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在出现伸手误差和干扰时,下橄榄核细胞的放电情况。

Discharge of inferior olive cells during reaching errors and perturbations.

作者信息

Horn Kris M, Pong Milton, Gibson Alan R

机构信息

Division of Neurobiology, Barrow Neurological Institute, St. Joseph's Hospital and Medical Center, Phoenix, AZ 85013, USA.

出版信息

Brain Res. 2004 Jan 23;996(2):148-58. doi: 10.1016/j.brainres.2003.10.021.

Abstract

It is widely believed that inferior olive (IO) neurons signal the occurrence of movement errors. The IO compares descending motor commands with information about movement and detects mismatches. Presumably, this error signal is used by the cerebellum to improve motor performance. To test this theory, we trained cats to reach out, grasp and retrieve a handle on cue. After training, the handle was displaced on selected trials so the cats would reach but miss the handle. Fifty-five IO cells with receptive fields on the forelimb were tested with the displaced handle condition. No cell fired at or near the time of "expected" contact, but some cells fired when the cats struck objects while attempting to grasp. A mismatch between a motor command and expected result is not sufficient to activate IO neurons; appropriate stimulation must occur. To define conditions for appropriate stimulation, the limb was stimulated at various times during the task. Sixty-six cells (including the 55 tested under the displaced handle condition) were tested with mechanical stimulation during quiet stance, and 98% responded to stimulation. A smaller percentage (68%) fired when stimulation was introduced during the reaching task, and the probability of these responses varied with the subdivision of the olive as well as the phase of the task. We conclude that it is unlikely that IO discharge provides information about movement or movement error. Olivary cells respond reliably to appropriate somatosensory stimulation but not to active movement or movement error.

摘要

人们普遍认为,下橄榄核(IO)神经元会发出运动误差出现的信号。下橄榄核将下行运动指令与运动信息进行比较,并检测不匹配之处。据推测,小脑利用这种误差信号来改善运动表现。为了验证这一理论,我们训练猫根据提示伸出前肢、抓住并取回一个把手。训练后,在选定的试验中移动把手,这样猫会伸手但抓不到把手。对55个在前肢有感受野的下橄榄核细胞在把手移位的情况下进行了测试。在“预期”接触的时刻或接近该时刻没有细胞放电,但有些细胞在猫试图抓握时撞到物体时放电。运动指令与预期结果之间的不匹配不足以激活下橄榄核神经元;必须发生适当的刺激。为了确定适当刺激的条件,在任务的不同时间对肢体进行刺激。在安静站立时对66个细胞(包括在把手移位情况下测试的55个细胞)进行了机械刺激测试,98%的细胞对刺激有反应。在伸手任务期间引入刺激时,有较小比例(68%)的细胞放电,这些反应的概率随橄榄核的细分以及任务阶段而变化。我们得出结论,下橄榄核放电不太可能提供有关运动或运动误差的信息。橄榄核细胞对适当的体感刺激有可靠反应,但对主动运动或运动误差没有反应。

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