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清醒猕猴颞下皮质中神经元之间的功能相互作用。

Functional interactions among neurons in inferior temporal cortex of the awake macaque.

作者信息

Gochin P M, Miller E K, Gross C G, Gerstein G L

机构信息

Princeton University, Department of Psychology, NJ 08544-1010.

出版信息

Exp Brain Res. 1991;84(3):505-16. doi: 10.1007/BF00230962.

Abstract

Functional interactions among inferior temporal cortex (IT) neurons were studied in the awake, fixating macaque monkey during the presentation of visual stimuli. Extracellular recordings were obtained simultaneously from several microelectrodes, and in many cases, spike trains from more than one neuron were extracted from each electrode by the use of spike shape sorting technology. Functional interactions between pairs of neurons were measured using cross-correlation. Discharge patterns of single neurons were evaluated using auto-correlation and PST histograms. Neurons recorded on the same electrode (within about 100 microns) had more similar stimulus selectivity and were more likely to show functional interactions than those recorded on different electrodes spaced about 250 to 500 microns apart. Most neurons tended to fire in bursts tens to hundreds of milliseconds in duration, and asynchronously from the stimulus induced rate changes. Correlated neuronal firing indicative of shared inputs and direct interactions was observed. Occurrence of shared input was significantly lower for neuron pairs recorded on different electrodes than for neurons recorded on the same electrode. Direct connections occurred about as often for neurons on different electrodes as for neurons on the same electrode. These results suggest that input projections are usually restricted to less than 500 micron patches and are then distributed over greater distances by intrinsic connections. Measurements of synaptic contribution suggest that typically more than 5 near-simultaneous inputs are required to cause an IT neuron to discharge.

摘要

在清醒、注视的猕猴呈现视觉刺激期间,研究了颞下皮质(IT)神经元之间的功能相互作用。通过多个微电极同时进行细胞外记录,并且在许多情况下,利用尖峰形状分类技术从每个电极提取来自多个神经元的尖峰序列。使用互相关测量神经元对之间的功能相互作用。使用自相关和PST直方图评估单个神经元的放电模式。与记录在相距约250至500微米的不同电极上的神经元相比,记录在同一电极上(约100微米范围内)的神经元具有更相似的刺激选择性,并且更有可能表现出功能相互作用。大多数神经元倾向于以持续数十至数百毫秒的爆发形式放电,并且与刺激诱导的速率变化异步。观察到了表明共享输入和直接相互作用的相关神经元放电。记录在不同电极上的神经元对的共享输入发生率明显低于记录在同一电极上的神经元。不同电极上的神经元之间的直接连接发生率与同一电极上的神经元大致相同。这些结果表明,输入投射通常局限于小于500微米的区域,然后通过内在连接在更大距离上分布。突触贡献的测量表明,通常需要超过5个近乎同时的输入才能使IT神经元放电。

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