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一种新型的四极管微驱动器,用于从灵长类动物大脑的不同区域同时记录多个神经元。

A novel tetrode microdrive for simultaneous multi-neuron recording from different regions of primate brain.

机构信息

Department of Physiology and Pharmacology, Wake Forest School of Medicine, Winston-Salem, NC 27157-1083, USA.

出版信息

J Neurosci Methods. 2012 Apr 15;205(2):368-74. doi: 10.1016/j.jneumeth.2012.01.006. Epub 2012 Feb 2.

Abstract

A unique custom-made tetrode microdrive for recording from large numbers of neurons in several areas of primate brain is described as a means for assessing simultaneous neural activity in cortical and subcortical structures in nonhuman primates (NHPs) performing behavioral tasks. The microdrive device utilizes tetrode technology with up to six ultra-thin microprobe guide tubes (0.1mm) that can be independently positioned, each containing reduced diameter tetrode and/or hexatrode microwires (0.02 mm) for recording and isolating single neuron activity. The microdrive device is mounted within the standard NHP cranial well and allows traversal of brain depths up to 40.0 mm. The advantages of this technology are demonstrated via simultaneously recorded large populations of neurons with tetrode type probes during task performance from a) primary motor cortex and deep brain structures (caudate-putamen and hippocampus) and b) multiple layers within the prefrontal cortex. The means to characterize interactions of well-isolated ensembles of neurons recorded simultaneously from different regions, as shown with this device, has not been previously available for application in primate brain. The device has extensive application to primate models for the detection and study of inoperative or maladaptive neural circuits related to human neurological disorders.

摘要

一种独特的定制四极微驱动器,用于记录灵长类动物大脑多个区域的大量神经元,被描述为评估非人类灵长类动物(NHP)在执行行为任务时皮质和皮质下结构中同时神经活动的一种手段。微驱动器设备利用四极技术,最多可包含六个超细微探针引导管(0.1mm),这些引导管可以独立定位,每个引导管都包含直径减小的四极或六极微丝(0.02mm),用于记录和隔离单个神经元活动。微驱动器设备安装在标准的 NHP 颅窗内,允许在脑深度内进行 40.0mm 的穿透。该技术的优点通过在任务执行过程中同时记录来自 a)初级运动皮层和深部脑结构(尾状核-壳核和海马体)以及 b)前额叶皮层内的多个层的四极型探头的大量神经元得以证明。该设备可用于表征从不同区域同时记录的、具有良好隔离的神经元集合之间的相互作用,这在以前的灵长类动物大脑中是无法实现的。该设备在检测和研究与人类神经紊乱相关的不工作或适应不良的神经回路的灵长类动物模型中具有广泛的应用。

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