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Portable Handheld Slit-Lamp Based on a Smartphone Camera for Cataract Screening

PURPOSE: As part of plans to provide help to people in remote and poor areas who have no medical resources, a portable slit-lamp based on a smartphone was proposed. This would help in early screening of cataract diseases. METHODS: This means a microlens is designed that would work with a phone'...

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Autores principales: Hu, Shenming, Wu, Hong, Luan, Xinze, Wang, Zhuoshi, Adu, Mary, Wang, Xiaoting, Yan, Chunhong, Li, Bo, Li, Kewang, Zou, Ying, Yu, Xiaoya, He, Xiangdong, He, Wei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7421715/
https://www.ncbi.nlm.nih.gov/pubmed/32832134
http://dx.doi.org/10.1155/2020/1037689
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author Hu, Shenming
Wu, Hong
Luan, Xinze
Wang, Zhuoshi
Adu, Mary
Wang, Xiaoting
Yan, Chunhong
Li, Bo
Li, Kewang
Zou, Ying
Yu, Xiaoya
He, Xiangdong
He, Wei
author_facet Hu, Shenming
Wu, Hong
Luan, Xinze
Wang, Zhuoshi
Adu, Mary
Wang, Xiaoting
Yan, Chunhong
Li, Bo
Li, Kewang
Zou, Ying
Yu, Xiaoya
He, Xiangdong
He, Wei
author_sort Hu, Shenming
collection PubMed
description PURPOSE: As part of plans to provide help to people in remote and poor areas who have no medical resources, a portable slit-lamp based on a smartphone was proposed. This would help in early screening of cataract diseases. METHODS: This means a microlens is designed that would work with a phone's camera. The phone's photo taking function is used in capturing the image of the eyes lens to replace the observation system of the desktop slit-lamp. A simplified slit light band was designed. In order for the light source part to meet the portable requirements of the slit-lamp, the adjustable and diffused light functions of the ligaments were removed in this design. Furthermore, the images collected by the smartphone are uploaded to the deep learning cataract screening system, which can achieve real-time and effective screening of cataract. RESULTS: Unlike the desktop slit-lamp, which needs skilled personnel to operate, this device can be easily operated by less-skilled or inexperienced doctors. This eliminates the concerns of inaccurate diagnosis based on the use of unskilled professionals. Due to the portability, ease of use, and simplicity in obtaining crystal images of this device, it serves as a promising platform for nonhospital screening and telemedicine. CONCLUSIONS: In this paper, we invented a small portable device for screening cataract. This device is to make screening and diagnosis of cataract in remote areas very fast and effective. It will also solve the problem of inadequate specialized doctors and equipment in those areas as well. Translational Relevance. Smartphones can be used with portable slit-lamps to capture the images of the lens.
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spelling pubmed-74217152020-08-20 Portable Handheld Slit-Lamp Based on a Smartphone Camera for Cataract Screening Hu, Shenming Wu, Hong Luan, Xinze Wang, Zhuoshi Adu, Mary Wang, Xiaoting Yan, Chunhong Li, Bo Li, Kewang Zou, Ying Yu, Xiaoya He, Xiangdong He, Wei J Ophthalmol Research Article PURPOSE: As part of plans to provide help to people in remote and poor areas who have no medical resources, a portable slit-lamp based on a smartphone was proposed. This would help in early screening of cataract diseases. METHODS: This means a microlens is designed that would work with a phone's camera. The phone's photo taking function is used in capturing the image of the eyes lens to replace the observation system of the desktop slit-lamp. A simplified slit light band was designed. In order for the light source part to meet the portable requirements of the slit-lamp, the adjustable and diffused light functions of the ligaments were removed in this design. Furthermore, the images collected by the smartphone are uploaded to the deep learning cataract screening system, which can achieve real-time and effective screening of cataract. RESULTS: Unlike the desktop slit-lamp, which needs skilled personnel to operate, this device can be easily operated by less-skilled or inexperienced doctors. This eliminates the concerns of inaccurate diagnosis based on the use of unskilled professionals. Due to the portability, ease of use, and simplicity in obtaining crystal images of this device, it serves as a promising platform for nonhospital screening and telemedicine. CONCLUSIONS: In this paper, we invented a small portable device for screening cataract. This device is to make screening and diagnosis of cataract in remote areas very fast and effective. It will also solve the problem of inadequate specialized doctors and equipment in those areas as well. Translational Relevance. Smartphones can be used with portable slit-lamps to capture the images of the lens. Hindawi 2020-08-01 /pmc/articles/PMC7421715/ /pubmed/32832134 http://dx.doi.org/10.1155/2020/1037689 Text en Copyright © 2020 Shenming Hu et al. http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Hu, Shenming
Wu, Hong
Luan, Xinze
Wang, Zhuoshi
Adu, Mary
Wang, Xiaoting
Yan, Chunhong
Li, Bo
Li, Kewang
Zou, Ying
Yu, Xiaoya
He, Xiangdong
He, Wei
Portable Handheld Slit-Lamp Based on a Smartphone Camera for Cataract Screening
title Portable Handheld Slit-Lamp Based on a Smartphone Camera for Cataract Screening
title_full Portable Handheld Slit-Lamp Based on a Smartphone Camera for Cataract Screening
title_fullStr Portable Handheld Slit-Lamp Based on a Smartphone Camera for Cataract Screening
title_full_unstemmed Portable Handheld Slit-Lamp Based on a Smartphone Camera for Cataract Screening
title_short Portable Handheld Slit-Lamp Based on a Smartphone Camera for Cataract Screening
title_sort portable handheld slit-lamp based on a smartphone camera for cataract screening
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7421715/
https://www.ncbi.nlm.nih.gov/pubmed/32832134
http://dx.doi.org/10.1155/2020/1037689
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