The measurement and application of the relationship between elbow angle and torque
碩士 === 國立體育學院 === 教練研究所 === 87 === As we know, the elbow joint torque is correlated with joint angle in some way. In order to understand the relationship between elbow angle and torque, we designed a joint tensiometer to measure elbow angle and torque. After a series testing, we found that the accur...
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ndltd-TW-087NCPES4190152016-07-11T04:13:33Z http://ndltd.ncl.edu.tw/handle/91386461594769908269 The measurement and application of the relationship between elbow angle and torque 肘關節角度與力矩之量測與應用 Lai, Ping-Chang 賴平常 碩士 國立體育學院 教練研究所 87 As we know, the elbow joint torque is correlated with joint angle in some way. In order to understand the relationship between elbow angle and torque, we designed a joint tensiometer to measure elbow angle and torque. After a series testing, we found that the accuracy, linear regression and repeatability of the joint tensiometer are performed well . But the validity was not consistent when compared with the Kin-Com 500H. Fifty one healthy subjects performed maximal voluntary elbow flexion and extension on the joint tensiometer. In the elbow flexion, the maximal torque produced was at the 110-degree elbow angle. Before 110-degree the more elbow angle increase, the more torque increase. After 110-degree, the more elbow angle increased, the less torque was produced. In the elbow extension, the maximal torque produced was at the 30-degree of elbow angle. The more elbow angle increased, the less torque was produced. At last, we designed a cam to change load over the range of motion to match the angle-torque relationship of muscle and checked the shape of the cam by computer simulation to ensure that it is consistent with the angle-torque relationship. Shiang, Tzyy-Yuang 相子元 1999 學位論文 ; thesis 78 zh-TW |
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碩士 === 國立體育學院 === 教練研究所 === 87 === As we know, the elbow joint torque is correlated with joint angle in some way. In order to understand the relationship between elbow angle and torque, we designed a joint tensiometer to measure elbow angle and torque. After a series testing, we found that the accuracy, linear regression and repeatability of the joint tensiometer are performed well . But the validity was not consistent when compared with the Kin-Com 500H. Fifty one healthy subjects performed maximal voluntary elbow flexion and extension on the joint tensiometer. In the elbow flexion, the maximal torque produced was at the 110-degree elbow angle. Before 110-degree the more elbow angle increase, the more torque increase. After 110-degree, the more elbow angle increased, the less torque was produced. In the elbow extension, the maximal torque produced was at the 30-degree of elbow angle. The more elbow angle increased, the less torque was produced. At last, we designed a cam to change load over the range of motion to match the angle-torque relationship of muscle and checked the shape of the cam by computer simulation to ensure that it is consistent with the angle-torque relationship.
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author2 |
Shiang, Tzyy-Yuang |
author_facet |
Shiang, Tzyy-Yuang Lai, Ping-Chang 賴平常 |
author |
Lai, Ping-Chang 賴平常 |
spellingShingle |
Lai, Ping-Chang 賴平常 The measurement and application of the relationship between elbow angle and torque |
author_sort |
Lai, Ping-Chang |
title |
The measurement and application of the relationship between elbow angle and torque |
title_short |
The measurement and application of the relationship between elbow angle and torque |
title_full |
The measurement and application of the relationship between elbow angle and torque |
title_fullStr |
The measurement and application of the relationship between elbow angle and torque |
title_full_unstemmed |
The measurement and application of the relationship between elbow angle and torque |
title_sort |
measurement and application of the relationship between elbow angle and torque |
publishDate |
1999 |
url |
http://ndltd.ncl.edu.tw/handle/91386461594769908269 |
work_keys_str_mv |
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