Institute for Experimental Psychology, Heinrich-Heine-University Düsseldorf, Germany.
J Vis. 2022 Feb 1;22(2):18. doi: 10.1167/jov.22.2.18.
Complex, goal-directed and time-critical movements require the processing of temporal features in sensory information as well as the fine-tuned temporal interplay of several effectors. Temporal estimates used to produce such behavior may thus be obtained through perceptual or motor processes. To disentangle the two options, we tested whether adaptation to a temporal perturbation in an interval reproduction task transfers to interval reproduction tasks with varying sensory information (visual appearance of targets, modality, and virtual reality [VR] environment or real-world) or varying movement types (continuous arm movements or brief clicking movements). Halfway through the experiments we introduced a temporal perturbation, such that continuous pointing movements were artificially slowed down in VR, causing participants to adapt their behavior to sustain performance. In four experiments, we found that sensorimotor adaptation to temporal perturbations is independent of environment context and movement type, but modality specific. Our findings suggest that motor errors induced by temporal sensorimotor adaptation affect the modality specific perceptual processing of temporal estimates.
复杂、目标导向且时间关键的运动需要处理感觉信息中的时间特征,以及几个效应器之间的精细时间相互作用。因此,用于产生此类行为的时间估计可能是通过感知或运动过程获得的。为了区分这两种选择,我们测试了在间隔再现任务中对时间干扰的适应是否会转移到具有不同感觉信息(目标的视觉外观、模态和虚拟现实 [VR] 环境或现实世界)或不同运动类型(连续手臂运动或短暂点击运动)的间隔再现任务中。在实验进行到一半时,我们引入了一个时间干扰,使得 VR 中的连续指向运动被人为地减慢,导致参与者适应其行为以维持表现。在四个实验中,我们发现,对时间干扰的感觉运动适应与环境背景和运动类型无关,但与模态有关。我们的研究结果表明,时间感觉运动适应引起的运动误差会影响时间估计的模态特定感知处理。