Integrated Electronics and Biointerfaces Laboratory, Department of Electrical and Computer Engineering, University of California San Diego, La Jolla, CA, 92093, USA.
Department of Neurology, Harvard Medical School, Boston, MA, 02114, USA.
Nat Commun. 2024 Jan 17;15(1):218. doi: 10.1038/s41467-023-43727-9.
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.
在过去的十年中,立体定向放置的电极已成为广泛的神经和精神疾病的深部脑记录和刺激的金标准。然而,目前的电极在空间分辨率和记录小群神经元的能力方面受到限制,更不用说单个神经元了。在这里,我们报告了一种创新的、可定制的、单片集成的、具有人类级柔韧性的深部电极,它能够记录多达 128 个通道,并能够在脑组织中 10cm 的深度进行记录。这种薄的、导丝引导的深部电极能够记录局部场电位和单细胞神经元活动(动作电位),在不同物种中得到验证。该设备代表了制造和设计方法的进步,扩展了临床神经学中一项主要技术的功能。