Bosco Annalisa, Lappe Markus, Fattori Patrizia
Department of Pharmacy and Biotechnology, University of Bologna, 40126 Bologna, Italy, and.
Department of Psychology, University of Munster, D-48149 Munster, Germany.
J Neurosci. 2015 Oct 28;35(43):14448-56. doi: 10.1523/JNEUROSCI.0129-15.2015.
When saccadic eye movements consistently fail to land on the intended target, saccade accuracy is maintained by gradually adapting the amplitude of successive saccades to the same target. Such saccadic adaptation is usually induced by systematically displacing a small visual target during the execution of the saccade. However, saccades are normally performed to extended objects. Here we report changes in saccade amplitude when the size of a target object is systematically changed during a saccade. Moreover, we find that this manipulation also affected the visual perception of the size of that object. Human subjects were tested in shortening and lengthening adaptation where they had to make saccades to targets of different sizes, which were each shortened or lengthened during saccade execution, respectively. In both experiments, a preadaptation and postadaptation phase required manually indicating the horizontal size of each target by grip aperture and, in a further experiment, a verbal size report. We evaluated the effect of change in visual perception on saccade and on the two modalities of judgment. We observed that (1) saccadic adaptation can be induced by modifying target object size and (2) this gradual change in saccade amplitude in the direction of the object size change evokes a concomitant change in perceived object size. These findings suggest that size is a relevant signal for saccadic system and its trans-saccadic manipulation entails considerable changes at multiple levels of sensorimotor performance.
当眼球的快速扫视运动始终无法落在预期目标上时,通过逐渐调整连续扫视同一目标的幅度来维持扫视准确性。这种扫视适应通常是在扫视执行过程中通过系统地移动一个小视觉目标来诱发的。然而,扫视通常是针对扩展物体进行的。在此,我们报告了在扫视过程中目标物体大小被系统改变时扫视幅度的变化。此外,我们发现这种操作也影响了对该物体大小的视觉感知。对人类受试者进行了缩短和延长适应测试,他们必须对不同大小的目标进行扫视,这些目标在扫视执行过程中分别被缩短或延长。在两个实验中,适应前和适应后阶段都要求通过抓握孔径手动指示每个目标的水平大小,并且在进一步的实验中,要求进行口头大小报告。我们评估了视觉感知变化对扫视以及两种判断方式的影响。我们观察到:(1) 可以通过改变目标物体大小来诱发扫视适应;(2) 扫视幅度在物体大小变化方向上的这种逐渐变化会引起感知物体大小的相应变化。这些发现表明,大小是扫视系统的一个相关信号,其跨扫视操作会在感觉运动表现的多个层面引起相当大的变化。