CN109683348A - A kind of preparation method for red colour blindness and the correcting lens of anomalous trichromatism patient - Google Patents

A kind of preparation method for red colour blindness and the correcting lens of anomalous trichromatism patient Download PDF

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Publication number
CN109683348A
CN109683348A CN201910127914.7A CN201910127914A CN109683348A CN 109683348 A CN109683348 A CN 109683348A CN 201910127914 A CN201910127914 A CN 201910127914A CN 109683348 A CN109683348 A CN 109683348A
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CN
China
Prior art keywords
red
eyeglass
preparation
colour blindness
anomalous trichromatism
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Pending
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CN201910127914.7A
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Chinese (zh)
Inventor
尹熙民
庄天罡
邹尚孜
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Zhenjiang Xiwen Electronic Commerce Co Ltd
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Zhenjiang Xiwen Electronic Commerce Co Ltd
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Priority to CN201910127914.7A priority Critical patent/CN109683348A/en
Publication of CN109683348A publication Critical patent/CN109683348A/en
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    • GPHYSICS
    • G02OPTICS
    • G02CSPECTACLES; SUNGLASSES OR GOGGLES INSOFAR AS THEY HAVE THE SAME FEATURES AS SPECTACLES; CONTACT LENSES
    • G02C7/00Optical parts
    • G02C7/10Filters, e.g. for facilitating adaptation of the eyes to the dark; Sunglasses
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B1/00Optical elements characterised by the material of which they are made; Optical coatings for optical elements
    • G02B1/10Optical coatings produced by application to, or surface treatment of, optical elements
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B1/00Optical elements characterised by the material of which they are made; Optical coatings for optical elements
    • G02B1/10Optical coatings produced by application to, or surface treatment of, optical elements
    • G02B1/12Optical coatings produced by application to, or surface treatment of, optical elements by surface treatment, e.g. by irradiation

Abstract

The present invention relates to a kind of preparation methods for red colour blindness and the correcting lens of anomalous trichromatism patient, comprising the following steps: (1) prepares inner layer resin eyeglass, the material selection coniferae resin material of the inner layer resin eyeglass;(2) appropriate amount of deionized water is poured into the first beaker, is heated to 70-80 DEG C, be uniformly mixing to obtain red pigment solution after being continuously added into the red hybrid pigment of pigment red179, urn red 1 and gorgeous purplish red 29 thereto;(3) appropriate amount of deionized water is poured into the second beaker, is heated to 70-80 DEG C, be uniformly mixing to obtain blue pigment solution after being continuously added into blue pigment thereto;(4) the made red pigment solution of step (2) and the made blue pigment solution of step (3) are poured into mixing beaker, is kept for 70-80 DEG C of heating temperature, while appropriate amount of deionized water is added and is mixed evenly, obtains hybrid pigment solution;(5) it dyes;(6) mercury film is plated;(7) partial veil is plated.

