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Relationship between the Biomechanical Analysis and the Qualitative Analysis of Video Software for the Walking Movement

보행동작에 대한 바이오메카닉스적 분석과 비디오의 정성적 분석의 상호관련성

  • Bae, Young-Sang (Department of Taekwondo, College of Physical Education, Keimyung University) ;
  • Woo, Oh-Goo (Department of Physical Education, Graduate School of Keimyung University) ;
  • Lee, Jeong-Min (Department of Physical Education, Graduate School of Keimyung University)
  • 배영상 (계명대학교 체육대학 태권도학과) ;
  • 우오구 (계명대학교 대학원 체육학과) ;
  • 이정민 (계명대학교 대학원 체육학과)
  • Received : 2010.10.06
  • Accepted : 2010.12.22
  • Published : 2010.12.31

Abstract

The purpose of this study was to investigate the relationship between the quantitative analysis of biomechanical movement and the qualitative analysis of video software in order to evaluate for the walking movement. The fourteen collegiate students who agreed with the purpose and method of this study participated as subjects. The slow walking and fast walking of the subjects in the place of experiment were photographed, and calculated several mechanical factors. This empirical evidence from the experiment indicated the significant difference(p<.001) between each distant factors of the walking movement for both analyses methods, but there was no statistically significant difference between the spacial factors observed in the experiment. For more detail, no significant difference between the walking ratios that expressed the coordination between stride length and stride frequency was found. The findings also indicated the high coefficient of correlation(over r=.9) which supports higher explanation force for the biomechanical method and the Dartfish video software method. Therefore, if the data was gathered by using the proper experimental method, the video software method could be used just like the quantitative data of biomechanical method.

