Xiang Yongqing, Yakushin Sergei B, Kunin Mikhail, Raphan Theodore, Cohen Bernard
Department of Computer and Information Science, Brooklyn College, CUNY, Brooklyn, NY, USA.
J Neurophysiol. 2008 Aug;100(2):763-80. doi: 10.1152/jn.90256.2008. Epub 2008 Jun 18.
Little is known about the three-dimensional characteristics of vestibulocollic reflexes during natural locomotion. Here we determined how well head stability is maintained by the angular and linear vestibulocollic reflexes (aVCR, lVCR) during quadrupedal locomotion in rhesus and cynomolgus monkeys. Animals walked on a treadmill at velocities of 0.4-1.25 m/s. Head rotations were represented by Euler angles (Fick convention). The head oscillated in yaw and roll at stride frequencies (approximately 1-2 Hz) and pitched at step frequencies (approximately 2-4 Hz). Head angular accelerations (100-2,500 degrees/s2) were sufficient to have excited the aVOR to stabilize gaze. Pitch and roll head movements were <7 degrees , peak to peak, and the amplitude was unrelated to stride frequency. Yaw movements were larger due to spontaneous voluntary head shifts and were smaller at higher walking velocities. Head translations were small (< or =4 cm). Cynomolgus monkeys positioned their heads more forward in pitch than the rhesus monkeys. None of the animals maintained a forward head fixation point, indicating that the lVCR contributed little to compensatory head movements in these experiments. Significantly, aVCR gains in roll and pitch were close to unity and phases were approximately 180 degrees over the full frequency range of natural walking, which is in contrast to previous findings using anesthesia or passive trunk rotation with body restraint. We conclude that the behavioral state associated with active body motion is necessary to maintain head stability in pitch and roll over the full range of stride/step frequencies encountered during walking.
关于自然运动过程中前庭脊髓反射的三维特征,人们了解甚少。在此,我们确定了在恒河猴和食蟹猴四足运动过程中,角向和线性前庭脊髓反射(aVCR,lVCR)对头部稳定性的维持效果如何。动物在跑步机上以0.4 - 1.25米/秒的速度行走。头部旋转由欧拉角(菲克约定)表示。头部在偏航和横滚方向以步频(约1 - 2赫兹)振荡,在俯仰方向以步幅频率(约2 - 4赫兹)振荡。头部角加速度(100 - 2500度/秒²)足以激发前庭眼反射以稳定注视。俯仰和横滚方向的头部运动峰峰值<7度,且幅度与步频无关。由于自发的随意头部移动,偏航运动较大,且在较高行走速度时较小。头部平移较小(≤4厘米)。食蟹猴在俯仰方向上比恒河猴将头部位置放得更靠前。在这些实验中,没有动物保持头部向前的固定点,这表明lVCR对补偿性头部运动的贡献很小。值得注意的是,在自然行走的全频率范围内,横滚和俯仰方向的aVCR增益接近1,相位约为180度,这与之前使用麻醉或在身体受限情况下被动躯干旋转的研究结果相反。我们得出结论,与主动身体运动相关的行为状态对于在行走过程中遇到的全步幅/步频范围内维持头部在俯仰和横滚方向的稳定性是必要的。