Joint moments and muscle forces during walking with sided load as one of activities of daily living

편향하중 조건 보행시 인체의 적응 작용에 대한 분석

  • 김현동 (연세대학교 의공학부, 의료공학연구원) ;
  • 손종상 (연세대학교 의공학부, 의료공학연구원) ;
  • 김한성 (연세대학교 의공학부, 의료공학연구원) ;
  • 김영호 (연세대학교 의공학부, 의료공학연구원) ;
  • 임도형 (연세대학교 의공학부, 의료공학연구원)
  • Published : 2008.11.05

Abstract

The trunk is inclined to the loaded side when carrying an object as one of activities of daily living. As the reaction to this behavior the human body may be inclined to his/her trunk to unloaded side. The present study investigated the biomechanical effects of weight variation for sided load carriage during walking upon joint moments and muscle torques, through the tracker agent and joint driving dynamic analysis. To perform the experiment one male was selected as subject for the study. Gait analysis was performed by using a 3D motion analysis system. Thirty nine 14mm reflective markers, according to the plug-in marker set, were attached to the subject. We used BRG.LifeMOD(Biomechanics Research Group, Inc., USA), for skeletal modeling and inverse and joint driving dynamic simulation during one gait cycle. In walking with a sided load carriage, the subject modeled held the carriage with the right hand, which weighed 0, 5, 10, 15kg, 20kg respectively. The result of this simulation showed that knee and hip in the coronal plane were inclined to the loaded side and loaded side had larger moments as the sided load carriage was increased. On the other hand thoracic and lumbar in the coronal plane had larger negative values as the sided loaded carriage was increased. The thoracic and lumbar in the transverse plane also had larger values as the sided load was increased. And the several muscles of loaded side were increased as increasing sided load. It could be concluded that human body is adopted to side loaded circumstances by showing more biologic force. These results could be very useful in analysis for delivery motion of daily life.

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