords
display device
control
visual training
mode
processor
Prior art date
Application number
PCT/CN2014/091808
Other languages
English (en)
Chinese (zh)
Inventor
倪国庆
Original Assignee
倪国庆
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 倪国庆 filed Critical 倪国庆
Priority to PCT/CN2014/091808 priority Critical patent/WO2016078059A1/fr
Priority to CN201480020938.8A priority patent/CN105517626B/zh
Publication of WO2016078059A1 publication Critical patent/WO2016078059A1/fr

Links

Classifications

    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL 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
    • A61H5/00Exercisers for the eyes

Definitions

  • the present invention relates to a visual training device, and more particularly to a method of controlling a visual training device and using the same.
  • the visual training devices are worn on the head, and some massage the eyes and surrounding muscles by means of air pressure to relieve eye fatigue; some simulate acupuncture manipulation by electric stimulation to massage the eye points to relieve fatigue;
  • the visual perception system is exercised by alternately flashing and different color of the beacon lights, such as the Chinese utility model patent 201020510120.3 , 200520023334.7, 201220022494.X, through the left and right eyeballs each have a hole, each eye is equipped with an eyelid, a hole in the eyelid is equipped with a lens, through the lens can be observed inside the housing placed left and right
  • the two rows of visual indicators are symmetrically arranged in the housing with respect to the center of the pupils of the two eyes, and at an angle to the center and the horizontal plane of the pupils, which is effective by observing the change of the illumination beacons
  • the lighting sequence of the lights is used for visual training, and the training effect is not good, and the function of visual adjustment is limited.
  • the technical problem to be solved by the present invention is to provide a control method of a visual training device that can adjust the motion of the display device as needed and improve the visual training effect.
  • Another technical problem to be solved by the present invention is to provide a visual training device that can adjust the motion of the display device as needed to improve the visual training effect.
  • the technical solution adopted by the present invention to solve the technical problem thereof is: Constructing a control method of a visual training device, the visual training device comprising a display device, a driving device for driving the display device, a processor connected to the display device and the driving device, and a button connected to the processor And observing the observation window of the display device; comprising the steps of:
  • S1 the processor outputs a motion control instruction and/or a play control instruction according to a mode selection instruction of the button input;
  • the driving device drives the display device to move according to the corresponding motion action of the mode selection instruction according to the motion control instruction;
  • S3 The display device displays a corresponding video signal according to the play control command.
  • the driving device includes a motor that can be reversed and reversed; in the step S2, the method includes:
  • S2-2 controlling the motor to stop rotating in the second time period (T2) according to the motion control instruction
  • the first direction is a direction toward the observation window
  • the second direction is a direction away from the observation window.
  • the processor outputs the different motion control commands by adjusting the output duty ratio to control the rotational speed of the motor, in the step S2. -1, S2-3
  • the speed of the motor is adjusted according to the corresponding mode of the mode selection command.
  • the mode selection instruction is input through the key.
  • the mode selected by the mode selection instruction includes an automatic control mode and a manual control mode
  • the motion control command is output by operating the button to drive the display device to move in a first direction or a second direction;
  • the processor calls the stored automatic control mode, and outputs the corresponding motion control command to drive the display device to move in a first direction or a second direction.
  • the processor controls the display device to be within the limit position according to the moving speed of the driving device and the distance of the display device Moving; or the processor controls the movement in the first direction or the second direction according to the set time.
  • a timing control step is further included: the processor outputs a stop control signal when the automatic control preset time arrives, and controls the driving device and / or the display device stops working.
  • the processor determines whether the display device is in an extreme position, and when the display device is in an extreme position, outputs a stop command to control The drive unit stops working.
  • the processor determines whether the input of the same same operation button has reached the set time; if so, it is determined to be at the limit position.
  • the driving device is further provided with an extreme position detecting switch connected to the processor, and when the display device reaches the detecting switch position, the processor is The signal of the detection switch is controlled to drive the driving device to move or stop the display device in reverse.
