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Violation of the Craniocentricity Principle for Vestibularly Evoked Balance Responses under Conditions of Anisotropic Stability

机译:各向异性稳定性条件下违反前庭平衡反应的颅中心性原则

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摘要

The balance response direction to electrically evoked vestibular perturbation is closely tied to head orientation. Such craniocentric response organization is expected of a simple error correction process. Here we ask whether this is maintained when the body is made more stable, but with the stability being greater in one direction than another. Since it is known that vestibularly evoked balance responses become smaller as body stability increases, the following two outcomes are possible: (1) response magnitude is attenuated, but with craniocentricity maintained; and (2) anisotropy of stability is considered such that components of the response are differentially attenuated, which would violate a craniocentric organizing principle. We tested these alternatives by measuring the direction of balance responses to electrical vestibular stimulation across a range of head orientations and stance widths in healthy humans. With feet together, the response was highly craniocentric. However, when stance width was increased so that the body was more stable in the frontal plane, response direction became biased toward the sagittal direction. This resulted in a nonlinear relationship between head orientation and response direction. While stance width changes the mechanical state of the body, the effect was also present when lateral light touch was used to produce anisotropy in stability, demonstrating that a significantly altered mechanical state was not crucial. We conclude that the balance system does not simply act according to the direction of vestibular input. Instead, it appears to assign greater relevance to components of vestibular input acting in the plane of lesser body stability than the plane of greater body stability, and acts accordingly.
机译:电诱发的前庭微扰的平衡响应方向与头部方向紧密相关。这种以颅骨为中心的响应组织被认为是一种简单的纠错过程。在这里,我们问当使身体更稳定时,是否保持这种状态,但是在一个方向上的稳定性要大于另一个方向。由于已知随着身体稳定性的增加,前庭诱发的平衡反应会变小,因此可能出现以下两种结果:(1)反应幅度减弱,但保持颅骨中心性; (2)考虑到稳定性的各向异性,从而使响应的成分差异性地衰减,这将违反颅心组织原理。我们通过在健康人的整个头部方向和姿势宽度范围内测量对电前庭刺激的平衡反应方向来测试这些替代方法。双脚并拢时,反应以颅骨为中心。但是,如果增加姿势宽度以使身体在额平面上更稳定,则响应方向会偏向矢状方向。这导致头部方向和响应方向之间存在非线性关系。尽管姿势宽度会改变身体的机械状态,但当使用侧向光触摸以产生稳定性方面的各向异性时,也会出现这种效果,这表明机械状态的显着改变并不是至关重要的。我们得出的结论是,平衡系统不只是根据前庭输入的方向起作用。取而代之的是,似乎与在较小身体稳定性的平面中起作用的前庭输入的分量相比,在较大身体稳定性的平面中起作用的关联更大,并因此起作用。

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