Chang F C, Scott T R, Harper R M
Pathophysiology Division, U.S. Army Medical Research Institute of Chemical Defense, Aberdeen Proving Ground, MD 21010-5425.
Brain Res Bull. 1988 Nov;21(5):749-56. doi: 10.1016/0361-9230(88)90042-1.
An electrophysiological procedure that permits extracellular single neuronal recording in the medulla of unanesthetized, freely behaving animals is described. System components consist of 1) a flexible, single-strand microwire as recording electrode; 2) a miniature, skull-mounted miniature microdrive used for isolation of single unit activity; and 3) a head-mounted voltage follower that conditions and stabilizes the neuronal signals prior to amplification and transmission for further processing. A unique advantage of this procedure is the latitude and provision for microwire replacement in the event that multiple penetrations are desired or the tip of the microwire recording electrode is insulated as a result of gliomatosis. With minor modification, this technique can be used for single unit recording virtually anywhere along the supra-segmental neuraxis. Technical aspects of this procedure, together with details of design and fabrication of implantable devices, chronic instrumentation procedure, and potentials for other chronic applications, are discussed.
本文描述了一种电生理程序,该程序允许在未麻醉、自由活动的动物延髓中进行细胞外单神经元记录。系统组件包括:1)作为记录电极的柔性单股微丝;2)用于分离单单元活动的微型、安装在颅骨上的微型微驱动器;3)头戴式电压跟随器,其在放大和传输以进行进一步处理之前对神经元信号进行调节和稳定。该程序的一个独特优势是,在需要多次穿刺或微丝记录电极尖端因胶质瘤病而绝缘的情况下,有更换微丝的灵活性和条件。稍加修改,该技术几乎可用于节段上神经轴沿线的任何位置进行单单元记录。本文讨论了该程序的技术方面,以及可植入设备的设计和制造细节、慢性仪器植入程序以及其他慢性应用的潜力。