Bove M, Diverio M, Pozzo T, Schieppati M
Department of Experimental Medicine, Section of Human Physiology, University of Genoa, 16146 Genoa, Italy.
J Appl Physiol (1985). 2001 Aug;91(2):581-8. doi: 10.1152/jappl.2001.91.2.581.
Neck muscle vibration was applied to human subjects to assess the influences of neck abnormal proprioceptive input on the organization and execution of gait. Subjects walked blindfolded to a previously seen target, located straight ahead at ~4 m. Vibration was applied on the right side of the neck, both during and before walking. The variables measured were length, duration, and velocity of trajectory; relative and absolute frontal errors at target; and width of walking support base. Vibration applied during locomotion produced an undershoot of target and deviation of gait trajectory toward the side opposite to vibration. Vibration applied before locomotion produced no effect on length of trajectory but slowing of velocity and nonsystematic deviation. When vibration frequency was increased, the amplitude of the nonsystematic deviation increased. Vibration applied during or before stance trials had minor effects on body sway. Vibration before stance had no effect on the position of mean center of foot pressure, whereas vibration during stance displaced it to the side opposite to the vibrated muscle. We suggest that vibration during locomotion reduces length and velocity of trajectory because of a direct action on the locomotor centers and produces trajectory deviation related to its effect on stance. Vibration before locomotion causes a major, nonsystematic deviation from the planned trajectory, possibly connected to a disorientation of the internal references.
对人类受试者施加颈部肌肉振动,以评估颈部异常本体感觉输入对步态组织和执行的影响。受试者蒙眼走向先前看到的目标,该目标位于正前方约4米处。在行走期间和行走前均在颈部右侧施加振动。测量的变量包括轨迹的长度、持续时间和速度;目标处的相对和绝对正面误差;以及行走支撑基底的宽度。运动期间施加的振动导致目标未达和步态轨迹向与振动相反的一侧偏移。运动前施加的振动对轨迹长度没有影响,但会使速度减慢且产生非系统性偏移。当振动频率增加时,非系统性偏移的幅度增大。在站立试验期间或之前施加的振动对身体摇摆影响较小。站立前的振动对足压平均中心位置没有影响,而站立期间的振动将其移至与振动肌肉相反的一侧。我们认为,运动期间的振动由于对运动中枢的直接作用而缩短了轨迹长度并降低了速度,并产生了与其对站立的影响相关的轨迹偏移。运动前的振动会导致与计划轨迹出现较大的非系统性偏差,这可能与内部参照的定向障碍有关。