Design & development of plastics tele microscope visual aids for vision impaired using state-of-art aspheric technology

Neha Khatri, V. Mishra, Mukesh Kumar, V. Karar, RamaGopal V. Sarepaka
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Abstract

Low Vision indicates a visual acuity of less than 6/18 but better than 3/60 or / and field of vision reduced to 20° or less. As per the report published in journal of ophthalmology, every five seconds one person in our world goes blind; every minute, one child goes blind. As per Indian Council of Medical Research, India has more than 40 million persons with visual impairments of serious nature. Age-related macular degeneration is the leading cause of Low Vision, followed by diabetic retinopathy and glaucoma. A variety of other conditions such as in-operable or pre-operative cataracts and other hereditary diseases can also cause impaired vision. Most of these visual impairments cannot be corrected by surgical means, nor by conventional spectacles. Hence, it is vital to develop dedicated Visual Aids for Near Vision & Distance Vision to enable the person with low vision to perform their daily tasks independently. In current work light weight, tele-microscopes are developed by direct removal of material by ultra-precision machining method. This device employs plastic aspheric lenses in plano-convex and plano-concave configuration mounted in a lightweight housing with a power accommodation of +2 Dioptre. Plastic aspheric lenses are fabricated by single point diamond turning (SPDT) machine. Developed visual aids have controlled profile to improve the vision quality. The mechanical housing design provides flexibility to use the device in dual configuration i.e. hand-held and spectacle frame mounted.
使用最先进的非球面技术设计和开发用于视力受损的塑料远程显微镜助视器
低视力是指视力低于6/18但优于3/60或/,视野缩小到20°或以下。根据发表在《眼科学杂志》上的报告,世界上每五秒钟就有一人失明;每分钟就有一个孩子失明。根据印度医学研究委员会的数据,印度有4 000多万人患有严重的视力障碍。年龄相关性黄斑变性是低视力的主要原因,其次是糖尿病视网膜病变和青光眼。各种其他情况,如不能手术或术前白内障和其他遗传性疾病也会导致视力受损。这些视力障碍大多不能通过外科手术或传统眼镜来矫正。因此,开发专用的近视眼和远视眼辅助设备,使弱视患者能够独立完成日常工作是至关重要的。在目前工作重量轻的情况下,采用超精密加工方法直接去除材料,发展了远距显微镜。该装置采用塑料非球面透镜平凸和平凹结构,安装在一个轻便的外壳中,功率调节为+2屈光度。采用单点金刚石车削(SPDT)加工塑料非球面透镜。已开发的视觉辅助设备具有控制轮廓以提高视觉质量的功能。机械外壳设计提供了灵活的使用设备在双重配置,即手持和眼镜框架安装。
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