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顶内前庭皮质的感觉会聚。

Sensory convergence in the parieto-insular vestibular cortex.

机构信息

Department of Otolaryngology, University of Texas Medical Branch, Galveston, Texas.

Department of Otolaryngology, University of Texas Medical Branch, Galveston, Texas

出版信息

J Neurophysiol. 2014 Jun 15;111(12):2445-64. doi: 10.1152/jn.00731.2013. Epub 2014 Mar 26.

Abstract

Vestibular signals are pervasive throughout the central nervous system, including the cortex, where they likely play different roles than they do in the better studied brainstem. Little is known about the parieto-insular vestibular cortex (PIVC), an area of the cortex with prominent vestibular inputs. Neural activity was recorded in the PIVC of rhesus macaques during combinations of head, body, and visual target rotations. Activity of many PIVC neurons was correlated with the motion of the head in space (vestibular), the twist of the neck (proprioceptive), and the motion of a visual target, but was not associated with eye movement. PIVC neurons responded most commonly to more than one stimulus, and responses to combined movements could often be approximated by a combination of the individual sensitivities to head, neck, and target motion. The pattern of visual, vestibular, and somatic sensitivities on PIVC neurons displayed a continuous range, with some cells strongly responding to one or two of the stimulus modalities while other cells responded to any type of motion equivalently. The PIVC contains multisensory convergence of self-motion cues with external visual object motion information, such that neurons do not represent a specific transformation of any one sensory input. Instead, the PIVC neuron population may define the movement of head, body, and external visual objects in space and relative to one another. This comparison of self and external movement is consistent with insular cortex functions related to monitoring and explains many disparate findings of previous studies.

摘要

前庭信号在中枢神经系统中普遍存在,包括大脑皮层,在那里它们可能发挥着与在研究更为充分的脑干中不同的作用。对于顶内前庭皮层(PIVC),即大脑皮层中具有显著前庭输入的区域,人们知之甚少。在头、身体和视觉目标旋转的组合过程中,我们记录了猕猴 PIVC 中的神经活动。许多 PIVC 神经元的活动与头部在空间中的运动(前庭)、颈部的扭曲(本体感受)以及视觉目标的运动相关,但与眼球运动无关。PIVC 神经元最常对不止一种刺激做出反应,并且对组合运动的反应通常可以通过对头部、颈部和目标运动的个体敏感性的组合来近似。PIVC 神经元的视觉、前庭和躯体敏感性模式显示出连续的范围,一些细胞对一种或两种刺激模式有强烈反应,而其他细胞对任何类型的运动反应相等。PIVC 包含了自身运动线索与外部视觉物体运动信息的多感觉融合,使得神经元不代表任何一种单一感觉输入的特定转换。相反,PIVC 神经元群体可能定义了头部、身体和外部视觉物体在空间中的运动以及它们之间的相对运动。这种对自身和外部运动的比较与与监测相关的岛叶皮层功能一致,并解释了之前研究中许多不同的发现。

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