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首页> 外文期刊>Ophthalmic Surgery and Lasers >Subretinal semiconductor microphotodiode array.
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Subretinal semiconductor microphotodiode array.

机译:视网膜下半导体微光电二极管阵列。

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BACKGROUND AND OBJECTIVE: To examine the function of a semiconductor microphotodiode array (SMA) surgically implanted in the subretinal space. MATERIALS AND METHODS: Positive-intrinsic layer-negative (PiN) or negative-intrinsic layer-positive (NiP) SMAs were surgically placed into the subretinal space of rabbits through a pars plana incision and a posterior retinotomy. The implants required no external connections for power and were sensitive to light over the visible and infrared (IR) spectrum; IR stimuli were used to isolate implant-mediated responses from the activity of native photoreceptors. A stimulator ophthalmoscope was used to superimpose IR stimuli on the implant and adjacent retinal areas, and responses were recorded during the postoperative recovery period. SMA responses were also evaluated in vitro. The animals were given lethal anesthetic overdoses, and the retinas were examined histologically. RESULTS: The in vitro implant response consisted of an electrical spike, followed by a small-amplitude DC offset that followed the time course of the IR stimulation, and an overshoot at the stimulus offset. The SMAs placed in the subretinal space retained a stable position and continued to function throughout the postoperative period. The SMA responses recorded in vivo included additional slow-wave components that were absent from the in vitro recordings. These responses reverted to the in vitro configuration following the death of the animal. There was a significant loss of retinal cells in areas overlying the implant, and the retina appeared normal away from the implant and surgical site. CONCLUSION: SMAs can be successfully implanted into the subretinal space and will generate current in response to light stimulation during an extended period of time.
机译:背景与目的:研究通过手术植入视网膜下间隙的半导体微光电二极管阵列(SMA)的功能。材料与方法:将正本征层阴性(PiN)或负本征层阳性(NiP)SMA通过平面切口和后视网膜切开术以手术方式置入兔的视网膜下间隙。植入物不需要外部连接即可供电,并且对可见光和红外(IR)光谱的光敏感。红外刺激被用来从自然光感受器的活动中分离出植入物介导的反应。使用刺激性检眼镜在植入物和邻近视网膜区域上叠加红外刺激,并在术后恢复期记录反应。 SMA反应也进行了体外评估。给动物服用过量的致死麻醉剂,并通过组织学检查视网膜。结果:体外植入物响应包括电尖峰,跟随IR刺激的时间过程的小幅度DC偏移和刺激偏移的过冲。放置在视网膜下间隙的SMA保持稳定的位置,并在整个术后期间继续发挥作用。体内记录的SMA反应包括体外记录中不存在的其他慢波成分。这些反应在动物死亡后恢复为体外构型。在植入物上方的区域中视网膜细胞大量丢失,并且在远离植入物和手术部位的地方,视网膜显得正常。结论:SMA可成功植入视网膜下间隙,并在较长的时间内响应光刺激产生电流。

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