Journal of Biomechanics
Volume 43, Issue 7 , Pages 1437-1440 , 7 May 2010

Validation of a single camera three-dimensional motion tracking system

  • Joshua T. Weinhandl

      Affiliations

    • Department of Human Movement Sciences, University of Wisconsin—Milwaukee, P.O. Box 413, Milwaukee, WI 53201, USA
  • ,
  • Brian S.R. Armstrong

      Affiliations

    • Department of Electrical Engineering, University of Wisconsin—Milwaukee, USA
  • ,
  • Todd P. Kusik

      Affiliations

    • Department of Electrical Engineering, University of Wisconsin—Milwaukee, USA
  • ,
  • Robb T. Barrows

      Affiliations

    • Department of Electrical Engineering, University of Wisconsin—Milwaukee, USA
  • ,
  • Kristian M. O’Connor

      Affiliations

    • Department of Human Movement Sciences, University of Wisconsin—Milwaukee, P.O. Box 413, Milwaukee, WI 53201, USA
    • Corresponding Author InformationCorresponding author. Tel.: +14142292680; fax: +14142292619.

,Accepted 30 December 2009.

References 

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  2. Armstrong, B.S.R., Andrews-Shigaki, B., Barrows, R.T., Kusik, P., Ernst, T., Speck, O., 2009. Performance of stereo vision and retro-grate reflector motion tracking systems in the space constraints of an MR scanner. In: Proceedings of the ISMRM 17th Scientific Meeting and Exhibition, Honolulu, HI, pp. 5474.
  3. Armstrong, B.S.R., Verron, T., Heppe, L., Schmidt, K., 2002. RGR-3D: Simple, Cheap detection of 6-DOF Pose for Tele-Operation, and Robot Programming and Calibration. In: Proceedings of the IEEE International Conference on Robotics & Automation, Washington, D.C., pp. 2938–2943.
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  7. Hewett TE, Myer GD, Ford KR, Heidt RS, Colosimo AJ, McLean SG, et al. Biomechanical measures of neuromuscular control and valgus loading of the knee predict anterior cruciate ligament injury risk in female athletes: a prospective study. The American Journal of Sports Medicine. 2005;33(4):492–501
  8. Kawamura CM, de Morais Filho MC, Barreto MM, de Paula Asa SK, Juliano Y, Novo NF. Comparison between visual and three-dimensional gait analysis in patients with spastic diplegic cerebral palsy. Gait & Posture. 2007;25(1):18–24
  9. O'Connor, K.M., Armstrong, B.S.R., Watts, S.R., Farrah, M.M.A., Bottum, M.C., 2007. An innovaative diagnostic tool for reducing traumatic knee injuries. In Proceedings of the 31st Annual Meeting of the American Society of Biomechanics, Palo Alto, CA.
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  12. Ramakrishnan HK, Kadaba MP. On the estimation of joint kinematics during gait. Journal of Biomechanics. 1991;24(10):969–977
  13. Rivest LP. A correction for axis misalignment in the joint angle curves representing knee movement in gait analysis. Journal of Biomechanics. 2005;38(8):1604–1611
  14. Schache AG, Baker R, Lamoreux LW. Defining the knee joint flexion-extension axis for purposes of quantitative gait analysis: an evaluation of methods. Gait & Posture. 2006;24(1):100–109
  15. Woltring HJ. 3-D attitude representation of human joints: a standardization proposal. Journal of Biomechanics. 1994;27(12):1399–1414

 Funded by NIH.

PII: S0021-9290(10)00061-8

doi: 10.1016/j.jbiomech.2009.12.025

Journal of Biomechanics
Volume 43, Issue 7 , Pages 1437-1440 , 7 May 2010