Biomechanical effects of medial-lateral tibial tunnel placement in posterior cruciate ligament reconstruction

scientific article published in January 2003

Biomechanical effects of medial-lateral tibial tunnel placement in posterior cruciate ligament reconstruction is …
instance of (P31):
scholarly articleQ13442814

External links are
P356DOI10.1016/S0736-0266(02)00104-3
P698PubMed publication ID12507596
P5875ResearchGate publication ID10967930

P2093author name stringCharles R Young
David R McAllister
Keith L Markolf
Justin McWilliams
Daniel A Oakes
P2860cites workTesting for isometry during reconstruction of the posterior cruciate ligament. Anatomic and biomechanical considerationsQ71841863
Posterior cruciate ligament allograft reconstruction with and without a ligament augmentation deviceQ72767982
Posterior cruciate ligament tibial attachment anatomy and radiographic landmarks for tibial tunnel placement in PCL reconstructionQ72903801
Isolated posterior cruciate ligament reconstruction. Long-term resultsQ72917634
Biomechanical analysis of a double-bundle posterior cruciate ligament reconstructionQ73633558
Evaluation and treatment of posterior cruciate ligament injuriesQ74623362
Anatomy of the posterior cruciate ligament. A reviewQ38613097
A biomechanical comparison of tibial inlay and tibial tunnel posterior cruciate ligament reconstruction techniques: graft pretension and knee laxityQ43829782
Biomechanical consequences of replacement of the anterior cruciate ligament with a patellar ligament allograft. Part I: insertion of the graft and anterior-posterior testing.Q46228133
A biomechanical study of replacement of the posterior cruciate ligament with a graft. Part 1: Isometry, pre-tension of the graft, and anterior-posterior laxity.Q46840187
Force displacement characteristics of the posterior cruciate ligamentQ68082907
Posterior cruciate ligament reconstruction. An in vitro study of femoral and tibial graft placementQ71580695
The mechanics of the knee joint in relation to normal walkingQ71704687
P433issue1
P921main subjectbiomechanicsQ193378
P304page(s)177-182
P577publication date2003-01-01
P1433published inJournal of Orthopaedic ResearchQ6295700
P1476titleBiomechanical effects of medial-lateral tibial tunnel placement in posterior cruciate ligament reconstruction
P478volume21

Reverse relations

cites work (P2860)
Q37796050An Analysis of the Posterior Cruciate Ligament Isometric Position Using an In Vivo 3-Dimensional Computed Tomography–Based Knee Joint Model
Q58115257Anatomic is better than isometric posterior cruciate ligament tunnel placement based upon in vivo simulation
Q79830108Arthroscopic posterior cruciate ligament reconstruction with hamstring tendon autograft: results with a minimum 4-year follow-up
Q87422675Attachments of separate small bundles of human posterior cruciate ligament: an anatomic study
Q57022470Biomechanical considerations are crucial for the success of tendon and meniscus allograft integration-a systematic review
Q51099936Biomechanics of changes in ACL and PCL material properties or prestrains in flexion under muscle force-implications in ligament reconstruction.
Q53512524Clinical comparison of anteromedial versus anterolateral tibial tunnel direction for transtibial posterior cruciate ligament reconstruction: 2 to 8 years' follow-up.
Q37779431Clinical results of arthroscopic single-bundle transtibial posterior cruciate ligament reconstruction: a systematic review
Q51357192Effect of changes in cruciate ligaments pretensions on knee joint laxity and ligament forces.
Q45732537Femoral fixation of hamstring grafts in posterior cruciate ligament reconstruction: biomechanical evaluation of different fixation techniques: is there an acute angle effect?
Q34655094Minimally invasive reconstruction of lateral tibial plateau fractures using the jail technique: a biomechanical study
Q92249517Modified tibial tunnel placement for single-bundle posterior cruciate ligament reconstruction reduces the "Killer Turn" in a biomechanical model
Q51828057On the coupling between anterior and posterior cruciate ligaments, and knee joint response under anterior femoral drawer in flexion: a finite element study.
Q52559497The effect of posterior knee capsulotomy on posterior tibial translation during posterior cruciate ligament tibial inlay reconstruction.
Q26852674Tibial tunnel placement in posterior cruciate ligament reconstruction: a systematic review

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