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Photochemistry of Organic Retinal Prostheses
Annual Review of Physical Chemistry ( IF 14.7 ) Pub Date : 2019-06-07 00:00:00 , DOI: 10.1146/annurev-physchem-042018-052445
Giovanni Manfredi 1 , Elisabetta Colombo 2 , Jonathan Barsotti 1 , Fabio Benfenati 2, 3 , Guglielmo Lanzani 1, 4
Affiliation  

Organic devices are attracting considerable attention as prostheses for the recovery of retinal light sensitivity lost to retinal degenerative disease. The biotic/abiotic interface created when light-sensitive polymers and living tissues are placed in contact allows excitation of a response in blind laboratory rats exposed to visual stimuli. Although polymer retinal prostheses have proved to be efficient, their working mechanism is far from being fully understood. In this review article, we discuss the results of the studies conducted on these kinds of polymer devices and compare them with the data found in the literature for inorganic retinal prostheses, where the working mechanisms are better comprehended. This comparison, which tries to set some reference values and figures of merit, is intended for use as a starting point to determine the direction for further investigation.

中文翻译:


有机视网膜假体的光化学

作为修复因视网膜退行性疾病而丧失的视网膜光敏性的假体,有机装置引起了极大的关注。当光敏聚合物和活组织接触时产生的生物/非生物界面允许在暴露于视觉刺激的盲实验大鼠中激发反应。尽管已经证明聚合物视网膜假体是有效的,但是其工作机制远未得到充分理解。在这篇综述文章中,我们讨论了对这些类型的聚合物器件进行的研究结果,并将其与文献中有关无机视网膜假体的数据进行了比较,这些无机假体的工作机理得到了更好的理解。这种比较试图设置一些参考值和品质因数,

更新日期:2019-06-07
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