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Flexible, Scalable, High Channel Count Stereo-Electrode for Recording in the Human Brain

Zhong nan da xue xue bao. Yi xue ban(2024)

Univ Calif San Diego

Cited 12|Views65
Abstract
Over the past decade, stereotactically placed electrodes have become the gold standard for deep brain recording and stimulation for a wide variety of neurological and psychiatric diseases. Current electrodes, however, are limited in their spatial resolution and ability to record from small populations of neurons, let alone individual neurons. Here, we report on an innovative, customizable, monolithically integrated human-grade flexible depth electrode capable of recording from up to 128 channels and able to record at a depth of 10 cm in brain tissue. This thin, stylet-guided depth electrode is capable of recording local field potentials and single unit neuronal activity (action potentials), validated across species. This device represents an advance in manufacturing and design approaches which extends the capabilities of a mainstay technology in clinical neurology.
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Deep Learning for EEG
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要点】:本文介绍了一种创新的柔性深部电极,具备高达128通道的记录能力,可在人脑中深入10厘米进行局部场电位和单神经元活动记录,突破现有技术在空间分辨率和神经元群体记录上的局限。

方法】:研究采用了单片集成设计,使得电极具备高度定制性和灵活性,能够适应不同深度的脑部组织。

实验】:通过stylet引导的方式,实验验证了该电极在不同物种中记录局部场电位和单个神经元活动的能力,但未提及具体的数据集名称及实验结果。