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跑步机行走过程中的轻触与质心稳定性

Light touch and center of mass stability during treadmill locomotion.

作者信息

Dickstein Ruth, Laufer Yocheved

机构信息

Department of Physical Therapy, Faculty of Social Welfare and Health Sciences, University of Haifa, Mount Carmel, Haifa 31905, Israel.

出版信息

Gait Posture. 2004 Aug;20(1):41-7. doi: 10.1016/S0966-6362(03)00091-2.

Abstract

PURPOSE

To study the contributions of light fingertip touch on an earth-referenced object to body stability during treadmill locomotion.

METHOD

Twenty young healthy adults were tested in two blocks of five testing conditions while walking on the treadmill at 3 km/h. In each condition, subjects were tested with eyes open (EO) and with eyes closed (EC). In each block, four separate conditions of heavy (H) or light (L) touch to either a left or to a right force sensor mounted on the respective side rail, as well as one condition of no touch (N), were randomly applied. The 3D positions of the center of mass (COM) and the midpoint of the posterior aspect of each leg were monitored via a kinematic ultrasonic system, while the anterior-posterior (AP) acceleration of the COM was measured with a uniaxial linear accelerometer.

RESULTS

Light touch had a similar stabilizing effect as vision and as heavy touch on COM sway. Thus, COM sway and AP acceleration were comparable in conditions of eyes open and eyes closed as long as touch was applied. Conversely, without vision and touch, subjects drifted backwards, with complete disruption of the coordinated stepping pattern.

CONCLUSIONS

Somatosensory fingertip input from an external reference provides spatial orientation, which, similar to vision, enables the sustaining of body stability during treadmill walking.

摘要

目的

研究在跑步机上行走时,手指轻触地面参考物体对身体稳定性的作用。

方法

20名年轻健康成年人在以3公里/小时的速度在跑步机上行走时,分两个阶段进行五种测试条件的测试。在每种条件下,受试者分别在睁眼(EO)和闭眼(EC)状态下接受测试。在每个阶段,随机施加四种不同的条件,即分别对安装在相应侧轨上的左侧或右侧力传感器进行重触(H)或轻触(L),以及一种无触摸(N)的条件。通过运动学超声系统监测质心(COM)的三维位置和每条腿后侧的中点位置,同时用单轴线性加速度计测量COM的前后(AP)加速度。

结果

轻触对COM摆动的稳定作用与视觉和重触相似。因此,只要施加触摸,睁眼和闭眼条件下的COM摆动和AP加速度相当。相反,在没有视觉和触摸的情况下,受试者会向后漂移,协调的步幅模式完全被打乱。

结论

来自外部参考的体感指尖输入提供空间定向,这与视觉类似,能够在跑步机行走过程中维持身体稳定性。

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