CN104952290A - Multi-dimensional visual eye training guiding instrument - Google Patents
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- CN104952290A CN104952290A CN201510359679.8A CN201510359679A CN104952290A CN 104952290 A CN104952290 A CN 104952290A CN 201510359679 A CN201510359679 A CN 201510359679A CN 104952290 A CN104952290 A CN 104952290A
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Abstract
The invention provides a multi-dimensional visual eye training guiding instrument. The guiding instrument comprises a processor module, a far and near point visual motion module, a left and right round line visual motion module, a fifth Bluetooth module, a multi-directional visual motion module and a light and shade alternation visual motion module, wherein the processor module is connected with the far and near point visual motion module, the left and right round line visual motion module, the multi-directional visual motion module and the light and shade alternation visual motion module respectively through the fifth Bluetooth module; the far and near point visual motion module, the left and right round line visual motion module, the multi-directional visual motion module and the light and shade alternation visual motion module are arranged before trainees. With the adoption of the guiding instrument, unattended multi-dimensional visual training guidance is realized, no professional instructor is required to be hired, a lot of costs can be saved, and the training time is not limited; meanwhile, the guiding instrument contributes to the improvement on the learning passion of children and the improvement on the overall training effect of the trainees.
Description
Technical field
The present invention relates to eye training field, particularly a kind of multidimensional vision eye training guided ware.
Background technology
Along with the development of science and technology, eye exercises experienced by by rubbing the transformation of acupuncture point to Computer game, Computer game is a kind of novelty training method in visual exercise field, at home and abroad widely use, and the experiment proved that respond well, what it was advocated is perspective related preventive theory.When carrying out the training of multidimensional vision eye, by both hands forefinger hold up ceaselessly forwards, backwards up and down direction stretch out, or singlehanded picture before eyes 8 word, and eyes stare at finger all the time, along with the motion adjustment sight of finger, pass through eye movement, the spasm of accommodation, make ciliary muscles relax, dissolve fatigue, recover twenty-twenty vision.The audient mainly children of multidimensional vision eye training, and existing form of teaching is all given some on the spot guidance by the personnel accepting professional training, but there is following defect in this way: 1, need engagement given some on the spot guidance by the personnel of professional training, not only will spend certain expense, and the time of training is also more limited; 2, the learning ability of children owing to being trained is uneven, and therefore overall training effect neither be very desirable.
Summary of the invention
The technical problem to be solved in the present invention, be to provide a kind of multidimensional vision eye to train guided ware, the unmanned being realized the training of multidimensional vision eye by this guided ware is guided, and improves the training effect of trainer.
The present invention is achieved in that a kind of multidimensional vision eye training guided ware, comprises a processor module, a far and near some visual movement module, about one circle line visual movement module, a multi-directional visual motion module, a power module, one the 5th bluetooth module and a light and shade alternating vision motion module; Described processor module and the 5th bluetooth module are attached to described power module; Described processor module is connected with described distance point visual movement module, left and right circle line visual movement module, multi-directional visual motion module and light and shade alternating vision motion module respectively by described 5th bluetooth module; Described distance point visual movement module, described left and right circle line visual movement module, multi-directional visual motion module and light and shade alternating vision motion module are all arranged on the front of trainer.
Further, described distance point visual movement module comprises one first bluetooth module, one first lithium power supply module, one first kernel control chip, a plurality of first LED drive chip and one first LED panel; Connected by described first bluetooth module and the 5th bluetooth module between described first kernel control chip and processor module; Described first lithium power supply module connects with described first kernel control chip; Often described first LED drive chip connects with described first kernel control chip and the first LED panel respectively; Described first LED panel is horizontally set on the dead ahead of trainer, and height is equal with the sight line of trainer; Described first LED panel arranges LED from away from trainer to being placed with plural number successively near trainer, and drives the LED of described first LED panel light by rows or extinguish by described first LED drive chip.
Further, described left and right circle line visual movement module comprises one second bluetooth module, one second lithium power supply module, one second kernel control chip, a plurality of second LED drive chip and one second LED panel; Connected by described second bluetooth module and the 5th bluetooth module between described second kernel control chip and processor module; Described second lithium power supply module connects with described second kernel control chip; Often described second LED drive chip connects with described second kernel control chip and the second LED panel respectively; Described second LED panel is vertically arranged on the dead ahead of trainer, and the LED of this second LED panel is arranged into " ∞ " character form structure, and drives the LED of described second LED panel light along " ∞ " zag trajectory or extinguish by described second LED drive chip.
