首页> 外文期刊>Cerebral cortex >Cerebellar inputs to intraparietal cortex areas LIP and MIP: functional frameworks for adaptive control of eye movements, reaching, and arm/eye/head movement coordination.
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Cerebellar inputs to intraparietal cortex areas LIP and MIP: functional frameworks for adaptive control of eye movements, reaching, and arm/eye/head movement coordination.

机译:小脑输入到顶内皮层区域LIP和MIP:功能性框架,用于自适应控制眼睛的运动,到达以及手臂/眼睛/头部的运动协调。

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Using retrograde transneuronal transfer of rabies virus in combination with a conventional tracer (cholera toxin B), we studied simultaneously direct (thalamocortical) and polysynaptic inputs to the ventral lateral intraparietal area (LIPv) and the medial intraparietal area (MIP) in nonhuman primates. We found that these areas receive major disynaptic inputs from specific portions of the cerebellar nuclei, the ventral dentate (D), and ventrolateral interpositus posterior (IP). Area LIPv receives inputs from oculomotor domains of the caudal D and IP. Area MIP is the target of projections from the ventral D (mainly middle third), and gaze- and arm-related domains of IP involved in reaching and arm/eye/head coordination. We also showed that cerebellar cortical "output channels" to MIP predominantly stem from posterior cerebellar areas (paramedian lobe/Crus II posterior, dorsal paraflocculus) that have the required connectivity for adaptive control of visual and proprioceptive guidance of reaching, arm/eye/head coordination, and prism adaptation. These findings provide important insight about the interplay between the posterior parietal cortex and the cerebellum regarding visuospatial adaptation mechanisms and visual and proprioceptive guidance of movement. They also have potential implications for clinical approaches to optic ataxia and neglect rehabilitation.
机译:使用狂犬病病毒逆行跨神经元转移结合常规示踪剂(霍乱毒素B),我们研究了在非人类灵长类动物中,直接(丘脑皮层)和多突触输入到腹外侧腹壁内区域(LIPv)和腹腔内壁区域(MIP)。我们发现这些区域从小脑核的特定部分,腹侧齿状体(D)和腹侧后位间质(IP)接收主要的突触输入。区域L​​IPv从尾D和IP的动眼域接收输入。 MIP区域是从腹侧D(主要是中部三分之一)以及与注视和手臂相关的IP范围(与到达以及手臂/眼睛/头部协调)相关的区域进行投影的目标。我们还显示,MIP的小脑皮质“输出通道”主要来自小脑后部区域(旁中叶/ Crus II后部,背侧旁结节),这些区域具有必要的连通性,可以自适应地控制到达,手臂/眼睛/头部的视觉和本体感受指导协调和棱镜适应。这些发现为后顶叶皮层和小脑之间的相互作用提供了重要的见解,涉及视觉空间适应机制以及运动的视觉和本体感受指导。它们也对视神经共济失调和忽视康复的临床方法具有潜在的影响。

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