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首页> 外文期刊>Analog Integrated Circuits and Signal Processing >A brain-spinal interface (BSI) system-on-chip (SoC) for closed-loop cortically-controlled intraspinal microstimulation
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A brain-spinal interface (BSI) system-on-chip (SoC) for closed-loop cortically-controlled intraspinal microstimulation

机译:用于闭环的脑脊柱界面(BSI)系统上的片上(SOC),用于闭环测控的管腔上微刺激

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摘要

This paper reports on a fully miniaturized brain-spinal interface system for closed-loop cortically-controlled intraspinal microstimulation (ISMS). Fabricated in AMS 0.35 A mu m two-poly four-metal complementary metal-oxide-semiconductor technology, this system-on-chip measures similar to 3.46 mm x 3.46 mm and incorporates two identical 4-channel modules, each comprising a spike-recording front-end, embedded digital signal processing (DSP) unit, and programmable stimulating back-end. The DSP unit is capable of generating multichannel trigger signals for a wide array of ISMS triggering patterns based on real-time discrimination of a programmable number of intracortical neural spikes within a pre-specified time-bin duration via thresholding and user-adjustable time-amplitude windowing. The system is validated experimentally using an anesthetized rat model of a spinal cord contusion injury at the T8 level. Multichannel neural spikes are recorded from the cerebral cortex and converted in real time into electrical stimuli delivered to the lumbar spinal cord below the level of the injury, resulting in distinct patterns of hindlimb muscle activation.
机译:本文报告了用于闭环测控的内腔微氧化微刺灰(ISMS)的完全小型化脑脊柱界面系统。在AMS 0.35 A MU M两多金属四金属互补金属 - 氧化物半导体技术中制造,该系统片上措施类似于3.46 mm x 3.46 mm,并包含两个相同的4通道模块,每个模块包括尖峰记录前端,嵌入式数字信号处理(DSP)单元和可编程刺激后端。 DSP单元能够基于通过阈值和用户可调的时间幅度在预先指定的时间箱持续时间内的可编程数量的肠球内神经尖峰的实时辨别来生成多声道触发模式。通过阈值和用户可调的时间幅度窗口。通过在T8水平的脊髓挫伤损伤的麻醉大鼠模型进行实验验证该系统。多通道神经尖峰从脑皮层记录,并实时转化为损伤水平低于腰椎脊髓的电刺激,导致了后肢肌肉激活的明显模式。

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