Further, described multi-directional visual motion module comprises one the 3rd bluetooth module, one the 3rd lithium power supply module, one the 3rd kernel control chip, a plurality of 3rd LED drive chip and one the 3rd LED panel; Described 3rd is connected by described 3rd bluetooth module and the 5th bluetooth module between kernel control chip and processor module; Described 3rd lithium power supply module connects with described 3rd kernel control chip; Often described 3rd LED drive chip connects with described 3rd kernel control chip and the 3rd LED panel respectively; Described 3rd LED panel is vertically arranged on the dead ahead of trainer, and the LED of the 3rd LED panel is arranged into " X " character form structure, and drives the LED of described 3rd LED panel light along " X " zag trajectory or extinguish by described 3rd LED drive chip.
Further, described light and shade alternating vision motion module comprises a hummer, one the 4th bluetooth module, one the 4th lithium power supply module, one the 4th kernel control chip, a plurality of 4th LED drive chip and one the 4th LED panel; Described 4th is connected by described 4th bluetooth module and the 5th bluetooth module between kernel control chip and processor module; Described 4th lithium power supply module connects with described 4th kernel control chip; Often described 4th LED drive chip connects with described 4th kernel control chip and the 4th LED panel respectively; Described hummer connects with the 4th kernel control chip; Described 4th LED panel is vertically arranged on the dead ahead of trainer, and the LED of the 4th LED panel arranges in a row, and drives the LED of described 4th LED panel in a row light or extinguish by described 3rd LED drive chip.
Further, often described first kernel control chip, the second kernel control chip, the 3rd kernel control chip and the 4th kernel control chip are STM8S003F3P6 chip, often described first LED drive chip, the second LED drive chip, the 3rd LED drive chip and the 4th LED drive chip are CD4017LED driving chip, and often described first LED drive chip, the second LED drive chip, the 3rd LED drive chip and the 4th LED drive chip all drive 8 groups of LED, often group is provided with 3 LED.
Further, described first bluetooth module, the second bluetooth module, the 3rd bluetooth module, the 4th bluetooth module and the 5th bluetooth module are Hc06 bluetooth module, and master chip all adopts bc417 chip, and communication distance is 8 meters.
Further, described processor module is STM32C8T6 processor, and the clock frequency of this STM32C8T6 processor is 72MHz, and the kernel of this STM32C8T6 processor is ARM Cortex-M3.
Tool of the present invention has the following advantages: 1, achieving unattended Computer game and guide, without the need to engaging specialized guidance personnel, not only can save a lot of expense, and being also no longer restricted the training time; 2, by processor module accurately control LED light or extinguish, and can along the track loopy moving of setting, make the effect of display vivid, contribute to the learning enthusiasm improving children, and can see in learning process while learn, conveniently can correct a mistake promptly, improve overall result of training.
Accompanying drawing explanation
The present invention is further illustrated in conjunction with the embodiments with reference to the accompanying drawings.
Fig. 1 is the principle assumption diagram of multidimensional vision eye of the present invention training guided ware.
Fig. 2 a is the principle assumption diagram of far and near some visual movement module in the present invention.
Fig. 2 b is the LED layout viewing of the first LED panel in far and near some visual movement module.
Fig. 3 a is the principle assumption diagram of left and right circle line visual movement module in the present invention.
Fig. 3 b is the LED layout viewing of the second LED panel in the circle line visual movement module of left and right.
Fig. 4 a is the principle assumption diagram of multi-directional visual motion module in the present invention.
Fig. 4 b is the LED layout viewing of the 3rd LED panel in multi-directional visual motion module.
Fig. 5 a is the principle assumption diagram of light and shade alternating vision motion module in the present invention.
Fig. 5 b is the LED layout viewing of the 4th LED panel in light and shade alternating vision motion module.
Note: each in figure
all represent one group of LED.
