CN204840165U - Function bladed disk and comprehensive vision training appearance - Google Patents

Function bladed disk and comprehensive vision training appearance Download PDF

Info

Publication number
CN204840165U
CN204840165U CN201520479134.6U CN201520479134U CN204840165U CN 204840165 U CN204840165 U CN 204840165U CN 201520479134 U CN201520479134 U CN 201520479134U CN 204840165 U CN204840165 U CN 204840165U
Authority
CN
China
Prior art keywords
training
functional leaf
control box
lens
red
Prior art date
Legal status (The legal status 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 status listed.)
Withdrawn - After Issue
Application number
CN201520479134.6U
Other languages
Chinese (zh)
Inventor
付祖家
付骁勇
付泽宇
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Individual
Original Assignee
Individual
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 Individual filed Critical Individual
Priority to CN201520479134.6U priority Critical patent/CN204840165U/en
Application granted granted Critical
Publication of CN204840165U publication Critical patent/CN204840165U/en
Withdrawn - After Issue legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Abstract

The utility model belongs to a medical instruments especially relates to a function bladed disk and comprehensive vision training appearance who is used for eyes regulation, set, pursuit, disinhibition training. The utility model provides a function bladed disk includes battery of lens, rotating prism, red / green arris lens, battery of lens, rotating prism, red / green arris lens evenly distributed on function bladed disk, function bladed disk and function bladed disk motor pass through bolted connection, rotating prism passes through gear connection with the rotating prism motor, contain above -mentioned function bladed disk's comprehensive vision training appearance, include control box, controller, liquid crystal display, interpupillary distance adjustment mechanism, red / green light filter. The utility model discloses can adjust training, set training, disinhibition training and track the training, the function is comprehensive, and various training cooperation is used, and applicable to the crowd is wide.

