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大鼠第二体感皮层中与触须相关神经元的反应特性

Response properties of whisker-related neurons in rat second somatosensory cortex.

作者信息

Kwegyir-Afful Ernest E, Keller Asaf

机构信息

Dept. of Anatomy and Neurobiology, Univ. of Maryland School of Medicine, 685 W. Baltimore St., Baltimore, MD 21201, USA.

出版信息

J Neurophysiol. 2004 Oct;92(4):2083-92. doi: 10.1152/jn.00262.2004. Epub 2004 May 26.

Abstract

In addition to a primary somatosensory cortex (SI), the cerebral cortex of all mammals contains a second somatosensory area (SII); however, the functions of SII are largely unknown. Our aim was to explore the functions of SII by comparing response properties of whisker-related neurons in this area with their counterparts in the SI. We obtained extracellular unit recordings from narcotized rats, in response to whisker deflections evoked by a piezoelectric device, and compared response properties of SI barrel (layer IV) neurons with those of SII (layers II to VI) neurons. Neurons in both cortical areas have similar response latencies and spontaneous activity levels. However, SI and SII neurons differ in several significant properties. The receptive fields of SII neurons are at least five times as large as those of barrel neurons, and they respond equally strongly to several principal whiskers. The response magnitude of SII neurons is significantly smaller than that of neurons in SI, and SII neurons are more selective for the angle of whisker deflection. Furthermore, whereas in SI fast-spiking (inhibitory) and regular-spiking (excitatory) units have different spontaneous and evoked activity levels and differ in their responses to stimulus onset and offset, SII neurons do not show significant differences in these properties. The response properties of SII neurons suggest that they are driven by thalamic inputs that are part of the paralemniscal system. Thus whisker-related inputs are processed in parallel by a lemniscal system involving SI and a paralemniscal system that processes complimentary aspects of somatosensation.

摘要

除了初级体感皮层(SI)外,所有哺乳动物的大脑皮层都包含第二个体感区域(SII);然而,SII的功能在很大程度上尚不清楚。我们的目的是通过比较该区域与SI中与触须相关的神经元的反应特性来探索SII的功能。我们从麻醉的大鼠身上获得细胞外单位记录,以响应由压电装置诱发的触须偏转,并比较了SI桶状皮层(IV层)神经元与SII(II至VI层)神经元的反应特性。两个皮层区域的神经元具有相似的反应潜伏期和自发活动水平。然而,SI和SII神经元在几个重要特性上有所不同。SII神经元的感受野至少是桶状神经元的五倍大,并且它们对几根主要触须的反应同样强烈。SII神经元的反应幅度明显小于SI中的神经元,并且SII神经元对触须偏转角度更具选择性。此外,在SI中,快速发放(抑制性)和规则发放(兴奋性)单位具有不同的自发和诱发活动水平,并且在对刺激开始和结束的反应上也有所不同,而SII神经元在这些特性上没有显著差异。SII神经元的反应特性表明它们由丘脑输入驱动,这些丘脑输入是旁lemniscal系统的一部分。因此,与触须相关的输入由涉及SI的lemniscal系统和处理体感互补方面的旁lemniscal系统并行处理。

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