Kagerer Florian A, Contreras-Vidal Jose L
Cognitive Motor Neuroscience Laboratory, Department of Kinesiology and Graduate Program in Neuroscience and Cognitive Science, University of Maryland School of Public Health, College Park, MD 20742, USA.
Exp Brain Res. 2009 Feb;193(2):315-21. doi: 10.1007/s00221-008-1630-3. Epub 2008 Dec 2.
A visuo-motor adaptation task was used to investigate the effects of this adaptation on the auditory-motor representation during reaching movements. We show that, following exposure to a rotated screen cursor-hand relationship, the movement paths during auditory conditions exhibited a similar pattern of aftereffects as those observed during movements to visual targets, indicating that the newly formed model of visuo-motor transformations for hand movement was available to the auditory-motor network for planning the hand movements. This plasticity in human sound localization does not require active cross-modal experience, and retention tests indicated that the newly formed internal model does not reside primarily within the central auditory system as suggested in past studies examining the plasticity of sound localization to distorted spatial vision.
采用视觉-运动适应任务来研究这种适应在伸手动作过程中对听觉-运动表征的影响。我们发现,在暴露于旋转的屏幕光标与手的关系之后,听觉条件下的运动路径表现出与视觉目标运动过程中观察到的类似的后效应模式,这表明新形成的手部运动视觉-运动转换模型可被听觉-运动网络用于规划手部运动。人类声音定位的这种可塑性并不需要主动的跨模态体验,并且保留测试表明,新形成的内部模型并不主要存在于中枢听觉系统中,这与过去研究声音定位对扭曲空间视觉的可塑性时所提出的观点不同。