Description

Functional leaf dish and comprehensive visual instrument for training
Technical field
This utility model belongs to a kind of Medical Instruments, particularly relates to a kind of functional leaf dish for eyes adjustment, set, tracking, derepression training and comprehensive visual instrument for training.
Background technology
Visual fatigue becomes the universal phenomenon of modern, student race, mobile phone race, telecomputer race, office's white collar etc., owing to closely using eye for a long time, again less than effectively alleviating, cause headache, dizziness, eye rise, the symptom such as ophthalmalgia, glasses are dry and astringent, blurred vision, cause work efficiency drop, myopia or myopia degree increase.To shrink and ciliary muscle contraction causes crystalline lens to become the convex intra-ocular pressure power that makes backward to increase when eyeball is subject to extraocular muscles, eyeball is sent out and is risen, cause axis oculi to extend backward, often extend the 1mm number of degrees and just increase 3.00D, extraocular muscles and ciliary muscle shrink for a long time simultaneously, can not get well loosening, make them become stiff, contractility declines, and declines flexibly, crystalline lens shrinks for a long time and causes flexibility decrease, blurred vision.
The many employings of current domestic existing therapeutic equipments stimulate foveal cones cell, make the way of its excitement, but it are long to there is cycle treatment time, easily repeatedly, and the problem that effect is undesirable.Authorization Notice No. is CN201022784Y, application number is 200720093615.9, utility model name is called multifunctional large-scale comprehensive visual therapentic instrument, structure is more complicated, and mainly adopt based on Chinese medicine principle, act on the technical scheme at acupuncture point in conjunction with electronic impulse, to reach the irritability improving refractive media, change the technique effect of refractive status, there is substantial difference compared with the technical solution of the utility model.
Summary of the invention
The purpose of this utility model is for the deficiencies in the prior art, a kind of functional leaf dish for eyes adjustment, set, tracking, derepression training and comprehensive visual instrument for training are provided, effectively can regulate the crystalline lens of trainer, ciliary muscle and extraocular muscles, alleviate visual fatigue.
The technical solution of the utility model is:
A kind of functional leaf dish, comprise battery of lens, also comprise rotary prism, red/green rib lens, described battery of lens, rotary prism, red/green rib lens are evenly distributed on functional leaf dish, described functional leaf dish and functional leaf coil motor are bolted, and described rotary prism is connected by gear with rotary prism motor.
On described functional leaf dish, the central angle scope of a battery of lens region is 60 ° ~ 120 °, the central angle scope of rotary prism and red/green rib lens region is 60 ° ~ 120 °, described battery of lens can be ± 1.00D, ± 1.50D, ± 2.00D, any one group or two groups or three groups or four groups of adjacent power lens in ± 2.50D.
A kind of comprehensive visual instrument for training comprising above-mentioned functions leaf dish, comprise control box, controller, LCDs, interpupillary adjustment mechanism, red/green color filter, described controller is arranged on control box, controller output end is connected with LCDs, described LCDs is fixed on the inner surface of control box rear wall, described control box antetheca is provided with observation port and chute, also comprise functional leaf dish, described functional leaf dish is arranged between control box antetheca and interpupillary adjustment mechanism, functional leaf dish is connected with the chute on control box antetheca by the rotating shaft of functional leaf coil motor, described functional leaf coil motor is located on interpupillary adjustment mechanism, described interpupillary adjustment mechanism is connected with control box medial wall by sliding bar, described observation port is coaxial with the eyeglass on the functional leaf dish rotated to before observation port, described red/green color filter side is with hinged near the control box medial wall of LCDs.
Also comprise turnover panel motor, turnover panel motor is fixedly connected with near LCDs side with red/green color filter, and the scope that red/green color filter rotates is 0 ° ~ 90 °.
Described interpupillary adjustment mechanism comprises interpupillary distance motor, connecting rod, sleeve, and interpupillary distance motor is fixedly connected with by gear with sleeve, and sleeve is threaded with connecting rod, and functional leaf coil motor is fixed on connecting rod.
Described control box is cuboid or cylinder, and the inner both sides of described control box are provided with draw-in groove, and draw-in groove is parallel with control box both sides, and described observation port is rectangle or ellipse, and two observation port centre-to-centre spacing are 50mm ~ 75mm.
Distance between described observation port and control box rear wall is 20cm ~ 50cm, described LCDs is posted the protecting film of one deck anti-blue light, radioprotective, anti-ultraviolet.
The beneficial effects of the utility model are:
1. trainer according to the testing result of comprehensive optometry instrument, can select different training methods, carries out rectificative training targetedly.Trainer can effectively temper crystalline lens and ciliary muscle by regulating training, can regulate sensitivity and the strength of adjustment of trainer, strengthen regulating power, prevent the increase of myopia and myopia degree, and can alleviate visual fatigue; Effectively can be alleviated the fatigue of lateral rectus in eyeball by set training, internal exotropia has good improvement, strengthens and melts picture ability, improve visual performance; Trainer's derepression with vision suppression obstacle can be made by derepression training; Follow the trail of the eye coordination of muscle of many groups and the respond of human brain outward that training can temper trainer, strengthen human eye to the capture velocity of image and precision, effectively can alleviate visual fatigue simultaneously.
2. the person document of record patient in this instrument, as: the situation that user trains at every turn, so that the recovery situation accurately understanding trainer, provides reference to follow-up training content.
3. this instrument is when regulating training, records one minute positive and negative lens change-over period number and within one minute, uses positive and negative lens to carry out the time of observing respectively, judging adjustment situation.
4. in set training process, the fuzzy/prism amount of breaking/recovering can be recorded, be convenient to visual function analysis and training effect's observation.
5. structurally, functional leaf dish has carry out regulate training battery of lens, carry out gather training rotary prism and carry out the derepression and follow the trail of training red/green rib lens, complete function, various training with the use of, be suitable for crowd wide.
Accompanying drawing explanation
Fig. 1 is this utility model interpupillary adjustment mechanism structural representation;
Fig. 2 is the structural representation of this utility model functional leaf dish;
