• Title/Summary/Keyword: 안경색상

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Color Lens Design by Changing the Combination of Coating Materials (증착 물질 두께 조절을 이용한 색상 렌즈 설계)

  • 이덕희;류지욱;한두희
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.3 no.2
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    • pp.84-88
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    • 2002
  • We designed 5 layer coating in using $SiO_2$and $ZrO_2$. We calculated reflectance with changing the thickness of 5th layer and visualized color of reflected light in using reflectance of RGB. by the result, when thickness is increase from 5 nm to 80 nm, red color of reflected light is decreased and increase from 80 nm to 150 nm, blue color of reflected light is increased. we maked use of Photoshop 5.0 to analyze colors.

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Glasses Removal from Facial Images with Recursive PCA Reconstruction (반복적인 PCA 재구성을 이용한 얼굴 영상에서의 안경 제거)

  • 오유화;안상철;김형곤;김익재;이성환
    • Journal of the Institute of Electronics Engineers of Korea SP
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    • v.41 no.3
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    • pp.35-49
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    • 2004
  • This paper proposes a new glasses removal method from color frontal facial image to generate gray glassless facial image. The proposed method is based on recursive PCA reconstruction. For the generation of glassless images, the occluded region by glasses should be found, and a good reconstructed image to compensate with should be obtained. The recursive PCA reconstruction Provides us with both of them simultaneously, and finally produces glassless facial images. This paper shows the effectiveness of the proposed method by some experimental results. We believe that this method can be applied to removing other type of occlusion than the glasses with some modification and enhancing the performance of a face recognition system.

The Study on Total Fashion trend & Eyewear Design 21C (21C 안경디자인의 조건과 Total Fashion 트랜드 고찰 - 의상, 헤어 및 메이크업을 중심으로 -)

  • Jung, Hyung-Ho
    • Journal of Korean Ophthalmic Optics Society
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    • v.10 no.1
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    • pp.17-25
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    • 2005
  • In modem society, individuality and diversity are emphasized and visual sensation is considered to be very important because of high degree industrialization and development of mass media. And also, the Total Fashion Age opened. In the past, spectacles was a mere means of correcting or protecting sight. It's design was very simple in form and skill. But in 21C, eyewear design is viewed as a vehicle to create fashion and keeps changing to be in line with the contemporary culture and fashion trend beyond the old functions. The purpose of this study was to investigate the conditions of eyewear design in the 21st century by looking into the history of eyewear and analyzing the trend of eyewear design and the color image with fashion, hair, and make-up.

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A Questionnaire Study on the Differences in Preference of Eyewear between Korean and Chinese Consumers (한국과 중국 소비자의 안경의 선호도 차이에 대한 설문 조사 연구)

  • Sung, Jae Hyun;Cho, Eun Jin;Kim, Dal-Young
    • The Korean Journal of Vision Science
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    • v.20 no.4
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    • pp.393-401
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    • 2018
  • Purpose : This survey aimed to investigate the differences in shape and color preference of eyeglasses and sunglasses between Korean and Chinese consumers. Methods : The questionnaire was conducted on 150 Chinese students studying in Korea and 150 Korean college students. Any student who majors in optometry was excluded. Chinese students were provided with questionnaires that were translated into Simplified Chinese characters, and it was translated by a native Chinese student studying in a master course of a Korean university, on the basis of Korean questionnaire. Results : The Chinese consumer group preferred the global famous brand in sunglasses rather than the glasses, and it was found that they preferred the Korean glasses products relatively. Also, they presented higher preference to half- or rimless frame, gold color, two-tone colored lens, comparing to the Korean consumer group. Conclusion : The results of this study are expected to contribute to Chinese marketing strategy of Korean manufacturing optical shop companies, and to sales strategy of Korean optical shops with Chinese tourists.

The Change of the Phoria in Accordance with the Color and Concentration of the Color Lens (착색렌즈의 색상과 농도에 따른 원거리 사위도의 변화)

  • Choi, Hyun-Soo;Park, Sung-Jong;Lee, Seok-Ju;Jin, Moon-Seok;Jun, Jin;Ryu, Geun-Chang
    • Journal of Korean Ophthalmic Optics Society
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    • v.16 no.3
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    • pp.339-343
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    • 2011
  • Purpose: In this study, we investigated changes of phoria based on varying the color and concentration of the color in lenses. Methods: We measured distance phoria for 39 students who aged 20 to 40 with different concentrated lenes - red, gray, brown and green lenses in concentration 20%, 50% and 80%, respectively. Results: Subjects were divided into three groups which were orthophoria, esophoria and exophoria. Orthophoria in all the color and concentration, there were a few of the esophoria. Esophoria of average 2.07${\Delta}$,B.O showed that a slight increase in all colors and concentration, especially in brown lenses showed the greatest increase. Exophoria of average 3.82${\Delta}$,B.I showed that a slight decrease in all colors and concentration, especially in green lenses showed to 2.95${\Delta}$,B.I to the greatest decrease. Different concentration in same color had no specific tendency regarding phoria. Conclusions: The phoria must be considered when selecting color of the lens because of phoria is changeable by color of the lens. It is expected to study the criteria that minimize the asthenopia.

