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Topographic organization of corticospinal projections from the frontal lobe: motor areas on the medial surface of the hemisphere

机译:额叶皮质脊髓投射的地形组织:半球内侧表面的运动区

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摘要

We examined the topographic organization of corticospinal neurons in the four premotor areas on the medial wall of the hemisphere of macaques. These motor areas include the supplementary motor area (SMA) and three areas buried within the cingulate sulcus: the caudal cingulate motor area on the dorsal bank (CMAd), the caudal cingulate motor area on the ventral bank (CMAv), and the rostral cingulate motor area (CMAr). In one set of animals, we injected one fluorescent tracer into lower cervical segments of the spinal cord and another fluorescent tracer into lower lumbosacral segments to define the topographic organization of arm and leg representation within each premotor area. Similarly, in another set of animals, we injected different tracers into upper cervical and lower cervical segments to provide an indication of the topographic organization of proximal and distal arm representation within the arm representation of each premotor area. We found that all four of the premotor areas on the medial wall project to cervical and lumbosacral segments of the spinal cord. Three of these areas (SMA, CMAd, and CMAv) are like the primary motor cortex in having distinct arm and leg representations. The arm representation in each of the four motor areas on the medial wall contains separate regions that project densely to upper or to lower cervical segments. This observation suggests that each motor area contains distinct proximal and distal representations of the arm. Surprisingly, the size of the distal representation is comparable to or larger than the size of the proximal representation in each motor area. Thus, contrary to some previous hypotheses, the anatomical substrate exists for the premotor areas on the medial wall to be involved in the control of distal, as well as proximal arm movements. Our results provide a new map for guiding the exploration of the motor functions of the medial wall of the hemisphere. Furthermore, the observations of the present study support our suggestion that each of the premotor areas may be an important source of descending commands for the generation and control of movement.
机译:我们检查了猕猴半球内侧壁上四个运动前区域中皮质脊髓神经元的地形组织。这些运动区域包括辅助运动区域(SMA)和埋在扣带状沟内的三个区域:背侧岸的尾状扣带运动区(CMAd),腹侧上的尾状扣带运动区(CMAv)和延髓带状扣带电机面积(CMAr)。在一组动物中,我们将一种荧光示踪剂注入脊髓的下颈段,将另一种荧光示踪剂注入下腰s部,以定义每个运动前区域内手臂和腿部的地形组织。同样,在另一组动物中,我们在上颈段和下颈段中注射了不同的示踪剂,以指示每个运动前区域的手臂代表内近端和远端手臂代表的地形组织。我们发现内侧壁上的所有四个运动前区都突出到脊髓的颈段和腰s段。这些区域中的三个区域(SMA,CMAd和CMAv)就像主要的运动皮层一样,具有独特的手臂和腿部表示。内侧壁上四个运动区域中的每个区域中的手臂表示都包含单独的区域,这些区域密集地突出到上颈段或下颈段。该观察结果表明,每个运动区域都包含手臂的不同近端和远端表示。令人惊讶地,在每个运动区域中,远端表示的尺寸与近端表示的尺寸相当或更大。因此,与某些先前的假设相反,存在用于在内侧壁上的运动前区域参与远侧和近侧臂运动的控制的解剖学基底。我们的结果为指导探索半球内侧壁的运动功能提供了新的地图。此外,本研究的观察结果支持了我们的建议,即每个运动前区域可能是产生和控制运动的下降命令的重要来源。

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