  • the processor determines whether the button has an input, and when it is determined that there is no input, the processor controls the driving device to stop outputting. .
  • the motion control command input through the button includes one or more of a fast forward command, a fast reverse command, a pause command, and a switch command.
  • the play control command includes one or more of a play command, a volume adjustment command, and a menu selection command.
  • the processor is provided with a storage module; the method further includes a memory recovery step of recording a working position of the driving device when the visual training device is stopped, and When the visual training device is restarted, calling the recorded working position, controlling the driving device to move the display device to the stop position; and/or
  • the playing node of the video signal is recorded, and when the visual training device is restarted, the recorded playing node information is called to control to continue playing the video signal from the playing node.
  • the display device includes a first display device and a second display device disposed at a set angle with the first display device;
  • the driving device includes driving the first a first driving device for displaying movement of the device, and a second driving device for driving movement of the second display device; the first driving device and the second driving device driving the first display device and the second display device along V' type trajectory movement;
  • the first driving device controls the movement of the first display device and the second display device in synchronization with the second driving device or separately.
  • the method further includes the step S4: the processor accesses the video signal through one or more of a USB interface, an SD card interface, and a video interface.
  • the video signal is a spot signal, a 2D video signal, and/or a 3D video signal displayed in the display device.
  • the visual training device further includes an audio playback device; the method further comprising controlling the audio playback device to play an audio signal while playing the video signal in step S3;
  • the method further includes a memory recovery step: the processor is provided with a storage module that records a play node of the audio signal when the visual training device is stopped; and calls the recorded when the visual training device is restarted The playback node information of the audio signal continues to play the audio signal from the playback node.
  • the present invention also provides a visual training device including a display device, a driving device that drives the movement of the display device, a processor coupled to the display device and the driving device, a button connected to the processor, and an observation An observation window of the display device;
  • the processor includes a processing module, an automatic mode calling module, a storage module, a driving module, and a playback control module;
  • the storage module is configured to store a motion mode
  • the automatic mode invoking module is connected to the storage module and the processing module, and is configured to return a corresponding motion mode from the storage module to the processing module according to a mode selection instruction processed by the processing module, and the processing is performed by the processing module.
  • the module outputs a motion control command according to the selected motion mode to control the motion of the driving module to drive the driving device to move;
  • the driving module is connected to the driving device and the processing module, and is configured to execute a motion control instruction according to the processing module Driving the driving device to operate;
  • the play control module is connected to the processing module for controlling playback of video and/or audio;
  • the processing module is connected to the button, and is configured to control the automatic mode calling module, the storage module, the driving module, and the playback control module according to an input signal of the button.
  • the command input by the button includes a mode selection instruction, a play control instruction, and a manual control instruction;
  • the processing module controls the automatic mode calling module to call a corresponding motion mode according to the mode selection instruction, or directly controls the driving module according to the manual control instruction;
  • the processing module controls the play control module to perform play control according to the play control command.
  • the visual training device further includes a USB interface, sd connected to the processing module One or more of a card interface and a video interface, wherein the processing module invokes the video and/or audio signals accessed by the USB interface, the sd card interface or the video interface to play according to the playback control instruction.
  • the driving device drives the display device to move according to the selected motion mode according to different motion control commands, so that the movement mode of the display device, such as the moving speed, can be adjusted according to different eye states of the user. , distance, etc., so that the eyes can get different training to improve the training effect, with the advantages of easy to use and adapt to different requirements.
