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首页> 外文期刊>Journal of Cognitive Neuroscience >Causal Prefrontal Contributions to Stop-Signal Task Performance in Humans
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Causal Prefrontal Contributions to Stop-Signal Task Performance in Humans

机译:人类停止信号任务性能的因果前额贡献

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摘要

The frontal lobes have long been implicated in inhibitory control, but a full understanding of the underlying mechanisms remains elusive. The stop-signal task has been widely used to probe instructed response inhibition in cognitive neuroscience. The processes involved have been modeled and related to putative brain substrates. However, there has been surprisingly little human lesion research using this task, with the few existing studies implicating different prefrontal regions. Here, we tested the effects of focal prefrontal damage on stop-signal task performance in a large sample of people with chronic focal damage affecting the frontal lobes (n = 42) and demographically matched healthy individuals (n = 60). Patients with damage to the left lateral, right lateral, dorsomedial, or ventromedial frontal lobe had slower stop-signal RT compared to healthy controls. There were systematic differences in the patterns of impairment across frontal subgroups: Those with damage to the left or right lateral and dorsomedial frontal lobes, but not those with ventromedial frontal damage, were slower than controls to "go" as well as to stop. These findings suggest that multiple prefrontal regions make necessary but distinct contributions to stop-signal task performance. As a consequence, stop-signal RT slowing is not strongly localizing within the frontal lobes.
机译:正面裂片长期涉及抑制控制,但充分了解潜在机制仍然难以捉摸。停止信号任务已被广泛用于探测认知神经科学中的指示响应抑制。所涉及的过程已经建模并与推定的脑基质相关。然而,使用这项任务令人惊讶的是人类病变研究,少数现有的研究暗示了不同的前额落区域。在这里,我们在慢性焦点损伤的大型人中对影响额叶(n = 42)和人群匹配的健康个体(n = 60)的慢性焦点损伤的大量人群中的焦点前损伤对止动信号任务性能的影响。与健康对照相比,左侧侧侧,右侧,背侧,背侧或腹部前叶损伤的患者具有较慢的停止信号RT。跨前亚组的损伤模式有系统的差异:左侧或右侧和背侧的横向损坏的人,但不是具有腹侧型正面损坏的那些,比对“走”的控制等速度慢。这些发现表明,多个前平面区域对停止信号任务性能进行必要但不同的贡献。因此,停止信号RT速度不会在正面凸起内强烈定位。

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