CN2792452Y - Short-eyesight corrector with multiple lens - Google Patents

Short-eyesight corrector with multiple lens Download PDF

Info

Publication number
CN2792452Y
CN2792452Y CN 200520015961 CN200520015961U CN2792452Y CN 2792452 Y CN2792452 Y CN 2792452Y CN 200520015961 CN200520015961 CN 200520015961 CN 200520015961 U CN200520015961 U CN 200520015961U CN 2792452 Y CN2792452 Y CN 2792452Y
Authority
CN
China
Prior art keywords
lens
eyes
distance
myoporthosis
eyesight
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.)
Expired - Fee Related
Application number
CN 200520015961
Other languages
Chinese (zh)
Inventor
吴鸿翔
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 CN 200520015961 priority Critical patent/CN2792452Y/en
Application granted granted Critical
Publication of CN2792452Y publication Critical patent/CN2792452Y/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Images

Landscapes

  • Eyeglasses (AREA)

Abstract

The utility model relates to a short-eyesight corrector with multiple lenses. Two lenses form a lens group, one lens near eyes is a concave lens, and the more near the eyes, the better effect is obtained. The concave lens can correct the eyesight focus to make users clearly see far objects and have overcompensation to excessively correct, and the other lens far away from the eyes forms a convex lens of which the property is opposite to the nearer lens according to the overcompensation. A final image is produced at the front position of a central optic axis by using selected lens combination with proper diopter, and then a virtual image of an object converted by the lens group is designed and controlled to convert in a farther position so as to alter the previous operation habit of the eyes. In the other different space, the pseudomyopia is gradually balanced and the problem that the axial length of the eyes is abnormally lengthened by habit is prevented by the natural operation of the whole vision physiological function and the balanced habit, and thus, the effect of correcting eyesight is achieved.