  • FIG. 1 is a schematic block diagram of an embodiment of a visual training device of the present invention
  • FIG. 2 is a flow chart showing an embodiment of a control method of the visual training device of the present invention.
  • the visual training device includes a display device 10, a driving device 20 that drives the movement of the display device 10, and a processor coupled to the display device 10 and the driving device 20. 30.
  • a button 40 connected to the processor 30, and an observation window for viewing the display device 10.
  • the display device 10 is driven by the drive device 20, and the user views the display device 10 through the observation window to perform visual training.
  • the display device 10 and the driving device 20 can be mounted in a housing, and the viewing window is disposed on the open side of the housing to facilitate viewing of the display device 10 by the user through the viewing window.
  • a lens may also be provided on the viewing window to facilitate better viewing of the image on the display device 10.
  • the display device 10 can select a small liquid crystal display, which is driven by the driving device 20 to move in the first direction and the second direction.
  • the first direction and the second direction may be directions close to or away from the observation window, respectively.
  • the driving device 20 includes a motor that can be rotated in the forward and reverse directions, and a transmission mechanism that is driven by the motor, and the display device 10 is driven to move by the transmission mechanism.
  • the transmission mechanism can adopt various transmission mechanisms such as a gear, a rack, a worm wheel, a worm, a screw, and the like.
  • the transmission mechanism of the driving device 20 may further be provided with an extreme position detecting switch.
  • the extreme position detection switch is coupled to the processor 30 for detecting whether the display device 10 has reached its motion limit.
  • the limit position detecting switch can adopt various in-position sensors such as a photoelectric sensor and a position sensor.
  • the limit position detecting switch outputs an in-position signal, and the processor 10 according to the in-position signal.
  • the motor reverse rotation of the driving device 20 is controlled to drive the display device to move in the reverse direction.
  • the display device 10 includes a first display device and a second display device disposed at an angle.
  • the driving device 20 includes a first driving device and a second driving device. The first driving device and the second driving device respectively drive the first display device and the second display device to move. It can be understood that the first driving device and the second driving device can be moved synchronously or controlled by the processor 30 to move separately.
  • the user inputs various commands to control the movement of the display device 10 through the button 40, and the input commands include a mode selection command, a play control command, and a manual control command.
  • the mode selection instruction is used to select a manual mode or an automatic mode;
  • the playback control command is used to select a source of video and/or audio, a play order, a speed, etc.;
  • the manual control command is used to input a manual direct control drive device 20 to drive the display device 10 mobile.
  • the processor 30, as a control center of the entire visual training device, may be disposed in the outer casing or separately disposed in the controller outside the outer casing, including the processing module 31, the automatic mode calling module 32, the storage module 33, the driving module 34, And a playback control module 35 and the like.
  • the storage module 33 is used to control a program, store a motion mode, and the like for the processing module 31 to call.
  • the storage module 33 may also store data such as video signals and/or audio signals that are called by the playback control module 35.
  • the video signal may be a spot signal, a 2D video signal, and/or a 3D video signal displayed in the display device 10.
  • the storage module 33 can be built in the processor 30, or can be one or more separate memories connected to the processor 30.
  • information such as the working position of the driving device 20, and/or the playing node of the video signal may be recorded and stored in the storage module 33.
  • the processor 30 calls the recorded working position and/or the playing node information, etc., and controls the driving device 20 to move the display device 10 to the stop position, and continues to play the video signal from the playing node.
  • the visual training device can further include one or more of a USB interface, an sd card interface, and a video interface connected to the processing module 31.
  • the processing module 31 invokes a USB interface, an sd card interface, or a video according to the playback control command. The video and/or audio data accessed by the interface is played.
  • the automatic mode invoking module 32 is connected to the storage module 33 and the processing module 31 for returning the corresponding motion mode from the storage module 33 to the processing module 31 according to the mode selection instruction processed by the processing module 31, and is processed by the processing module 31 according to the processing module 31.
  • the selected motion mode control drive module 34 operates to drive the drive unit 20 to move.
