• Title/Summary/Keyword: Multi lens

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DERIVATION OF THE GRAVITATIONAL MULTI-LENS EQUATION FROM THE LINEAR APPROXIMATION OF EINSTEIN FIELD EQUATION

  • KANG SANGJUN
    • Journal of The Korean Astronomical Society
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    • v.36 no.3
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    • pp.75-80
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    • 2003
  • When a bright astronomical object (source) is gravitationally lensed by a foreground mass (lens), its image appears to be located at different positions. The lens equation describes the relations between the locations of the lens, source, and images. The lens equation used for the description of the lensing behavior caused by a lens system composed of multiple masses has a form with a linear combination of the individual single lens equations. In this paper, we examine the validity of the linear nature of the multi-lens equation based on the general relativistic point of view.

Research to Minimize Endoscope and Objective-lens Sensitivity Using Multi-configurations (다중 구성을 이용한 내시경 및 대물렌즈 광학계 공차 민감도 최소화 설계 기술)

  • Jung, Mee-Suk
    • Korean Journal of Optics and Photonics
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    • v.32 no.6
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    • pp.259-265
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    • 2021
  • Recently, lens manufacturing and assembly technology has greatly improved. However, tight requirements of manufacturing and assembly lead to an increase in cost and manufacturing time, and in some cases the performance of an optical system may deteriorate depending on the operating environment's conditions, such as temperature or vibration. In addition, the use of a compensator is an effective method to reduce sensitivity in an ultra-precision optical system, but in the case of a small lens, such as that in an endoscope, it is difficult to use a compensator due to the size limitation of the lens barrel. Therefore, minimizing lens sensitivity is the most important technology in lens design. For this reason, there have been various attempts to reduce the lens sensitivity, and there is a trend to add functions to reduce the sensitivity in the lens design S/W. In this paper, we introduce a design technology that minimizes lens sensitivity. We first design a lens with quite good performance, then analyze the sensitivity of this lens, make a multi-configuration with high-sensitivity element error, and then reoptimize it. We prove with an example that this design technique is very effective.

The Deposition of Tear Protein according to Soft Lens Materials and The Cleaning Efficacy of Multi-purpose Solution according to the Surfactant Types (소프트렌즈 재질 별 누액단백질 침착 및 계면활성제 종류에 따른 다목적용액의 세척효율)

  • Park, Mijung;Kwon, Young Dae;Lee, Wang Jae;Kim, So Ra
    • Journal of Korean Ophthalmic Optics Society
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    • v.19 no.2
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    • pp.179-188
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    • 2014
  • Purpose: The present study was aimed to investigate the cleaning efficacy of multi-purpose solutions containing different types and content of surfactants and their effect on the visible light transmittance of soft lens. Methods: Soft lenses made of different materials (etafilcon A and hilafilcon B) were deposited tear proteins by using the artificial tear and then compared the resulting cleaning efficacy and visible light transmittance after cleaning the lens with 6 types of multi-purpose solutions containing different content of surfactants. Results: The cleaning efficacy of multi-purpose solutions was variously shown as approximately 23~43% according to the active concentration of surfactants and surface tension in multi-purpose solution when etafilcon A lens cleaned with rubbing. The highest cleaning efficacy was detected when cleaned with the multi-purpose solution containing hydrogen peroxide besides surfactant however, the amount of remaining protein was still high on the lens. After washed with multi-purpose solution, the visible light transmittance of lens was in 89.8 to 90.8%. The amount of protein deposited on hilafilcon B lens was very small compared with it on etafilcon A lens even though it was incubated in artificial tears for 7 days, which showed 5~10% of protein amount in etafilcon A lens and the decrease of visible light transmittance was also not significant. In case of rubbing with multi-purpose solution, the cleaning efficacy on hilafilcon B lens was in 45.4 to 67.4% however, the order of cleaning efficacy of multi-purpose solution was different from it on etafilcon A lens. The visible light transmittance of hilafilcon B lens has been restored to the level of new lens. Conclusions: From the result, it is concluded that the appropriate multi-purpose solution should be selected according to the lens material and the amount of protein deposit on the basis of understanding surfactants and active principle for proper care of protein deposit on soft lens and the cleaning with rubbing is more efficient for lens care regardless of manufacturer's guideline.

Comparisons of Adherence Level of Micro-organisms According to Contact Lens Materials and Protein Deposition and Disinfection Efficacy of Multipurpose Solution (콘택트렌즈 재질 및 침착 단백질에 따른 균 흡착 정도와 다목적용액의 살균력 비교)

  • Sung, Hyung Kyung;Kim, So Ra;Park, Mijung
    • Journal of Korean Ophthalmic Optics Society
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    • v.20 no.1
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    • pp.35-42
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    • 2015
  • Purpose: The present study was aimed to compare the difference in adherence level of microorganisms according to contact lens materials and protein deposition and to evaluate disinfection efficacy of multipurpose solution. Methods: The evaluations of micro-organisms' adherence and disinfection efficacy of multi-purpose solution were conducted by employing the Part 2. Regimen Procedure for Disinfecting Regiments in the Disinfection Efficacy Testing under the "FDA Evaluation Criteria & Method". Results: Pseudomonas aeruginosa, Serratia marcescens, Candida albicans except Staphylococcus aureus adhered more on etafilcon A lens and disinfection efficacy of total 4 products investigated was almost perfect except Candida albicans. The 3 micro-organisms except Serratia marcescens adhered more to albumin-predeposited lens. Disinfection efficacy of multi-purpose solution was higher against the micro-organisms adhered to albumin-deposited lens than against the micro-organisms adhered to the lysozyme-deposited lens. Furthermore, disinfection efficacy of multi-purpose solution was different according to types of micro-organisms. Conclusions: It was revealed that the type of micro-organisms, the lens materials and type of absorbed tear protein affected the amount of adhered micro-organisms to contact lens and that adhesion of tear protein could induce the change of disinfection efficacy of multi-purpose solution. It suggest that the hygienic condition of contact lens can vary by these factors influencing on disinfection efficacy and the occurrence of adverse effect can be affected.

