Macauda Gianluca, Lenggenhager Bigna, Meier Rebekka, Essick Gregory, Brugger Peter
Neuropsychology Unit, Department of Neurology, University Hospital Zurich, 8091, Zurich, Switzerland.
Department of Psychology, University of Bern, Bern, Switzerland.
Psychol Res. 2018 Sep;82(5):889-895. doi: 10.1007/s00426-017-0879-1. Epub 2017 Jun 8.
The displacement of the final position of a moving object in the direction of the observed motion path, i.e. an overestimation, is known as representational momentum. It has been described both in the visual and the auditory domain, and is suggested to be modality-independent. Here, we tested whether a representational momentum can also be demonstrated in the somatosensory domain. While the cognitive literature on representational momentum suggests that it can, previous work on the psychophysics of tactile motion perception would rather predict an underestimation of the perceived endpoint of a tactile stimulus. Tactile motion stimuli were applied on the left and the right dorsal forearms of 32 healthy participants, who were asked to indicate the subjectively perceived endpoint of the stimulation. Velocity, length and direction of the trajectory were varied. Contrary to the prediction based on the representational momentum literature, participants in our experiment significantly displaced the endpoint against the direction of movement (underestimation). The results are thus compatible with previous psychophysical findings on the perception of tactile motion. Further studies combining paradigms from classical psychophysics and cognitive psychology will be needed to resolve the apparently paradoxical predictions by the two literatures.
运动物体最终位置在观察到的运动路径方向上的位移,即高估,被称为表征动量。它已在视觉和听觉领域中得到描述,并被认为与模态无关。在这里,我们测试了表征动量是否也能在体感领域得到证明。虽然关于表征动量的认知文献表明它可以,但之前关于触觉运动感知心理物理学的研究更倾向于预测对触觉刺激感知终点的低估。对32名健康参与者的左右背侧前臂施加触觉运动刺激,要求他们指出刺激的主观感知终点。轨迹的速度、长度和方向各不相同。与基于表征动量文献的预测相反,我们实验中的参与者显著地将终点向与运动方向相反的方向位移(低估)。因此,结果与之前关于触觉运动感知的心理物理学研究结果一致。需要进一步结合经典心理物理学和认知心理学范式的研究来解决这两种文献中明显矛盾的预测。