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大鼠次级体感皮层的两个不同区域:拓扑组织和多感觉反应。

Two distinct regions of secondary somatosensory cortex in the rat: topographical organization and multisensory responses.

作者信息

Brett-Green Barbara, Paulsen Marcy, Staba Richard J, Fifková Eva, Barth Daniel S

机构信息

Department of Psychology, University of Colorado at Boulder, Boulder, Colorado 80309, USA.

出版信息

J Neurophysiol. 2004 Mar;91(3):1327-36. doi: 10.1152/jn.00905.2003. Epub 2003 Oct 29.

Abstract

In rodents, as in other species, regions of secondary somatosensory cortex (SII) may be distinguished from primary cortex (SI) both anatomically and electrophysiologically. However, the number of rodent SII subregions, their somatotopic organization, and their function are poorly understood. The presence of multisensory responsive neurons in some areas of SII suggests that one of its roles may be in the integration of somatosensory information with information from other sensory modalities. In this study, we used auditory, somatosensory, or combined auditory/somatosensory stimuli, and high-resolution epipial-evoked potential maps of rat SII to identify the number of spatially discrete subregions, estimate their somatotopic organization, and delineate regions with multisensory response properties. Maps revealed two distinct subregions within SII, one rostral and the other caudal, which were situated lateral to the posteromedial barrel subfield. Distinct somatotopies were evident at both SII loci, and analysis of evoked responses within both areas indicated multisensory interactions. These data are consistent with the presence of classically defined rostral SII regions and provide functional evidence for a lesser known, but distinct, caudal SII area. Furthermore, evidence for multisensory interactions within SII suggests that both secondary areas may process features specifically associated with multisensory integration in parallel with unimodal processing in primary areas.

摘要

与其他物种一样,在啮齿动物中,次级体感皮层(SII)区域在解剖学和电生理学上都可与初级皮层(SI)区分开来。然而,啮齿动物SII亚区域的数量、它们的躯体感觉定位组织及其功能仍知之甚少。SII某些区域中存在多感觉反应神经元,这表明其作用之一可能是将体感信息与来自其他感觉模态的信息进行整合。在本研究中,我们使用听觉、体感或听觉/体感联合刺激,以及大鼠SII的高分辨率软脑膜诱发电位图,来确定空间离散亚区域的数量,估计它们的躯体感觉定位组织,并描绘具有多感觉反应特性的区域。图谱显示SII内有两个不同的亚区域,一个在前部,另一个在后部,它们位于后内侧桶状亚区的外侧。在两个SII位点都有明显不同的躯体感觉定位,并且对两个区域内诱发反应的分析表明存在多感觉相互作用。这些数据与经典定义的前部SII区域的存在一致,并为一个鲜为人知但截然不同的后部SII区域提供了功能证据。此外,SII内多感觉相互作用的证据表明,这两个次级区域可能在处理与多感觉整合相关的特征时,与初级区域中的单模态处理并行进行。

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