  • the driving module 34 is connected to the driving device 20 and the processing module 31 for driving the driving device 20 according to the control instruction of the processing module 31;
  • the play control module 35 is connected to the processing module 31 for controlling playback of video and/or audio;
  • the processing module 31 is connected to the button 40 for controlling the operation of the automatic mode calling module 32, the storage module 33, the driving module 34, and the playback control module 35 according to the input signal of the button 40.
  • the control method can be used in the visual training device of the previous embodiment.
  • the method includes the following steps: S1: The processor 30 outputs a motion control command and/or a play control command according to a mode selection command input by the button 40; S2: the drive device 20 drives the display device 10 according to the motion control command according to the mode selection command The motion mode performs motion; S3: The display device 10 displays a corresponding video signal according to the playback control command.
  • the driving device 20 drives the display device 10 according to different motion control commands to move according to the selected motion mode, so that the display device can be adjusted according to different eye states of the user.
  • the way of movement such as moving speed, distance, etc., allows the eyes to get different training to improve the training effect.
  • the input commands include a mode selection instruction, a playback control instruction, a manual control instruction, and the like.
  • the mode selection instruction is used to select a manual mode or an automatic mode;
  • the playback control command is used to select a source of video and/or audio, a play order, a speed, etc.;
  • the manual control command is used to input a manual direct control drive device 20 to drive the display
  • the device 10 moves, and the motion control command input through the button includes one or more of a fast forward command, a fast reverse command, a pause command, and a switch command;
  • the play control command includes one of a play command, a volume adjustment command, and a menu selection command.
  • the processor 30 controls the corresponding device to operate according to the instructions, which will be described later.
  • the processor 30 determines whether the automatic mode or the manual mode is selected. When the selection of the input is determined to be the automatic mode, the processing module 31 returns a corresponding motion mode from the storage module 33 to the processing module 31 according to the mode selection instruction, and is processed by the processing module. 31 controls the driving module 34 to operate according to the selected motion mode, and drives the driving device 20 to move.
  • the user inputs a mode selection command through the button 40 by selecting a menu, and selects an automatic mode or a manual mode.
  • the processor 30 determines that the input selection signal is an automatic mode; then, the user selects according to the selection.
  • the menu selects a desired motion mode from the menu of the automatic mode, and the processor 30 returns a corresponding motion mode from the storage module to the processing module 31 according to the selected motion mode.
  • the selected motion mode can be set as needed.
  • the driving device 20 includes a motor that can be rotated forward and backward, and the first motion mode is a motion mode of forward, stop, and return: preferred, according to motion control
  • the processing module 31 controls the motor to rotate forward in the first time period (T1) to drive the display device 10 to move in the first direction; then, the control motor stops rotating in the second time period (T2); then, the control The motor rotates in the reverse direction in the third time period (T3) to drive the display device 10 to move in a second direction opposite to the first direction; the eye training can be performed by repeating the above actions.
  • the first direction is a direction toward the observation window
  • the second direction is a direction away from the observation window.
  • the first time period T1, the second time period T2, and the third time period T3 can be set to different times as needed. For example, power-on - "control parameter initialization -" reverse operation after about 7 seconds to stop - "run back and forth once, stop for about 6.5 seconds -" forward run for about 3 seconds, stop for about 2.5 seconds - "fast backwards for about 1.5 seconds to The lower part - "wait another 6.5 seconds -” the motor runs forward again for about 3 seconds, stopping for about 1.5 seconds - "fast back to about 1.5 seconds to the lower part, stop for about 6.5 seconds.
  • the rotational speed of the motor can be controlled to control the moving speed, the dwell time, and the like of the display device 10.
  • the motion control command controls the rotational speed of the motor by adjusting the output duty ratio, and in the above steps, the rotational speed of the motor is adjusted according to the corresponding mode of the mode selection command.
  • the speed of the motor is adjustable from 1-6 speeds:
  • Period about 28.2 ms (high level about 10.6 ms, low level about 17.6 ms) where the phase sequence conversion wait time is about 3.4 ms.
  • 2nd gear Cycle: about 26ms (high level about 9.6ms, low level about 16.4ms)
  • the waiting time for the transformation of the phase sequence is about 3.2 ms.
