FPGA design of a pulse encoder for optoelectronic neural stimulation and recording arrays

Musa Al Yaman, A. Ghani, A. Bystrov, P. Degenaar, P. Maaskant
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引用次数: 3

Abstract

This paper presents a new control methodology for high throughput optoelectronic/optogenetic prostheses. Optogenetic prostheses use a gene therapy method to photosensitize neurons, for which the most efficient stimulation is short pulses of just enough high intensity light. We have previously demonstrated that stimulation can be achieved with combined CMOS-Nitride micro-photonic systems. We have now explored operating schemes to provide accurate short pulses of high radiance light in an intensity modulation scheme for the purpose of retinal prosthesis. We have shown that by utilizing the sparse nature of retinal code, it is possible to have an adaptive system which minimizes information transfer compared to raster or purely asynchronous bit serial modes. We are thus being able to provide more dynamic and thus intensity accuracy. We have implemented our schemes on an FPGA to measure relative modes.
用于光电神经刺激和记录阵列的脉冲编码器的FPGA设计
本文提出了一种新的高通量光电/光遗传假体控制方法。光遗传假体使用基因治疗方法使神经元光敏,对其最有效的刺激是足够高强度的短脉冲光。我们以前已经证明,可以通过结合cmos -氮化物微光子系统来实现刺激。我们现在已经探索了为视网膜假体的目的在强度调制方案中提供精确的高辐射光短脉冲的操作方案。我们已经表明,通过利用视网膜编码的稀疏性质,有可能有一个自适应系统,与光栅或纯异步位串行模式相比,最大限度地减少信息传输。因此,我们能够提供更多的动态和强度精度。我们已经在FPGA上实现了我们的方案来测量相对模式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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