Description

Many eyeglasses myoporthosis device
Technical field
This utility model relates to a kind of myopia correction device, particularly a kind of many eyeglasses myoporthosis device.
Background technology
Physiology running (Physiology of sight) principle by vision, a people's outer eye muscle may command eyeball makes the optical axis alignment object of sight line, and after visible light clashes into the reflection of this object, pass cornea (Comea), aqueous humor (Aqueous humour) in anterior chamber (Anterior chamber) and the back room (Posterior chamber), crystalline lens (Lens), the vitreous body (Vitreous body) of sclera (Sclera) institute dressing, go up the real image (real image) that produces handstand at nethike embrane (Retina), if the image that this moment, nethike embrane produced can not focus on (focus), then be positioned at intraciliary involuntary muscle (involuntary muscles) and accept the instruction of oculomotorius (Oculomotor nerve), meeting is moved and is changed lenticular shape, up to image focusing till clear, the signal of nethike embrane sensed image is delivered to brain via optic nerve (Optic nerves) again and translates and release (interpretation), makes more message and handles.
And the reason that near-sighted formation can't improve has a lot, wherein one be exactly a influence with eye custom, because unusual is accustomed to eye, intraciliary muscle is unidirectional constantly, single habitual the use, making itself and crystalline lens produce excessive one-way movement can't reply naturally, pseudomyopia is control and sees near ciliary spasm or cramp, can't discharge the crystalline lens of excessive adjusting and cause, if continue its old habits and customs of accumulation, in the course of time, the axial length of eyeball also can undesiredly be elongated, particularly in eyeball and vision physiological stage of development, this problem is the most serious, and cause image at the nethike embrane difficulty focusing, and continue its old habits and customs of accumulation if ignore, worsening becomes high myopia, then may cause fearful pathological changes, as detachment of retina or the like.We have realized that at present, gently, it is not fearful that medium myopia does not see the problem of Chu, can see as long as correct defects of vision, but in, high myopia just begins and will bear fearful risk, yet Rome is not to cause in one day, canvass this understanding, can further recognize, the reason that causes myopia is to control and to improve, otherwise may cause terrible consequences, except pathological changes and other reason, unusual is noticeable reason of the utmost importance with the eye custom, what this habit had more can entail the next generation, makes that the next generation is easier a similar tendency.
Traditional near vision corrective method be at before focusing in nethike embrane, impose concavees lens and corrected and make its normal focusing, this provides user to recover normal sight really and has looked the instrument of ability.But, but can't change the custom and the environment of user, so user must continue his custom in the past with eye always, consequently Jin Shi people almost can keep near-sighted always, even the number of degrees constantly increase.The multi-focus lens of directly correcting defects of vision can slow down same custom, but can't thoroughly reverse inductive education be accustomed to, balanced old customs, in actual life, if be the people of myopia, few people understands nature becomes no near-sighted state gradually, the result of old customs that Here it is because traditional corrective method can't be forgone.Machine or method that many visual trainings are also arranged on the market, where the shoe pinches are that people's vision is the important tool of an acquired information, fuzzy problem has appearred in vision, can not light in order to train, but cause can't acquired information problem, only cause and can in limited and short time, train.Therefore, effect is limited, and making the mankind cause one of reason of high myopia is habit problem, is difficult to obtain thoroughly improving completely.
Summary of the invention
The purpose of this utility model provides a kind of normally the sight for the user recovery and looks many eyeglasses myoporthosis device of ability.
Above-mentioned purpose of the present utility model is to realize like this, a kind of many eyeglasses myoporthosis device, before and after using two at a distance of by the suitable battery of lens of forming apart from lens, the lens of installing close eyes use concavees lens, near more good more apart from eyes, allow user know in order to the focusing of correcting defects of vision and see distant objects, and the over compensation of tool one overcorrection, and the lens far away apart from eyes, then become the convex lens opposite with nearer lens properties according to this over compensation, through selected suitably dioptric lens combination like this, last imaging meeting is located than the front position at nethike embrane sight line optical axis, and the virtual image of object after the battery of lens conversion is designed the control conversion at a distance.
Technique effect of the present utility model is, adopt nonoperative mode, correct the focusing of user, providing user to recover normal the sight looks outside the instrument of ability, can also allow the corpus ciliare and the crystalline lens of eye user operate in the use interval opposite with old custom, with balanced old customs, finally reached all lens are all removed.
This utility model is elaborated with instantiation below in conjunction with accompanying drawing.
Description of drawings
Fig. 1 is the schematic side view of this utility model material object and battery of lens imaging embodiment;
Look sketch map on Fig. 2 this utility model material object and the prism battery of lens imaging embodiment.
Description of reference numerals: 1 concavees lens; 2 convex lenss; 3 virtual images; 4 eyes; 5 objects; 6 prisms.
The specific embodiment
As shown in the figure, this utility model mainly uses battery of lens that two lens form as basic framework, near eyes be concavees lens 1, and far away be convex lens 2, both can install by same stand, also can be mounted combination respectively and keep one apart from formation; Wherein concavees lens 1 level off to zero good more more apart from eyes, it is preferable using contact lens, and rectifiable user vision and being focused on enables to know and sees distant objects, and the over compensation of tool one overcorrection, apart from eyes convex lens 2 far away, then, become and nearer concavees lens 1 incompatible lens according to the over compensation value of concavees lens 1.
The diopter of the long-range convex lens of this utility model 2 and near-end concavees lens 1 can be optionally collocation design mutually, the effect of near-end concavees lens 1 is that compensate for myopia person can see the ability than far object clearly in addition, otherwise, if there be not the auxiliary of near-end concavees lens 1, only use long-range convex lens 2, then not only the vision of user can not obtain suitable rectification, sees between for the moment fuzzylyyer than far object on the contrary, and can have influence on study, the work of user and lives.And the design of concavees lens 1 will make the normal naked diopter of looking insufficient of its diopter over compensation basically; change with the eye custom to induce; if there be not the auxiliary of over compensation; the scope of a lot of distances can't be by suitable conversion; imperious eyelash flesh can't be stable far object is stablized relaxation exercise because of focusing; so that can't fully use; and; under the situation of normal acquired information; user is easy to just can't persevere; over compensation of the present utility model can also produce the effect of prompting; user can feel painstaking because see near object; and can excite him to want to use convex lens 2 to solve the problem of seeing near object, more order about him and form a habit.
