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Non-linear vector summation of left and right vestibular signals for human balance.

机译:左右前庭信号的非线性矢量求和,以实现人体平衡。

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The left and right vestibular organs always transduce the same signal of head movement, and with natural stimuli can only be activated simultaneously. To investigate how signals from the left and right vestibular organs are integrated to control human balance we electrically modulated the firing of vestibular afferents from each labyrinth independently and measured the resulting balance responses. Stimulation of one side at a time (monaural) showed that individual leg muscles receive equal inputs from the two labyrinths even though a single labyrinth appeared capable of signalling 3-D head motion. To deduce principles of left-right integration, balance responses to simultaneous stimulation of both sides (binaural) were compared with responses to monaural stimuli. The binaural whole-body response direction was compatible with vector summation of the left and right monaural responses. The binaural response magnitude, however, was only 64-74% that predicted by the monaural sum. This probably reflects a central non-linearity between vestibular input and motor output because stimulation of just one labyrinth revealed a power law relationship between stimulus current and response size with exponents 0.56 (force) and 0.51 (displacement). Thus, doubling total signal magnitude either by doubling monaural current or by binaural stimulation produced equivalent responses. We conclude that both labyrinths provide independent estimates of head motion that are summed vectorially and transformed non-linearly into motor output. The former process improves signal-to-noise and reduces artifactual common-mode changes, while the latter enhances responses to small signals, all critical for detecting the small head movements needed to control human balance.
机译:左,右前庭器官总是传递相同的头部运动信号,并且只有自然刺激才能同时激活。为了研究如何整合来自左右前庭器官的信号以控制人的平衡,我们独立地对每个迷宫的前庭传入的发射进行了电调制,并测量了所产生的平衡反应。一次刺激一侧(单声道)表明,即使单个迷宫似乎能够发出3D头部运动信号,单个腿部肌肉也会从两个迷宫得到相同的输入。为了推论左右融合的原理,将对同时刺激双侧(双耳)的平衡反应与对单耳刺激的反应进行了比较。双耳全身响应方向与左右单声道响应的矢量求和兼容。但是,双耳反应的幅度仅为单耳总和预测的64-74%。这可能反映了前庭输入和运动输出之间的中心非线性,因为仅对一个迷宫的刺激就显示出刺激电流与响应大小之间的幂律关系,指数为0.56(力)和0.51(位移)。因此,通过使单声道电流加倍或通过双耳刺激使总信号幅值加倍会产生等效的响应。我们得出的结论是,两个迷宫都提供了独立的头部运动估计,这些估计通过矢量求和并非线性转换为电机输出。前者改善了信噪比并减少了人为的共模变化,而后者则增强了对小信号的响应,这对于检测控制人体平衡所需的小头部运动至关重要。

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