Embodiment
Please refer to shown in Fig. 1, a kind of multidimensional vision eye training guided ware, comprises a processor module, a far and near some visual movement module, about one circle line visual movement module, a multi-directional visual motion module, a power module, one the 5th bluetooth module and a light and shade alternating vision motion module; Described processor module and the 5th bluetooth module are attached to described power module, to be powered by this power module; Described processor module is connected with described distance point visual movement module, left and right circle line visual movement module, multi-directional visual motion module and light and shade alternating vision motion module respectively by described 5th bluetooth module; Described distance point visual movement module, described left and right circle line visual movement module, multi-directional visual motion module and light and shade alternating vision motion module are all arranged on the front of trainer.Described processor module is STM32C8T6 processor, and the clock frequency of this STM32C8T6 processor is 72MHz, and the kernel of this STM32C8T6 processor is ARM Cortex-M3.Operationally, described processor module puts visual movement module, left and right circle line visual movement module, multi-directional visual motion module and the instruction of light and shade alternating vision motion module, to realize corresponding visual movement function by the 5th bluetooth module respectively to described distance.
Please refer to shown in Fig. 2 a and Fig. 2 b, described distance point visual movement module comprises one first bluetooth module, one first lithium power supply module, one first kernel control chip, a plurality of first LED drive chip and one first LED panel; Connected by described first bluetooth module and the 5th bluetooth module between described first kernel control chip and processor module; Described first lithium power supply module connects with described first kernel control chip, to be powered by this first lithium power supply module; Often described first LED drive chip connects with described first kernel control chip and the first LED panel respectively; Described first LED panel is horizontally set on the dead ahead of trainer, and height is equal with the sight line of trainer; Described first LED panel arranges LED from away from trainer to being placed with plural number successively near trainer, in order to reach training effect, usually need to arrange the above LED of 4 rows, and the distance of front 3 rows and trainer is within 1.5 meters, and the LED of described first LED panel is driven to light by rows or extinguish by described first LED drive chip.Operationally, first bluetooth module sends the instruction of reception to first kernel control chip, first control chip just controls the first LED drive chip and drives the LED in the first LED panel to light to circulating by rows away from trainer near trainer or near trainer from away from trainer, and only having a row LED to be light yellow at synchronization, other row extinguishes.When exact arrangement the first LED panel, in order to reduce adjacent group LED, interference being caused to adjacent user, all keeping a determining deviation between 2 groups of LED adjacent on each row LED, usually 0.8 ~ 1.2 meter being provided with 1 group of LED.
Please refer to shown in Fig. 3 a and Fig. 3 b, described left and right circle line visual movement module comprises one second bluetooth module, one second lithium power supply module, one second kernel control chip, a plurality of second LED drive chip and one second LED panel; Connected by described second bluetooth module and the 5th bluetooth module between described second kernel control chip and processor module; Described second lithium power supply module connects with described second kernel control chip, to be powered by this second lithium power supply module; Often described second LED drive chip connects with described second kernel control chip and the second LED panel respectively; Described second LED panel is vertically arranged on the dead ahead of trainer, and the LED of this second LED panel is arranged into " ∞ " character form structure, and drives the LED of described second LED panel light along " ∞ " zag trajectory or extinguish by described second LED drive chip.Operationally, second bluetooth module sends the instruction of reception to second kernel control chip, second control chip just controls the second LED drive chip and drives the LED in the second LED panel to light along the circulation of " ∞ " zag trajectory, and only having one group of LED to be light yellow at synchronization, other is all extinguish.In order to reach training goal, before training, needing the position of adjustment second LED panel, to enable the sight line of trainer cover " ∞ " zag trajectory in the second LED panel, and the sight line of trainer can be allowed to move to the direction of departing from direct-view as far as possible.
Please refer to shown in Fig. 4 a and Fig. 4 b, described multi-directional visual motion module comprises one the 3rd bluetooth module, one the 3rd lithium power supply module, one the 3rd kernel control chip, a plurality of 3rd LED drive chip and one the 3rd LED panel; Described 3rd is connected by described 3rd bluetooth module and the 5th bluetooth module between kernel control chip and processor module; Described 3rd lithium power supply module connects with described 3rd kernel control chip, to be powered by the 3rd lithium power supply module; Often described 3rd LED drive chip connects with described 3rd kernel control chip and the 3rd LED panel respectively; Described 3rd LED panel is vertically arranged on the dead ahead of trainer, and the LED of the 3rd LED panel is arranged into " X " character form structure, and drives the LED of described 3rd LED panel light along " X " zag trajectory or extinguish by described 3rd LED drive chip.Operationally, 3rd bluetooth module sends the instruction of reception to the 3rd kernel control chip, 3rd control chip just controls the 3rd LED drive chip and drives the LED in the 3rd LED panel to light along the circulation of " X " zag trajectory, and only having one group of LED to be light yellow at synchronization, other is all extinguish.Along " X " zag trajectory circulation time, usually first light from centre, then circulate successively the bright past respectively to upper left, upper right, lower-left, lower right (certainly, the order of above four direction can be exchanged arbitrarily).In order to reach training goal, before training, needing the position of adjustment the 3rd LED panel, to enable the sight line of trainer cover " X " zag trajectory in the 3rd LED panel, and the sight line of trainer can be allowed to move to the direction of departing from direct-view as far as possible.
