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Titel: Female and male trunk geometry: size and prediction of the spine loading trunk muscles derived from MRI
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Clinical Biomechanics [0268-0033] Marras, W S år:2001 vol:16 iss:1 sidor:38 -46

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Användare som var intresserade av denna artikel tittade även på följande:
  1. Jorgensen, J W J. MRI-derived moment-arms of the female and male spine loading muscles. Clinical Biomechanics 16.3 (2001): 182-193. Länk till SFX för denna post
  2. Granata, K P P. Trunk muscle coactivation in preparation for sudden load. Journal of Electromyography and Kinesiology 11.4 (2001): 247-254. Länk till SFX för denna post
  3. Dehner, C. Influence of anthropometry on the kinematics of the cervical spine and the risk of injury in sled tests in female volunteers. Accident analysis and prevention 40.4 (2008): 1305-1312. Länk till SFX för denna post
  4. Wilke, Hans-Joachim J. Determination of trunk muscle forces for flexion and extension by using a validated finite element model of the lumbar spine and measured in vivo data. Journal of biomechanics 39.6: 981-989. Länk till SFX för denna post
  5. Kerrigan, D C C. Gender differences in joint biomechanics during walking: normative study in young adults. American journal of physical medicine & rehabilitation 77.1 (1998): 2-7. Länk till SFX för denna post
  6. Williams, Dorsey S S. Gender differences in lower extremity mechanics during running. Clinical Biomechanics 18.4 (2003): 350-7. Länk till SFX för denna post
  7. Granata, K P P. Response of trunk muscle coactivation to changes in spinal stability. Journal of biomechanics 34.9: 1117-1123. Länk till SFX för denna post
  8. Cho, S H H. Gender differences in three dimensional gait analysis data from 98 healthy Korean adults. Clinical Biomechanics 19.2 (2004): 145-152. Länk till SFX för denna post
  9. Merchant, A. The Female Knee : Anatomic Variations and the Female-specific Total Knee Design. Clinical orthopaedics and related research 466.12 (2008): 3059-3065. Länk till SFX för denna post
  10. Kettler, A., A. Mechanically simulated muscle forces strongly stabilize intact and injured upper cervical spine specimens. Journal of Biomechanics 35.3 (2002): 339-346. Länk till SFX för denna post
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