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Whole-Body Roll Tilt Influences Goal-Directed Upper Limb Movements through the Perceptual Tilt of Egocentric Reference Frame

机译:全身滚动倾斜通过以自我为中心的参考系的感知倾斜影响目标定向的上肢运动

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摘要

In our day-to-day life, we can accurately reach for an object in our gravitational environment without any effort. This can be achieved even when the body is tilted relative to gravity. This is accomplished by the central nervous system (CNS) compensation for gravitational forces and torque acting on the upper limbs, based on the magnitude of body tilt. The present study investigated how performance of upper limb movements was influenced by the alteration of body orientation relative to gravity. We observed the spatial trajectory of the index finger while the upper limb reached for a memorized target with the body tilted in roll plane. Results showed that the terminal location of the fingertip shifted toward the direction of body tilt away from the actual target location. The subsequent experiment examined if the perceived direction of the body longitudinal axis shifted relative to the true direction in roll plane. The results showed that the perceived direction of the body longitudinal axis shifted toward the direction of the body tilt, which correlated with the shift of the terminal location in the first experiment. These results suggest that the dissociation between the egocentric and gravitational coordinates induced by whole-body tilt leads to systematic shifts of the egocentric reference frame for action, which in turn influences the motor performance of goal-directed upper limb movements.
机译:在我们的日常生活中,我们可以毫不费力地在引力环境中精确地到达物体。即使身体相对于重力倾斜,也可以做到这一点。这是通过中枢神经系统(CNS)根据身体倾斜的大小对作用在上肢的重力和扭矩进行补偿来实现的。本研究调查了上肢运动的表现如何受到相对于重力的体位变化的影响。我们观察到食指的空间轨迹,而上肢到达了一个记忆目标,身体在侧倾平面上倾斜。结果表明,指尖的终端位置朝着身体倾斜的方向偏离了实际目标位置。随后的实验检查了人体纵轴的感知方向是否相对于侧倾平面中的真实方向偏移。结果表明,在第一实验中,人体纵轴的感知方向朝着人体倾斜方向偏移,这与终端位置的偏移相关。这些结果表明,由全身倾斜引起的自我中心和重力坐标之间的分离会导致自我中心参考系的动作发生系统性移动,进而影响目标定向上肢运动的运动表现。

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