Description

A kind of preparation method for red colour blindness and the correcting lens of anomalous trichromatism patient
Technical field
The present invention relates to the technical fields of eyeglass preparation, and in particular to a kind of correction for red colour blindness and anomalous trichromatism patient The preparation method of eyeglass.
Background technique
Colour blindness and anomalous trichromatism are to perplex the big persistent ailment of the mankind now, and colour blindness is congenital formation, as current people are to eye The continuous enhancing of duration, intensity, the number that has a trouble in one's eyesight are increasing, and some of the staff also occur by with the various eye illness day after tomorrow It is converted into the trend of anomalous trichromatism symptom, these are all that trip, work, life with colour blindness and anomalous trichromatism symptom cause certain be stranded It disturbs, especially for the anomalous trichromatism patient formed the day after tomorrow when by way of driving crossing using red, green, yellow three color as traffic lights, It easily causes error in judgement and then buries hidden trouble of traffic, the color being directed in colour blindness and anomalous trichromatism patient according to colour blindness and anomalous trichromatism It is different to be divided into red colour blindness and anomalous trichromatism patient, green colour blindness and anomalous trichromatism patient and monochromasia and anomalous trichromatism patient again.
Summary of the invention
It is an object of the invention in view of the shortcomings of the prior art, provide a kind of rectifying for red colour blindness and anomalous trichromatism patient The preparation method of positive eyeglass.
In order to realize that the purpose of foregoing invention, the present invention are realized using following scheme:
A kind of preparation method for red colour blindness and the correcting lens of anomalous trichromatism patient, it is characterised in that: the following steps are included:
(1) prepare inner layer resin eyeglass, the material selection coniferae resin material of the inner layer resin eyeglass;
(2) appropriate amount of deionized water is poured into the first beaker, is heated to 70-80 DEG C, be continuously added into pigment red179, urn thereto Red pigment solution is uniformly mixing to obtain after red 1 and gorgeous purplish red 29 red hybrid pigment;
(3) appropriate amount of deionized water is poured into the second beaker, is heated to 70-80 DEG C, stirred after being continuously added into blue pigment thereto It mixes and uniformly obtains blue pigment solution;
(4) the made red pigment solution of step (2) and the made blue pigment solution of step (3) are poured into mixing beaker, is kept 70-80 DEG C of heating temperature, while appropriate amount of deionized water is added and is mixed evenly, obtain hybrid pigment solution;
(5) ready inner layer resin eyeglass in step (1) is clamped, is immersed in the hybrid pigment solution in step (4) It is taken out after 8-10min dyeing completely, juxtaposition air-dries at room temperature;
(6) by the eyeglass after fixture clamping step (5) dyeing and positioning, eyeglass is then put into vacuum coating equipment to eyeglass Surface carries out vacuum coating, carries out ion gun bombardment to lens surface in vacuum environment, then will plate mercury film by electron gun The nanometer that material carries out 10 times evaporates into lens surface, and confirmation lens surface color stops after turning silver color, then in mercury membrane material Surface plate one layer of fluoride film layer.
(7) eyeglass and positioning after plating mercury film by fixture clamping step (6), are then put into vacuum coating equipment for eyeglass Vacuum coating is carried out to the back side of eyeglass, ion gun bombardment is carried out to lens surface in vacuum environment, then will by electron gun The nanometer that plating partial veil material carries out 10 times evaporates into lens surface, and confirmation lens surface color stops after turning green.
Further, in the step (1) hydro carbons of a variety of coniferaes of material selection of inner layer resin eyeglass point Secretion.
Further, the quality of pigment red179, urn red 1, gorgeous purplish red 29 and deionized water is matched in the step (2) Than for 2-5:1-2:1:20-50.
Further, blue pigment selects Teng Shi blue in the step (3), and the wherein quality of Teng Shi indigo plant and deionized water Proportion is 1:20-50.
Further, the quality of red pigment solution, blue pigment solution and deionized water is matched in the step (4) Than for 5-10:5-10:100.
Further, inner layer resin eyeglass is immersed in the dyeing course in mixed solution in the step (5), first will Inner layer resin eyeglass is put into 1-2min below mixed solution liquid level vertically, then is horizontally placed at 5-6min below mixed solution liquid level, It finally keeps being vertically positioned at again below mixed solution liquid level and be taken out after 1-2min.
Further, inner layer resin eyeglass is immersed in mixed solution in dyeing course in the step (5), internal layer tree It is located at the position 60-80mm below mixed solution liquid level when rouge eyeglass is placed vertically, is located under mixed solution liquid level when being horizontally arranged The square position 30-40mm.
Further, the mixture that mercury membrane material selects silica and titanium pentoxide is plated in the step (6), The quality proportioning of middle silica and titanium pentoxide is 1:1-3.
Further, the mixture of partial veil material selection magnesium fluoride and zirconium oxide is plated in the step (7), wherein magnesium fluoride Quality proportioning with zirconium oxide is 1:3-5.
Further, the vacuum degree of vacuum coating is 5.0*10+5torr in the step (6) and step (7).
Compared with prior art, the present invention has following technical effect that
1) according to complementary color antagonism, dyeing and plated film are carried out on eyeglass, generates the effect of cutoff wavelength, it can be saturating to long wave elder It penetrates, to shortwave, short person is reflected, and through the eyeglass of this method preparation, can enhance red colour blindness and anomalous trichromatism patient and recognize script Red colour blindness and anomalous trichromatism obstacle bring counter productive are corrected to a certain degree and alleviated to the identification degree of unclear red color.
