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Interaction between otolith organ and semicircular canal vestibulo-ocular reflexes during eccentric rotation in humans

机译:人类偏心旋转过程中耳石器官与半规管前庭眼反射之间的相互作用

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Controversy remains about the linearity of the interaction between horizontal semicircular canal and otolith organ vestibulo-ocular reflexes (VORs) in the generation of horizontal eye movements during head movements including both rotational and translational components. We used three eccentric rotation techniques to investigate this interaction in human subjects: (1) the tangential interaural acceleration was varied using three head positions (on-axis, 25 and 40 cm ahead of the rotational axis), while angular head velocity remained unchanged; (2) the magnitude of the angular head velocity was varied with head eccentricity to keep the tangential interaural acceleration unchanged; (3) the subject’s head was oriented either upright or 90° forward from upright (nose-down). Experiments were performed in complete darkness with the subjects remembering a close earth-fixed target (20 cm distant) while being rotated at 1.2 and 1.8 Hz. Our data showed that the translational component of the VOR evoked during eccentric yaw rotation increased proportionally with an increase in head eccentricity, i.e. with tangential acceleration. We also found that the translational component of the VOR was equal for motion stimuli producing identical interaural tangential accelerations even when angular velocities differed. In addition, we found that the translational component of the VOR evoked during head upright eccentric rotation was equal to the translational VOR evoked during nose-down rotation for a given stimulus and head eccentricity. We conclude that these three findings are in agreement with what would be expected from a linear interaction (i.e. algebraic summation) between otolith organ and horizontal canal VORs for the generation of horizontal compensatory eye movements during head motion.
机译:关于在包括旋转和平移组件在内的头部运动期间水平眼动的产生中,水平半圆形管与耳石器官前庭眼反射(VOR)之间相互作用的线性关系仍存在争议。我们使用三种偏心旋转技术来研究人类受试者之间的这种相互作用:(1)切向耳间加速度是使用三个头部位置(旋转轴前方25和40 cm)改变的,而头部的角速度保持不变; (2)头部的角速度随头部的偏心而变化,以保持切向耳间加速度不变。 (3)受试者的头部直立或从直立向前倾斜90°(鼻下)。实验是在完全黑暗的条件下进行的,对象在以1.2和1.8 Hz旋转时记住一个固定的固定地球目标(相距20 cm)。我们的数据表明,在偏心偏航旋转过程中引起的VOR的平移分量与头部偏心率的增加(即切向加速度)成比例地增加。我们还发现,即使角速度不同,对于产生相同的听觉切向加速度的运动刺激,VOR的平移分量也相等。此外,我们发现,对于给定的刺激和头部偏心,在头部直立偏心旋转期间诱发的VOR的平移分量等于在鼻子向下旋转期间诱发的VOR的平移分量。我们得出的结论是,这三个发现与耳石器官与水平管VOR之间的线性相互作用(即代数求和)相一致,从而可以在头部运动过程中产生水平补偿眼动。

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