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Vestibular effects on posture instability evoked by moving visual environment and footing

机译:前庭对姿势不稳定的影响,通过移动视觉环境和脚步引起

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Subjects held the vertical posture standing up on hard footing, having small degree of the freedom in the frontal plane. The stability of the vertical posture has been assessed by the standard deviations (sigma) from average amplitudes of the fluctuations of the subject's head (in frontal and sagittal planes) from conditional zero. Sinusoidal rotations of optokinetic cylinder, sinusoidal rotations of the footing, and combinations of these rotations, under phase shifts between the optokinetic cylinder and the footing, caused increase of sigma. The amplitude and velocity signal of the head deviations was transformed into low galvanic current applied to the mastoids and used as the artifical vestibular biofeedback. It was possible to reduce the value of the sigma for lateral tilts (raised in comparison with their values during stance in the dark as a result of destabilizing influence), varying coefficients of the biofeedback. At the same time, appropriate fluctuations in sagittal plane were not systematic.
机译:受试者持有垂直姿势,坚硬的脚,在正面的自由度小程度。垂直姿势的稳定性已经通过从受试者头部(前部和矢状)波动的平均幅度从条件为零的平均幅度评估。 Optopetic圆筒的正弦旋转,脚踏的正弦旋转,以及这些旋转的组合,在视电缸和基础之间的相位偏移下,引起了σ增加。头部偏差的幅度和速度信号被转化为施加到乳突的低电流电流,并用作资金前庭生物反馈。可以降低横向倾斜的Sigma的值(与它们在黑暗中的姿势期间的值相比,由于稳定​​的影响,因此变量的生物反馈的系数变化。同时,在矢状平面中适当波动不是系统的。

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