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Visual gravitational motion and the vestibular system in humans

机译:视觉重力运动和人类的前庭系统

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摘要

The visual system is poorly sensitive to arbitrary accelerations, but accurately detects the effects of gravity on a target motion. Here we review behavioral and neuroimaging data about the neural mechanisms for dealing with object motion and egomotion under gravity. The results from several experiments show that the visual estimates of a target motion under gravity depend on the combination of a prior of gravity effects with on-line visual signals on target position and velocity. These estimates are affected by vestibular inputs, and are encoded in a visual-vestibular network whose core regions lie within or around the Sylvian fissure, and are represented by the posterior insula/retroinsula/temporo-parietal junction. This network responds both to target motions coherent with gravity and to vestibular caloric stimulation in human fMRI studies. Transient inactivation of the temporo-parietal junction selectively disrupts the interception of targets accelerated by gravity.
机译:视觉系统对任意加速度的敏感度很低,但可以准确检测重力对目标运动的影响。在这里,我们回顾了有关在重力作用下处理物体运动和自我运动的神经机制的行为和神经影像数据。几个实验的结果表明,重力作用下目标运动的视觉估计取决于重力作用的先验与目标位置和速度的在线视觉信号的组合。这些估计值受前庭输入的影响,并被编码在视觉-前庭网络中,该网络的核心区域位于Sylvian裂隙内或周围,并由后部岛突/窦回/颞顶交界处表示。在人类fMRI研究中,该网络既响应与重力相关的目标运动,又响应前庭的热量刺激。颞顶交界处的瞬时失活选择性地破坏了重力加速目标的拦截。

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