As shown in Figure 1, utilize lens combination of the present utility model, allowing last imaging (final image) can be created in sight line optical axis (central optic axis) locates than the front position, and the virtual image (virtual image) 3 of object 5 after the battery of lens conversion, then be designed the control conversion at a distance, so eyes 4 can obtain being different from naked object distance of looking and big or small sensation, corpus ciliare and crystalline lens move for adaptation, attempt adjusting diopter, though last imaging can be under the fixed situation in retina resolution on nethike embrane still, the change of object size visually, directly changed the identification of vision, and this utility model has also possessed the ability that produces the real image size on nethike embrane that can change in the vision distance of conversion object, directly controls identification, if identification is enough, then allow eyes not need the too close access message that gets final product, otherwise, if identification is not enough, then subjective, can want to allow eyes need the more close access message that just makes things convenient for.
The light that reflects from object, if do not pass through the processing of any device or system, the adjustment of corpus ciliare correspondence distance just equals actual range so, this utility model then can be under the situation that does not influence normal study, work and life, for the corpus ciliare that we were concerned about, the conversion of corresponding comparatively sensitive sensation distance is provided, make corpus ciliare with new custom, adjust muscular movement, and then improve stopping that vision makes and worsen.
After vision goes wrong, if without any the assistance of instrument, then because do not see Chu Dongxi, have uncertain sense psychologically, also do not allow a people to be in the state that a kind of information is broken off at any time in the actual life, therefore, after vision went wrong, common people still needed corrigent.For the myope that causes because of custom, suppose the regular ground of our energy, books are zoomed into 10 times be placed on outside 10 meters, read for it, they are bound to can be when not needing painstakingly to change living habit, change them easily and observed the custom of object, so, the degree that just can alleviate their original pseudomyopias because of different customs of a specified duration and of a specified duration is to the pseudomyopia at initial stage, if method is correct, also can recover the normal naked ability of looking.
The corrective method of commonly using, relax muscular tone by directly alleviating the number of degrees, then influence user study, work and life at once, even can control the state of muscle, also can't provide bigger quantity of motion to watch at a distance, particularly when the ametropic low number of degrees, because the number of degrees can't provide the space that down alleviates the number of degrees more very little again, pseudomyopia for the initial stage, there is no too big effect, also do not promote the advantage of amplification, that is the advantage that the corrective method commonly used can not provide.In addition, use this utility model at any time,, just can obtain normal distance vision immediately as long as remove convex lens 2 if can't see clearly than far object the time.
This utility model utilizes long-range convex lens 2 and the many eyeglass combinations of near-end concavees lens 1 for basic device, as the instrument of vision correction and training.In case of necessity, this utility model can also impose the distance conversion that bifocal or zoom lens are strengthened closer object at any time, improvement is apart from conversion ratio, can also use and add convex lens, so that strengthen the training opposite with old customs at any time, long-range convex lens 2 is if use bifocal or multifocal lens, and can keep as far as possible is convex lens equally, and can keep the diopter scope of convex lens 2 not too big, therefore be difficult for causing user moment maladjustment.Long-range in addition convex lens 2 does not limit with general eye glass frame and supports, it is various soft, rigid contact lenss that near-end concavees lens 1 optionally also can not limit, also can be the lens of other extremely close eyeball, the mode of all right wear-type supports employed long-range convex lens 2 of this utility model and near-end concavees lens 1.
In addition, object is exaggerated and makes object identification visually improve, and observes the object details and more can not make user want more to press close to object, produce on the nethike embrane picture object far away, be very beneficial for the remote focusing of eyeball.Therefore this utility model provides visual object amplification simultaneously, relatively helps training observation habit, makes user because inducing of identification used the eye custom and change.
The characteristics of this utility model vision correction are to be improved as purpose, the motion of balanced eyeball involuntary muscle at the visual problems that causes myopia because of custom.Except correcting the focusing of user, outside the instrument that provides the normal sight of the user recovery ability of looking to be able to normal study, work and live, just see clearly under the situation of the object that Chu needs, also consider to allow the corpus ciliare of eye user and crystalline lens operate in the use interval opposite with original custom.Promptly,, become than the far vision distance by closely extending optionally with the object in the environment of myope not at specific object.
This utility model can stage by stage, gradually be strengthened the training opposite with old customs, and it is well-adjusted therefore more easily to reach user.In addition long-range convex lens 2 and near-end concavees lens 1 can be optionally separately at a glance mutually collocation design that is to say to be respectively two that to get a desired effect optionally independent design becomes battery of lens.Gather in order to improve spoke, i.e. the problem of two an eye line angles then can be in convex lens 2 front and back, as shown in Figure 2, install a prism 6, the mat refraction angle changes incident angle, form closely littler angle, promptly sight line does not need closely excessively inwardly concentrating, and it is comparatively natural that reality is closely changed.
And this utility model final objective is to pursue all lens are all removed, with the myopia correction is example, actual this utility model experiment achievement of using is to have reduced by 100 after 2 years to spend to 150 degree, for the false myopia at initial stage then at one month after three months, reduce by 25 and spend to 50 degree, causing is the method for a simple possible.
Press this utility model and remove the nonoperative mode that adopts, correct the focusing of user, providing user to recover normal the sight looks outside the instrument of ability, can also allow the corpus ciliare and the crystalline lens of eye user operate in the use interval opposite with old custom, with balanced old customs, finally reached all lens are all removed.

