Department of Psychology, Azusa Pacific University, Azusa CA, USA.
Lyon Neuroscience Research Center, CNRS UMR5292 - INSERM U1028 - University of Lyon, Impact Team, Bron, France.
Sci Rep. 2017 Feb 8;7:42071. doi: 10.1038/srep42071.
Constant velocity Off-Vertical Axis Rotation (OVAR) imposes a continuously varying orientation of the head and body relative to gravity, which generates a modulation of horizontal (conjugate and vergence), vertical, and torsional eye movements. We introduced the head-turn-on-trunk paradigm during OVAR to examine the extent to whether the modulation of these ocular reflexes is mediated by graviceptors in the head, i.e., otoliths, versus other body graviceptors. Ten human subjects were rotated in darkness about their longitudinal axis 20° off-vertical at a constant velocity of 45 and 180°/s, corresponding to 0.125 and 0.5 Hz. Binocular responses were obtained with the head and trunk aligned, and then with the head turned relative to the trunk 40° to the right or left of center. The modulation of vertical and torsional eye position was greater at 0.125 Hz while the modulation of horizontal and vergence slow phase velocity was greater at 0.5 Hz. The amplitude modulation was not significantly altered by head-on-trunk position, but the phases shifted towards alignment with the head. These results are consistent with the modulation of ocular reflexes during OVAR being primarily mediated by the otoliths in response to the sinusoidally varying linear acceleration along the interaural and naso-occipital head axis.
恒速离轴旋转(OVAR)使头部和身体相对于重力的方向不断变化,从而产生水平(共轭和聚散)、垂直和扭转眼球运动的调制。我们在 OVAR 期间引入了头部转动-躯干范式,以研究这些眼球反射的调制是否由头部中的重觉器(即耳石)介导,而不是由其他身体重觉器介导。10 名受试者在黑暗中以 45 和 180°/s 的恒定速度绕纵轴倾斜 20°旋转,分别对应于 0.125 和 0.5 Hz。在头部和躯干对齐的情况下获得双眼反应,然后头部相对于躯干向右侧或左侧转动 40°。在 0.125 Hz 时,垂直和扭转眼位置的调制更大,而在 0.5 Hz 时,水平和聚散慢相速度的调制更大。头部转动-躯干位置并没有显著改变幅度调制,但相位向与头部对齐的方向移动。这些结果与 OVAR 期间眼球反射的调制主要由耳石介导,以响应沿两耳和鼻枕头部轴的正弦变化线性加速度一致。