Please refer to shown in Fig. 5 a and Fig. 5 b, described light and shade alternating vision motion module comprises a hummer, one the 4th bluetooth module, one the 4th lithium power supply module, one the 4th kernel control chip, a plurality of 4th LED drive chip and one the 4th LED panel; Described 4th is connected by described 4th bluetooth module and the 5th bluetooth module between kernel control chip and processor module; Described 4th lithium power supply module connects with described 4th kernel control chip, to be powered by the 4th lithium power supply module; Often described 4th LED drive chip connects with described 4th kernel control chip and the 4th LED panel respectively; Described hummer connects with the 4th kernel control chip; Described 4th LED panel is vertically arranged on the dead ahead of trainer, and the LED of the 4th LED panel arranges in a row, and drives the LED of described 4th LED panel in a row light or extinguish by described 3rd LED drive chip.Operationally, 4th bluetooth module sends the instruction of reception to the 4th kernel control chip, 4th control chip just controls the 4th LED drive chip and drives the LED of the 4th LED panel light by the cycle of setting or extinguish, and whenever LED from extinguishing change to light time, hummer just rings once, opens eyes to remind trainer.When actual training, trainer will stand in usually from the position away from the 4th LED panel 3 meters, and requires that trainer turns one's attention to that group LED in dead ahead, closes one's eyes when LED extinguishes, and imagination LED still light yellow at a distance, namely to go to observe by the imagination; Open eyes when hummer sounds, LED lights simultaneously, and trainer needs this process of repetition training to reach training effect.
Note: in Fig. 2 b, Fig. 3 b, Fig. 4 b and Fig. 5 b, each
all represent one group of LED, in use, each group LED all adopts the array mode of three green LED+optical filters, and require luminance adaptation, wherein optical filter is intended to filtering has injury blue color spectrum to eyes.
Wherein, often described first kernel control chip, the second kernel control chip, the 3rd kernel control chip and the 4th kernel control chip are STM8S003F3P6 chip, often described first LED drive chip, the second LED drive chip, the 3rd LED drive chip and the 4th LED drive chip are CD4017LED driving chip, and often described first LED drive chip, the second LED drive chip, the 3rd LED drive chip and the 4th LED drive chip all drive 8 groups of LED, often group is provided with 3 LED.Described first bluetooth module, the second bluetooth module, the 3rd bluetooth module, the 4th bluetooth module and the 5th bluetooth module are Hc06 bluetooth module, and master chip all adopts bc417 chip, and communication distance is 8 meters.Described first lithium power supply module, the second lithium power supply module, the 3rd lithium power supply module and the 4th lithium power supply module are 18650 lithium power supply modules.
Principle of work of the present invention is as follows:
When carrying out far and near visual movement training, processor module sends work order to the first kernel control chip of distance point visual movement module, after first kernel control chip receives work order, just controlling the first LED drive chip drives the LED of the first LED panel to light to circulating by rows away from trainer from away from trainer near trainer or near trainer, and need guarantee that synchronization only has a row LED to be light yellow, the LED that trainer only needs eyes to keep a close watch on wherein to light also carries out moving (when training with this LED lighted, each trainer only needs that the group LED keeping a close watch on oneself front, and mobile by rows with this group LED), far and near vision movement effects can be realized,
When carrying out left and right circle line visual movement training, the second kernel control chip that processor module justifies line visual movement module to the left and right sends work order, after second kernel control chip receives work order, just controlling the second LED drive chip drives the LED of the second LED panel to light along the circulation of " ∞ " zag trajectory, and need guarantee that synchronization only has one group of LED to be light yellow, the LED that trainer only needs eyes to keep a close watch on wherein to light also moves along " ∞ " zag trajectory with this LED lighted, and can realize left and right circle line visual movement effect;
When carrying out multi-directional visual motion training, processor module sends work order to the 3rd kernel control chip of multi-directional visual motion module, after 3rd kernel control chip receives work order, just controlling the 3rd LED drive chip drives the LED of the 3rd LED panel to light along the circulation of " X " zag trajectory, and need guarantee that synchronization only has one group of LED to be light yellow, the LED that trainer only needs eyes to keep a close watch on wherein to light also moves along " X " zag trajectory with this LED lighted, and can realize multi-directional visual movement effects;
When carrying out light and shade alternating vision motion training, processor module sends work order to the 4th kernel control chip of light and shade alternating vision motion module, after 4th kernel control chip receives work order, just controlling the 4th LED drive chip drives the LED of the 4th LED panel light by the cycle of setting and extinguish, and whenever LED from extinguishing change to light time, hummer just rings once, trainer only needs to open eyes when LED lights, close one's eyes when LED extinguishes, light and shade alternating vision movement effects can be realized.
