Relationships Between Tibiofemoral Contact Forces and Cartilage Morphology at 2 to 3 Years After Single-Bundle Hamstring Anterior Cruciate Ligament Reconstruction and in Healthy Knees

scientific article published on 31 August 2017

Relationships Between Tibiofemoral Contact Forces and Cartilage Morphology at 2 to 3 Years After Single-Bundle Hamstring Anterior Cruciate Ligament Reconstruction and in Healthy Knees is …
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scholarly articleQ13442814

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P356DOI10.1177/2325967117722506
P932PMC publication ID5582666
P698PubMed publication ID28894756

P50authorChristopher J VertulloQ57790995
Flavia M CicuttiniQ64867086
David G. LloydQ38325166
Luca ModeneseQ57039261
David John SaxbyQ57790977
P2093author name stringKim L Bennell
Julian A Feller
Xinyang Wang
Pauline Gerus
Adam L Bryant
Tim Wrigley
David G. Lloyd
Kim L. Bennell
Jason M Konrath
Tim Whitehead
Karine Fortin
Luca Modenese
Price Gallie
Christopher J. Vertullo
Julian A. Feller
Adam L. Bryant
David John Saxby
Jason M. Konrath
Young People With Old Knees Research Team
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Cartilage morphology at 2-3 years following anterior cruciate ligament reconstruction with or without concomitant meniscal pathologyQ38949375
Moderate running exercise augments glycosaminoglycans and thickness of articular cartilage in the knee joint of young beagle dogsQ39629595
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Estimation of muscle forces and joint moments using a forward-inverse dynamics modelQ40372874
Tibiofemoral Contact Forces in the Anterior Cruciate Ligament-Reconstructed KneeQ40537333
Tibiofemoral contact forces during walking, running and sidesteppingQ40661675
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P433issue8
P921main subjectanterior cruciate ligamentQ611127
anterior cruciate ligament reconstructionQ4771338
P304page(s)2325967117722506
P577publication date2017-08-31
P1433published inOrthopaedic journal of sports medicineQ27725188
P1476titleRelationships Between Tibiofemoral Contact Forces and Cartilage Morphology at 2 to 3 Years After Single-Bundle Hamstring Anterior Cruciate Ligament Reconstruction and in Healthy Knees
P478volume5

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Q89459883The Capacity of Generic Musculoskeletal Simulations to Predict Knee Joint Loading Using the CAMS-Knee Datasetscites workP2860

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