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小脑小结和绒球的光流和前庭调谐的时空特性。

Spatiotemporal properties of optic flow and vestibular tuning in the cerebellar nodulus and uvula.

机构信息

Department of Otolaryngology, Washington University School of Medicine, St. Louis, Missouri 63110, Key Laboratory of Brain Functional Genomics, Primate Research Center, Commission of Shanghai Municipality, Ministry of Education and Science and Technology, East China Normal University, 130012 Shanghai, China, and Department of Neuroscience, Baylor College of Medicine, Houston, Texas 77030.

出版信息

J Neurosci. 2013 Sep 18;33(38):15145-60. doi: 10.1523/JNEUROSCI.2118-13.2013.

Abstract

Convergence of visual motion and vestibular information is essential for accurate spatial navigation. Such multisensory integration has been shown in cortex, e.g., the dorsal medial superior temporal (MSTd) and ventral intraparietal (VIP) areas, but not in the parieto-insular vestibular cortex (PIVC). Whether similar convergence occurs subcortically remains unknown. Many Purkinje cells in vermal lobules 10 (nodulus) and 9 (uvula) of the macaque cerebellum are tuned to vestibular translation stimuli, yet little is known about their visual motion responsiveness. Here we show the existence of translational optic flow-tuned Purkinje cells, found exclusively in the anterior part of the nodulus and ventral uvula, near the midline. Vestibular responses of Purkinje cells showed a remarkable similarity to those in MSTd (but not PIVC or VIP) neurons, in terms of both response latency and relative contributions of velocity, acceleration, and position components. In contrast, the spatiotemporal properties of optic flow responses differed from those in MSTd, and matched the vestibular properties of these neurons. Compared with MSTd, optic flow responses of Purkinje cells showed smaller velocity contributions and larger visual motion acceleration responses. The remarkable similarity between the nodulus/uvula and MSTd vestibular translation responsiveness suggests a functional coupling between the two areas for vestibular processing of self-motion information.

摘要

视觉运动和前庭信息的融合对于准确的空间导航至关重要。这种多感觉整合已在皮层中得到证实,例如背内侧上颞(MSTd)和腹内顶(VIP)区域,但不在顶-岛叶前庭皮质(PIVC)中。类似的汇聚是否在下皮层中发生尚不清楚。猕猴小脑蚓部 10 叶(小结)和 9 叶(小舌)的许多浦肯野细胞对前庭平移刺激有调谐作用,但对其视觉运动反应知之甚少。在这里,我们展示了仅在前小结和腹侧小舌的前部存在的翻译光学流调谐浦肯野细胞的存在,靠近中线。浦肯野细胞的前庭反应与 MSTd(但不是 PIVC 或 VIP)神经元的反应非常相似,无论是在反应潜伏期还是在速度、加速度和位置分量的相对贡献方面。相比之下,光流反应的时空特性与 MSTd 不同,与这些神经元的前庭特性相匹配。与 MSTd 相比,浦肯野细胞的光流反应的速度贡献较小,而视觉运动加速度反应较大。小结/小舌和 MSTd 前庭平移反应之间的显著相似性表明这两个区域之间存在用于自我运动信息前庭处理的功能耦合。

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