Deshpande Nandini, Patla Aftab E
Gait and Posture Laboratory, Department of Kinesiology, University of Waterloo, Waterloo, ON, Canada.
Exp Brain Res. 2005 Dec;167(3):468-74. doi: 10.1007/s00221-005-0182-z. Epub 2005 Nov 11.
Both vestibular and neck proprioceptive inputs contribute towards maintaining a walking trajectory. We investigated how aging alters neck proprioceptive and vestibular interaction for preserving equilibrium and spatial orientation during locomotion. Young and healthy elderly were exposed to two sensory manipulations as they walked, eyes closed, to a target located straight ahead: (1) right side dorsal neck muscle vibration (Vib), and (2) Vib + transmastoidal galvanic vestibular stimulation (Vib + GVS). The maximum path deviation, average frontal centre of mass velocity and average trunk roll were evaluated. Trunk yaw rotation was computed at every metre of the path. We observed that directional responses to neck muscle stimulation were very sensitive to the reference frame generated by vestibular information. The attenuation of path deviation in older adults can be attributed to a reduced sensitivity of the neck proprioceptive system rather than the vestibular system.
前庭和颈部本体感觉输入都有助于维持行走轨迹。我们研究了衰老如何改变颈部本体感觉和前庭相互作用,以在运动过程中保持平衡和空间定向。年轻且健康的老年人在闭眼行走至正前方目标时接受了两种感觉操纵:(1)右侧颈背肌振动(Vib),以及(2)Vib + 经乳突电刺激前庭(Vib + GVS)。评估了最大路径偏差、平均额向质心速度和平均躯干侧倾。在路径的每一米处计算躯干偏航旋转。我们观察到,对颈部肌肉刺激的定向反应对前庭信息产生的参考系非常敏感。老年人路径偏差的减弱可归因于颈部本体感觉系统而非前庭系统的敏感性降低。