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主动触觉辨别过程中初级体感皮层和丘脑核的自上而下的同步调节。

Simultaneous top-down modulation of the primary somatosensory cortex and thalamic nuclei during active tactile discrimination.

机构信息

Department of Neurobiology, Duke University, Durham, North Carolina 27710, USA.

出版信息

J Neurosci. 2013 Feb 27;33(9):4076-93. doi: 10.1523/JNEUROSCI.1659-12.2013.

Abstract

The rat somatosensory system contains multiple thalamocortical loops (TCLs) that altogether process, in fundamentally different ways, tactile stimuli delivered passively or actively sampled. To elucidate potential top-down mechanisms that govern TCL processing in awake, behaving animals, we simultaneously recorded neuronal ensemble activity across multiple cortical and thalamic areas while rats performed an active aperture discrimination task. Single neurons located in the primary somatosensory cortex (S1), the ventroposterior medial, and the posterior medial thalamic nuclei of the trigeminal somatosensory pathways exhibited prominent anticipatory firing modulations before the whiskers touching the aperture edges. This cortical and thalamic anticipatory firing could not be explained by whisker movements or whisker stimulation, because neither trigeminal ganglion sensory-evoked responses nor EMG activity were detected during the same period. Both thalamic and S1 anticipatory activity were predictive of the animal's discrimination accuracy. Inactivation of the primary motor cortex (M1) with muscimol affected anticipatory patterns in S1 and the thalamus, and impaired the ability to predict the animal's performance accuracy based on thalamocortical anticipatory activity. These findings suggest that neural processing in TCLs is launched in anticipation of whisker contact with objects, depends on top-down effects generated in part by M1 activity, and cannot be explained by the classical feedforward model of the rat trigeminal system.

摘要

大鼠体感系统包含多个丘脑皮层回路(TCLs),这些回路以截然不同的方式共同处理被动或主动采样的触觉刺激。为了阐明在清醒、行为动物中控制 TCL 处理的潜在自上而下的机制,我们在大鼠执行主动孔径辨别任务时,同时记录了多个皮层和丘脑区域的神经元群体活动。位于初级体感皮层(S1)、腹后内侧核和三叉神经体感通路上的后内侧丘脑核的单个神经元在前额触须触及孔径边缘之前表现出明显的预期发射调制。这种皮层和丘脑的预期发射不能用触须运动或触须刺激来解释,因为在同一时期既没有检测到三叉神经节感觉诱发反应,也没有检测到肌电图活动。丘脑和 S1 的预期活动都可以预测动物的辨别准确性。用 muscimol 使初级运动皮层(M1)失活会影响 S1 和丘脑的预期模式,并损害根据丘脑皮层预期活动预测动物表现准确性的能力。这些发现表明,TCL 中的神经处理是在触须与物体接触之前启动的,依赖于部分由 M1 活动产生的自上而下的影响,并且不能用大鼠三叉神经系统的经典前馈模型来解释。

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