A Study of antibacterial effect on pseudomonas aeruginosa of soft contact lens multi-purpose solution (MPS) (Pseudomonas aeruginosa에 대한 soft contact lens 다목적 용액의 항균효과)

  • Yoon, Min-Hwa;Park, Hyun-Ju;Lee, Ki-Young
    • Journal of Korean Ophthalmic Optics Society
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    • v.9 no.2
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    • pp.353-359
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    • 2004
  • This study was performed to examine the pseudomonas aeruginosa, antibacterial effect of a soft contact lens multi-purpose solution (MPS). Pseudomonas aeruginosa was incubated in the Muller Hinton Broth culture, and treated with 5 MPSs. TO investigate the antibacterial efficiency of MPSs, UV spectrometer was used for measuring optical density of pseudomonas aeruginosa. The antibacterial effect of 4 MPSs was significant except for one MPS. This result suggested that the antibacterial effect of MPSs is dependant on their components, pH. Therefore they had antibacterial effect of the pseudomonas aeruginosa.

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Vision Inspection for Flexible Lens Assembly of Camera Phone (카메라 폰 렌즈 조립을 위한 비전 검사 방법들에 대한 연구)

  • Lee I.S.;Kim J.O.;Kang H.S.;Cho Y.J.;Lee G.B.
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 2006.05a
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    • pp.631-632
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    • 2006
  • The assembly of camera lens modules fur the mobile phone has not been automated so far. They are still assembled manually because of high precision of all parts and hard-to-recognize lens by vision camera. In addition, the very short life cycle of the camera phone lens requires flexible and intelligent automation. This study proposes a fast and accurate identification system of the parts by distributing the camera for 4 degree of freedom assembly robot system. Single or multi-cameras can be installed according to the part's image capture and processing mode. It has an agile structure which enables adaptation with the minimal job change. The framework is proposed and the experimental result is shown to prove the effectiveness.

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Microbial Contamination of Contact lens cases in multi - purpose solution care systems (다목적 용액을 사용하는 콘택트렌즈 관리체계에서 렌즈 보관용기의 미생물 오염)

  • Kim, Sang-Moon
    • Journal of Korean Ophthalmic Optics Society
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    • v.5 no.1
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    • pp.95-99
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    • 2000
  • The microbial contamination rate of contact lens cases in multi-purpose solution(MPS) care systems of 80 asymptomatic soft contact lens wearers was investigated. In caring for their lenses 72 patients (90%) used chemical disinfection(include MPS), six patients(7%) used hydrogen peroxide, and two patients(3%) used heat. Fifty-nine percent of patients used MPS in their care systems. Of 80 contact lens cases, contamination was found in 68%(54) of cases. There is a significant relationship between the ages of lens cases and contamination: older cases being more frequently contaminated. Of the contaminated 31 lens cases(57%) in MPS care systems, four contact lens cases(13%) were contaminated by single organism, 15 cases(48%) by two kinds of organisms, and 12 cases(39%) by more than three kinds of organisms. Of the organisms that were contaminated lens cases, Pseudomonas. Serratia, Bacillus, E. coli and Aspergillus were frequently isolated. When considering the high contamination rate of soft contact lens cases in MPS care systems more effective and hygienical lens care system is important, especially frequent and regular disposal of lens cases may prove to prevent the build-up of microbial colonisation in containers.

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A Comparision of Disinfection Efficacy for RGP Lens by Using Multi-purpose Solution and Cleaner (다목적 용액 및 세척제를 이용한 RGP 렌즈 소독방법의 비교)

  • Park, Mijung;Gwak, Jea-Sook;Park, Sang-Min
    • Journal of Korean Ophthalmic Optics Society
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    • v.12 no.4
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    • pp.37-41
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    • 2007
  • The aim of this study is to establish RGP lens care system using RGP lens multi-purpose solution(MPS) and cleaner. Each RGP lens was incubated in Pseudomonas aeruginosa standard strain, and the numbers of P. aeruginosa colony remaining after treatment by using MPS and/or cleaner including surface activating components were estimated. Soaking only in MPS for 30 min reduced the number of P. aeruginosa up to 50%. 95% of P. aeruginosa was eliminated at RGP lenses soaked in MPS for 4 hr, but P. aeruginosa was not detected at RGP lenses soaked for 6 hr. When only cleaner was used for RGP lens care, 70% of P. aeruginosa was eliminated. This result showed that using cleaner had more effective at removing P. aeruginosa than soaking in MPS for 30 min. When soaking in MPS for 30 min after using cleaner reduced the number of P. aeruginosa up to 36% of that which soaking only in MPS for 30 min. This result suggested that using cleaner could be helpful to improve the disinfection efficacy of short time soaking in MPS.

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