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Perception of limb orientation in the vertical plane depends on center of mass rather than inertial eigenvectors

机译:垂直平面中肢体方向的感知取决于质心而不是惯性特征向量

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摘要

We performed two experiments to test the hypothesis that the perception of limb orientation depends on inertial eigenvectors (>e>i) against the alternative hypothesis that it depends on the center of mass vector (>CM). Whereas >e>i constrains the dynamic torques involved in angular rotation, >CM constrains the static torque necessary to keep the limb aloft in the gravitational field. Hence, possible effects of >e>i and >CM on kinesthetic judgments must be related to the dynamic and static torques, respectively, involved in moving and positioning a limb. In the first experiment, blindfolded participants matched, with upper arms supported, the orientation of their forearms while the forearms’ >e>i and> CM were manipulated relative to the elbow. The manipulation of the vector >CM alone induced a matching bias, as did the combined manipulation of >e>i and> CM, whereas the manipulation of >e>i alone did not. In the second experiment, participants positioned their unseen and unsupported right arm at an indicated spatial configuration while >e>i and> CM of the right forearm were manipulated as in Experiment 1. As in the first experiment, forearm positioning was affected by the independent manipulation of >CM and the combined manipulation of >e>i and> CM, but not by the independent variation of >e>i. Moreover, none of the manipulations affected upper arm positioning. These results refute the claim that the perception of limb orientation (in the vertical plane) is based on >e>i and demonstrate, for the first time, the implication of a limb segment’s >CM in the perception of its orientation.
机译:我们进行了两个实验,以检验肢体定向的感知取决于惯性特征向量(> e > i )的假设,而不是取决于质心向量中心( >厘米)。 > e > i 限制了角旋转所涉及的动态扭矩,而> CM 则限制了在重力场中保持肢体高空运动所需的静态扭矩。因此,> e > i 和> CM 对运动感觉判断的可能影响必须分别与运动和定位中涉及的动态和静态扭矩有关。肢体。在第一个实验中,蒙住眼睛的参与者在上臂支撑的情况下匹配前臂的方向,同时操纵前臂的> e > i 和> CM 相对于肘部。单独操作> CM 会引起匹配偏差,同时> e > i 和> CM ,而单独操作> e > i 却没有。在第二个实验中,参与者操纵了右臂的> e > i 和> CM ,将他们看不见且不受支撑的右臂置于指定的空间位置如实验1中所述。与第一个实验中一样,前臂定位受> CM 的独立操作以及> e > i 和> CM ,但不是> e > i 的独立变体。此外,所有操作都不会影响上臂的定位。这些结果驳斥了关于肢体定向(在垂直平面上)的感知是基于> e > i 的说法,并首次证明了肢体节段的含义> CM

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