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Beamforming approaches for untethered, ultrasonic neural dust motes for cortical recording: A simulation study

机译:用于皮质记录的未阻止,超声神经粉尘电瓶的波束成形方法:模拟研究

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In this paper, we examine the use of beamforming techniques to interrogate a multitude of neural implants in a distributed, ultrasound-based intra-cortical recording platform known as Neural Dust [1]. We propose a general framework to analyze system design tradeoffs in the ultrasonic beamformer that extracts neural signals from modulated ultrasound waves that are backscattered by free-floating neural dust (ND) motes. Simulations indicate that high-resolution linearly-constrained minimum variance beamforming sufficiently suppresses interference from unselected ND motes and can be incorporated into the ND-based cortical recording system.
机译:在本文中,我们研究了使用波束成形技术,以在被称为神经粉尘的分布式超声的内部皮质记录平台中询问多个神经植入物[1]。 我们提出了一般框架,用于分析超声波波束形成器中的系统设计权衡,从而提取由自由浮动神经尘埃(Nd)丝绸反散射的调制超声波的神经信号。 模拟表明,高分辨率线性约束的最小方差波束形成足够抑制来自未选择的Nd丝印的干扰,并且可以结合到基于Nd的皮质记录系统中。

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