2) it is directed to colour blindness and red colour blindness and anomalous trichromatism patient in anomalous trichromatism crowd, red colour blindness can be effectively improved and anomalous trichromatism is suffered from Person guarantees that traffic lights recognize accurate, traffic safety for red identification.
3) for the red anomalous trichromatism patient that the day after tomorrow is formed, there is certain alleviation asthenopia, improve red color identification Auxiliaring effect.
Specific embodiment
Invention is further explained combined with specific embodiments below, but the present invention is not limited to following embodiments.
Embodiment 1
Pigment red179, the urn red 1, gorgeous purplish red 29 and go that quality proportioning is 2:1:1:20 are continuously added into the first beaker After ionized water, it is heated to 80 DEG C while stirs and being uniformly mixed to form red pigment solution;Matter is continuously added into the second beaker After Teng Shi indigo plant and deionized water that amount proportion is 1:20, it is heated to 80 DEG C while stirs and being uniformly mixed that form blue pigment molten Liquid;Red pigment solution, blue pigment solution and deionized water are poured into mixing beaker according to quality proportioning 1:1:20, Heating temperature obtains hybrid pigment solution to being mixed evenly after 80 DEG C, clamps inner layer resin eyeglass, is immersed in mixing It is taken out after 10min dyeing completely in solution, juxtaposition air-dries at room temperature;By the eyeglass after fixture clamping dyeing and positioning, so Eyeglass is put into vacuum coating equipment afterwards and carries out vacuum coating, ion gun bombardment is carried out to lens surface in vacuum environment, then lead to It crosses electron gun the nanometer that the plating mercury membrane material of the silica that quality proportioning is 1:2 and titanium pentoxide carries out 10 times is volatilized To lens surface, confirm and stop after lens surface color turns silver color, then plates one layer of fluoride films on the surface of mercury membrane material Layer;Eyeglass and positioning after clamping plating mercury film by fixture, are then put into vacuum coating equipment for eyeglass and carry out vacuum coating, Ion gun bombardment is carried out to back lens surface in vacuum environment, then magnesium fluoride and oxidation by electron gun by quality proportioning for 1:5 The nanometer that the Coating Materials of zirconium carries out 10 times evaporates into lens surface, and confirmation lens surface color stops after turning green.
Embodiment 2
Pigment red179, the urn red 1, gorgeous purplish red 29 and go that quality proportioning is 5:1:1:20 are continuously added into the first beaker After ionized water, it is heated to 80 DEG C while stirs and being uniformly mixed to form red pigment solution;Matter is continuously added into the second beaker After Teng Shi indigo plant and deionized water that amount proportion is 1:20, it is heated to 80 DEG C while stirs and being uniformly mixed that form blue pigment molten Liquid;Red pigment solution, blue pigment solution and deionized water are poured into mixing beaker according to quality proportioning 1:1:20, Heating temperature obtains hybrid pigment solution to being mixed evenly after 80 DEG C, clamps inner layer resin eyeglass, is immersed in mixing It is taken out after 10min dyeing completely in solution, juxtaposition air-dries at room temperature;By the eyeglass after fixture clamping dyeing and positioning, so Eyeglass is put into vacuum coating equipment afterwards and carries out vacuum coating, ion gun bombardment is carried out to lens surface in vacuum environment, then lead to It crosses electron gun the nanometer that the plating mercury membrane material of the silica that quality proportioning is 1:2 and titanium pentoxide carries out 10 times is volatilized To lens surface, confirm and stop after lens surface color turns silver color, then plates one layer of fluoride films on the surface of mercury membrane material Layer;Eyeglass and positioning after clamping plating mercury film by fixture, are then put into vacuum coating equipment for eyeglass and carry out vacuum coating, Ion gun bombardment is carried out to back lens surface in vacuum environment, then magnesium fluoride and oxidation by electron gun by quality proportioning for 1:5 The nanometer that the Coating Materials of zirconium carries out 10 times evaporates into lens surface, and confirmation lens surface color stops after turning green.
Embodiment 3
Pigment red179, the urn red 1, gorgeous purplish red 29 and go that quality proportioning is 2:2:1:20 are continuously added into the first beaker After ionized water, it is heated to 80 DEG C while stirs and being uniformly mixed to form red pigment solution;Matter is continuously added into the second beaker After Teng Shi indigo plant and deionized water that amount proportion is 1:20, it is heated to 80 DEG C while stirs and being uniformly mixed that form blue pigment molten Liquid;Red pigment solution, blue pigment solution and deionized water are poured into mixing beaker according to quality proportioning 1:1:20, Heating temperature obtains hybrid pigment solution to being mixed evenly after 80 DEG C, clamps inner layer resin eyeglass, is immersed in mixing It is taken out after 10min dyeing completely in solution, juxtaposition air-dries at room temperature;By the eyeglass after fixture clamping dyeing and positioning, so Eyeglass is put into vacuum coating equipment afterwards and carries out vacuum coating, ion gun bombardment is carried out to lens surface in vacuum environment, then lead to It crosses electron gun the nanometer that the plating mercury membrane material of the silica that quality proportioning is 1:2 and titanium pentoxide carries out 10 times is volatilized To lens surface, confirm and stop after lens surface color turns silver color, then plates one layer of fluoride films on the surface of mercury membrane material Layer;Eyeglass and positioning after clamping plating mercury film by fixture, are then put into vacuum coating equipment for eyeglass and carry out vacuum coating, Ion gun bombardment is carried out to back lens surface in vacuum environment, then magnesium fluoride and oxidation by electron gun by quality proportioning for 1:5 The nanometer that the Coating Materials of zirconium carries out 10 times evaporates into lens surface, and confirmation lens surface color stops after turning green.
