Advances in retinal prosthesis systems

被引:100
|
作者
Bloch, Edward [1 ,2 ]
Luo, Yvonne [1 ,3 ]
da Cruz, Lyndon [1 ,2 ]
机构
[1] Moorfields Eye Hosp NHS Fdn Trust, NIHR Biomed Res Ctr, 162 City Rd, London EC1V 2PD, England
[2] UCL, Wellcome EPSRC Ctr Intervent & Surg Sci, London, England
[3] East Kent Hosp Univ NHS Fdn Trust, Kent, England
来源
关键词
microelectrode; photovoltaic; retinal prosthesis; tissue electronics; SUPRACHOROIDAL-TRANSRETINAL STIMULATION; BLIND SUBJECTS; ELECTRICAL-STIMULATION; EPIRETINAL PROSTHESIS; ARTIFICIAL VISION; VISUAL FUNCTION; GENE-THERAPY; PERFORMANCE; LOCALIZATION; IMPLANTATION;
D O I
10.1177/2515841418817501
中图分类号
R77 [眼科学];
学科分类号
100212 ;
摘要
Retinal prosthesis systems have undergone significant advances in the past quarter century, resulting in the development of several different novel surgical and engineering approaches. Encouraging results have demonstrated partial visual restoration, with improvement in both coarse objective function and performance of everyday tasks. To date, four systems have received marketing approval for use in Europe or the United States, with numerous others undergoing preclinical and clinical evaluation, reflecting the established safety profile of these devices for chronic implantation. This progress represents the first notion that the field of visual restorative medicine could offer blind patients a hope of real and measurable benefit. However, there are numerous complex engineering and biophysical obstacles still to be overcome, to reconcile the gap that remains between artificial and natural vision. Current developments in the form of enhanced image processing algorithms and data transfer approaches, combined with emerging nanofabrication and conductive polymerization techniques, herald an exciting and innovative future for retinal prosthetics. This review provides an update of retinal prosthetic systems currently undergoing development and clinical trials while also addressing future challenges in the field, such as the assessment of functional outcomes in ultra-low vision and strategies for tackling existing hardware and software constraints.
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页数:16
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