Literature DB >> 22543471

Changing sagittal plane body position during single-leg landings influences the risk of non-contact anterior cruciate ligament injury.

Yohei Shimokochi1, Jatin P Ambegaonkar, Eric G Meyer, Sae Yong Lee, Sandra J Shultz.   

Abstract

PURPOSE: To examine the effects of different sagittal plane body positions during single-leg landings on biomechanics and muscle activation parameters associated with risk for anterior cruciate ligament (ACL) injury.
METHODS: Twenty participants performed single-leg drop landings onto a force plate using the following landing styles: self-selected, leaning forward (LFL) and upright (URL). Lower extremity and trunk 3D biomechanics and lower extremity muscle activities were recorded using motion analysis and surface electromyography, respectively. Differences in landing styles were examined using 2-way Repeated-measures ANOVAs (sex × landing conditions) followed by Bonferroni pairwise comparisons.
RESULTS: Participants demonstrated greater peak vertical ground reaction force, greater peak knee extensor moment, lesser plantar flexion, lesser or no hip extensor moments, and lesser medial and lateral gastrocnemius and lateral quadriceps muscle activations during URL than during LFL. These modifications of lower extremity biomechanics across landing conditions were similar between men and women.
CONCLUSIONS: Leaning forward while landing appears to protect the ACL by increasing the shock absorption capacity and knee flexion angles and decreasing anterior shear force due to the knee joint compression force and quadriceps muscle activation. Conversely, landing upright appears to be ACL harmful by increasing the post-impact force of landing and quadriceps muscle activity while decreasing knee flexion angles, all of which lead to a greater tibial anterior shear force and ACL loading. ACL injury prevention programmes should include exercise regimens to improve sagittal plane body position control during landing motions.

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Year:  2012        PMID: 22543471     DOI: 10.1007/s00167-012-2011-9

Source DB:  PubMed          Journal:  Knee Surg Sports Traumatol Arthrosc        ISSN: 0942-2056            Impact factor:   4.342


  33 in total

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2.  Model prediction of anterior cruciate ligament force during drop-landings.

Authors:  Mary A Pflum; Kevin B Shelburne; Michael R Torry; Michael J Decker; Marcus G Pandy
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3.  Individuality and reproducibility in high-speed motion of volleyball spike jumps by phase-matching and averaging.

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4.  Deficits in neuromuscular control of the trunk predict knee injury risk: a prospective biomechanical-epidemiologic study.

Authors:  Bohdanna T Zazulak; Timothy E Hewett; N Peter Reeves; Barry Goldberg; Jacek Cholewicki
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5.  Dynamic sagittal plane trunk control during anterior cruciate ligament injury.

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6.  Ankle biomechanics during four landing techniques.

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7.  The biomechanics of anterior cruciate ligament rehabilitation and reconstruction.

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Review 8.  Mechanisms of noncontact anterior cruciate ligament injury.

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9.  Effects of transverse and frontal plane knee laxity on hip and knee neuromechanics during drop landings.

Authors:  Sandra J Shultz; Randy J Schmitz
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10.  Mechanisms of anterior cruciate ligament injury.

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  30 in total

1.  Effects of fatigue on lower limb, pelvis and trunk kinematics and lower limb muscle activity during single-leg landing after anterior cruciate ligament reconstruction.

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Review 2.  Neuromuscular training to target deficits associated with second anterior cruciate ligament injury.

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Journal:  J Orthop Sports Phys Ther       Date:  2013-10-11       Impact factor: 4.751

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4.  Differences in ACL biomechanical risk factors between field hockey and lacrosse female athletes.

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Journal:  Knee Surg Sports Traumatol Arthrosc       Date:  2014-02-05       Impact factor: 4.342

Review 5.  What is normal? Female lower limb kinematic profiles during athletic tasks used to examine anterior cruciate ligament injury risk: a systematic review.

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6.  Video Feedback and 2-Dimensional Landing Kinematics in Elite Female Handball Players.

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7.  Changing Sagittal-Plane Landing Styles to Modulate Impact and Tibiofemoral Force Magnitude and Directions Relative to the Tibia.

Authors:  Yohei Shimokochi; Jatin P Ambegaonkar; Eric G Meyer
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8.  Influence of hip restriction on noncontact ACL rerupture.

Authors:  João L Ellera Gomes; Humberto M Palma; Roberto Ruthner
Journal:  Knee Surg Sports Traumatol Arthrosc       Date:  2012-12-27       Impact factor: 4.342

9.  EFFECT OF RESTRICTED HIP FLEXOR MUSCLE LENGTH ON HIP EXTENSOR MUSCLE ACTIVITY AND LOWER EXTREMITY BIOMECHANICS IN COLLEGE-AGED FEMALE SOCCER PLAYERS.

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10.  Gait modification strategies of trunk over left stance phase in patients with right anterior cruciate ligament deficiency.

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