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The role of task history in simple reaction time to lateralized light flashes.

机译:任务历史记录在对侧向闪光的简单反应时间内的作用。

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In lateralized simple reaction time (SRT) tasks with unimanual responses, reaction times (RTs) are faster with ipsilateral (uncrossed) than with contralateral (crossed) response hand-target hemifield combinations. The difference between crossed and uncrossed responses (CUD) is typically interpreted to reflect callosal transfer time. Indeed, split brain patients have much longer CUDs than control subjects. However, while many studies have supported the hypothesis that the CUD reflects callosal transmission time, a few studies have suggested that the CUD may be affected by non-anatomical factors. We investigated the nature of these inconsistent results in two experiments. In the first, we asked half of our subjects to cross their arms while performing the task. The CUD was not affected by arms crossing, supporting the anatomical model of the CUD. In the second experiment, however, all subjects were asked to cross their arms in half of the trials. In this experiment, arms crossing significantly affected the CUD, thus showing that spatial attention modulates the CUD. These latter results cannot be readily explained by a simple callosal relay interpretation of the CUD. Rather, the CUD seems to reflect a mix of anatomical and non-anatomical factors produced by task history. Thus, the seemingly inconsistent results of previous studies can be reconciled by taking into account differences in task history across studies.
机译:在具有单手响应的多边化简单反应时间(SRT)任务中,同侧(未交叉)响应比对侧(交叉)响应手目标半场组合的反应时间(RTs)更快。交叉响应和未交叉响应(CUD)之间的差异通常被解释为反映call传递时间。确实,裂脑患者的CUD比对照对象长得多。但是,尽管许多研究支持CUD反映call传递时间的假说,但一些研究表明CUD可能受非解剖学因素的影响。我们在两个实验中研究了这些不一致结果的性质。首先,我们要求一半的受试者在执行任务时交叉双臂。 CUD不受双臂交叉的影响,支持了CUD的解剖模型。但是,在第二个实验中,要求所有受试者在一半的试验中交叉双臂。在此实验中,双臂交叉会显着影响CUD,因此表明空间注意力会调节CUD。后者的这些结果不能通过CUD的简单愈伤组织中继解释来容易地解释。而是,CUD似乎反映了任务历史产生的解剖和非解剖因素的混合。因此,可以通过考虑跨研究的任务历史中的差异来调和先前研究的看似不一致的结果。

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