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Contrast Sensitivity With a Subretinal Prosthesis and Implications for Efficient Delivery of Visual Information

机译:视网膜下假体的对比敏感性及其对视觉信息有效传递的意义

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Purpose: To evaluate the contrast sensitivity of a degenerate retina stimulated by a photovoltaic subretinal prosthesis, and assess the impact of low contrast sensitivity on transmission of visual information. Methods: We measure ex vivo the full-field contrast sensitivity of healthy rat retina stimulated with white light, and the contrast sensitivity of degenerate rat retina stimulated with a subretinal prosthesis at frequencies exceeding flicker fusion (20 Hz). Effects of eye movements on retinal ganglion cell (RGC) activity are simulated using a lineara??nonlinear model of the retina. Results: Retinal ganglion cells adapt to high frequency stimulation of constant intensity, and respond transiently to changes in illumination of the implant, exhibiting responses to ON-sets, OFF-sets, and both ON- and OFF-sets of light. The percentage of cells with an OFF response decreases with progression of the degeneration, indicating that OFF responses are likely mediated by photoreceptors. Prosthetic vision exhibits reduced contrast sensitivity and dynamic range, with 65% contrast changes required to elicit responses, as compared to the 3% (OFF) to 7% (ON) changes with visible light. The maximum number of action potentials elicited with prosthetic stimulation is at most half of its natural counterpart for the ON pathway. Our model predicts that for most visual scenes, contrast sensitivity of prosthetic vision is insufficient for triggering RGC activity by fixational eye movements. Conclusions: Contrast sensitivity of prosthetic vision is 10 times lower than normal, and dynamic range is two times below natural. Low contrast sensitivity and lack of OFF responses hamper delivery of visual information via a subretinal prosthesis.
机译:目的:评估由光伏视网膜下假体刺激的退化视网膜的对比敏感度,并评估低对比敏感度对视觉信息传输的影响。方法:我们体外测量了白光刺激的健康大鼠视网膜的全视野对比敏感度,以及视网膜下假体刺激的退化大鼠视网膜在超过闪烁融合(> 20 Hz)的频率下的对比敏感度。眼球运动对视网膜神经节细胞(RGC)活性的影响是使用视网膜的线性-非线性模型来模拟的。结果:视网膜神经节细胞适应恒定强度的高频刺激,并对植入物的照度变化进行瞬时响应,表现出对光的开,关,开和关的响应。具有OFF反应的细胞百分比随着变性的进行而降低,这表明OFF反应可能是由光感受器介导的。假肢视觉表现出降低的对比敏感度和动态范围,与引起可见光的3%(OFF)到7%(ON)变化相比,需要65%的对比变化才能引起反应。假体刺激引起的最大动作电位最多是其自然途径的一半。我们的模型预测,对于大多数视觉场景,假肢视觉的对比度敏感性不足以通过固定眼动来触发RGC活动。结论:假肢视觉对比灵敏度比正常人低10倍,动态范围比自然人低2倍。低对比度敏感度和缺少OFF反应会阻碍通过视网膜下假体传递视觉信息。

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