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人类背侧运动前皮质中针对握力的特定体重预期编码。

Weight-specific anticipatory coding of grip force in human dorsal premotor cortex.

机构信息

Department of Neurology, Christian-Albrechts-University, Kiel, Germany.

出版信息

J Neurosci. 2012 Apr 11;32(15):5272-83. doi: 10.1523/JNEUROSCI.5673-11.2012.

Abstract

The dorsal premotor cortex (PMd) uses prior sensory information for motor preparation. Here, we used a conditioning-and-map approach in 11 healthy male humans (mean age 27 years) to further clarify the role of PMd in anticipatory motor control. We transiently disrupted neuronal processing in PMd, using either continuous theta burst stimulation (cTBS) at 80% (inhibitory cTBS) or 30% (sham cTBS) of active motor threshold. The conditioning effects of cTBS on preparatory brain activity were assessed with functional MRI, while participants lifted a light or heavy weight in response to a go-cue (S2). An additional pre-cue (S1) correctly predicted the weight in 75% of the trials. Participants were asked to use this prior information to prepare for the lift. In the sham condition, grip force showed a consistent undershoot, if the S1 incorrectly prompted the preparation of a light lift. Likewise, an S1 that falsely announced a heavy weight produced a consistent overshoot in grip force. In trials with incorrect S1, preparatory activity in left PMd during the S1-S2 delay period predicted grip force undershoot but not overshoot. Real cTBS selectively abolished this undershoot in grip force. Furthermore, preparatory S1-S2 activity in left PMd no longer predicted the individual undershoot after real cTBS. Our results provide converging evidence for a causal involvement of PMd in anticipatory downscaling but not upscaling of grip force, suggesting an inhibitory role of PMd in anticipatory grip force control during object lifting.

摘要

背侧运动前皮质(PMd)利用先前的感觉信息进行运动准备。在这里,我们使用了 11 名健康男性(平均年龄 27 岁)的条件反射和映射方法,进一步阐明 PMd 在预期运动控制中的作用。我们使用连续 theta 爆发刺激(cTBS)在 80%(抑制性 cTBS)或 30%(假刺激 cTBS)的活动运动阈值下暂时破坏 PMd 中的神经元处理。使用功能磁共振成像评估 cTBS 对预备性大脑活动的调节作用,而参与者则根据 Go 信号(S2)举起轻或重的重量。在 75%的试验中,一个额外的预信号(S1)正确预测了重量。要求参与者利用此先验信息为举重做准备。在假刺激条件下,如果 S1 错误地提示准备举起轻重量,则握力会出现一致的低估。同样,如果 S1 错误地宣布重重量,则握力会出现一致的高估。在 S1 不正确的试验中,S1-S2 延迟期间左侧 PMd 的预备活动预测握力低估,但不预测高估。真正的 cTBS 选择性地消除了握力的这种低估。此外,真正的 cTBS 后,左侧 PMd 的预备 S1-S2 活动不再预测个体的低估。我们的结果为 PMd 在预期的力下调而不是上调中因果关系提供了证据,表明 PMd 在物体提起期间的预期握力控制中具有抑制作用。

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