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Design and Fabrication of Ultralight Weight Adjustable Multi-electrode Probes for Electrophysiological Recordings in Mice

机译:小鼠电生理记录超轻量可调式多电极探针的设计与制作

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摘要

The number of physiological investigations in the mouse, mus musculus, has experienced a recent surge, paralleling the growth in methods of genetic targeting for microcircuit dissection and disease modeling. The introduction of optogenetics, for example, has allowed for bidirectional manipulation of genetically-identified neurons, at an unprecedented temporal resolution. To capitalize on these tools and gain insight into dynamic interactions among brain microcircuits, it is essential that one has the ability to record from ensembles of neurons deep within the brain of this small rodent, in both head-fixed and freely behaving preparations. To record from deep structures and distinct cell layers requires a preparation that allows precise advancement of electrodes towards desired brain regions. To record neural ensembles, it is necessary that each electrode be independently movable, allowing the experimenter to resolve individual cells while leaving neighboring electrodes undisturbed. To do both in a freely behaving mouse requires an electrode drive that is lightweight, resilient, and highly customizable for targeting specific brain structures.A technique for designing and fabricating miniature, ultralight weight, microdrive electrode arrays that are individually customizable and easily assembled from commercially available parts is presented. These devices are easily scalable and can be customized to the structure being targeted; it has been used successfully to record from thalamic and cortical regions in a freely behaving animal during natural behavior.
机译:小鼠小家鼠的生理学研究经历了最近的激增,与用于微电路解剖和疾病建模的基因靶向方法的发展同步。例如,光遗传学的引入允许以前所未有的时间分辨率双向操纵遗传识别的神经元。为了利用这些工具并深入了解大脑微电路之间的动态相互作用,至关重要的是,它必须能够以头固定和自由行为的方式从这种小啮齿动物的大脑深处的神经元集合中进行记录。要从深层结构和不同的细胞层进行记录,需要进行准备工作,以使电极朝着所需的大脑区域精确推进。为了记录神经集合体,有必要使每个电极独立移动,以使实验者能够分辨单个细胞,同时保持相邻电极不受干扰。要想在行为自如的鼠标中做到这一点,需要一种轻巧,有弹性且高度可定制的电极驱动器,以针对特定的大脑结构。一种设计和制造微型,超轻型微型驱动器电极阵列的技术,这些阵列可分别定制和从商业上方便地组装提供了可用零件。这些设备易于扩展,并可根据目标结构进行定制。它已成功用于在自然行为期间从行为自由的动物的丘脑和皮质区域进行记录。

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