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The sense of self-motion, orientation and balance explored by vestibular stimulation

机译:前庭刺激探索自我运动,定向和平衡感

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The sense of orientation during locomotion is derived from our spatial relationship with the external environment, sensed predominantly by sight and sound, and from internal signals of motion, generated by the vestibular sense and the pattern of efferent and afferent signals to the muscles and joints. The sensory channels operate in different reference frames and have different time-dependent adaptive properties and yet the inputs are combined by the central nervous system to create an internal representation of self-motion. In normal circumstances vestibular, visual and proprioceptive cues provide congruent information on locomotor trajectory; however, in cases of sensory discord there must be a recalibration of sensory signals to provide a unitary representation. We develop a means of studying these fusion processes by perturbing each channel in isolation about a consistent behavioural axis. This review focuses on creating the vestibular perturbation of the orientation sense by trans-mastoidal galvanic stimulation, a technique generally used to evoke balance reflexes. Vector summation across the population of semicircular canal afferents creates a net signal that is interpreted by the brain as a vector of angular acceleration in a craniocentric reference frame. The signal feeds perceptual processes of orientation after transformation that resolves the 3-D signal onto the terrestrial or behavioural plane. Changing head posture changes the interpretation of the galvanic vestibular signal for balance and orientation responses. With appropriate head alignments during locomotion, the galvanic stimulus can be used to either steer trajectory over the terrestrial plane or perturb balance.
机译:运动过程中的方向感源自我们与外部环境的空间关系(主要通过视觉和声音来感知),以及源自内部运动信号,该内部信号是由前庭感官以及对肌肉和关节的传出和传出信号的模式生成的。感觉通道在不同的参考系中操作,并具有不同的随时间变化的自适应特性,但输入由中枢神经系统进行组合以创建自我运动的内部表示。在正常情况下,前庭,视觉和本体感受提示会提供有关运动轨迹的信息;但是,在感觉不一致的情况下,必须重新校准感觉信号以提供统一的表示。我们通过围绕一致的行为轴孤立地扰动每个通道来开发研究这些融合过程的方法。这篇综述着重于通过跨乳突电流刺激来产生取向感的前庭微扰,这是一种通常用于引起平衡反射的技术。跨半圆形管道传入群体的矢量求和创建了一个净信号,该信号被大脑解释为颅中心参考系中角加速度的矢量。信号在变换后将3D信号解析到地面或行为平面上,从而提供定向感知过程。改变头部姿势会改变电前庭信号对平衡和定向反应的解释。在运动过程中,通过适当的头部对准,电动刺激可用于在地面上操纵轨迹或扰动平衡。

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