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Frontal Lobe Inputs to the Digit Representations of the Motor Areas on the Lateral Surface of the Hemisphere

机译:额叶输入到半球侧面的运动区域的数字表示

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摘要

We examined the frontal lobe connections of the digit representations in the primary motor cortex (M1), the dorsal premotor area (PMd), and the ventral premotor area (PMv) of cebus monkeys. All of these digit representations lie on the lateral surface of the hemisphere. We used intracortical stimulation to identify the digit representations physiologically, and then we injected different tracers into two of the three cortical areas. This approach enabled us to compare the inputs to two digit representations in the same animal. We found that the densest inputs from the premotor areas to the digit representation in M1 originate from the PMd and the PMv. Both of these premotor areas contain a distinct digit representation, and the two digit representations are densely interconnected. Surprisingly, the projections from the digit representation in the supplementary motor area (SMA) to the PMd and PMv are stronger than the SMA projections to M1. The projections from other premotor areas to M1, the PMd, and the PMv are more modest. Of the three digit areas on the lateral surface, only the PMv receives dense input from the prefrontal cortex. Based on these results, we believe that M1, the PMd, and the PMv form a densely interconnected network of cortical areas that is concerned with the generation and control of hand movements. Overall, the laminar origins of neurons that interconnect the three cortical areas are typical of “lateral” interactions. Thus, from an anatomical perspective, this cortical network lacks a clear hierarchical organization.
机译:我们检查了额叶的主要运动皮层(M1),背运动前区(PMd)和腹侧运动前区(PMv)中的数字表示的猴子。所有这些数字表示都位于半球的侧面。我们使用皮层内刺激从生理学角度识别数字表示,然后将不同的示踪剂注入三个皮层区域中的两个。这种方法使我们能够将输入与同一只动物的两位数表示形式进行比较。我们发现从前运动区到M1中的数字表示的最密集输入来自PMd和PMv。这两个运动前区域都包含不同的数字表示,并且两个数字表示紧密地互连。令人惊讶的是,从辅助运动区(SMA)中的数字表示到PMd和PMv的投影要强于SMA到M1的投影。从其他运动前区域到M1,PMd和PMv的投影更为适中。在侧面的三位数区域中,只有PMv接收来自前额叶皮层的密集输入。根据这些结果,我们认为M1,PMd和PMv形成了一个紧密相连的皮质区域网络,该网络与手部运动的产生和控制有关。总体而言,将三个皮质区域相互连接的神经元的层状起源是“横向”相互作用的典型特征。因此,从解剖学的角度来看,该皮质网络缺乏清晰的层次结构。

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