Three Morphological Risk Factors for Predicting Isolated Meniscal Bucket-handle Tear

Markes, A. R., Hodax, J. D., & Ma, C. B. (2020). Meniscus form and function. Clinics in Sports Medicine, 39(1), 1–12.

Article  PubMed  Google Scholar 

Nguyen, J. C., De Smet, A. A., Graf, B. K., & Rosas, H. G. (2014). MR imaging–based diagnosis and classification of meniscal tears. Radiographics, 34(4), 981–999.

Article  PubMed  Google Scholar 

Muckenhirn, K. J., Kruckeberg, B. M., Cinque, M. E., Chahla, J., DePhillipo, N. N., Godin, J. A., & LaPrade, R. F. (2017). Arthroscopic inside-out repair of a meniscus bucket-handle tear augmented with bone marrow aspirate concentrate. Arthroscopy Techniques, 6(4), e1221–e1227.

Article  PubMed  PubMed Central  Google Scholar 

Thaunat, M., Fournier, G., O’Loughlin, P., Kouevidjin, B. T., Clowez, G., Borella, M., Fayard, J. M., & Sonnery-Cottet, B. (2020). Clinical outcome and failure analysis of medial meniscus bucket-handle tear repair: a series of 96 patients with a minimum 2 year follow-up. Archives of Orthopaedic and Trauma Surgery, 140, 1649–1654.

Article  PubMed  Google Scholar 

Kramer, D. E., Kalish, L. A., Martin, D. J., Yen, Y. M., Kocher, M. S., Micheli, L. J., & Heyworth, B. E. (2019). Outcomes after the operative treatment of bucket-handle meniscal tears in children and adolescents. Orthopaedic Journal of Sports Medicine, 7(1), 2325967118820305.

Article  PubMed  PubMed Central  Google Scholar 

Feeley, B. T., & Lau, B. C. (2018). Biomechanics and clinical outcomes of partial meniscectomy. Journal of American Academy of Orthopaedic Surgeons, 26(24), 853–863.

Article  Google Scholar 

Adams, B. G., Houston, M. N., & Cameron, K. L. (2021). The epidemiology of meniscus injury. Sports Medicine and Arthroscopy Review, 29(3), e24–e33.

Article  PubMed  Google Scholar 

Beynnon, B. D., Hall, J. S., Sturnick, D. R., DeSarno, M. J., Gardner-Morse, M., Tourville, T. W., Smith, H. C., Slauterbeck, J. R., Shultz, S. J., Johnson, R. J., & Vacek, P. M. (2014). Increased slope of the lateral tibial plateau subchondral bone is associated with greater risk of noncontact ACL injury in females but not in males: a prospective cohort study with a nested, matched case-control analysis. The American journal of sports medicine, 42(5), 1039–1048.

Article  PubMed  PubMed Central  Google Scholar 

Chung, J. Y., Song, H. K., Jung, M. K., Oh, H. T., Kim, J. H., Yoon, J. S., & Min, B. H. (2016). Larger medial femoral to tibial condylar dimension may trigger posterior root tear of medial meniscus. Knee Surgery, Sports Traumatology, Arthroscopy, 24, 1448–1454.

Article  PubMed  Google Scholar 

Li, W., Liang, J., Zeng, F., Lin, B., Liu, C., Huang, S., & Liu, Q. (2021). Anatomic characteristics of the knee influence the risk of suffering an isolated meniscal injury and the risk factors differ between women and men. Knee Surgery, Sports Traumatology, Arthroscopy, 29, 3751–3762.

Article  PubMed  Google Scholar 

Khan, N., McMahon, P., & Obaid, H. (2014). Bony morphology of the knee and non-traumatic meniscal tears: Is there a role for meniscal impingement? Skeletal Radiology, 43, 955–962.

