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探索性运动决定了手持棒触觉长度感知中线索的权重。

Exploratory movements determine cue weighting in haptic length perception of handheld rods.

机构信息

Research Institute Move, Faculty of Human Movement Sciences, VU University Amsterdam, The Netherlands.

出版信息

J Neurophysiol. 2010 Nov;104(5):2821-30. doi: 10.1152/jn.01029.2009. Epub 2010 Sep 1.

DOI:10.1152/jn.01029.2009
PMID:20810690
Abstract

In the present study, we sought to unravel how exploratory movements affect length perception of rods that are held in and wielded by hand. We manipulated the mechanical rod properties--mass (m), first moment of mass distribution (M), major principal moment of inertia (I(1))--individually, allowing us to assess the relative contribution of each of these mechanical variables to the perceptual judgment. Furthermore we developed a method to quantify the force components of the mechanical variables in the total of forces acting at the hand-rod interface, and we calculated each component's relative contribution. The laws of mechanics dictate that these relative force contributions depend on the characteristics of the exploratory movements performed. We found a clear relationship between the relative force contribution of the mechanical variables and their contribution to perceived rod length. This finding is the first quantitative demonstration that exploration style determines how much each mechanical variable influences length perception. Moreover, this finding suggested a cue weighting mechanism in which exploratory movements determine cue reliability (and thus cue weighting). We developed a cue combination model for which we first identified three length cues in the form of ratios between the mechanical variables. Second, we calculated the weights of these cues from the recorded rod movements. The model provided a remarkably good prediction of the experimental data. This strongly suggests that rod length perception by wielding is achieved through a weighted combination of three specific length cues, whereby the weighting depends on the characteristics of the exploratory movements.

摘要

在本研究中,我们试图揭示手握着并操纵的杆状物体的探索性运动如何影响其长度感知。我们分别操纵机械杆的特性——质量(m)、质量分布的第一矩(M)、主惯性矩(I(1))——使我们能够评估这些机械变量中的每一个对感知判断的相对贡献。此外,我们开发了一种方法来量化作用于手杆界面的总力中的机械变量的力分量,并计算了每个分量的相对贡献。力学定律规定,这些相对力贡献取决于执行的探索性运动的特征。我们发现机械变量的相对力贡献与其对感知杆长的贡献之间存在明显的关系。这一发现首次定量证明了探索风格决定了每个机械变量对长度感知的影响程度。此外,这一发现表明了一种线索加权机制,其中探索性运动决定了线索的可靠性(从而决定了线索的权重)。我们开发了一种线索组合模型,首先以机械变量之间的比值形式确定了三个长度线索,其次根据记录的杆运动计算了这些线索的权重。该模型对实验数据提供了非常好的预测。这强烈表明,通过握持来感知杆长是通过对三个特定长度线索进行加权组合实现的,其中权重取决于探索性运动的特征。

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