Embodiment 4
Pigment red179, the urn red 1, gorgeous purplish red 29 and go that quality proportioning is 2:1:1:20 are continuously added into the first beaker After ionized water, it is heated to 80 DEG C while stirs and being uniformly mixed to form red pigment solution;Matter is continuously added into the second beaker After Teng Shi indigo plant and deionized water that amount proportion is 1:20, it is heated to 80 DEG C while stirs and being uniformly mixed that form blue pigment molten Liquid;Red pigment solution, blue pigment solution and deionized water are poured into mixing beaker according to quality proportioning 1:1:20, Heating temperature obtains hybrid pigment solution to being mixed evenly after 80 DEG C, clamps inner layer resin eyeglass, is immersed in mixing It is taken out after 10min dyeing completely in solution, juxtaposition air-dries at room temperature;By the eyeglass after fixture clamping dyeing and positioning, so Eyeglass is put into vacuum coating equipment afterwards and carries out vacuum coating, ion gun bombardment is carried out to back lens surface in vacuum environment, then lead to It crosses electron gun and the nanometer that the Coating Materials of magnesium fluoride and zirconium oxide that quality proportioning is 1:5 carries out 10 times is evaporated into eyeglass table Face, confirmation lens surface color stop after turning green.
Embodiment 5
Pigment red179, the urn red 1, gorgeous purplish red 29 and go that quality proportioning is 2:1:1:20 are continuously added into the first beaker After ionized water, it is heated to 80 DEG C while stirs and being uniformly mixed to form red pigment solution;Matter is continuously added into the second beaker After Teng Shi indigo plant and deionized water that amount proportion is 1:20, it is heated to 80 DEG C while stirs and being uniformly mixed that form blue pigment molten Liquid;Red pigment solution, blue pigment solution and deionized water are poured into mixing beaker according to quality proportioning 1:1:20, Heating temperature obtains hybrid pigment solution to being mixed evenly after 80 DEG C, clamps inner layer resin eyeglass, is immersed in mixing It is taken out after 10min dyeing completely in solution, juxtaposition air-dries at room temperature;By the eyeglass after fixture clamping dyeing and positioning, so Eyeglass is put into vacuum coating equipment afterwards and carries out vacuum coating, ion gun bombardment is carried out to lens surface in vacuum environment, then lead to It crosses electron gun the nanometer that the plating mercury membrane material of the silica that quality proportioning is 1:2 and titanium pentoxide carries out 10 times is volatilized To lens surface, confirm and stop after lens surface color turns silver color, then plates one layer of fluoride films on the surface of mercury membrane material Layer.
Comparative example
It selects market to sell common non-plated film and is unstained sunglasses lenses as a comparison case.
Made eyeglass is to red identification Tachistoscope
10 red anomalous trichromatism patients are chosen respectively to occupy co-driver and wear the different preparation-obtained eyeglasses of embodiment method, Distance can averagely be recognized and can averagely recognize the time and identification is clear for red eye in signal lamp by testing it Degree, and compared by embodiment and comparative example, experimental result is as shown in table 1.
Eyeglass prepared by one embodiment 1-5 of table and comparative example tests table to red identification
It can be seen from the data in Table 1 that prepared eyeglass does not contaminate compared to existing common non-plated film by the method for the invention The sunglasses lenses of color effectively improve the identification degree of red eye in signal lamp, can from being compared for embodiment 1-3 To find out, the proportion of pigment red179 and urn red 1 is more in red hybrid pigment, averagely can recognize distance and step up, average Can recognize the time gradually shortens, and effectively improves to recognize degree;From being compared it can be seen that eyeglass exists for embodiment 3-4 When not plating mercury film, the opposite reduction of distance can be averagely recognized, time relative increase can be averagely recognized, under recognizing degree Drop, this may be due to not plating mercury film to which eyeglass declines to which strong light suffers from anomalous trichromatism the blocking effect of strong illumination Caused by the identification of person has some impact on;It can be seen that plated film relative to not plating partial veil from the comparison of embodiment 3 and embodiment 5 When, the opposite reduction of distance can be averagely recognized, time relative increase can be averagely recognized, identification degree is declined, this may It is due to not plating partial veil to which eyeglass declines to which ultraviolet light distinguishes anomalous trichromatism patient the blocking effect that ultraviolet light irradiates Caused by the reasons such as knowledge has some impact on, and fatigue strength rises.
Finally, it should be noted that above embodiments are only to illustrate the present invention and not limit technology described in the invention Scheme, therefore, although this specification is referring to above-mentioned each embodiment, the present invention has been described in detail, this Field it is to be appreciated by one skilled in the art that still can modify to the present invention or equivalent replacement, and all do not depart from this The technical solution and its improvement of the spirit and scope of invention, should all cover within the scope of the claims of the present invention.