Article  PubMed  Google Scholar 

Loures, F. B., Carrara, R. J., Góes, R. F. D. A., Barretto, J. M., Kinder, A., Gameiro, V. S., & Marchiori, E. (2017). Anthropometric study of the knee in patients with osteoarthritis: Intraoperative measurement versus magnetic resonance imaging. Radiologia Brasileira, 50, 170–175.

Article  PubMed  PubMed Central  Google Scholar 

Shen, X., Xiao, J., Yang, Y., Liu, T., Chen, S., Gao, Z., & Zuo, J. (2019). Multivariable analysis of anatomic risk factors for anterior cruciate ligament injury in active individuals. Archives of Orthopaedic and Trauma Surgery, 139, 1277–1285.

Article  PubMed  Google Scholar 

Van Eck, C. F., Martins, C. A., Kopf, S., Lertwanich, P., Fu, F. H., & Tashman, S. (2011). Correlation between the 2-dimensional notch width and the 3-dimensional notch volume: A cadaveric study. Arthroscopy, 27(2), 207–212.

Article  PubMed  Google Scholar 

van Eck, C. F., Martins, C. A., Lorenz, S. G., Fu, F. H., & Smolinski, P. (2010). Assessment of correlation between knee notch width index and the three-dimensional notch volume. Knee Surgery, Sports Traumatology, Arthroscopy, 18, 1239–1244.

Article  PubMed  PubMed Central  Google Scholar 

Pinskerova, V., Nemec, K., & Landor, I. (2014). Gender differences in the morphology of the trochlea and the distal femur. Knee Surgery, Sports Traumatology, Arthroscopy, 22, 2342–2349.

Article  CAS  PubMed  Google Scholar 

Hashemi, J., Chandrashekar, N., Gill, B., Beynnon, B. D., Slauterbeck, J. R., Schutt, R. C., Jr., & Dabezies, E. (2008). The geometry of the tibial plateau and its influence on the biomechanics of the tibiofemoral joint. Journal of Bone and Joint Surgery. American Volume, 90(12), 2724.

PubMed  PubMed Central  Google Scholar 

Shen, L., Jin, Z. G., Dong, Q. R., & Li, L. B. (2018). Anatomical risk factors of anterior cruciate ligament injury. Chinese Medical Journal (Engl), 131(24), 2960–2967.

Article  Google Scholar 

Hudek, R., Schmutz, S., Regenfelder, F., Fuchs, B., & Koch, P. P. (2009). Novel measurement technique of the tibial slope on conventional MRI. Clinical Orthopaedics and Related Research, 467, 2066–2072.

Article  PubMed  PubMed Central  Google Scholar 

Gültekin, M. Z., Dinçel, Y. M., Keskin, Z., Arslan, S., & Yıldırım, A. (2023). Morphometric risk factors effects on anterior cruciate ligament injury. Jt Dis Relat Surg, 34(1), 130.

Article  PubMed  Google Scholar 

Fernández-Jaén, T., López-Alcorocho, J. M., Rodriguez-Iñigo, E., Castellán, F., Hernández, J. C., & Guillén-García, P. (2015). The importance of the intercondylar notch in anterior cruciate ligament tears. Orthopaedic Journal of Sports Medicine, 3(8), 2325967115597882.

Article  PubMed  PubMed Central  Google Scholar 

Cinotti, G., Sessa, P., Ripani, F. R., Postacchini, R., Masciangelo, R., & Giannicola, G. (2012). Correlation between posterior offset of femoral condyles and sagittal slope of the tibial plateau. Journal of Anatomy, 221(5), 452–458.

Article  CAS  PubMed  PubMed Central  Google Scholar 

Pike, A. N., Patzkowski, J. C., & Bottoni, C. R. (2019). Meniscal and chondral pathology associated with anterior cruciate ligament injuries. Journal of American Academy of Orthopaedic Surgeons, 27(3), 75–84.

