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A unified framework for advancing array signal processing technology of multichannel microprobe neural recording devices

机译:统一框架,用于推进多通道微竞技神经记录装置的阵列信号处理技术

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In this work, we describe a novel framework aimed at enhancing the communication and signal processing technology of microimplanted devices used for recording and stimulating neural cells. The power of the proposed framework stems from providing simple algorithms, yet efficient signal processing power that is suitable for on-chip microprobe design. The framework unifies our previous work on multiresolution analysis and array processing that was aimed at performing typical neural signal processing tasks such as noise suppression, source detection and separation, and information coding [1-3]. Strategies for optimizing the information transfer have shown to greatly benefit from the optimal array processing mechanisms used and the compression achieved by expressing the data in the multiresolution domain. We demonstrate through simulated and experimental results that the framework provides the basis for simple and practical implementation for today's biosensor array technology requirements without compromising issues of bandwidth, detection and classification.
机译:在这项工作中,我们描述了一种新颖的框架,旨在提高用于记录和刺激神经细胞的微普通装置的通信和信号处理技术。所提出的框架的功率源于提供适用于片上微探针设计的简单算法,但有效的信号处理电力。该框架统一了我们以前的多分辨率分析和阵列处理的工作,该阵列处理旨在执行诸如噪声抑制,源检测和分离的典型神经信号处理任务,以及信息编码[1-3]。优化信息传输的策略已经显示出从所使用的最佳阵列处理机制和通过表达多分辨率域中的数据而实现的压缩。我们通过模拟和实验结果证明了该框架为当今的生物传感器阵列技术要求提供了简单实际的实施的基础,而不会影响带宽,检测和分类问题。

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