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一种用于慢性神经记录的轻型反馈控制微驱动器。

A lightweight feedback-controlled microdrive for chronic neural recordings.

作者信息

Jovalekic A, Cavé-Lopez S, Canopoli A, Ondracek J M, Nager A, Vyssotski A L, Hahnloser R H R

机构信息

Institute of Neuroinformatics, University of Zurich and ETH Zurich, 8057 Zurich, Switzerland and Neuroscience Center Zurich (ZNZ), 8057 Zurich, Switzerland.

出版信息

J Neural Eng. 2017 Apr;14(2):026006. doi: 10.1088/1741-2552/aa5848. Epub 2017 Jan 10.

Abstract

OBJECTIVE

Chronic neural recordings have provided many insights into the relationship between neural activity and behavior. We set out to develop a miniaturized motorized microdrive that allows precise electrode positioning despite possibly unreliable motors.

APPROACH

We designed a feedback-based motor control mechanism. It contains an integrated position readout from an array of magnets and a Hall sensor.

MAIN RESULTS

Our extremely lightweight (<1 g) motorized microdrive allows remote positioning of both metal electrodes and glass pipettes along one motorized axis. Target locations can be defined with a range of 6 mm and they can be reached within 1 µm precision. The incorporated headstage electronics are capable of both extracellular and intracellular recordings. We include a simple mechanism for repositioning electrodes in three dimensions and for replacing them during operation. We present neural data from different premotor areas of adult and juvenile zebra finches.

SIGNIFICANCE

Our findings show that feedback-based microdrive control requires little extra size and weight, suggesting that such control can be incorporated into more complex multi-electrode designs.

摘要

目的

长期神经记录为深入了解神经活动与行为之间的关系提供了诸多见解。我们着手开发一种小型化电动微驱动器,即便电机可能不可靠,也能实现精确的电极定位。

方法

我们设计了一种基于反馈的电机控制机制。它包含一个由磁体阵列和霍尔传感器组成的集成位置读数装置。

主要结果

我们极其轻便(<1克)的电动微驱动器能够沿一个电动轴对金属电极和玻璃微吸管进行远程定位。目标位置的定义范围为6毫米,且能以1微米的精度到达。内置的前置放大器电子设备能够进行细胞外和细胞内记录。我们还包括一种在三维空间中重新定位电极以及在操作过程中更换电极的简单机制。我们展示了来自成年和幼年斑胸草雀不同运动前区的神经数据。

意义

我们的研究结果表明,基于反馈的微驱动器控制几乎不需要额外的尺寸和重量,这表明这种控制可以融入更复杂的多电极设计中。

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