Si elegans: FPGA hardware emulation of C. elegans nematode nervous system

Pedro Machado, J. Wade, T. McGinnity
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引用次数: 7

Abstract

For many decades neuroscience researchers have been interested in harnessing the computational power of the mammalian nervous system. However, the vast complexity of such a nervous system has made it very difficult to fully understand basic functions such as movement, touch and learning. More recently the nervous system of the C. elegans nematode has been widely studied and there now exists a vast wealth of biological knowledge about its nervous structure, function and connectivity. The Si elegans project aims to develop a Hardware Neural Network (HNN) to accurately replicate the C. elegans nervous system behavior to enable neuroscientists to better understand these basic functions. Replication of the C. elegans biological system requires powerful computing technologies, based on parallel processing, for real-time computation. The Si elegans project will use FPGAs due to their advanced programmable features that allow reconfigurability, high performance parallel processing and relatively low price per programmable logic element. Furthermore, the project will deliver an open-access framework that will be available via a Web Portal to neuroscientists, biologists, clinicians and engineers. In this paper an overview of the complete hardware system required to fully realize Si elegans is presented along with an early small scale implementation of the hardware system.
秀丽隐杆线虫神经系统的FPGA硬件仿真
几十年来,神经科学研究人员一直对利用哺乳动物神经系统的计算能力感兴趣。然而,这种神经系统的巨大复杂性使得完全理解运动、触觉和学习等基本功能变得非常困难。近年来,人们对秀丽隐杆线虫的神经系统进行了广泛的研究,现已对其神经结构、功能和连通性有了大量的生物学知识。秀丽隐杆线虫项目旨在开发一个硬件神经网络(HNN)来准确地复制秀丽隐杆线虫的神经系统行为,使神经科学家能够更好地了解这些基本功能。秀丽隐杆线虫生物系统的复制需要基于并行处理的强大计算技术来进行实时计算。Si elegans项目将使用fpga,因为它们具有先进的可编程特性,允许可重构性、高性能并行处理和每个可编程逻辑元件相对较低的价格。此外,该项目将提供一个开放访问的框架,该框架将通过门户网站提供给神经科学家、生物学家、临床医生和工程师。本文概述了完全实现Si elegans所需的完整硬件系统,并介绍了硬件系统的早期小规模实现。
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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