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有效性的变化会对可供性几何结构进行重新校准,以保持功能动态。

Change in effectivity yields recalibration of affordance geometry to preserve functional dynamics.

作者信息

Wang Xiaoye Michael, Bingham Geoffrey P

机构信息

Department of Psychological and Brain Sciences, Indiana University, Bloomington, IN, USA.

出版信息

Exp Brain Res. 2019 Mar;237(3):817-827. doi: 10.1007/s00221-018-05467-x. Epub 2019 Jan 4.

DOI:10.1007/s00221-018-05467-x
PMID:30610264
Abstract

Mon-Williams and Bingham (Exp Brain Res 211(1):145-160, 2011) developed a geometrical affordance model for reaches-to-grasp, and identified a constant scaling relationship, P, between safety margins (SM) and available apertures (SM) that are determined by the sizes of the objects and the individual hands. Bingham et al. (J Exp Psychol Hum Percept Perform 40(4):1542-1550, 2014) extended the model by introducing a dynamical component that scales the geometrical relationship to the stability of the reaching-to-grasp. The goal of the current study was to explore whether and how quickly change in the relevant effectivity (functionally determined hand size = maximum grip) would affect the geometrical and dynamical scaling relationships. The maximum grip of large-handed males was progressively restricted. Participants responded to this restriction by using progressively smaller safety margins, but progressively larger P (= SM/AA) values that preserved an invariant dynamical scaling relationship. The recalibration was relatively fast, occurring over five trials or less, presumably a number required to detect the variability or stability of performance. The results supported the affordance model for reaches-to-grasp in which the invariance is determined by the dynamical component, because it serves the goal of not colliding with the object before successful grasping can be achieved. The findings were also consistent with those of Snapp-Childs and Bingham (Exp Brain Res 198(4):527-533, 2009) who found changes in age-specific geometric scaling for stepping affordances as a function of changes in effectivities over the life span where those changes preserved a dynamic scaling constant similar to that in the current study.

摘要

蒙-威廉姆斯和宾厄姆(《实验脑研究》,2011年,第211卷第1期,第145 - 160页)开发了一种用于抓握动作的几何可供性模型,并确定了安全裕度(SM)与可用孔径(AA)之间的恒定缩放关系P,该关系由物体大小和个体手部大小决定。宾厄姆等人(《实验心理学:人类感知与表现》,2014年,第40卷第4期,第1542 - 1550页)通过引入一个动态成分扩展了该模型,该动态成分将几何关系缩放至抓握动作的稳定性。本研究的目的是探讨相关有效性(功能决定的手部大小 = 最大抓握力)的变化是否以及多快会影响几何和动态缩放关系。大手男性的最大抓握力逐渐受到限制。参与者通过逐渐减小安全裕度来应对这种限制,但P(= SM/AA)值逐渐增大,从而保持不变的动态缩放关系。重新校准相对较快,在五次或更少的试验中发生,大概这是检测表现的变异性或稳定性所需的次数。结果支持了抓握动作的可供性模型,其中不变性由动态成分决定,因为它服务于在成功抓握之前不与物体碰撞的目标。这些发现也与斯纳普 - 蔡尔兹和宾厄姆(《实验脑研究》,2009年,第198卷第4期,第527 - 533页)的研究结果一致,他们发现随着生命周期中有效性的变化,特定年龄的几何缩放对于跨步可供性会发生变化,且这些变化保持了与本研究中类似的动态缩放常数。

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本文引用的文献

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Predicting object size from hand kinematics: a temporal perspective.从手部运动学预测物体大小:时间维度的视角
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Individual differences in learning a novel discrete motor task.个体在学习新离散运动任务中的差异。
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A geometric and dynamic affordance model of reaches-to-grasp: Men take greater risks than women.
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The dynamics of sensorimotor calibration in reaching-to-grasp movements.在伸手抓握运动中感知运动校准的动态。
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Exp Brain Res. 2011 May;211(1):145-60. doi: 10.1007/s00221-011-2659-2. Epub 2011 Apr 12.
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Duck! Scaling the height of a horizontal barrier to body height.低头!攀爬至与身体高度相当的水平障碍物顶部。
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