Claims (10)

1. a kind of preparation method for red colour blindness and the correcting lens of anomalous trichromatism patient, it is characterised in that: the following steps are included:
(1) prepare inner layer resin eyeglass, the material selection coniferae resin material of the inner layer resin eyeglass;
(2) appropriate amount of deionized water is poured into the first beaker, is heated to 70-80 DEG C, be continuously added into pigment red179, urn thereto Red pigment solution is uniformly mixing to obtain after red 1 and gorgeous purplish red 29 red hybrid pigment;
(3) appropriate amount of deionized water is poured into the second beaker, is heated to 70-80 DEG C, stirred after being continuously added into blue pigment thereto It mixes and uniformly obtains blue pigment solution;
(4) the made red pigment solution of step (2) and the made blue pigment solution of step (3) are poured into mixing beaker, is kept 70-80 DEG C of heating temperature, while appropriate amount of deionized water is added and is mixed evenly, obtain hybrid pigment solution;
(5) ready inner layer resin eyeglass in step (1) is clamped, is immersed in the hybrid pigment solution in step (4) It is taken out after 8-10min dyeing completely, juxtaposition air-dries at room temperature;
(6) by the eyeglass after fixture clamping step (5) dyeing and positioning, eyeglass is then put into vacuum coating equipment to eyeglass Surface carries out vacuum coating, carries out ion gun bombardment to lens surface in vacuum environment, then will plate mercury film by electron gun The nanometer that material carries out 10 times evaporates into lens surface, and confirmation lens surface color stops after turning silver color, then in mercury membrane material Surface plate one layer of fluoride film layer;
(7) eyeglass and positioning after plating mercury film by fixture clamping step (6), are then put into vacuum coating equipment to mirror for eyeglass The back side of piece carries out vacuum coating, carries out ion gun bombardment to lens surface in vacuum environment, then will be plated by electron gun green The nanometer that membrane material carries out 10 times evaporates into lens surface, and confirmation lens surface color stops after turning green.
2. a kind of preparation method for red colour blindness and the correcting lens of anomalous trichromatism patient according to claim 1, special Sign is: the secretion of the hydro carbons of a variety of coniferaes of material selection of inner layer resin eyeglass in the step (1).
3. a kind of preparation method for red colour blindness and the correcting lens of anomalous trichromatism patient according to claim 1, special Sign is: the quality proportioning of pigment red179, urn red 1, gorgeous purplish red 29 and deionized water is 2-5:1- in the step (2) 2:1:20-50。
4. a kind of preparation method for red colour blindness and the correcting lens of anomalous trichromatism patient according to claim 1, special Sign is: it is blue to select Teng Shi for blue pigment in the step (3), and wherein the quality proportioning of Teng Shi indigo plant and deionized water is 1: 20-50。
5. a kind of preparation method for red colour blindness and the correcting lens of anomalous trichromatism patient according to claim 1, special Sign is: the quality proportioning of red pigment solution, blue pigment solution and deionized water is 5-10:5- in the step (4) 10:100。
6. a kind of preparation method for red colour blindness and the correcting lens of anomalous trichromatism patient according to claim 1, special Sign is: inner layer resin eyeglass being immersed in the dyeing course in mixed solution in the step (5), first by inner layer resin mirror Piece is put into 1-2min below mixed solution liquid level vertically, then is horizontally placed at 5-6min below mixed solution liquid level, finally keeps again It is vertically positioned at below mixed solution liquid level and is taken out after 1-2min.
7. a kind of preparation method for red colour blindness and the correcting lens of anomalous trichromatism patient according to claim 6, special Sign is: inner layer resin eyeglass being immersed in mixed solution in dyeing course in the step (5), inner layer resin eyeglass is vertical It is located at the position 60-80mm below mixed solution liquid level when placement, 30-40mm is located at below mixed solution liquid level when being horizontally arranged It sets.
8. a kind of preparation method for red colour blindness and the correcting lens of anomalous trichromatism patient according to claim 1, special Sign is: plating mercury membrane material selects the mixture of silica and titanium pentoxide in the step (6), wherein silica Quality proportioning with titanium pentoxide is 1:1-3.
9. a kind of preparation method for red colour blindness and the correcting lens of anomalous trichromatism patient according to claim 1, special Sign is: the mixture of plating partial veil material selection magnesium fluoride and zirconium oxide in the step (7), wherein magnesium fluoride and zirconium oxide Quality proportioning is 1:3-5.
10. a kind of preparation method for red colour blindness and the correcting lens of anomalous trichromatism patient according to claim 1, special Sign is: the vacuum degree of vacuum coating is 5.0*10+5torr in the step (6) and step (7).
CN201910127914.7A 2019-02-21 2019-02-21 A kind of preparation method for red colour blindness and the correcting lens of anomalous trichromatism patient Pending CN109683348A (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2021085547A1 (en) * 2019-10-30 2021-05-06 パナソニックIpマネジメント株式会社 Optical filter, color vision correction lens, and optical component for color vision correction

