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用24通道微电极记录大鼠海马体和嗅球中的单位活动、诱发电位和慢波。

Unit activity, evoked potentials and slow waves in the rat hippocampus and olfactory bulb recorded with a 24-channel microelectrode.

作者信息

Kuperstein M, Eichenbaum H

出版信息

Neuroscience. 1985 Jul;15(3):703-12. doi: 10.1016/0306-4522(85)90072-7.

Abstract

Activity from a number of neighboring neurons can be recorded simultaneously with multichannel microelectrodes. A new version of a 24-channel microelectrode system has been fabricated and used to record different types of neurophysiological data in the rat brain. The system called PRONG (Parallel Recording Of Neural Groups) includes a microelectrode, a lightweight reusable connector, a 24-channel FET-hybrid preamplifier, a 3-band 24-channel amplifier, a 24-channel spike monitor, high-speed digital and analog interfaces and a computer. The electrode-recording locations are arranged in 2 arrays of 12 sites. The arrays are spaced 100 micron apart along either edge of the recording section and the sites within each array are spaced 120 micron apart. The electrodes are fabricated using photolithography in patterned layers totaling 17 micron thick and 114 micron wide in the recording section. The recording sites are 20 micron2 and are plated with platinum black. Performance of the PRONG was compared with that of conventional single microelectrodes and with results in the literature on three kinds of extracellular activity in the rat hippocampal formation and olfactory bulb: action potentials, evoked field potentials and slow-wave activity. The selectivity and sensitivity of the PRONG compared favorably with characteristics of conventional electrodes. Background noise averaged 15 microV and no signal cross talk was observed between neighboring channels. Discriminable action potentials (signal-to-noise ratios of 2:1 to 15:1) were observed at 37-95% of the viable recording sites with a maximum of 19 units in one recording. Units were observed in waking animals for up to 4 days. The waveforms, firing repertoires and laminar distribution of units were the same as those recorded with conventional microelectrodes. This indicates that penetration by the PRONG spares tissue from functional damage. "Instant" laminar profiles were created for commissural and perforant path evoked potentials in the hippocampal formation. These profiles were nearly identical with those created by successive recordings made with conventional microelectrodes. Laminar profiles and behavioral activity appeared to be "normal" as collected with this electrode. These results set the foundation for use of the PRONG as a tool for the study of local neural interactions.

摘要

使用多通道微电极可以同时记录多个相邻神经元的活动。一种新型的24通道微电极系统已被制造出来,并用于记录大鼠大脑中不同类型的神经生理数据。该系统称为PRONG(神经群组并行记录),包括一个微电极、一个轻便的可重复使用连接器、一个24通道场效应管混合前置放大器、一个三频段24通道放大器、一个24通道脉冲监测器、高速数字和模拟接口以及一台计算机。电极记录位置排列成两个12个位点的阵列。这些阵列沿着记录区域的每条边缘相距100微米,每个阵列内的位点相距120微米。电极是通过光刻技术在记录区域制造的,图案层总厚度为17微米,宽度为114微米。记录位点为20平方微米,镀有铂黑。将PRONG的性能与传统单微电极的性能以及文献中关于大鼠海马结构和嗅球中三种细胞外活动的结果进行了比较:动作电位、诱发场电位和慢波活动。PRONG的选择性和灵敏度与传统电极的特性相比具有优势。背景噪声平均为15微伏,相邻通道之间未观察到信号串扰。在37%至95%的有效记录位点观察到可分辨的动作电位(信噪比为2:1至15:1),一次记录中最多可观察到19个单元。在清醒动物中观察单元长达4天。单元的波形、放电模式和层状分布与用传统微电极记录的相同。这表明PRONG的插入对组织没有造成功能性损伤。为海马结构中的连合和穿通通路诱发电位创建了“即时”层状分布图。这些分布图与用传统微电极连续记录创建的分布图几乎相同。用该电极收集的层状分布图和行为活动似乎是“正常的”。这些结果为将PRONG用作研究局部神经相互作用的工具奠定了基础。

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