Shimada Sotaro, Hiraki Kazuo, Matsuda Goh, Oda Ichiro
PRESTO, Japan Science and Technology Corporation, Japan.
Brain Res Cogn Brain Res. 2004 Aug;20(3):480-90. doi: 10.1016/j.cogbrainres.2004.04.004.
Visual feedback of hand movement is crucial to accurate reaching. Although previous studies have extensively examined spatial alteration of visual feedback (e.g., prism adaptation), temporal delay of visual feedback has been less explored. In the present study, we investigated the effect of delayed visual feedback of the moving hand in a reaching task. The prefrontal cortical activity was measured by near-infrared spectroscopy (NIRS). Twelve subjects performed reaching tasks under two conditions where visual feedback of their own hand was delayed by 200 ms (delay condition) or 0 ms (normal condition). Introducing the visual feedback delay significantly disrupted the reaching performance, although the subjects gradually adapted to the delay during the experiment. There was a clear tendency to overreach the target in the delay condition, even after the reaching movement had been practiced sufficiently in the normal condition. We observed marked oxy- and total-Hb decreases in the dorsal prefrontal area in the delay conditions. The decrease began shortly after task onset and diminished during the rest period, indicating that the decrease was task-induced. Furthermore, the oxy- and total-Hb decreases were significantly correlated with task performance--the degree of decrease was larger as the subject made more errors. We suggest that the decreases in oxy- and total-Hb at the dorsal prefrontal area are related with the visuomotor recalibration process.
手部运动的视觉反馈对于准确够取至关重要。尽管先前的研究广泛考察了视觉反馈的空间改变(例如棱镜适应),但视觉反馈的时间延迟却较少被探究。在本研究中,我们在一项够取任务中调查了移动手部的延迟视觉反馈的影响。通过近红外光谱(NIRS)测量前额叶皮层活动。12名受试者在两种条件下执行够取任务,其中他们自己手部的视觉反馈延迟200毫秒(延迟条件)或0毫秒(正常条件)。引入视觉反馈延迟显著干扰了够取表现,尽管受试者在实验过程中逐渐适应了延迟。即使在正常条件下对够取动作进行了充分练习后,在延迟条件下仍明显存在超出目标的倾向。我们观察到在延迟条件下背侧前额叶区域的氧合血红蛋白和总血红蛋白明显减少。这种减少在任务开始后不久就开始,并在休息期间减弱,表明这种减少是由任务诱发的。此外,氧合血红蛋白和总血红蛋白的减少与任务表现显著相关——随着受试者犯错越多,减少的程度越大。我们认为背侧前额叶区域氧合血红蛋白和总血红蛋白的减少与视觉运动重新校准过程有关。