Keywords

References

  1. 김로빈, 이성철, 진영완(2000). 보행시 속도변화에 따른 하지관절의 운동역학적 분석. 한국체육학회지, 39(4), 675-687.
  2. 김로빈, 김승재(2001). 보행시 보폭에 따른 지면반력의 변화. 한국운동역학회지, 10(2), 67-76.
  3. 김태완(2006). 보행속도가 비만인의 하지 관절각과지면반발력에 미치는 영향. 한국운동역학회지, 16(4), 83-94.
  4. 다트피쉬코리아(2005). Dartfish Software. (주)다트피쉬코리아.
  5. 문곤성(2005). 보행 속도 변화에 따른 발목 관절의 운동학적 분석과 하퇴 근육의 근전도 분석. 한국운동역학회지, 15 (1), 177-195. https://doi.org/10.5103/KJSB.2005.15.1.177
  6. 배영상(2007). 보행스피드에 대한 상체 공헌도의 연령에 따른 변화. 한국운동역학회지, 17(4), 27-36. https://doi.org/10.5103/KJSB.2007.17.4.027
  7. 신성휴, 이효근, 권문석(2008). 보행속도에 따른 하지 관절의 각도와 모멘트의 상관관계. 한국운동학회지, 18(2), 75-83.
  8. 신재민, 진영완(2006). 에너지보행과 일반보행의 운동학적 비교. 한국운동역학회지, 16(4), 61-71. https://doi.org/10.5103/KJSB.2006.16.4.061
  9. 윤진환, 이희혁, 김양희(2002). 비만여성의 걷기와 달리기시 에너지 소비와 근피로도 분석. 한국사회체육학회지, 18, 1257-1269.
  10. 은선덕, 이기광(2004). 노인의 트레드밀 보행시 속도에 따른 보행패턴의 변화 연구. 한국체육학회지, 43(5), 397-404.
  11. 이운용, 김명화, 변재종(2005). 60대 남녀 노인의제자리 2분 걷기 능력과 상.하지 근기능의 관계. 한국걷기과학학회지, 4, 43-49.
  12. 이정호, 서정석, 은선덕(2007). 노인 여성의 관절염 환자의 보행시간에 따른 지면반력의 특징. 한국운동역학회지, 17(2), 75-82.
  13. 정철수, 신인식, 서정석, 은선덕, 인권(2001). 연령과 속도에 따른 보행 형태와 역학적 효율성 분석. 한국운동역학회지, 10(2), 205-219.
  14. 館俊樹,久保田晃生,鈴鹿和子, 増尾昌吾(2007). 健康を高める動作の評価. 体育の科学, 57(4), 288-293.
  15. 三井孝、図子浩二(2006). 高齢者の歩行動作の特徴と指導. 体育の科学, 56, 890-894.
  16. 柳川和優, 磨井祥夫, 山口立雄, 渡辺和彦(2003). 若年者と高齢者における歩行動作の比較ー歩行速度に着目してー. Japanese Journal of Biomachanics in Sports & Exercise, 7, 179-192.
  17. Bergmann G., Deuretzbacher G., Heller M., Graichen F., & RohlmannA.(2001). Hip contact forces and gait patterns from routine activities. Journal. of Biomechanics, 34, 859-871. https://doi.org/10.1016/S0021-9290(01)00040-9
  18. Bhatt T., Wening J. D., & Pai Y. C.(2005). Influence of gait speed on stability: recovery from anterior slips and compensatory stepping. Gait & Posture, 21, 146-156. https://doi.org/10.1016/j.gaitpost.2004.01.008
  19. Catherine E. B., & Arthur D. K.(2000). Active control of lateral balance in human walking. Journal. of Biomechanics, 33, 1433-1440. https://doi.org/10.1016/S0021-9290(00)00101-9
  20. Crosbie J., Vachalathiti, R., & Smith, R.(1997). Age, gender and speed effects on spinal kinematics during walking. Gait & Posture, 5, 13-20. https://doi.org/10.1016/S0966-6362(96)01068-5
  21. Kathleen J. G., & Christopher M. P.(2005). Gait kinematics and kinetics of 7-year-old children : a comparison to adults using age-specific anthropometric data. Gait & Posture, 21, 141-145. https://doi.org/10.1016/j.gaitpost.2004.01.007
  22. Michael H., & Ross A.(2006). Prediction methods to account for the effect of gait speed on lower limb angular kinematics. Gait & Posture, 24, 280-287. https://doi.org/10.1016/j.gaitpost.2005.10.007
  23. Mirjam P., Maarten F. B., & Jaap H. D.(2005). Push reactions in recovery after tripping discreminate young subjects, older non-fallers and older fallers. Gait & Posture, 21, 388-394. https://doi.org/10.1016/j.gaitpost.2004.04.009
  24. Sekiya N., & Nagasaki, H.(1998). Reproducibility of the walking patterns of normal young adults: Test-retest reliability of the walk ratio(step-length/step-rate). Gait & Posture, 7, 225-227. https://doi.org/10.1016/S0966-6362(98)00009-5
  25. Stansfield B. W., Hillman S. J., Hazlewood M. E., & Robb J.E.(2006). Regression analysis of gait parameters with speed on normal children walking at self-selected speeds. Gait & Posture, 23, 288-294. https://doi.org/10.1016/j.gaitpost.2005.03.005
  26. Tagawa Y., & Yamashita T.(2001). Analysis of human abnormal walking using zeromoment joint: required compensatory action. Journal of Biomechanics, 34, 783-790. https://doi.org/10.1016/S0021-9290(00)00216-5
  27. Tirosh O., & Sparrow.(2005). Age and walking speed effects on muscle recruitment in gait termination. Gait & Posture, 21, 279-288. https://doi.org/10.1016/j.gaitpost.2004.03.002
  28. Wagenaar R. C., & Emmerik van R. E. A.(2000). Resonant frequencies of arms and legs identify different walking pattern. Journal. of Biomechanics, 33, 853-861. https://doi.org/10.1016/S0021-9290(00)00020-8