Estimates of Cruciate Ligament Forces Resulting from Anterior Tibial Translation During Simulated Flexion Motion of the Human Knee
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Publisher
Springer Nature Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-19-2188-9_80
Reference20 articles.
1. Kondo E, Merican A, Yasuda K, Amis A (2014) Biomechanical analysis of knee laxity with isolated anteromedial or posterolateral bundle deficient anterior cruciate ligament. J Arthroscopic Relat Surg 30(3):335–343
2. Lord BR, El-Daou H, Zdanowicz U, Smigielski R, Amis A (2019) The role of fibers within the tibial attachment of the anterior cruciate ligament in restraining tibial displacement. Arthroscopy J Arthroscopic Relat Surg 35 (7):2101–2111
3. Imran A (2021) Cruciate ligament behavior analyzed with modelling and simulation of the human knee. In: Manik G, Kalia S, Sahoo SK, Sharma TK, Verma OP (eds) Advances in mechanical engineering. Lecture notes in mechanical engineering. pp 427–432. Springer, Singapore. https://doi.org/10.1007/978-981-16-0942-8_41
4. Joseph AM, Collins CL, Henke NM, Yard EE, Fields SK, Comstock RD (2013) A multisport epidemiologic comparison of anterior cruciate ligament injuries in high school athletics. J Athl Train 48(6):810–817
5. Barber-Westin S, Noyes FR (2020) One in 5 Athletes sustain reinjury upon return to high-risk sports after ACL reconstruction: a systematic review in 1239 Athletes younger than 20 years. Sports Health 12(6):587–597
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