Department of Psychology, Tilburg University, P.O. Box 90153, 5000 LE, Tilburg, The Netherlands.
Exp Brain Res. 2010 Mar;201(3):393-9. doi: 10.1007/s00221-009-2047-3. Epub 2009 Oct 23.
Previous research has shown that the timing of a sensor-motor event is recalibrated after a brief exposure to a delayed feedback of a voluntary action (Stetson et al. 2006). Here, we examined whether it is the sensory or motor event that is shifted in time. We compared lag adaption for action-feedback in visuo-motor pairs and audio-motor pairs using an adaptation-test paradigm. Participants were exposed to a constant lag (50 or 150 ms) between their voluntary action (finger tap) and its sensory feedback (flash or tone pip) during an adaptation period (approximately 3 min). Immediately after that, they performed a temporal order judgment (TOJ) task about the tap-feedback test stimulus pairings. The modality of the feedback stimulus was either the same as the adapted one (within-modal) or different (cross-modal). The results showed that the point of subjective simultaneity (PSS) was uniformly shifted in the direction of the exposed lag within and across modalities (motor-visual, motor-auditory). This suggests that the TRE of sensor-motor events is mainly caused by a shift in the motor component.
先前的研究表明,在短暂暴露于自愿行为的延迟反馈后,传感器-运动事件的时间会重新校准(Stetson 等人,2006 年)。在这里,我们研究了是感觉事件还是运动事件发生了时间上的变化。我们使用适应测试范式比较了视觉-运动对和听觉-运动对中动作-反馈的滞后适应。在适应期(约 3 分钟)内,参与者的自愿动作(手指敲击)与其感觉反馈(闪光或音调音)之间存在恒定的滞后(50 或 150 毫秒)。在那之后,他们立即执行了关于敲击-反馈测试刺激配对的时间顺序判断(TOJ)任务。反馈刺激的模态与适应的模态相同(同模态)或不同(跨模态)。结果表明,在同模态和跨模态内(运动-视觉、运动-听觉),主观同时性的点(PSS)均匀地向暴露的滞后方向移动。这表明传感器-运动事件的 TRE 主要是由运动成分的变化引起的。