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在精确抓握中,摩擦优于抓握构型。

Friction is preferred over grasp configuration in precision grip grasping.

机构信息

Department of Experimental Psychology, Justus Liebig University Giessen, Giessen, Germany.

Center for Mind, Brain and Behavior, University of Marburg and Justus Liebig University Giessen, Germany.

出版信息

J Neurophysiol. 2021 Apr 1;125(4):1330-1338. doi: 10.1152/jn.00021.2021. Epub 2021 Feb 17.

Abstract

How humans visually select where to grasp an object depends on many factors, including grasp stability and preferred grasp configuration. We examined how endpoints are selected when these two factors are brought into conflict: Do people favor stable grasps or do they prefer their natural grasp configurations? Participants reached to grasp one of three cuboids oriented so that its two corners were either aligned with, or rotated away from, each individual's natural grasp axis (NGA). All objects were made of brass (mass: 420 g), but the surfaces of their sides were manipulated to alter friction: ) all-brass, ) two opposing sides covered with wood, and the other two remained of brass, or ) two opposing sides covered with sandpaper, and the two remaining brass sides smeared with Vaseline. Grasps were evaluated as either clockwise (thumb to the left of finger in frontal plane) or counterclockwise of the NGA. Grasp endpoints depended on both object orientation and surface material. For the all-brass object, grasps were bimodally distributed in the NGA-aligned condition but predominantly clockwise in the NGA-unaligned condition. These data reflected participants' natural grasp configuration independently of surface material. When grasping objects with different surface materials, endpoint selection changed: Participants sacrificed their usual grasp configuration to choose the more stable object sides. A model in which surface material shifts participants' preferred grip angle proportionally to the perceived friction of the surfaces accounts for our results. Our findings demonstrate that a stable grasp is more important than a biomechanically comfortable grasp configuration. When grasping an object, humans can place their fingers at several positions on its surface. The selection of these endpoints depends on many factors, with two of the most important being grasp stability and grasp configuration. We put these two factors in conflict and examine which is considered more important. Our results highlight that humans are not reluctant to adopt unusual grasp configurations to satisfy grasp stability.

摘要

人类如何在视觉上选择抓握物体的位置取决于许多因素,包括抓握稳定性和首选抓握配置。我们研究了当这两个因素发生冲突时,端点是如何被选择的:人们是更喜欢稳定的抓握还是更喜欢他们的自然抓握配置?参与者伸手去抓三个长方体中的一个,这些长方体的两个角要么与每个人的自然抓握轴(NGA)对齐,要么与之成一定角度。所有物体都是由黄铜制成(质量:420 克),但它们侧面的表面经过处理以改变摩擦:)全黄铜,)两个相对的侧面用木头覆盖,另外两个保持黄铜,或)两个相对的侧面用砂纸覆盖,另外两个黄铜侧面涂有凡士林。抓握被评估为顺时针(正面时拇指在手指的左侧)或逆时针(拇指在手指的右侧)相对于 NGA。抓握端点取决于物体的方向和表面材料。对于全黄铜物体,在 NGA 对齐条件下,抓握呈双峰分布,但在 NGA 不对齐条件下,主要是顺时针的。这些数据反映了参与者独立于表面材料的自然抓握配置。当抓握具有不同表面材料的物体时,端点选择发生变化:参与者为了选择更稳定的物体侧面而牺牲了他们通常的抓握配置。一个模型表明,表面材料会根据感知到的表面摩擦力成比例地改变参与者的首选握角,这可以解释我们的结果。我们的研究结果表明,稳定的抓握比生物力学舒适的抓握配置更重要。当抓握一个物体时,人类可以将手指放在物体表面的几个位置。这些端点的选择取决于许多因素,其中两个最重要的因素是抓握稳定性和抓握配置。我们将这两个因素放在一起冲突,并研究哪个因素更重要。我们的研究结果强调,人类并不不愿意采用不寻常的抓握配置来满足抓握稳定性。

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