Silicon-based Neuromorphic Implementation of the Olfactory Pathway

T. Pearce, C. Fulvi-Mari, J. Covington, F. S. Tan, J. Gardner, T. Koickal, A. Hamilton
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引用次数: 15

Abstract

Here we describe the component subsystems which comprise the first silicon-based olfactory system, each implemented in analog VLSI/MEMS. These include a biologically constrained neuronal model, chemical micro-sensor array and associated interface circuitry. We present a spiking olfactory bulb model, a reduced 70 element broadly-tuned chemosensor array (25 different chemsensor tunings), alongside details of their silicon implementation. Our results show that the olfactory bulb model is capable of pattern classification and that the odour delivery, uptake and sensor circuitry, as well as the fundamental units of the neuromorphic model (spike-driven synapse and spiking soma), are all functional. Work will continue towards completing a fully-integrated and scalable silicon implementation of the olfactory system
嗅觉通路的硅基神经形态实现
在这里,我们描述了组成第一个硅基嗅觉系统的组件子系统,每个子系统都在模拟VLSI/MEMS中实现。这些包括生物约束神经元模型,化学微传感器阵列和相关的接口电路。我们提出了一个峰值嗅球模型,一个减少的70元素宽调谐化学传感器阵列(25种不同的化学传感器调谐),以及它们的硅实现的细节。我们的研究结果表明,嗅球模型能够进行模式分类,气味传递、吸收和传感器电路,以及神经形态模型的基本单位(spike-driven突触和spike soma)都是功能性的。工作将继续朝着完成一个完全集成和可扩展的嗅觉系统的硅实现
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