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Striatal microcircuitry and movement disorders

机译:纹状体微电路和运动障碍

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摘要

The basal ganglia network serves to integrate information about context, actions, and outcomes to shape the behavior of an animal based on its past experience. Clinically, the basal ganglia receive the most attention for their role in movement disorders. Recent advances in technology have opened new avenues of research into the structure and function of basal ganglia circuits. One emerging theme is the importance of GABAergic interneurons in coordinating and regulating network function. Here, we discuss evidence that changes in striatal GABAergic microcircuits contribute to basal ganglia dysfunction in several movement disorders. Because interneurons are genetically and neurochemically unique from striatal projection neurons, they may provide promising therapeutic targets for the treatment of a variety of striatal-based disorders.
机译:基底神经节网络用于整合有关情境,动作和结果的信息,以根据动物过去的经验来塑造动物的行为。临床上,基底神经节因其在运动障碍中的作用而受到最多的关注。技术的最新进展为基底神经节回路的结构和功能开辟了新的研究途径。一个新兴的主题是GABA能神经元在协调和调节网络功能中的重要性。在这里,我们讨论的证据表明,纹状体GABA能微电路的变化会导致几种运动障碍的基底神经节功能障碍。因为中间神经元在遗传和神经化学上不同于纹状体投射神经元,所以它们可能为各种基于纹状体疾病的治疗提供有希望的治疗靶标。

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