  • Cycle about 23.8ms (high level about 8.8ms, low level about 15ms)
  • the waiting time for the transformation of the phase sequence is about 2.8 ms.
  • 4th gear Cycle: about 22ms (high level about 8.2ms, low level about 13.8ms)
  • the waiting time for the transformation of the phase sequence is about 2.6 ms.
  • 5th gear Cycle: about 19.8ms (high level is about 7.4ms, low level is about 12.4ms)
  • the waiting time for the transformation of the phase sequence is about 2.4 ms.
  • 6th gear Cycle: about 17.8ms (high level is about 6.6ms, low level is about 11.2ms)
  • the waiting time for the phase sequence transformation is about 2.2 ms.
  • the user can input commands through the button 40 to select different motor speeds, thereby obtaining different training effects.
  • the processor 30 controls the display device 10 to move within the limit position according to the moving speed of the driving device 20 and the distance of the display device 10; or, the processor 30 controls the first direction or the first according to the set time. The two directions move to ensure that the display device 10 moves between its set extreme positions.
  • the visual training device may further set a timer, and the user sets a preset time for the timer to work by the timing control setting step, and the processor outputs a stop control signal when the automatic control preset time arrives, and controls the driving.
  • Device 20 and/or display device 10 cease to function.
  • the user can also output the motion control command by operating the button 40 in the manual control mode by the manual control mode selected by the mode selection command to drive the display device 10 to move in the first direction or the second direction.
  • the processor 30 determines whether the display device 10 is in the extreme position, and when the display device 10 is in the extreme position, outputs a stop command to control the drive device 20 to stop operating. In the present embodiment, the processor 30 determines whether the input of the same same operation button 40 has reached the set time; if so, it is determined to be at the limit position. When it is judged that the display device 10 is in the extreme position, the processor 30 controls the motor to rotate for a certain time and then stops rotating to avoid damage of the motor.
  • the processor 30 controls the driving device 20 to drive the display device 10 against the signal of the detecting switch. Move to, or stop.
  • the processor 30 determines whether the button 40 has an input. When it is determined that there is no input, the processor 30 controls the driving device 20 to stop outputting, so that the display device 10 can be left at an arbitrary position.
  • the processor 30 may further be provided with a storage module.
  • the control method further includes a memory recovery step of recording the working position of the driving device 20 when the visual training device is stopped, and calling the recorded working position when the visual training device is restarted, and controlling the driving device 20 to drive the display device 10 to move to Stop position; and/or
  • the playing node of the video signal is recorded, and when the visual training device is restarted, the recorded playing node information is called to control to continue playing the video signal from the playing node;
  • the playing node of the audio signal is recorded; and when the visual training device is restarted, the playing node information of the recorded audio signal is called, and the audio signal is continuously played from the playing node.
  • the display device 10 of the visual training device includes a first display device and a second display device.
  • the first display device and the second display device are set at a set angle.
  • the driving device 20 includes a first driving device that drives the movement of the first display device, and a second driving device that drives the movement of the second display device.
  • the first driving device and the second driving device drive the first display device and the second display device to move along the 'V'-type trajectory, that is, when the first display device and the second display device move toward the user, both The distance gradually decreases; when the first display device and the second display device move away from the user, the distance between the two gradually increases.
  • the movements of the first driving device and the second driving device may be synchronous or asynchronous, thereby driving the first display device and the second display device to move toward or away from the user in synchronization, or asynchronously moving closer to each other. Or move away from the user.
  • the display device 10 is controlled by the processor 30 to play a corresponding video signal according to the playback control command; while the video signal is being played, the audio playback device is controlled to play the audio signal.
  • the video signal and the audio signal can be accessed through one or more of a USB interface, an SD card interface, and a network interface, and are stored in the visual training device.
  • the user selects a corresponding video signal and an audio signal by selecting. can.
  • the video signal and the audio signal can also be directly accessed through the USB interface, the SD card interface, and the video interface, and the processor 30 directly calls the USB interface, the SD card interface, the video signal and the audio signal accessed by the video interface.

