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Dense Distributed Processing in a Hindlimb Scratch Motor Network

机译:后肢刮擦电机网络中的密集分布式处理

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摘要

In reduced preparations, hindlimb movements can be generated by a minimal network of neurons in the limb innervating spinal segments. The network of neurons that generates real movements is less well delineated. In an ex vivo carapace-spinal cord preparation from adult turtles (Trachemys scripta elegans), we show that ventral horn interneurons in mid-thoracic spinal segments are functionally integrated in the hindlimb scratch network. First, mid-thoracic interneurons receive intense synaptic input during scratching and behave like neurons in the hindlimb enlargement. Second, some mid-thoracic interneurons activated during scratching project descending axons toward the hindlimb enlargement. Third, elimination of mid-thoracic segments leads to a weakening of scratch rhythmicity. We conclude that densely innervated interneurons in mid-thoracic segments contribute to hindlimb scratching and may be part of a distributed motor network that secures motor coherence.
机译:在减少准备的情况下,后肢运动可以通过支配脊柱节段的肢体中的神经元网络最小化来产生。产生真实运动的神经元网络的描述不太好。在成年乌龟(Trachemys scripta elegans)的离体甲壳-脊髓制备中,我们显示中胸椎节段的腹角内神经元在功能上整合在后肢刮擦网络中。首先,胸中神经元在scratch抓过程中接受强烈的突触输入,并且在后肢增大时表现得像神经元。第二,一些在刮擦过程中被激活的胸中神经元将突触轴突朝后肢增大。第三,消除胸中段会导致刮scratch节律的减弱。我们得出的结论是,在胸中段中密集支配的神经元会导致后肢刮擦,并且可能是确保运动连贯性的分布式运动网络的一部分。

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