Fig. 3 is the structural representation of this practical comprehensive visual instrument for training.
In Fig. 1 to Fig. 3, the implication of label is: 1. functional leaf dish, 2. battery of lens, 3. rotary prism, 4. red/green rib lens; 5. functional leaf coil motor, 6. rotary prism motor, 7. LCDs, 8. red/green color filter; 9. control box, 10. observation port, 11. controllers; 12. turnover panel motors, 13. draw-in grooves, 14. interpupillary distance motors; 15. sleeves, 16. connecting rods, 17. sliding bars; 18. chutes, 19. protecting film, 20. interpupillary adjustment mechanism.
Detailed description of the invention
Embodiment one:
See shown in Fig. 1 to Fig. 3, in figure, a kind of functional leaf dish 1, comprises battery of lens 2, rotary prism 3, red/green rib lens 4.Functional leaf dish 1 is distributed with rotary prism 3, red/green rib lens 4, ± 1.00D, ± 1.50D, ± 2.00D lens; Functional leaf coil motor 5 and functional leaf dish 1 are bolted; Rotary prism motor 6 is rotated by gear drive driven rotary prism 3.Regulate crystalline lens and the ciliary muscle of training by selecting the target image in the positive and negative lens viewing LCDs 7 of battery of lens 2 to regulate trainer; Set training regulates the extraocular muscles of trainer by the rotation of rotary prism 3; Derepression training coordinates red/green color filter 8 to watch video frequency program in LCDs 7 by red/green rib lens 4, carries out derepression training; Follow the trail of training and to be watched target image in LCDs 7 by red/green rib lens 4, temper trainer's extraocular muscles and the ability caught and judge is flutterred in brain cooperation to image.
Embodiment two ~ ten: see shown in Fig. 1 to Fig. 3, by the eyeglass of functional leaf dish 1 described in embodiment one except necessary rotary prism 3, red/green color filter 4, battery of lens 2 can have different compound modes, specific as follows:
Other detailed description of the invention is identical with embodiment one, repeats no more.
Embodiment 11:
See shown in Fig. 1 to Fig. 3, structurally, this utility model provides a kind of comprehensive visual instrument for training comprising above-mentioned functions leaf dish, comprises control box 9, controller 11, LCDs 7, interpupillary adjustment mechanism 20, red/green color filter 8, turnover panel motor 12.Controller 11 is arranged on control box 9, and controller 11 input is connected with mouse, and outfan is connected with LCDs 7; Control box 11 is cuboid, and the inner both sides of control box 11 are provided with draw-in groove 13, and draw-in groove 13 is parallel with control box 9 both sides, and data wire is fixed on draw-in groove 13 li; Observation port 10 is oval, and two observation port 10 centre-to-centre spacing are 60mm; LCDs 7 is fixed on the inner surface of control box rear wall; Interpupillary adjustment mechanism 20 is connected with control box 9 medial wall by sliding bar 17, interpupillary adjustment mechanism 20 comprises interpupillary distance motor 14, connecting rod 16, sleeve 15, gear in interpupillary distance motor 14 rotating shaft and the gears meshing be enclosed within outside sleeve 15, attack female sleeve 15 and attacked externally threaded connecting rod 16 and be threaded, functional leaf coil motor 5 is fixed on connecting rod 16, stretched by be dynamically connected bar 16 of interpupillary distance motor 14 rotating band, thus the distance between adjustment two functional leaf dishes 1, make required eyeglass be in eyes dead ahead; Red/green color filter 8 side is hinged with control box 9 medial wall near LCDs 7; Turnover panel motor 12 is fixedly connected with near LCDs 7 side with red/green color filter 8, and red/green color filter 8 rotates 90 °; Control box 9 antetheca is provided with observation port 10 and chute 18, and the distance between observation port 10 and control box 9 rear wall is 20cm; LCDs 7 is posted the protecting film 19 of one deck anti-blue light, radioprotective anti-ultraviolet.In addition, also comprise functional leaf dish 1, functional leaf coil motor 5, rotary prism motor 6, functional leaf dish 1 is arranged between control box 9 antetheca and interpupillary adjustment mechanism 20, functional leaf dish 1 is connected with the chute 18 on control box 9 antetheca by the rotating shaft of functional leaf coil motor 5, and observation port 10 is coaxial with the eyeglass on the functional leaf dish 1 rotated to before observation port 10.Battery of lens 2, rotary prism 3, red/green color filter 4 are evenly distributed on functional leaf dish 1; Functional leaf coil motor 5 and functional leaf dish 1 are bolted; Rotary prism motor 6 is rotated by gear drive driven rotary prism 3.On functional leaf dish 1, the central angle scope of a battery of lens region is 72 °, and the central angle scope of rotary prism 3 and red/green rib lens 4 region is 72 °, and battery of lens 2 is the eyeglass of ± 1.00D, ± 1.50D, ± 2.00D.
In use, first, trainer carries out optometry by comprehensive optometry instrument, wear corrective eyeglasses is trained, and then, in instrument for training, sets up files on each of customers, user name, password, interpupillary distance motor adjustment interpupillary distance, login account enters training, and any one or wantonly two kinds or wantonly three kinds or whole four kinds during the files on each of customers set up according to trainer selects eyes adjustments, set, the derepression, tracking four kinds to train are trained.Below four kinds of training being briefly introduced: 1. regulate training, first select battery of lens 2, adjusting to observation port 10 by selecting the plus lens of battery of lens 2, select the target image in LCDs 7, if select correct, minus lens is adjusted to observation port 10, select the target image in LCDs 7, if select correct, again the plus lens of battery of lens 2 is adjusted to observation port 10, cycling, if select mistake, continue to select, till selection is correct.Record one minute positive and negative lens change-over period number and within one minute, use positive and negative lens to carry out the time of observing respectively; 2. set training, adjusts to observation port 10 by rotary prism 3, and during target image in viewing LCDs 7, rotary prism motor 6 slowly inwardly or outwards rotates, when image starts fuzzy, click litura, record this prism amount, motor 6 is rotated further, when image break be two images time, click breakdown point, record this prism amount, rear motor 6 to rotating in the other direction slowly, when image reverts to one, click recovery point, record this prism amount, repeat training; 3. first red/green rib lens 4 are adjusted to observation port 10 by the derepression, then adjust to before LCDs 7 by red/green color filter 8, the video frequency program in viewing LCDs 7; 4. follow the trail of training, first red/green rib lens 4 are adjusted to observation port 10, then add before LCDs 7 or do not add red/green color filter 8, click the target image in LCDs 7, record the number of times in one point of hour.
The foregoing is only the schematic detailed description of the invention of this utility model; and be not used to limit scope of the present utility model; the equivalent variations that any those skilled in the art makes under the prerequisite not departing from this utility model design and principle and amendment, all should belong to the scope of this utility model protection.