Abstract

L'invention concerne un dispositif d'entraînement visuel comprenant un dispositif d'affichage (10), un dispositif d'entraînement (20) entraînant le dispositif d'affichage (10), un processeur (30) connecté au dispositif d'affichage (10) et au dispositif d'entraînement (20), un bouton (40) connecté au processeur (30), ainsi qu'une fenêtre d'observation permettant d'observer le dispositif d'affichage (10). Le procédé de commande de dispositif d'entraînement visuel comprend les étapes suivantes : S1 : selon une instruction de sélection de mode saisie par le bouton (40), le processeur (30) émet en sortie une instruction de commande de mouvement et/ou une instruction de commande de lecture; S2 : selon l'instruction de commande de mouvement, le dispositif d'entraînement (20) entraîne le dispositif d'affichage (10) pour qu'il se déplace en fonction des mouvements correspondant à l'instruction de sélection de mode; et/ou S3 : selon l'instruction de commande de lecture, le dispositif d'affichage (10) affiche un signal vidéo correspondant. Le procédé de commande selon l'invention permet, en fonction des différents états de l'oeil d'un utilisateur, de régler le mouvement du dispositif d'affichage (10) afin d'obtenir différents types d'entraînement et d'améliorer l'efficacité d'entraînement. Ce procédé présente également les avantages de la facilité de mise en oeuvre et de l'adaptabilité à différentes exigences.
PCT/CN2014/091808 2014-11-20 2014-11-20 Dispositif d'entraînement visuel et procédé de commande de ce dispositif WO2016078059A1 (fr)

Priority Applications (2)

Application Number Priority Date Filing Date Title
PCT/CN2014/091808 WO2016078059A1 (fr) 2014-11-20 2014-11-20 Dispositif d'entraînement visuel et procédé de commande de ce dispositif
CN201480020938.8A CN105517626B (zh) 2014-11-20 2014-11-20 视觉训练装置的控制方法及该视觉训练装置

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/CN2014/091808 WO2016078059A1 (fr) 2014-11-20 2014-11-20 Dispositif d'entraînement visuel et procédé de commande de ce dispositif

Publications (1)

Publication Number Publication Date
WO2016078059A1 true WO2016078059A1 (fr) 2016-05-26

Family

ID=55724951

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2014/091808 WO2016078059A1 (fr) 2014-11-20 2014-11-20 Dispositif d'entraînement visuel et procédé de commande de ce dispositif

Country Status (2)

Country Link
CN (1) CN105517626B (fr)
WO (1) WO2016078059A1 (fr)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110496019A (zh) * 2019-09-16 2019-11-26 姬海民 便携式视力训练仪及视力训练方法

Families Citing this family (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105997450A (zh) * 2016-07-07 2016-10-12 马英彬 矫正视力的一种方法及相应的设备
CN108143596A (zh) * 2016-12-05 2018-06-12 遵义市劲林视力保健咨询有限公司 一种头戴式视觉训练仪、系统及训练方法
CN107613004A (zh) * 2017-09-19 2018-01-19 无锡宏治视光科技有限公司 一种动态视功能训练系统
CN111939012A (zh) * 2020-07-24 2020-11-17 光朗(海南)生物科技有限责任公司 一种视觉训练方法和装置

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2453878Y (zh) * 2000-10-13 2001-10-17 余鹏 视觉生理康复仪
US6974082B2 (en) * 2002-07-15 2005-12-13 Monode Marking Products, Inc. Hardware integration system
CN101843539A (zh) * 2009-03-27 2010-09-29 文齐凤 一种视力矫正装置和方法
CN203564407U (zh) * 2013-09-22 2014-04-30 西安华亚电子有限责任公司 多功能综合弱视治疗仪
CN104000711A (zh) * 2014-05-26 2014-08-27 沈雷 一种眼睛保健运动器
CN203815708U (zh) * 2014-03-06 2014-09-10 倪国庆 眼罩装置及视觉治疗仪

