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分层错误处理:不同的错误,不同的系统。

Hierarchical error processing: different errors, different systems.

作者信息

Krigolson Olav E, Holroyd Clay B

机构信息

Department of Psychology, University of Victoria, Victoria, BC, Canada.

出版信息

Brain Res. 2007 Jun 25;1155:70-80. doi: 10.1016/j.brainres.2007.04.024. Epub 2007 Apr 19.

Abstract

Error processing during motor control involves the evaluation of "high-level" errors (i.e., failures to meet a system goal) by a frontal system involving anterior cingulate cortex and the evaluation of "low-level" errors (i.e., discrepancies between actual and desired motor commands) by a posterior system involving posterior parietal cortex. We have recently demonstrated that high-level errors committed within the context of a continuous tracking task elicited an error-related negativity (ERN) -- a component of the event-related brain potential (ERP) generated within medial-frontal cortex that is sensitive to error commission. The purpose of the present study was to demonstrate that low-level motor errors do not elicit an ERN, but may instead evoke other ERP components associated with visual processing and online motor control. Participants performed a computer aiming task in which they manipulated a joystick to move a cursor from a start to a target position. On a random subset of trials the target jumped to a new position at movement onset, requiring the participants to modify their current motor command. Further, on one half of these "target perturbation" trials the cursor did not respond to corrective movements of the joystick. Consistent with our previous findings, we found that the uncorrectable errors elicited an ERN. We also found that the target perturbations on both correctable and uncorrectable trials did not elicit an ERN, but rather evoked two other ERP components, the N100 and P300. These results suggest that medial-frontal cortex is insensitive to low-level motor errors, and are in line with a recent theory that holds that the P300 reflects stimulus-response optimization by the impact of locus coeruleus activity on posterior cortex.

摘要

运动控制过程中的错误处理涉及由一个包括前扣带回皮质的额叶系统对“高级”错误(即未能实现系统目标)的评估,以及由一个包括后顶叶皮质的后部系统对“低级”错误(即实际运动指令与期望运动指令之间的差异)的评估。我们最近证明,在连续跟踪任务背景下所犯的高级错误会引发错误相关负波(ERN)——一种在内侧额叶皮质产生的事件相关脑电位(ERP)成分,对错误行为敏感。本研究的目的是证明低级运动错误不会引发ERN,而是可能引发与视觉处理和在线运动控制相关的其他ERP成分。参与者执行一项计算机瞄准任务,他们操纵操纵杆将光标从起始位置移动到目标位置。在随机选择的一部分试验中,目标在运动开始时跳到一个新位置,要求参与者修改他们当前的运动指令。此外,在这些“目标扰动”试验的一半中,光标对操纵杆的校正运动没有反应。与我们之前的研究结果一致,我们发现不可校正的错误会引发ERN。我们还发现,在可校正和不可校正试验中的目标扰动都没有引发ERN,而是引发了另外两个ERP成分,N100和P300。这些结果表明内侧额叶皮质对低级运动错误不敏感,并且与最近的一种理论一致,该理论认为P300反映了蓝斑核活动对后皮质的影响所导致的刺激-反应优化。

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