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中脑和皮层跨模态整合的比较。

Comparisons of cross-modality integration in midbrain and cortex.

作者信息

Stein B E, Wallace M T

机构信息

Department of Neurobiology and Anatomy, Bowman Gray School of Medicine/Wake Forest University, Winston-Salem, NC 27157-1010, USA.

出版信息

Prog Brain Res. 1996;112:289-99. doi: 10.1016/s0079-6123(08)63336-1.

Abstract

Multisensory neurons are abundant in the superior colliculus and anterior ectosylvian cortex of the cat. Despite the fact that these areas receive inputs from different regions, and are likely to be involved in different functional roles, there multisensory neurons have many fundamental similarities. They all have multiple receptive fields, one for each sensory input, and these receptive fields overlap one another. It is this spatial correspondence among receptive fields that determines the manner in which both populations of neurons integrate the inputs they receive from different sensory channels. Several principles of integration characterize both cortical and midbrain multisensory neurons, and these constancies in the fundamentals of cross-modality integration are likely to provide a basis for coherence at different levels of the neuraxis. Yet there are also obvious differences in these populations of multisensory neurons. Cortical receptive fields are significantly larger than those in the midbrain, have a lower incidence of suppressive surrounds, and exhibit less cross-modality inhibitory interactions than in the midbrain. Presumably, these differences reflect a greater emphasis on non-spatial aspects of cross-modality integration in cortex than is required by the orientation and localization functions mediated by the superior colliculus.

摘要

多感觉神经元在猫的上丘和外侧前脑皮层中大量存在。尽管这些区域接收来自不同部位的输入,并且可能参与不同的功能,但这些多感觉神经元有许多基本的相似之处。它们都有多个感受野,每个感觉输入对应一个感受野,并且这些感受野相互重叠。正是感受野之间的这种空间对应关系决定了这两类神经元整合从不同感觉通道接收的输入的方式。整合的几个原则表征了皮层和中脑的多感觉神经元,而跨模态整合基本原理中的这些恒定性可能为神经轴不同水平的连贯性提供基础。然而,这些多感觉神经元群体之间也存在明显差异。皮层感受野明显大于中脑的感受野,抑制性周边的发生率较低,并且与中脑相比,表现出较少的跨模态抑制性相互作用。据推测,这些差异反映出皮层比上丘介导的定向和定位功能更强调跨模态整合的非空间方面。

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