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Nitric oxide plays a key role in adaptive control of locomotion in cat

机译:一氧化氮在适应性控制中发挥关键作用。 猫的运动

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摘要

Diverse roles in cellular functions have been ascribed to nitric oxide (NO), and its involvement in induction of long-term depression in cerebellar Purkinje cells has been demonstrated. Manipulations of NO concentration or its synthesis in cerebellar tissues therefore provide a means for investigating roles of NO in cerebellar functions at both cellular and behavioral levels. We tested adaptive control of locomotion to perturbation in cats, and found that this form of motor learning was abolished by application of either an inhibitor of NO synthase or a scavenger of NO to the cerebellar cortical locomotion area. This finding supports the view that NO in the cerebellum plays a key role in motor learning.
机译:一氧化氮(NO)归因于细胞功能的不同作用,并且已证明其参与诱导小脑浦肯野细胞的长期抑郁。因此,对小脑组织中NO浓度或其合成的操纵为研究NO在细胞和行为水平上在小脑功能中的作用提供了一种手段。我们测试了猫的运动对摄动的自适应控制,发现通过在小脑皮层运动区域应用一氧化氮合酶抑制剂或一氧化氮清除剂,可以取消这种形式的运动学习。这一发现支持了小脑中NO在运动学习中起关键作用的观点。

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