视网膜神经节细胞对电刺激的网络介导反应的空间特性

M. Im, S. Fried
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引用次数: 10

摘要

视网膜假体一直显示有能力恢复有限的视觉知觉,那些失明的视网膜外退行性疾病。然而,视网膜植入物的性能是高度不一致的,高密度阵列被证明只比稀疏阵列好一点点,这表明提高视觉的整体质量可能需要的不仅仅是高密度电极阵列。现有的装置也植入视网膜下和视网膜上,提高了电极位置也有助于感知质量的可能性。在这里,我们比较了同一细胞对视网膜下和视网膜上电极刺激的反应。使用4×4视网膜下电极阵列,我们还可以比较同时激活不同数量电极的反应。令人惊讶的是,反应显示电极位置(视网膜上与视网膜下)以及电极尺寸(一个与多达九个电极)的最小依赖性。然而,当考虑到电荷密度时,例如在临床使用期间必须考虑的因素,较小的电极产生的响应效果较差。这一发现可能有助于解释高密度植入阵列的理论视力与临床测试结果之间的不一致。
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Spatial properties of network-mediated response of retinal ganglion cells to electric stimulation
Retinal prosthetics consistently demonstrate the ability to restore limited visual perception to those blinded from outer retinal degenerative diseases. However, the performance of retinal implants is highly inconsistent and high-density arrays have proven only marginally better than much sparser ones suggesting that improving the overall quality of elicited vision may require more than just a high density electrode array. Existing devices are also implanted subretinally and epiretinally raising the possibility that electrode location also contributes to percept quality. Here, we compared the responses to stimulation from subretinal and epiretinal electrodes in the same cell. Use of a 4×4 subretinal electrode array allowed us to also compare responses to different numbers of electrodes activated simultaneously. Surprisingly, responses showed minimal dependence of both the electrode position (epiretinal vs. subretinal) as well as on electrode size (one vs. up to nine electrodes). However, when charge density considerations are implemented, such as those that are necessary during clinical use, the responses arising from smaller electrodes were less effective. This finding may help to explain the inconsistency between theoretical visual acuity and achievement in clinical testing with the high density implanted arrays.
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