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在运动准备过程中控制抑制机制时,前额叶和运动前皮质的作用分离。

Dissociating the role of prefrontal and premotor cortices in controlling inhibitory mechanisms during motor preparation.

机构信息

Department of Psychology, University of California, Berkeley, California 94720, USA.

出版信息

J Neurosci. 2012 Jan 18;32(3):806-16. doi: 10.1523/JNEUROSCI.4299-12.2012.

Abstract

Top-down control processes are critical to select goal-directed actions in flexible environments. In humans, these processes include two inhibitory mechanisms that operate during response selection: one is involved in solving a competition between different response options, the other ensures that a selected response is initiated in a timely manner. Here, we evaluated the role of dorsal premotor cortex (PMd) and lateral prefrontal cortex (LPF) of healthy subjects in these two forms of inhibition by using an innovative transcranial magnetic stimulation (TMS) protocol combining repetitive TMS (rTMS) over PMd or LPF and a single pulse TMS (sTMS) over primary motor cortex (M1). sTMS over M1 allowed us to assess inhibitory changes in corticospinal excitability, while rTMS was used to produce transient disruption of PMd or LPF. We found that rTMS over LPF reduces inhibition associated with competition resolution, whereas rTMS over PMd decreases inhibition associated with response impulse control. These results emphasize the dissociable contributions of these two frontal regions to inhibitory control during motor preparation. The association of LPF with competition resolution is consistent with the role of this area in relatively abstract aspects of control related to goal maintenance, ensuring that the appropriate response is selected in a variable context. In contrast, the association of PMd with impulse control is consistent with the role of this area in more specific processes related to motor preparation and initiation.

摘要

自上而下的控制过程对于在灵活环境中选择目标导向的动作至关重要。在人类中,这些过程包括在反应选择过程中起作用的两种抑制机制:一种涉及解决不同反应选项之间的竞争,另一种确保及时启动选定的反应。在这里,我们通过使用一种创新的经颅磁刺激 (TMS) 方案来评估健康受试者的背侧运动前皮层 (PMd) 和外侧前额叶皮层 (LPF) 在这两种抑制形式中的作用,该方案结合了 PMd 或 LPF 上的重复 TMS (rTMS) 和初级运动皮层 (M1) 上的单次脉冲 TMS (sTMS)。M1 上的 sTMS 允许我们评估皮质脊髓兴奋性的抑制变化,而 rTMS 用于产生 PMd 或 LPF 的瞬时干扰。我们发现,LPF 上的 rTMS 降低了与竞争解决相关的抑制,而 PMd 上的 rTMS 降低了与反应冲动控制相关的抑制。这些结果强调了这两个额叶区域在运动准备过程中的抑制控制中的可分离贡献。LPF 与竞争解决的关联与其在与目标维持相关的相对抽象的控制方面的作用一致,确保在可变的背景下选择适当的反应。相比之下,PMd 与冲动控制的关联与其在与运动准备和启动相关的更具体的过程中的作用一致。

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