微操作器
生物医学工程
立体光刻
聚酰亚胺
电生理学
脑植入物
植入
局部场电位
神经活动
计算机科学
电极阵列
电极
材料科学
神经科学
纳米技术
化学
医学
人工智能
生物
外科
图层(电子)
物理化学
复合材料
作者
Rik van Daal,Jyh‐Jang Sun,Frederik Ceyssens,Frédéric Michon,Michaël Kraft,Robert Puers,Fabian Kloosterman
标识
DOI:10.1088/1741-2552/ab5e19
摘要
Abstract Objective . Long-term electrophysiological recordings of neural activity in freely behaving animals are indispensable to advance the understanding of complex brain function. It is a technical challenge to chronically monitor the detailed activity across multiple distributed brain regions in freely behaving animals over a period of months. Here we present a new implant for inserting multiple flexible polyimide probes into freely behaving rats for monitoring the brain activity over a long time period. Approach . This brain implant integrates multiple flexible probes in small micromanipulator devices that ensure free behaviour of the animal. The probes are micromachined and the positioning mechanism is 3D-printed using stereolithography. Each probe is lowered by a screw-driven shuttle and guided through an exit tip before penetrating the rat’s brain. Main results . The brain implant consists of 16 individually lowerable flexible polyimide probes that contain 16 embedded electrodes adding up to a total of 256 recording channels. The total travel distance is 8 mm. The assembly time of the device was only one day. The electrode impedance values had a mean of 335 kΩ and sample standard deviation of 107 kΩ after gold plating, excluding outliers. Significance . For the first time, hyperdrive-assisted insertion of flexible multichannel probes was demonstrated. Local field potentials and neuronal spiking activity from freely behaving rats were recorded over months.
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