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2507442Y (zh) * 2001-05-15 2002-08-28 上海嘉美光学有限公司 一种视力保健仪
CN1853555A (zh) * 2005-04-20 2006-11-01 赵进捷 视力检测及矫正方法
CN101836931B (zh) * 2009-03-17 2013-09-11 陆健 视力训练镜
CN102467841A (zh) * 2010-11-05 2012-05-23 陈宏洋 全脑开发训练机

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2453878Y (zh) * 2000-10-13 2001-10-17 余鹏 视觉生理康复仪
US6974082B2 (en) * 2002-07-15 2005-12-13 Monode Marking Products, Inc. Hardware integration system
CN101843539A (zh) * 2009-03-27 2010-09-29 文齐凤 一种视力矫正装置和方法
CN203564407U (zh) * 2013-09-22 2014-04-30 西安华亚电子有限责任公司 多功能综合弱视治疗仪
CN203815708U (zh) * 2014-03-06 2014-09-10 倪国庆 眼罩装置及视觉治疗仪
CN104000711A (zh) * 2014-05-26 2014-08-27 沈雷 一种眼睛保健运动器

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110496019A (zh) * 2019-09-16 2019-11-26 姬海民 便携式视力训练仪及视力训练方法
CN110496019B (zh) * 2019-09-16 2024-03-22 姬海民 便携式视力训练仪及视力训练方法

Also Published As

Publication number Publication date
CN105517626B (zh) 2018-09-14
CN105517626A (zh) 2016-04-20

Similar Documents

Publication Publication Date Title
WO2016078059A1 (fr) Dispositif d'entraînement visuel et procédé de commande de ce dispositif
CN103442168B (zh) 控制终端摄像头的外部设备及其系统和方法
WO2016176959A1 (fr) Procédé et système de commande multi-écran pour écran d'affichage faisant appel à la technologie de l'oculométrie
CN104440925B (zh) 一种宠物型陪护机器人及系统
CN108942973B (zh) 具有温湿度播报功能的科技馆迎宾机器人头颈部装置
WO2016011895A1 (fr) Équipement de commande et système d'endoscope à capsule
WO2018040443A1 (fr) Dispositif et procédé de capture d'image
CN204248895U (zh) 一种宠物型陪护机器人及系统
WO2020063306A1 (fr) Dispositif de surveillance de prise de vues et système de suspension à cardan comprenant celui-ci
WO2018049842A1 (fr) Système de régulation du sommeil, procédé de régulation pour le dispositif de sommeil et dispositif de traitement
WO2015081554A1 (fr) Circuit de commande d'étui à cigarette, étui à cigarette électronique et son procédé de détection d'humidex
CN111711882A (zh) 一种无线耳机系统的控制方法、装置及充电盒
CN2805688Y (zh) 具有自动、手动增益及白平衡功能的内窥镜摄像机
WO2021244395A1 (fr) Procédé et système de commande de capsule de vibration
WO2016190674A1 (fr) Perche à selfie
CN206115754U (zh) 一种可移动的计算机互动教学装置
WO2020085821A1 (fr) Terminal intelligent connecté à un visiocasque et procédé de commande associé
CN106956279A (zh) 一种多功能教学机器人
CN205383095U (zh) 一种智能电风扇
CN105604971A (zh) 智能风扇
CN111927812A (zh) 一种具有看护功能的风扇
CN207166614U (zh) 医用内窥镜摄像系统
CN206601727U (zh) 智能机器人的待机状态切换装置
WO2016078058A1 (fr) Dispositif d'apprentissage visuel et procédé d'apprentissage
CN110609461A (zh) 一种气味反馈唤醒装置

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 14906402

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

32PN Ep: public notification in the ep bulletin as address of the adressee cannot be established

Free format text: NOTING OF LOSS OF RIGHTS PURSUANT TO RULE 112(1) EPC (EPO FORM 1205A DATED 23.10.2017)

122 Ep: pct application non-entry in european phase

Ref document number: 14906402

Country of ref document: EP

Kind code of ref document: A1