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首页> 外文期刊>Vision Research: An International Journal in Visual Science >Efficient grasping requires attentional resources.
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Efficient grasping requires attentional resources.

机译:有效的掌握需要注意力资源。

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摘要

We investigated the effects of visuo-spatial attention on the kinematics of grasping movements by employing a dual-task paradigm. Participants had to grasp cylindrical objects of different sizes (motor task) while simultaneously identifying a target digit presented at a different spatial location within a rapid serial visual presentation (perceptual task). The grasping kinematics in this dual-task situation were compared with the those measured in a single-task condition. Likewise, the identification performance was also measured in a single-task condition. Additionally, we kept the visual input constant across conditions by asking participants to fixate. Without instructions about the priority of tasks (Experiment 1) participants showed a considerable drop of identification performance in the dual-task condition. Regarding grasping kinematics, the concurrent perceptual task resulted in a less accurate adaptation of the grip to object size in the early phase of the movement, while movement times and maximum grip aperture were unaffected. When participants were instructed to focus on the perceptual task (Experiment 2), the identification performance stayed at about the same level in the dual-task and the single-task conditions. The perceptual improvement was however associated with a further decrease in the accuracy of the early grip adjustment. We conclude that visual attention is needed for the effective control of the grasp kinematics, especially for a precise adjustment of the hand to object size when approaching the object.
机译:我们研究了视觉空间注意力对运动的影响,采用了双重任务范式。参与者必须抓住不同大小的圆柱物体(运动任务),同时识别在快速连续视觉呈现(感知任务)中在不同空间位置呈现的目标手指。将在双任务情况下的抓紧运动学与在单任务条件下测量的抓紧运动学进行了比较。同样,还可以在单​​任务条件下测量识别性能。另外,我们通过要求参与者注视来保持视觉输入在各种条件下的恒定。在没有关于任务优先级的说明的情况下(实验1),参与者在双任务条件下的识别性能显着下降。关于抓紧运动学,同时进行的感知任务导致在运动的早期阶段抓地力与物体尺寸的匹配不太准确,而运动时间和最大抓地力孔径却不受影响。当指示参与者专注于感知任务(实验2)时,在双任务和单任务条件下,识别性能保持在大致相同的水平。然而,知觉的改善与早期抓地力调整的准确性的进一步降低有关。我们得出结论,视觉注意力是有效控制抓地运动的必要条件,尤其是在接近对象时要根据手的大小精确调整手。

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