Convergence study of comparison of blue light blocking rate between colored lenses of various colors and dental tips (다양한 색상의 착색렌즈와 치과용 팁의 청광차단율 비교의 융합적 연구)

  • Lee, Sook-Jeong
    • Journal of the Korea Convergence Society
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    • v.12 no.7
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    • pp.61-67
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    • 2021
  • The purpose of this study was to investigate the colors of spectacle lenses that would be effective in blocking blue light among various colors so that the damage caused by blue light could be conveniently reduced even in daily life and when filling with dental light-curing resin. Each color dye of orange, brown, gray, yellow, red, and rosa was dissolved in an individual container of a spectacle lens tinting machine, and 6 uncolored spectacle lenses were immersed in a temperature of 90℃ for 1 hour to color. As a result of comparing the blue light transmittance of the colored spectacle lens and the tip for the photopolymerizer, the blue light transmittance of the orange colored lens was 0.82%, and the blue light blocking effssect was the best. Brown and gray tinted lenses had excellent blue light blocking rate, but it was difficult to recognize objects through the lens due to the high tinted concentration, and yellow tinted lenses were found to be effective when the tint was similar to the tip. The blue tinted lens had a blue light transmittance of 15.10%, which was lower than other tinted lenses. The results of the experimental study are expected to be helpful in recognizing the blue light transmittance by spectacle tinted lenses of various colors and making efforts to select the appropriate blue light blocking lens color and block harmful blue light stimuli.

The contrast sensitivity change of circle contact lens's color by refraction error and illuminance (굴절이상도와 조도에 따른 써클콘택트렌즈의 색상 별 대비감도 변화)

  • Kim, Bo-Yun;Jung, Mi-A;Lee, Eun-Hee
    • Journal of the Korea Convergence Society
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    • v.9 no.12
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    • pp.273-279
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    • 2018
  • This study researched how the refraction error and illumination influence to contrast sensitivity when we wear the circle contact lenses. The study population comprised 16 students and adults(5 of Male, 11 of Female). The study population comprised 16 students and adults(5 of Male, 11 of Female), We measured the contrast sensitivity on uncorrected vision, according to color of circle contact and change the illumination of laboratory. The contrast sensitivity by illumination decreased than unaided vision when they wore the color contact lenses and more increased mesopic than photopic. Compared between black and brown lenses, brown was higher the contrast sensitivity than black. Also emmetropia had significantly differences when we compared the contrast sensitivity of subjects who had emmetropia, myopia and myopia astigmatism whether refractive error has or not. Therefore, it is important to provide sufficient understanding and recognition of color contact lenses.

The Change of Accommodative Functions by Difference Density and Color (착색렌즈의 농도와 색상에 따른 조절기능 변화)

  • Jang, Jung Un
    • The Korean Journal of Vision Science
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    • v.20 no.4
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    • pp.453-459
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    • 2018
  • Purpose : This study was to investigate the change of accommodative functions by different color density and color of colored lenses. Methods : Participant had a normal NPC and no dyschromatopsia, phoria and eye disease, also had no histories of eye surgery in 31 students of university. Their accommodative functions were measured according to 50%, 80% density of the gray, blue, brown lens and non-colored lenses. Tests of accommodative functions performed include amplitude of accommodation, accommodative facility, relative accommodation, and accommodative lag. Results : The amplitude of accommodation and accommodation lag were increased when wearing the colored lens. Negative relative accommodation was more increased when wearing the colored lens than achromatic. Positive relative accommodation increased when wearing the blue color lens density by 50%. Also, accommodation facility increased when wearing the colored lens, but, as the density of the color increased, the accommodation facility was decreased. Conclusion : As since the accommodation function changes according to density of the colored lenses, working distance and environment of the wearing colored lens should be considered when selecting density and color of colored lenses.

Measurement of the Refractive power for an Eye by using the Opposite Colors (보색을 이용한 눈의 굴절력 측정)

  • Joung, Maengsig
    • Journal of Korean Ophthalmic Optics Society
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    • v.7 no.2
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    • pp.135-141
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    • 2002
  • A study on measurement of refractive power for eyesight by condition of opposite color, has been conducted. In the results of the test, it was observed that farsightedness has better lightness large range. However, in the case of chroma, we cannot distinguish tell the nearsightedness from the farsightedness. Generally, refractive power increased with the increase of large range was revealed. This method is better as compared with red-green test method.

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