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The Mechanism Study of Gait on a Load and Gender Difference

초록

영어

Gait kinematics and kinetics have a similar tendency between men and women, yet it remains unclear how walking while carrying a load affects the gait mechanism. Twenty adults walked with preferred velocity on level ground of 20 m relative to change of a load carriage (no load, 15%, 30% of the body weights) aimed to observe gait mechanism. We measured gait posture using the three-dimensional image analysis and ground reaction force system during stance phase on left foot. In main effect of gender difference, men showed increased displacement of center of gravity (COG) compared to women, and it showed more extended joint angle of hip and knee in sagittal plane. In main effect of a load difference, knee joint showed more flexed postuel relative to increase of load carriage. In main effect of load difference on the kinetic variables, mediallateral force, anterior-posterior force (1st breaking, 2nd propulsive), vertical force, center of pressure (COP) area, leg stiffness, and whole body stiffness showed more increased values relative to increase of load carriage. Also, men showed more increased COP area compared to women. Interaction showed in the 1st anteriorposterior force, and as a result of one-way variance analysis, it was found that a load main effect had a greater influence on the increase in the magnitude of the braking force than the gender. The data in this study explains that women require little kinematic alteration compared to men, while men in more stiff posture accommodate an added load compared to women during gait. Additionally, it suggests that dynamic stability is maintained by adopting different gait strategies relative to gender and load difference.

목차

Abstract
1. Introduction
2. Material and Methods
2.1 Subjects
2.2 Experimental approach
2.3 Definition of analysis phase
3. Results
3.1 Kinetic and leg length
4. Discussion
Acknowledgement
References

저자정보

  • Checheong Ryew Professor Department of Kinesiology, College of Natural Science, Jeju National University, Republic of Korea
  • Seunghyun Hyun Research professor, Department of Kinesiology, College of Natural Science, Jeju National University, Republic of Korea

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