In a word, advantage of the present invention is as follows: 1, achieving unattended Computer game and guide, without the need to engaging specialized guidance personnel, not only can save a lot of expense, and being also no longer restricted the training time; 2, by processor module accurately control LED light or extinguish, and can along the track loopy moving of setting, make the effect of display vivid, contribute to the learning enthusiasm improving children, and can see in learning process while learn, conveniently can correct a mistake promptly, improve overall result of training.
Although the foregoing describe the specific embodiment of the present invention; but be familiar with those skilled in the art to be to be understood that; specific embodiment described by us is illustrative; instead of for the restriction to scope of the present invention; those of ordinary skill in the art, in the modification of the equivalence done according to spirit of the present invention and change, should be encompassed in scope that claim of the present invention protects.
Claims (8)
1. a multidimensional vision eye training guided ware, is characterized in that: comprise a processor module, a far and near some visual movement module, about one circle line visual movement module, a multi-directional visual motion module, a power module, one the 5th bluetooth module and a light and shade alternating vision motion module; Described processor module and the 5th bluetooth module are attached to described power module; Described processor module is connected with described distance point visual movement module, left and right circle line visual movement module, multi-directional visual motion module and light and shade alternating vision motion module respectively by described 5th bluetooth module; Described distance point visual movement module, described left and right circle line visual movement module, multi-directional visual motion module and light and shade alternating vision motion module are all arranged on the front of trainer.
2. a kind of multidimensional vision eye training guided ware according to claim 1, is characterized in that: described distance point visual movement module comprises one first bluetooth module, one first lithium power supply module, one first kernel control chip, a plurality of first LED drive chip and one first LED panel; Connected by described first bluetooth module and the 5th bluetooth module between described first kernel control chip and processor module; Described first lithium power supply module connects with described first kernel control chip; Often described first LED drive chip connects with described first kernel control chip and the first LED panel respectively; Described first LED panel is horizontally set on the dead ahead of trainer, and height is equal with the sight line of trainer; Described first LED panel arranges LED from away from trainer to being placed with plural number successively near trainer, and drives the LED of described first LED panel light by rows or extinguish by described first LED drive chip.
3. a kind of multidimensional vision eye training guided ware according to claim 2, is characterized in that: described left and right circle line visual movement module comprises one second bluetooth module, one second lithium power supply module, one second kernel control chip, a plurality of second LED drive chip and one second LED panel; Connected by described second bluetooth module and the 5th bluetooth module between described second kernel control chip and processor module; Described second lithium power supply module connects with described second kernel control chip; Often described second LED drive chip connects with described second kernel control chip and the second LED panel respectively; Described second LED panel is vertically arranged on the dead ahead of trainer, and the LED of this second LED panel is arranged into " ∞ " character form structure, and drives the LED of described second LED panel light along " ∞ " zag trajectory or extinguish by described second LED drive chip.
4. a kind of multidimensional vision eye training guided ware according to claim 3, is characterized in that: described multi-directional visual motion module comprises one the 3rd bluetooth module, one the 3rd lithium power supply module, one the 3rd kernel control chip, a plurality of 3rd LED drive chip and one the 3rd LED panel; Described 3rd is connected by described 3rd bluetooth module and the 5th bluetooth module between kernel control chip and processor module; Described 3rd lithium power supply module connects with described 3rd kernel control chip; Often described 3rd LED drive chip connects with described 3rd kernel control chip and the 3rd LED panel respectively; Described 3rd LED panel is vertically arranged on the dead ahead of trainer, and the LED of the 3rd LED panel is arranged into " X " character form structure, and drives the LED of described 3rd LED panel light along " X " zag trajectory or extinguish by described 3rd LED drive chip.
