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首页> 外文期刊>Documenta Ophthalmologica >Visual evoked potentials to infrared stimulation in normal cats and rats
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Visual evoked potentials to infrared stimulation in normal cats and rats

机译:正常猫和大鼠的视觉诱发电位对红外线的刺激

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摘要

The absence of effective treatments for retinal degenerative diseases has inspired several laboratories to pursue the development of a retinal prosthetic. In our laboratory, we have focused on the subretinal approach, using an array of photodiodes housed within a silicon chip. These photodiodes generate electrical current in response to wavelengths ranging from 500–1100 nm. Because the native retina is traditionally thought to be insensitive to wavelengths beyond ∼750 nm, we and others have attempted to isolate implant-mediated electrophysiological responses from those of the native retina by using longer wavelength stimuli in the near infrared range. Evoked potentials recorded over the visual cortex in response to infrared stimuli have been reported as evidence of a functional subretinal implant due to the typical physiological characteristics of the waveform: a direct relationship between amplitude and intensity, increased amplitude over the visual cortex, and repeatability of the response. However, these results should be interpreted with caution since here we report an unappreciated sensitivity of the native retina to infrared light under dark-adapted conditions.
机译:缺乏针对视网膜退行性疾病的有效治疗方法,激发了一些实验室进行视网膜修复的发展。在我们的实验室中,我们将注意力集中在视网膜下方法,该方法使用的是安置在硅芯片中的光电二极管阵列。这些光电二极管响应500至1100 nm的波长产生电流。由于传统上认为天然视网膜对约750 nm以上的波长不敏感,因此我们和其他人已尝试通过在近红外范围内使用更长的波长刺激来将植入物介导的电生理反应与天然视网膜的电生理反应隔离开。由于波形的典型生理特征,据报道,响应于红外线刺激,在视皮层上记录的诱发电位可作为功能性视网膜下植入物的证据:振幅和强度之间的直接关系,在视皮层上的振幅增加,以及重复性好。响应。但是,应谨慎解释这些结果,因为在这里,我们报道了在黑暗适应条件下,天然视网膜对红外光的敏感性不高。

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