Head stabilization during various locomotor tasks in humans
- 1 May 1991
- journal article
- Published by Springer Nature in Experimental Brain Research
- Vol. 85 (1) , 208-217
- https://doi.org/10.1007/bf00230002
Abstract
This experiment, which extends a previous investigation (Pozzo et al. 1990), was undertaken to examine how head position is controlled during natural locomotor tasks in both normal subjects (N) and patients with bilateral vestibular deficits (V). 10 normals and 7 patients were asked to perform 4 locomotor tasks: free walking (W), walking in place (WIP), running in place (R) and hopping (H). Head and body movements were recorded with a video system which allowed a computed 3 dimensional reconstruction of selected points in the sagittal plane. In order to determine the respective contribution of visual and vestibular cues in the control of head angular position, the 2 groups of subjects were tested in the light and in darkness. In darkness, the amplitude and velocity of head rotation decreased for N subjects; these parameters increased for V subjects, especially during R and H. In darkness, compared to the light condition, the mean position of a line placed on the Frankfort plane (about 20–30° below the horizontal semi-circular canal plane) was tilted downward in all conditions of movement, except during H, for N subjects. In contrast, this flexion of the head was not systematic in V subjects: the Frankfort plane could be located above or below earth horizontal. In V subjects, head rotation was not found to be compensatory for head translation and the power spectrum analysis shows that head angular displacements in the sagittal plane contain mainly low frequencies (about 0.3–0.8 Hz). The respective contribution of visual and vestibular cues in the control of the orientation and the stabilization of the head in space is discussed.Keywords
This publication has 20 references indexed in Scilit:
- Technique for the evaluation of derivatives from noisy biomechanical displacement data using a model-based bandwidth-selection procedureMedical & Biological Engineering & Computing, 1990
- Head stabilization during various locomotor tasks in humansExperimental Brain Research, 1990
- The influence of target distance on eye movement responses during vertical linear motionExperimental Brain Research, 1989
- Performance of the human vestibuloocular reflex during locomotionJournal of Neurophysiology, 1989
- Visual, vestibular and voluntary contributions to human head stabilizationExperimental Brain Research, 1986
- The orientation of the cervical vertebral column in unrestrained awake animalsExperimental Brain Research, 1986
- Modifications of gain asymmetry and beating field of vertical optokinetic nystagmus in microgravityNeuroscience Letters, 1986
- Visual and vestibular contributions to pitch sway stabilization in the ankle muscles of normals and patients with bilateral peripheral vestibular deficitsExperimental Brain Research, 1985
- Responses of cats to sudden falls: an otolith-originating reflex assisting landingJournal of Neurophysiology, 1976
- Observations on the control of stepping and hopping movements in manThe Journal of Physiology, 1971