Curves and kinematics: Relationship between the force-time curve and landing ability
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Mifsud, Brayden
[1
,2
,3
]
Stephens, Jessica M.
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Univ Canberra, Univ Canberra Res Inst Sport Exercise UCRISE, Fac Hlth, Canberra, ACT, Australia
ACT Acad Sport ACTAS, Bruce, ACT, AustraliaUniv Canberra, Univ Canberra Res Inst Sport Exercise UCRISE, Fac Hlth, Canberra, ACT, Australia
Stephens, Jessica M.
[1
,2
]
Warmenhoven, John
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Univ Canberra, Univ Canberra Res Inst Sport Exercise UCRISE, Fac Hlth, Canberra, ACT, Australia
Univ Technol, Sch Sport Exercise & Rehabil, Sydney, NSW, AustraliaUniv Canberra, Univ Canberra Res Inst Sport Exercise UCRISE, Fac Hlth, Canberra, ACT, Australia
Warmenhoven, John
[1
,4
]
Ball, Nick
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Univ Canberra, Univ Canberra Res Inst Sport Exercise UCRISE, Fac Hlth, Canberra, ACT, AustraliaUniv Canberra, Univ Canberra Res Inst Sport Exercise UCRISE, Fac Hlth, Canberra, ACT, Australia
Ball, Nick
[1
]
机构:
[1] Univ Canberra, Univ Canberra Res Inst Sport Exercise UCRISE, Fac Hlth, Canberra, ACT, Australia
[2] ACT Acad Sport ACTAS, Bruce, ACT, Australia
[3] Australian Inst Sport AIS, Bruce, ACT, Australia
[4] Univ Technol, Sch Sport Exercise & Rehabil, Sydney, NSW, Australia
Anterior cruciate ligament (ACL) injuries have a significant impact on athletic performance and long-term quality of life. Force plates and qualitative screening tools are feasible and effective screening methods to identify abnormal movement quality associated with increased injury risk. Comparing qualitative assessments of landing ability with force-time curves, may detect unique differences between safe and high-risk athletic movement patterns. The aim of this study was to determine low- and high-risk landing ability from qualitive landing assessments and to examine the resulting force-time curves using functional principal component analysis (fPCA). Thirty-one healthy academy athletes (10 males and 21 females) completed double- and single-leg dominant and non-dominant jump-landing-rebound tasks. All movements were filmed in multiple-planes, and vertical ground reaction forces (vGRF) were simultaneously collected. The Landing Error Scoring System (LESS) and Single-Leg Landing Error Scoring System (SL-LESS) were used to score landing footage. From these scores, athletes were categorized into low-risk and high-risk groups for further analysis. fPCA was used to examine differences between landing quality groups force-time curves. Compared to high-risk landers, low-risk landers demonstrated significantly longer contact times across all movements. Scores from fPC1 revealed safe and high-risk landing techniques expose athletes to significantly different loading patterns during double- and single-leg dominant movements. A significant positive relationship was observed between fPC1 and LESS scores, however this relationship was not observed in both single-leg landing scores. Where possible incorporating curve analysis methods like fPCA into multi-faceted screening approaches may help practitioners uncover unique insights into athletic loading strategies.
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New South Wales Inst Sport, Sydney Olymp Pk, Sydney, NSW, Australia
Edith Cowan Univ, Ctr Exercise & Sports Sci Res, Sch Med & Hlth Sci, Joondalup, WA, AustraliaNew South Wales Inst Sport, Sydney Olymp Pk, Sydney, NSW, Australia
Hughes, Steven
Warmenhoven, John
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Univ New South Wales, Sch Engn & Informat Technol, Canberra, ACT, AustraliaNew South Wales Inst Sport, Sydney Olymp Pk, Sydney, NSW, Australia
Warmenhoven, John
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Haff, G. Gregory
Chapman, Dale W.
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New South Wales Inst Sport, Sydney Olymp Pk, Sydney, NSW, Australia
Edith Cowan Univ, Ctr Exercise & Sports Sci Res, Sch Med & Hlth Sci, Joondalup, WA, AustraliaNew South Wales Inst Sport, Sydney Olymp Pk, Sydney, NSW, Australia
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Cardiff Metropolitan Univ, Youth Phys Dev Ctr, Cardiff Sch Sport & Hlth Sci, Cardiff, WalesCardiff Metropolitan Univ, Youth Phys Dev Ctr, Cardiff Sch Sport & Hlth Sci, Cardiff, Wales
Pedley, Jason S.
DiCesare, Christopher A.
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Univ Michigan, Dept Mech Engn, Ann Arbor, MI 48109 USACardiff Metropolitan Univ, Youth Phys Dev Ctr, Cardiff Sch Sport & Hlth Sci, Cardiff, Wales
DiCesare, Christopher A.
Lloyd, Rhodri S.
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Cardiff Metropolitan Univ, Youth Phys Dev Ctr, Cardiff Sch Sport & Hlth Sci, Cardiff, Wales
AUT Univ, Sport Performance Res Inst, New Zealand SPRINZ, Auckland, New Zealand
Waikato Inst Technol, Ctr Sport Sci & Human Performance, Hamilton, New ZealandCardiff Metropolitan Univ, Youth Phys Dev Ctr, Cardiff Sch Sport & Hlth Sci, Cardiff, Wales
Lloyd, Rhodri S.
Oliver, Jon L.
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Cardiff Metropolitan Univ, Youth Phys Dev Ctr, Cardiff Sch Sport & Hlth Sci, Cardiff, Wales
AUT Univ, Sport Performance Res Inst, New Zealand SPRINZ, Auckland, New ZealandCardiff Metropolitan Univ, Youth Phys Dev Ctr, Cardiff Sch Sport & Hlth Sci, Cardiff, Wales
Oliver, Jon L.
Ford, Kevin R.
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High Point Univ, Congdon Sch Hlth Sci, Dept Phys Therapy, High Point, NC USACardiff Metropolitan Univ, Youth Phys Dev Ctr, Cardiff Sch Sport & Hlth Sci, Cardiff, Wales
Ford, Kevin R.
Hewett, Tim E.
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Hewett Global Consulting, Rochester, MN USA
Rocky Mt Consortium Sports Res, Edwards, CO USACardiff Metropolitan Univ, Youth Phys Dev Ctr, Cardiff Sch Sport & Hlth Sci, Cardiff, Wales
Hewett, Tim E.
Myer, Gregory D.
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Emory Sport Performance & Res Ctr, Flowery Branch, GA USA
Emory Sports Med Ctr, Atlanta, GA USA
Emory Univ, Sch Med, Dept Orthopaed, Atlanta, GA USA
Micheli Ctr Sports Injury Prevent, Waltham, MA USACardiff Metropolitan Univ, Youth Phys Dev Ctr, Cardiff Sch Sport & Hlth Sci, Cardiff, Wales