Article  Google Scholar 

Dehn, G., Kieser, D., Maxwell, R., Hooper, G., Frampton, C., & Coates, M. (2019). Does the size of the femoral condyle contribute to the development of osteoarthritis of the knee? A retrospective randomised MRI study. J Arthritis, 8, 1–6.

Google Scholar 

Masouros, S. D., McDermott, I. D., Amis, A. A., & Bull, A. M. J. (2008). Biomechanics of the meniscus-meniscal ligament construct of the knee. Knee Surgery, Sports Traumatology, Arthroscopy, 16, 1121–1132.

Article  CAS  PubMed  Google Scholar 

Röhrich, S., Kainberger, F., & Hirtler, L. (2018). Evaluation of age-dependent morphometrics of the meniscofemoral ligaments in reference to the posterior cruciate ligament in routine MRI. European Radiology, 28, 2369–2379.

Article  PubMed  PubMed Central  Google Scholar 

Alves, L. F. T. G., Alves, T. D. P., Barros, A. S., Ferreira, F. A. L., & Gutierres, M. A. P. (2022). Meniscal bone angle is a strong predictor of anterior cruciate ligament injury. Arthrosc Sports Med Rehabil, 4(6), e1993–e2003.

Article  Google Scholar 

Getgood, A. M., Lording, T., Corbo, G., & Burkhart, T. A. (2016). The synergistic role of the lateral meniscus posterior root and the ALL in providing anterolateral rotational stability of the knee. Orthopaedic Journal of Sports Medicine, 4(7_suppl4), 2325967116S00144.

Article  PubMed Central  Google Scholar 

Schwenke, M., Singh, M., & Chow, B. (2020). Anterior Cruciate ligament and meniscal tears: A multi-modality review. App Radiol, 49, 42–49.

Article  Google Scholar 

Fox, A. J., Bedi, A., & Rodeo, S. A. (2012). The basic science of human knee menisci: Structure, composition, and function. Sports health, 4(4), 340–351.

Article  PubMed  PubMed Central  Google Scholar 

Allen, C. R., Wong, E. K., Livesay, G. A., Sakane, M., Fu, F. H., & Woo, S. L. Y. (2000). Importance of the medial meniscus in the anterior cruciate ligament-deficient knee. Journal of Orthopaedic Research, 18(1), 109–115.

Article  CAS  PubMed  Google Scholar 

Cetik, O., Cirpar, M., Eksioglu, F., & Uslu, M. (2006). Simultaneous bucket handle tear of both medial and lateral menisci of a knee with chronic anterior cruciate ligament deficiency. Knee Surgery, Sports Traumatology, Arthroscopy, 14, 356–359.

Article  PubMed  Google Scholar 

Venkataraman, S., Ethiraj, P., Shanthappa, A. H., & Vellingiri, K. (2022). Association of meniscus injuries in patients with anterior cruciate ligament injuries. Cureus, 14(6), e25878.

PubMed  PubMed Central  Google Scholar 

Krych, A. J., LaPrade, M. D., Cook, C. S., Leland, D., Keyt, L. K., Stuart, M. J., & Smith, P. A. (2020). Lateral meniscal oblique radial tears are common with ACL injury: A classification system based on arthroscopic tear patterns in 600 consecutive patients. Orthopaedic Journal of Sports Medicine, 8(5), 2325967120921737.

Article  PubMed  PubMed Central  Google Scholar 

Gee, S. M., Tennent, D. J., Cameron, K. L., & Posner, M. A. (2020). The burden of meniscus injury in young and physically active populations. Clinics in Sports Medicine, 39(1), 13–27.

Article  PubMed  Google Scholar 

Petushek, E. J., Sugimoto, D., Stoolmiller, M., Smith, G., & Myer, G. D. (2019). Evidence-based best-practice guidelines for preventing anterior cruciate ligament injuries in young female athletes: A systematic review and meta-analysis. American Journal of Sports Medicine, 47(7), 1744–1753.

Article  PubMed  Google Scholar 

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