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  • 1.
    Lees, A
    et al.
    Jönköping University.
    Nolan, Lee
    Jönköping University, School of Health Science, HHJ. Prosthetics and Orthotics.
    The biomechanics of soccer: a review.1998In: Journal of Sports Sciences, ISSN 0264-0414, E-ISSN 1466-447X, Vol. 16, no 3, p. 211-234Article in journal (Other academic)
  • 2.
    Li, Yumeng
    et al.
    Department of Kinesiology, California State University, Chico, USA .
    Simpson, Kathy J.
    Department of Kinesiology, University of Georgia, Athens, USA .
    Nolan, Lee
    Jönköping University, School of Health and Welfare, HHJ, Dep. of Rehabilitation.
    Miller, Marilyn
    Millsboro, USA .
    Johnson, Benjamin
    epartment of Kinesiology and Health Promotion, University of Kentucky, Lexington, USA.
    Lower extremity kinematics of curve sprinting displayed by runners using a transtibial prosthesis2018In: Journal of Sports Sciences, ISSN 0264-0414, E-ISSN 1466-447X, Vol. 36, no 3, p. 293-302Article in journal (Refereed)
    Abstract [en]

    The purpose of the study was to determine if the kinematics exhibited by skilled runners wearing a unilateral, transtibial prosthesis during the curve section of a 200-m sprint race were influenced by interaction of limb-type (prosthetic limb (PROS-L) vs. nonprosthetic limb (NONPROS-L)) and curve-side (inside and outside limb relative to the centre of the curve). Step kinematics, toe clearance and knee and hip flexion/extension, hip ab/adduction for one stride of each limb were generated from video of 13 males running the curve during an international 200 m transtibial-classified competition. Using planned comparisons (P < 0.05), limb-type and curve-side interactions showed shortest support time and lowest hip abduction displacement by outside-NONPROS-L; shortest step length and longest time to peak knee flexion by the inside-PROS-L. For limb-type, greater maximum knee flexion angle and lower hip extension angles and displacement during support and toe clearance of PROS-Ls occurred. For curve-side, higher hip abduction angles during non-support were displayed by inside-limbs. Therefore, practitioners should consider that, for curve running, these kinematics are affected mostly by PROS-L limitations, with no clear advantage of having the PROS-L on either side of the curve. 

  • 3.
    Nolan, Lee
    et al.
    Jönköping University, School of Health Science, HHJ, Dep. of Rehabilitation. Jönköping University, School of Health Science, HHJ. Prosthetics and Orthotics.
    Lees, Adrian
    The influence of lower limb amputation level on the approach in the amputee long jump2007In: Journal of Sports Sciences, ISSN 0264-0414, E-ISSN 1466-447X, Vol. 25, no 4, p. 393-401Article in journal (Refereed)
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