Claims (7)

1. a functional leaf dish, comprise battery of lens, it is characterized in that: also comprise rotary prism, red/green rib lens, described battery of lens, rotary prism, red/green rib lens are evenly distributed on functional leaf dish, described functional leaf dish and functional leaf coil motor are bolted, and described rotary prism is connected by gear with rotary prism motor.
2. functional leaf dish according to claim 1, it is characterized in that: on described functional leaf dish, the central angle scope of a battery of lens region is 60 ° ~ 120 °, the central angle scope of rotary prism and red/green rib lens region is 60 ° ~ 120 °, described battery of lens can be ± 1.00D, ± 1.50D, ± 2.00D, any one group or two groups or three groups or four groups of adjacent power lens in ± 2.50D.
3. one kind comprises the comprehensive visual instrument for training of functional leaf dish described in claim 1, comprise control box, controller, LCDs, interpupillary adjustment mechanism, red/green color filter, described controller is arranged on control box, controller output end is connected with LCDs, described LCDs is fixed on the inner surface of control box rear wall, described control box antetheca is provided with observation port and chute, it is characterized in that: also comprise functional leaf dish, described functional leaf dish is arranged between control box antetheca and interpupillary adjustment mechanism, functional leaf dish is connected with the chute on control box antetheca by the rotating shaft of functional leaf coil motor, described functional leaf coil motor is located on interpupillary adjustment mechanism, described interpupillary adjustment mechanism is connected with control box medial wall by sliding bar, described observation port is coaxial with the eyeglass on the functional leaf dish rotated to before observation port, described red/green color filter side is with hinged near the control box medial wall of LCDs.
4. comprise the comprehensive visual instrument for training of functional leaf dish according to claim 3, it is characterized in that: also comprise turnover panel motor, turnover panel motor is fixedly connected with near LCDs side with red/green color filter, and the scope that red/green color filter rotates is 0 ° ~ 90 °.
5. comprise the comprehensive visual instrument for training of functional leaf dish according to claim 3, it is characterized in that: described interpupillary adjustment mechanism comprises interpupillary distance motor, connecting rod, sleeve, interpupillary distance motor is fixedly connected with by gear with sleeve, sleeve is threaded with connecting rod, and functional leaf coil motor is fixed on connecting rod.
6. comprise the comprehensive visual instrument for training of functional leaf dish according to claim 3, it is characterized in that: described control box is cuboid or cylinder, the inner both sides of described control box are provided with draw-in groove, draw-in groove is parallel with control box both sides, described observation port is rectangle or ellipse, and two observation port centre-to-centre spacing are 50mm ~ 75mm.
7. according to claim 3 or 6, comprise the comprehensive visual instrument for training of functional leaf dish; it is characterized in that: the distance between described observation port and control box rear wall is 20cm ~ 50cm, described LCDs is posted the protecting film of one deck anti-blue light, radioprotective, anti-ultraviolet.
CN201520479134.6U 2015-07-06 2015-07-06 Function bladed disk and comprehensive vision training appearance Withdrawn - After Issue CN204840165U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520479134.6U CN204840165U (en) 2015-07-06 2015-07-06 Function bladed disk and comprehensive vision training appearance

