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视觉引导的目标导向运动可能不受刺激-反应不确定性的影响。

Visually guided, aimed movements can be unaffected by stimulus-response uncertainty.

作者信息

Wright Charles E, Marino Valerie F, Belovsky Shane A, Chubb Charles

机构信息

Department of Cognitive Sciences, University of California, Irvine, CA 92697-5100, USA.

出版信息

Exp Brain Res. 2007 May;179(3):475-96. doi: 10.1007/s00221-006-0805-z. Epub 2007 Jan 23.

Abstract

Response times generally increase linearly with the logarithm of the number of potential stimulus-response alternatives (e.g., Hick's law). The ubiquity and theoretical importance of this generalization make exceptions particularly interesting. Recently, Kveraga et al. (Exp Brain Res 146:307, 2002) added a third to the two previously known exceptions, demonstrating that saccade latencies were unaffected by stimulus-response uncertainty. They suggest that visually guided saccades are exceptional, because these movements can be automatically selected using a privileged pathway: the topographically organized regions in superior colliculus that convert spatially coded visual activity into spatially coded motor commands. We report that visually guided, aimed hand movements also are unaffected by both stimulus-response uncertainty and stimulus-response repetition. A second experiment demonstrated that this lack of an uncertainty effect persists for equiluminant stimuli. This result suggests that posterior parietal cortex is not the privileged pathway eliminating stimulus-response uncertainty for hand movements. Because hand movements are not guided by mechanisms in the superior colliculus, our results cast doubt on the privileged-pathway hypothesis, at least for hand movements. Instead, the absence of stimulus-response uncertainty may occur only in tasks that do not require the stimulus to be associated with a response effector and that have high stimulus-response compatibility.

摘要

反应时间通常随潜在刺激 - 反应选项数量的对数呈线性增加(例如,希克定律)。这一普遍规律的普遍性和理论重要性使得例外情况格外引人关注。最近,克韦拉加等人(《实验脑研究》146:307,2002年)在之前已知的两个例外情况基础上又增加了第三个,证明扫视潜伏期不受刺激 - 反应不确定性的影响。他们认为视觉引导的扫视是例外情况,因为这些运动可以通过一条特殊通路自动选择:上丘中按拓扑结构组织的区域,该区域将空间编码的视觉活动转换为空间编码的运动指令。我们报告视觉引导的目标手部运动同样不受刺激 - 反应不确定性和刺激 - 反应重复的影响。第二个实验表明,对于等亮度刺激,这种缺乏不确定性效应的情况依然存在。这一结果表明,后顶叶皮层并非消除手部运动刺激 - 反应不确定性的特殊通路。由于手部运动并非由上丘中的机制引导,我们的结果至少对手部运动的特殊通路假说提出了质疑。相反,刺激 - 反应不确定性的缺失可能仅发生在不需要刺激与反应效应器相关联且刺激 - 反应兼容性高的任务中。

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