5. a kind of multidimensional vision eye training guided ware according to claim 4, is characterized in that: described light and shade alternating vision motion module comprises a hummer, one the 4th bluetooth module, one the 4th lithium power supply module, one the 4th kernel control chip, a plurality of 4th LED drive chip and one the 4th LED panel; Described 4th is connected by described 4th bluetooth module and the 5th bluetooth module between kernel control chip and processor module; Described 4th lithium power supply module connects with described 4th kernel control chip; Often described 4th LED drive chip connects with described 4th kernel control chip and the 4th LED panel respectively; Described hummer connects with the 4th kernel control chip; Described 4th LED panel is vertically arranged on the dead ahead of trainer, and the LED of the 4th LED panel arranges in a row, and drives the LED of described 4th LED panel in a row light or extinguish by described 3rd LED drive chip.
6. a kind of multidimensional vision eye training guided ware according to claim 5, it is characterized in that: often described first kernel control chip, second kernel control chip, 3rd kernel control chip and the 4th kernel control chip are STM8S003F3P6 chip, often described first LED drive chip, second LED drive chip, 3rd LED drive chip and the 4th LED drive chip are CD4017LED driving chip, and every described first LED drive chip, second LED drive chip, 3rd LED drive chip and the 4th LED drive chip all drive 8 groups of LED, often group is provided with 3 LED.
7. a kind of multidimensional vision eye training guided ware according to claim 5, it is characterized in that: described first bluetooth module, the second bluetooth module, the 3rd bluetooth module, the 4th bluetooth module and the 5th bluetooth module are Hc06 bluetooth module, master chip all adopts bc417 chip, and communication distance is 8 meters.
8. a kind of multidimensional vision eye training guided ware according to claim 1, it is characterized in that: described processor module is STM32C8T6 processor, the clock frequency of this STM32C8T6 processor is 72MHz, and the kernel of this STM32C8T6 processor is ARM Cortex-M3.
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107452251A (en) * | 2017-07-12 | 2017-12-08 | 李威 | One kind widens method and device depending on width |
Citations (7)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN101084858A (en) * | 2006-11-17 | 2007-12-12 | 北京嘉铖视欣近视防治研究中心 | Space vision-training system and method |
CN201248827Y (en) * | 2008-04-07 | 2009-06-03 | 孙沛文 | Vision training device |
CN101574286A (en) * | 2008-05-08 | 2009-11-11 | 孙沛文 | Visual training device and method |
KR20130122601A (en) * | 2013-10-23 | 2013-11-07 | 유남구 | Congnitive training methode of eyes using glasses and the same apparatus |
CN203898667U (en) * | 2013-11-22 | 2014-10-29 | 郑万群 | Eye muscle exercise instrument with movable viewpoints |
FR3007726A1 (en) * | 2013-07-01 | 2015-01-02 | El Hadj Mohamed Ait | EQUIPMENT SECURING THE DOCK AND TRAMWAY, METRO OR TRAIN TRAFFIC |
CN204246451U (en) * | 2014-11-05 | 2015-04-08 | 陈信义 | Visual training equipment |
-
2015
- 2015-06-26 CN CN201510359679.8A patent/CN104952290A/en active Pending
Patent Citations (7)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN101084858A (en) * | 2006-11-17 | 2007-12-12 | 北京嘉铖视欣近视防治研究中心 | Space vision-training system and method |
CN201248827Y (en) * | 2008-04-07 | 2009-06-03 | 孙沛文 | Vision training device |
CN101574286A (en) * | 2008-05-08 | 2009-11-11 | 孙沛文 | Visual training device and method |
FR3007726A1 (en) * | 2013-07-01 | 2015-01-02 | El Hadj Mohamed Ait | EQUIPMENT SECURING THE DOCK AND TRAMWAY, METRO OR TRAIN TRAFFIC |
KR20130122601A (en) * | 2013-10-23 | 2013-11-07 | 유남구 | Congnitive training methode of eyes using glasses and the same apparatus |
CN203898667U (en) * | 2013-11-22 | 2014-10-29 | 郑万群 | Eye muscle exercise instrument with movable viewpoints |
CN204246451U (en) * | 2014-11-05 | 2015-04-08 | 陈信义 | Visual training equipment |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107452251A (en) * | 2017-07-12 | 2017-12-08 | 李威 | One kind widens method and device depending on width |
CN107452251B (en) * | 2017-07-12 | 2020-08-25 | 李威 | Method and device for widening view |
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Application publication date: 20150930 |