There are many aspects of cutting movements that can limit performance, however, the implementation of lateral banking may reduce some of these limitations. Banking could provide a protective mechanism, placing the foot and ankle in orientations that keep them out of dangerous positions. This study sought to determine the effect of two banking angles on the kinematics and kinetics of the lower extremity during two athletic maneuvers. Kinematic and kinetic data were collected on 10 recreational athletes performing v-cuts and side shuffle movements on different banked surfaces. (0, 10, 20). Each sample surface was rigidly attached to the force platform. Joint moments were calculated and compared between conditions using a repeated measures ANOVA. Banking had a pronounced effect on the ankle joint. As banking increased, the amount of joint loading in the transverse and frontal planes decreased likely leading to a reduction in injury risk. Also an increase in knee joint loading in the frontal plane was seen during the 20 bank during the v-cut. Conversely loading in the sagittal plane at the ankle joint increased with banking and coupled with a reorientation of the ground reaction vector may facilitate a performance increase. The current study indicates that the 10 bank may be the optimal bank, in that it decreases ankle joint loading, as well as increases specific performance variables while not increasing frontal plane knee joint loading. If banking could be incorporated in footwear it may be able to provide a protective mechanism for athletes. (C) 2013 Elsevier B.V. All rights reserved.
机构:
Postgraduate Medical Institute, Faculty of Medical Science, Anglia Ruskin University, Chelmsford
Discipline of Exercise and Sport Science, Faculty of Health Science, The University of Sydney, SydneyPostgraduate Medical Institute, Faculty of Medical Science, Anglia Ruskin University, Chelmsford
Greene A.J.
Stuelcken M.C.
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School of Health and Sport Sciences, Faculty of Science, Health, Education and Engineering, University of the Sunshine Coast, QLDPostgraduate Medical Institute, Faculty of Medical Science, Anglia Ruskin University, Chelmsford
Stuelcken M.C.
Smith R.M.
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Discipline of Exercise and Sport Science, Faculty of Health Science, The University of Sydney, SydneyPostgraduate Medical Institute, Faculty of Medical Science, Anglia Ruskin University, Chelmsford
Smith R.M.
Vanwanseele B.
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Department of Kinesiology, KU Leuven, Leuven
Chair of Health Innovation and Technology, Fontys University of Applied Sciences, EindhovenPostgraduate Medical Institute, Faculty of Medical Science, Anglia Ruskin University, Chelmsford
机构:
Footwear Biomechanics Team, Footwear Industrial Promotion Centre, Busan, Korea, Republic ofFootwear Biomechanics Team, Footwear Industrial Promotion Centre, Busan, Korea, Republic of
Park, Seung-Bum
Lee, Tae-Yong
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Division of Bioengineering, National University of Singapore, Kent Ridge, SingaporeFootwear Biomechanics Team, Footwear Industrial Promotion Centre, Busan, Korea, Republic of
Lee, Tae-Yong
Lee, Kyung-Deuk
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Footwear Biomechanics Team, Footwear Industrial Promotion Centre, Busan, Korea, Republic ofFootwear Biomechanics Team, Footwear Industrial Promotion Centre, Busan, Korea, Republic of
Lee, Kyung-Deuk
Kim, Dae-Woong
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Footwear Biomechanics Team, Footwear Industrial Promotion Centre, Busan, Korea, Republic ofFootwear Biomechanics Team, Footwear Industrial Promotion Centre, Busan, Korea, Republic of
Kim, Dae-Woong
Yoo, Jung-Hyeon
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Footwear Biomechanics Team, Footwear Industrial Promotion Centre, Busan, Korea, Republic ofFootwear Biomechanics Team, Footwear Industrial Promotion Centre, Busan, Korea, Republic of
Yoo, Jung-Hyeon
Kim, Kyung-Hun
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Footwear Biomechanics Team, Footwear Industrial Promotion Centre, Busan, Korea, Republic ofFootwear Biomechanics Team, Footwear Industrial Promotion Centre, Busan, Korea, Republic of
机构:
Univ E London, Sch Hlth Sport & Biosci, London E15 4LZ, EnglandUniv Cent Lancashire, Div Sport Exercise & Nutr Sci, Preston PR1 2HE, Lancs, England