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520479134.6U CN204840165U (en) 2015-07-06 2015-07-06 Function bladed disk and comprehensive vision training appearance

Publications (1)

Publication Number Publication Date
CN204840165U true CN204840165U (en) 2015-12-09

Family

ID=54730767

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201520479134.6U Withdrawn - After Issue CN204840165U (en) 2015-07-06 2015-07-06 Function bladed disk and comprehensive vision training appearance

Country Status (1)

Country Link
CN (1) CN204840165U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104958169A (en) * 2015-04-30 2015-10-07 付祖家 Functional leaf disk, comprehensive vision training apparatus and training method

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104958169A (en) * 2015-04-30 2015-10-07 付祖家 Functional leaf disk, comprehensive vision training apparatus and training method
CN104958169B (en) * 2015-04-30 2017-03-29 付祖家 A kind of function leaf dish, comprehensive visual instrument for training and training method

Similar Documents

Publication Publication Date Title
CN108542726B (en) Visual training device and wearing device provided with same
CN101843539B (en) Device and method for vision correction
CN104958169B (en) A kind of function leaf dish, comprehensive visual instrument for training and training method
CN107037592A (en) Wear vision optimization system, intelligent terminal and the helmet of display device
CN204581891U (en) A kind of adjustable buphthalmos for myopia, amblyopia rehabilitation training instrument
CN106511044A (en) Amblyopia vision training system
CN112569093B (en) Eyesight improvement training device
CN110141470A (en) A kind of vision accommodation device based on HMD device
CN107307981A (en) Visual training method based on eye movement
CN104382729A (en) Vision correction training system and method
CN208319517U (en) A kind of amblyopia training system
CN107028738A (en) Vision-training system, intelligent terminal and the helmet moved based on eye
CN204840165U (en) Function bladed disk and comprehensive vision training appearance
CN206777498U (en) Eyesight treatment mirror with adjustable focal length lens group
CN104706510A (en) Visual function promoting and training method
CN105534683A (en) Liquid crystal lens shielded type monocular vision training instrument
CN107137211A (en) The 3D vision training methods moved based on eye
CN208809001U (en) The component and its sighting distance regulating mechanism of HMD device
CN110236897A (en) Vision training instrument and its application method
CN201987843U (en) Virtual eye guard
CN204972150U (en) Can throw closely reader of positive out -of -focus image
CN204496113U (en) A kind of 3D glasses with treatment myopia and long sight function
CN205145044U (en) Vision correction system
CN211912165U (en) Vision dynamic training instrument
CN202961087U (en) Progressive blurred vision training system

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20151209

Effective date of abandoning: 20170329

AV01 Patent right actively abandoned