Perception and Action Lab, Department of Psychology, University of Manitoba, Winnipeg, Canada.
Exp Brain Res. 2011 Jul;212(2):177-87. doi: 10.1007/s00221-011-2716-x. Epub 2011 May 20.
When grasping an object, our gaze marks key positions to which the fingertips are directed. In contrast, eye fixations during perceptual tasks are typically concentrated on an object's centre of mass (COM). However, previous studies have typically required subjects to either grasp the object at predetermined sites or just look at computer-generated shapes "as a whole". In the current study, we investigated gaze fixations during a reaching and grasping task to symmetrical objects and compared these fixations with those made during a perceptual size estimation task using real (Experiment 1) and computer-generated objects (Experiment 2). Our results demonstrated similar gaze patterns in both perception and action to real objects. Participants first fixated a location towards the top edge of the object, consistent with index finger location during grasping, followed by a subsequent fixation towards the object's COM. In contrast, during the perceptual task to computer-generated objects, an opposite pattern in fixation locations was observed, where first fixations were closer to the COM, followed by a subsequent fixation towards the top edge. Even though differential fixation patterns were observed between studies, the area in which these fixations occurred, between the centre of the object and top edge, was the same in all tasks. These results demonstrate for the first time consistencies in fixation locations across both perception and action tasks, particularly when the same type of information (e.g. object size) is important for the completion of both tasks, with fixation locations increasing relative to the object's COM with increases in block height.
当我们抓取一个物体时,我们的目光会标记出指尖所指向的关键位置。相比之下,在感知任务中,眼睛注视点通常集中在物体的质心(COM)上。然而,之前的研究通常要求被试在预定的位置抓取物体,或者只是整体地看计算机生成的形状。在本研究中,我们调查了在到达和抓取对称物体的任务中注视点的位置,并将这些注视点与使用真实物体(实验 1)和计算机生成物体(实验 2)进行的感知大小估计任务中的注视点进行了比较。我们的结果表明,参与者在真实物体的感知和动作中表现出相似的注视模式。参与者首先注视物体顶部边缘的一个位置,这与抓取时食指的位置一致,然后注视物体的 COM。相比之下,在计算机生成物体的感知任务中,观察到了相反的注视点位置模式,首先注视点更接近 COM,然后注视点朝向顶部边缘。尽管在研究之间观察到了不同的注视模式,但在所有任务中,这些注视点出现的区域(物体中心和顶部边缘之间)是相同的。这些结果首次表明,在感知和动作任务中,注视点位置存在一致性,特别是当相同类型的信息(例如物体大小)对完成两个任务都很重要时,随着块高度的增加,注视点位置相对于物体的 COM 增加。