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The Interaction of Recurrent Axon Collateral Networks in the Basal Ganglia

机译:基底神经节中复发性轴突侧支网络的相互作用

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摘要

We have proposed that the basal ganglia act as the central switching mechanism for the action selection system of the vertebrate brain. Simulation of our functional model of basal ganglia demonstrated that their output was consistent with this action selection hypothesis. Here we extend this model by incorporating anatomically-inspired local inhibitory axon collateral networks into two basal ganglia nuclei (globus pallidus and substantia nigra pars reticulata). Through simulation it is demonstrated that the basal ganglia's ability to function as a selection mechanism is impaired by the individual addition of the collateral networks but slightly improved when they co-exist. Therefore, we predict the existence of local axon collaterals in the entopeduncular nucleus because of its functional equivalence with the substantia nigra pars reticulata. We conclude that the action selection hypothesis is supported by the continued functioning of the basal ganglia model as a switching mechanism following appropriate anatomically-inspired additions.
机译:我们已经提出,基底神经节充当脊椎动物大脑动作选择系统的中央转换机制。对我们的基底神经节功能模型的仿真表明,它们的输出与此动作选择假设相符。在这里,我们通过将解剖学启发的局部抑制性轴突侧支网络并入两个基底神经节核(苍白球和黑质网状体)中来扩展该模型。通过仿真表明,神经节作为选择机制的能力被附带网络的单独添加所损害,但是当它们共存时会有所改善。因此,我们预测上皮的单核中存在局部轴突侧支,因为其功能与黑质网状组织等效。我们得出的结论是,在遵循适当的解剖学启发后,基础神经节模型的持续功能作为一种切换机制得到了动作选择假设的支持。

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