Ankle Joint Function in the Lower Limb Impact Absorption Mechanism of Normal Gait
[Purpose] We aimed to clarify the main part where shock absorption is carried out by using an acceleration sensor. [Subjects and Methods] The subjects were eleven healthy male subjects, average age, 20.8 ± 2.44 years old. Acceleration was measured with sensors attached to the calcaneus, fibula and l...
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| Published in | Rigaku ryoho kagaku Vol. 32; no. 6; pp. 835 - 838 |
|---|---|
| Main Authors | , |
| Format | Journal Article |
| Language | Japanese |
| Published |
The Society of Physical Therapy Science
2017
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| Subjects | |
| Online Access | Get full text |
| ISSN | 1341-1667 2434-2807 2434-2807 |
| DOI | 10.1589/rika.32.835 |
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| Abstract | [Purpose] We aimed to clarify the main part where shock absorption is carried out by using an acceleration sensor. [Subjects and Methods] The subjects were eleven healthy male subjects, average age, 20.8 ± 2.44 years old. Acceleration was measured with sensors attached to the calcaneus, fibula and lateral part of the thigh, and the statistical significance of differences was examined using the Friedman test (Tukey’s method). [Results] Acceleration (deg/sec/BW/WS) at the calcaneus, femoral head and thigh were 4.2 ± 1.2, 0.2 ± 0.03, 0.1 ± 0.06, respectively. RMS (m/s2 rms/WS2) of the same sites were 68.7 ± 20.9, 5.4 ± 0.8, and 3.7 ± 1.6, respectively. There were significant differences (p<0.01) between the accelerations at the calcaneus and the fibula portion, and between the accelerations at the calcaneus and the femoral region. There was no significant difference between the accelerations at the fibula and the thigh. There were significant differences between the RMS values at the calcaneus and the fibular head (p<0.05), and between the RMS values at the calcaneus and the thigh (p<0.01). There was no significant difference between the RMS values at the fibula head and the thigh. [Conclusion] The results show that the impact during normal gait is mainly absorbed by the ankle joint. |
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| AbstractList | [Purpose] We aimed to clarify the main part where shock absorption is carried out by using an acceleration sensor. [Subjects and Methods] The subjects were eleven healthy male subjects, average age, 20.8 ± 2.44 years old. Acceleration was measured with sensors attached to the calcaneus, fibula and lateral part of the thigh, and the statistical significance of differences was examined using the Friedman test (Tukey’s method). [Results] Acceleration (deg/sec/BW/WS) at the calcaneus, femoral head and thigh were 4.2 ± 1.2, 0.2 ± 0.03, 0.1 ± 0.06, respectively. RMS (m/s2 rms/WS2) of the same sites were 68.7 ± 20.9, 5.4 ± 0.8, and 3.7 ± 1.6, respectively. There were significant differences (p<0.01) between the accelerations at the calcaneus and the fibula portion, and between the accelerations at the calcaneus and the femoral region. There was no significant difference between the accelerations at the fibula and the thigh. There were significant differences between the RMS values at the calcaneus and the fibular head (p<0.05), and between the RMS values at the calcaneus and the thigh (p<0.01). There was no significant difference between the RMS values at the fibula head and the thigh. [Conclusion] The results show that the impact during normal gait is mainly absorbed by the ankle joint. |
| Author | HIIRAGI, Yukinobu FURUYA, Tomoiki |
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| References_xml | – reference: 2) Perry J:ペリー歩行分析 正常歩行と異常歩行.武田 功・他(監訳),医歯薬出版,東京,2007, p21. – reference: 7) 大西智也,橘浩 久,武田 功:加速度・角速度センサによる立位時の骨盤の動きの検討. 理学療法科学,2014, 29: 595–598. – reference: 10) 日高正巳:よくわかる研究法13,対象者をどうやって選ぶか?データを取る方法の問題を考えてみよう.理学療法学,2011, 28: 502. – reference: 1) 中村隆一,齋藤 宏,長崎 浩:基礎運動学,第6版.医歯薬出版,東京,2003, pp361-377. – reference: 8) Menz HB, Lord SR, Fitzpatrick RC: Age-related differences in walking stability. Age Ageing, 2003, 32: 137-142. – reference: 9) 木藤伸宏,島澤真一,弓削千文・他:加速度センサを用いた変形性膝関節症の歩行時下腿運動の解析(2002年度研究助成論文).理学療法学,2004, 31: 86-94. – reference: 11) 市橋則明,大畑光司,才藤栄一:変形性膝関節症に対する筋力トレーニング再考(第一分科会『変形性膝関節症の最新の評価と治療』).第35回日本理学療法士協会全国研修会特集号(テーマ:理学療法における最新の評価と治療).理学療法学,2001, 28: 76-81. – reference: 3) Götz-Neumann K:観察による歩行分析.月城慶一・他(監訳),医学書院,東京,2006, pp35-36. – reference: 5) 田川善彦,山本耕之,松尾重明・他:ヒトの足接地時における人体への衝撃力の評価.日本機械学会論文集C編,1995, 61: 3859-3865. – reference: 6) 柊 幸伸,加藤宗規,佐藤 仁・他:3軸角速度センサを用いた動作分析の試み.理学療法科学,2005, 20: 93-98. – reference: 4) 山本澄子:脳血管障害の歩行分析.理学療法科学,2002, 17: 3-10. – ident: 1 |
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| Title | Ankle Joint Function in the Lower Limb Impact Absorption Mechanism of Normal Gait |
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