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Reduced plantar sole sensitivity facilitates early adaptation to a visual rotation pointing task when standing upright

机译:脚底直立感降低有助于在直立时尽早适应视觉旋转指示任务

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摘要

Humans are capable of pointing to a target with accuracy. However, when vision is distorted through a visual rotation or mirror-reversed vision, the performance is initially degraded and thereafter improves with practice. There are suggestions this gradual improvement results from a sensorimotor recalibration involving initial gating of the somatosensory information from the pointing hand. In the present experiment, we examined if this process interfered with balance control by asking participants to point to targets with a visual rotation from a standing posture. This duality in processing sensory information (i.e., gating sensory signals from the hand while processing those arising from the control of balance) could generate initial interference leading to a degraded pointing performance. We hypothesized that if this is the case, the attenuation of plantar sole somatosensory information through cooling could reduce the sensorimotor interference, and facilitate the early adaptation (i.e. improvement in the pointing task). Results supported this hypothesis. These observations suggest that processing sensory information for balance control interferes with the sensorimotor recalibration process imposed by a pointing task when vision is rotated.
机译:人类能够准确地指向目标。但是,当视觉因视觉旋转或镜后视而失真时,性能最初会下降,随后会随着实践而提高。有建议认为,这种逐步改善是由于感觉运动的重新校准而引起的,该运动涉及对来自指示手的体感信息的初始选通。在本实验中,我们通过要求参与者指向从站立姿势进行视觉旋转的目标来检查此过程是否干扰了平衡控制。处理感官信息时的这种双重性(即,在处理由平衡控制引起的信号时对来自手的感官信号进行门控)可能会产生初始干扰,从而导致指向性能下降。我们假设,在这种情况下,通过冷却减弱足底唯一的体感信息可以减少感觉运动干扰,并促进早期适应(即改善指点任务)。结果支持了这一假设。这些观察结果表明,处理视觉信息以进行平衡控制会干扰视力旋转时由指向任务施加的感觉运动重新校准过程。

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