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신장반사 해석 모델 및 진자 실험을 이용한 하지의 질량 관성모멘트 예측 방법Analytical method to predict a mass moment of inertia of a lower limb using a stretch reflex model and pendulum test

Other Titles
Analytical method to predict a mass moment of inertia of a lower limb using a stretch reflex model and pendulum test
Authors
강문정조영남채제욱유홍희
Issue Date
Nov-2014
Publisher
대한기계학회
Keywords
mass moment of inertia (질량 관성모멘트); stretch reflex (신장반사); pendulum test (진자 실험); lower limb (하지)
Citation
대한기계학회 2014년도 추계학술대회, pp.1411 - 1414
Indexed
OTHER
Journal Title
대한기계학회 2014년도 추계학술대회
Start Page
1411
End Page
1414
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/158600
Abstract
It is important to predict mass moment of inertia of each segment for analyzing human motions. Analytical and experimental methods have been studied for predicting it. The former is methods calculating it by assuming the segment as uniform bar or using 3 dimensional images such as MRI, and the latter is a method predicting it from cadaver experiments. However, these methods oversimplify human segments or cost a lot of money and time. Moreover, the method using 3 dimensional images have been pointed out safety because subjects have to be exposed to radiation. Therefore, present study suggests safe and simple method that can reflect physical quality in vivo. We did pendulum tests dropping a leg relaxing and stretching in a sitting position without notice, and predict mass moment of inertia of the leg using the experimental results and stretch reflex model. The stretch reflex model consists of muscle properties and model parameters, and it can identify muscle activation by a stretch reflex from kinematics of a leg. The present studies set mass moment of inertia and model parameters as variables, and solve the optimization problem which minimizes the integrated error of knee angle from experiment and analysis to predict mass moment of inertia of a leg. Compared to results from the present study and previous study, we confirmed that suggested method is most efficient to predict the mass moment of inertia of human limb.
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서울 공과대학 > 서울 기계공학부 > 1. Journal Articles

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