Claims (4)

1. the device of eyeglass myoporthosis more than a kind, it is characterized in that: before and after using two at a distance of by the suitable battery of lens of forming apart from lens, the lens of installing close eyes use concavees lens, near more good more apart from eyes, allow user know in order to the focusing of correcting defects of vision and see distant objects, and the over compensation of tool one overcorrection, and the lens far away apart from eyes, then become the convex lens opposite with nearer lens properties according to this over compensation, through selected suitably dioptric lens combination like this, last imaging meeting is located than the front position at nethike embrane sight line optical axis, and the virtual image of object after the battery of lens conversion is designed the control conversion at a distance.
2. many eyeglasses myoporthosis device as claimed in claim 1 is characterized in that, is added with other prism before and after distance eyes lens far away, through changing the refraction angle of light, to change two an eye line angles, makes the distance conversion comparatively natural.
3. many eyeglasses myoporthosis device as claimed in claim 1 is characterized in that these long-range lens can be bifocal, multifocal lens.
4. many eyeglasses myoporthosis device as claimed in claim 1 is characterized in that, outside distance eyes lens far away, is added with convex lens again.
CN 200520015961 2005-04-15 2005-04-15 Short-eyesight corrector with multiple lens Expired - Fee Related CN2792452Y (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 200520015961 CN2792452Y (en) 2005-04-15 2005-04-15 Short-eyesight corrector with multiple lens

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 200520015961 CN2792452Y (en) 2005-04-15 2005-04-15 Short-eyesight corrector with multiple lens

Publications (1)

Publication Number Publication Date
CN2792452Y true CN2792452Y (en) 2006-07-05

Family

ID=36819605

Family Applications (1)

Application Number Title Priority Date Filing Date
CN 200520015961 Expired - Fee Related CN2792452Y (en) 2005-04-15 2005-04-15 Short-eyesight corrector with multiple lens

Country Status (1)

Country Link
CN (1) CN2792452Y (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105520804A (en) * 2014-10-20 2016-04-27 梁杬钟 An optical device for recovering eyesight
CN108371539A (en) * 2018-02-06 2018-08-07 腾阅健康科技(深圳)有限公司 A kind of eyes adjust force checking device and method

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105520804A (en) * 2014-10-20 2016-04-27 梁杬钟 An optical device for recovering eyesight
CN108371539A (en) * 2018-02-06 2018-08-07 腾阅健康科技(深圳)有限公司 A kind of eyes adjust force checking device and method
CN108371539B (en) * 2018-02-06 2024-01-09 深圳视力棒医疗科技有限公司 Eye adjusting force detection device and method

Similar Documents

Publication Publication Date Title
CN106054403B (en) Glasses with dynamic slight defocusing and zooming functions in emmetropic direction
CN102692730B (en) Multi-element lens for controlling defocus and eye diopter and application thereof
CN201752480U (en) Eye caring instrument
CN110179581B (en) Correction method for preventing and controlling myopia and ametropia based on tension regulation mechanism
CN102906631A (en) Contact lenses for myopic eyes and methods of treating myopia
CN106646916A (en) Glasses having dynamic zooming function along emmetropia direction and application method thereof
CN103268023A (en) Myopia prevention and treatment glasses for controlling head position and sitting posture
CN107632414A (en) A kind of intelligent long sight decreasing concentration mirror
CN201710601U (en) Comprehensive eye function treatment trainer
CN105765445B (en) Ametropia treatment glasses
JP3139963U (en) Near-field defocus gaze training dedicated myopia prevention treatment device and method of use thereof
CN205157909U (en) Soft corneal contact lens
CN107307981A (en) Visual training method based on eye movement
CN109387953A (en) A kind of smart myopia glasses
CN100477975C (en) Anti-myopia apparatus for reading and writing
CN2792452Y (en) Short-eyesight corrector with multiple lens
CN203502693U (en) Myopia-prevention glasses for controlling head position and sitting posture
CN112150903A (en) Simulated optical eye function model
CN205620626U (en) Intelligent spectacles
CN2704861Y (en) Multi-lens myopic correcting devices
CN103489361B (en) Utilize double-liquid varifocal lens human eye system and the focus adjustment method of automatically controlled focusing/zooming
CN213303429U (en) Simulated optical eye function model
CN106707549A (en) Dynamic optometry exercise spectacle frame and use method thereof
CN106950720B (en) Intelligent control vision correction mirror
CN100356233C (en) Method and apparatus for multi lens vision correcting

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
C17 Cessation of patent right
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20060705

Termination date: 20110415