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2148340Y (en) * 1993-03-09 1993-12-01 北京市天中医疗器械高技术公司 Colour sense correction spectacles
CN1080406A (en) * 1992-12-18 1994-01-05 战永刚 Achromatopsia-correcting glasses and manufacture method
CN1236902A (en) * 1998-07-24 1999-12-01 长春科利尔光学制品有限公司 Resin glasses able to correct colour vision by reduce concave reflection
JP4411358B2 (en) * 1998-02-26 2010-02-10 株式会社ワールドマンセル Manufacturing method of color vision correction contact lens
KR20120111884A (en) * 2011-03-31 2012-10-11 크로마젠 비젼 엘엘씨 Method of making and prescribing tinted lenses
US20120273110A1 (en) * 2007-07-13 2012-11-01 Chromagen Vision Llc Method of making and prescribing tinted lenses
CN109228424A (en) * 2018-08-21 2019-01-18 镇江熙文电子商务有限公司 A kind of eyeglass preparation method for colour blindness and anomalous trichromatism patient

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1080406A (en) * 1992-12-18 1994-01-05 战永刚 Achromatopsia-correcting glasses and manufacture method
CN2148340Y (en) * 1993-03-09 1993-12-01 北京市天中医疗器械高技术公司 Colour sense correction spectacles
JP4411358B2 (en) * 1998-02-26 2010-02-10 株式会社ワールドマンセル Manufacturing method of color vision correction contact lens
CN1236902A (en) * 1998-07-24 1999-12-01 长春科利尔光学制品有限公司 Resin glasses able to correct colour vision by reduce concave reflection
US20120273110A1 (en) * 2007-07-13 2012-11-01 Chromagen Vision Llc Method of making and prescribing tinted lenses
KR20120111884A (en) * 2011-03-31 2012-10-11 크로마젠 비젼 엘엘씨 Method of making and prescribing tinted lenses
CN109228424A (en) * 2018-08-21 2019-01-18 镇江熙文电子商务有限公司 A kind of eyeglass preparation method for colour blindness and anomalous trichromatism patient

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2021085547A1 (en) * 2019-10-30 2021-05-06 パナソニックIpマネジメント株式会社 Optical filter, color vision correction lens, and optical component for color vision correction
JP7361302B2 (en) 2019-10-30 2023-10-16 パナソニックIpマネジメント株式会社 Optical filters, color vision correction lenses, and optical components for color vision correction

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Application publication date: 20190426