Preoperative and Postoperative Magnetic Resonance Imaging of the Cruciate Ligaments

Matsumoto H. Suda Y. Otani T. et al.

Roles of the anterior cruciate ligament and the medial collateral ligament in preventing valgus instability.

J Orthop Sci. 6: 28-32Steckel H. Starman J.S. Baums M.H. et al.

Anatomy of the anterior cruciate ligament double bundle structure: A macroscopic evaluation.

Scand J Med Sci Sports. 17: 387-392Sanders T.L. Maradit Kremers H. Bryan A.J. et al.

Incidence of anterior cruciate ligament tears and reconstruction: A 21-year population-based study.

Am J Sports Med. 44: 1502-1507Phelan N. Rowland P. Galvin R. et al.

A systematic review and meta-analysis of the diagnostic accuracy of MRI for suspected ACL and meniscal tears of the knee.

Knee Surg Sports Traumatol Arthrosc. 24: 1525-1539Buckley S.L. Barrack R.L. Alexander A.H.

The natural history of conservatively treated partial anterior cruciate ligament tears.

Am J Sports Med. 17: 221-225van Dyck P. de Smet E. Veryser J. et al.

Partial tear of the anterior cruciate ligament of the knee: injury patterns on MR imaging.

Knee Surg Sports Traumatol Arthrosc. 20: 256-261Remer E.M. Fitzgerald S.W. Friedman H. et al.

Anterior cruciate ligament injury: MR imaging diagnosis and patterns of Injury1.

Radiographics. 12: 901-915Barry K.P. Mesgarzadeh M. Triolo J. et al.

Accuracy of MRI patterns in evaluating anterior cruciate ligament tears.

Skeletal Radiol. 25: 365-370Robertson P.L. Schweitzer M.E. Bartolozzi A.R. et al.

Anterior cruciate ligament tears: evaluation of multiple signs with MR imaging.

Radiology. 193: 829-834Bergin D. Morrison W.B. Carrino J.A. et al.

Anterior cruciate ligament ganglia and mucoid degeneration: coexistence and clinical correlation.

AJR Am J Roentgenol. 182 (): 1283-1287Vahey T.N. Hunt J.E. Shelbourne K.D.

Anterior translocation of the tibia at MR imaging: a secondary sign of anterior cruciate ligament tear.

Radiology. 187: 817-819Gentili A. Seeger L.L. Yao L. et al.

Anterior cruciate ligament tear: indirect signs at MR imaging.

Radiology. 193: 835-840Vahey T.N. Broome D.R. Kayes K.J. et al.

Acute and chronic tears of the anterior cruciate ligament: Differential features at MR imaging.

Radiology. 181: 251-253

Normal ligament structure and physiology.

J Musculoskelet Neuronal Interact. 4: 199-201Balazs G.C. Greditzer H.G. Wang D. et al.

Ramp lesions of the medial meniscus in patients undergoing primary and revision ACL reconstruction: prevalence and risk factors.

Orthop J Sports Med. 7https://doi.org/10.1177/2325967119843509Stephen J.M. Halewood C. Kittl C. et al.

Posteromedial meniscocapsular lesions increase tibiofemoral joint laxity with anterior cruciate ligament deficiency, and their repair reduces laxity.

Am J Sports Med. 44: 400-408Chahla J. Dean C.S. Moatshe G. et al.

Meniscal ramp lesions: anatomy, incidence, diagnosis, and treatment.

Orthop J Sports Med. 4https://doi.org/10.1177/2325967116657815Bumberger A. Koller U. Hofbauer M. et al.

Ramp lesions are frequently missed in ACL-deficient knees and should be repaired in case of instability.

Knee Surg Sports Traumatol Arthrosc. 28: 840-854Greif D.N. Baraga M.G. Rizzo M.G. et al.

MRI appearance of the different meniscal ramp lesion types, with clinical and arthroscopic correlation.

Skeletal Radiol. 49: 677-689

Magnetic resonance imaging of the knee.

Sports Health. 5: 78-107Yeo Y. Ahn J.M. Kim H. et al.

MR evaluation of the meniscal ramp lesion in patients with anterior cruciate ligament tear.

Skeletal Radiol. 47: 1683-1689Nguyen J.C. Bram J.T. Lawrence J.T.R. et al.

MRI criteria for meniscal ramp lesions of the knee in children with anterior cruciate ligament tears.

AJR Am J Roentgenol. 216: 791-798Sonnery-Cottet B. Daggett M. Fayard J.M. et al.

Anterolateral Ligament Expert Group consensus paper on the management of internal rotation and instability of the anterior cruciate ligament - deficient knee.

J Orthop Traumatol. 18: 91-106Saithna A. Daggett M. Helito C.P. et al.

Clinical results of combined ACL and anterolateral ligament reconstruction: a narrative review from the SANTI Study Group.

J Knee Surg. 5https://doi.org/10.1055/s-0040-1701220

Anterolateral ligament of the knee: anatomy, function, imaging, and treatment.

Am J Sports Med. 46: 217-223Monaco E. Helito C.P. Redler A. et al.

Correlation between magnetic resonance imaging and surgical exploration of the anterolateral structures of the acute anterior cruciate ligament–injured knee.

Am J Sports Med. 47: 1186-1193Han A.X. Tan T.J. Nguyen T. et al.

Timing of magnetic resonance imaging affects the accuracy and interobserver agreement of anterolateral ligament tears detection in anterior cruciate ligament deficient knees.

Knee Surg Relat Res. 32: 64Van Dyck P. Lambrecht V. De Smet E. et al.

Imaging of the postoperative anterior cruciate ligament: emphasis on new surgical and imaging methods.

in: Seminars in musculoskeletal radiology. vol. 20. Thieme Medical Publishers, Inc., : 33-42https://doi.org/10.1055/s-0036-1579678Järvelä S. Kiekara T. Suomalainen P. et al.

Double-bundle versus single-bundle anterior cruciate ligament reconstruction: a Prospective Randomized Study with 10-Year Results.

Am J Sports Med. 45: 2578-2585Satora W. Królikowska A. Czamara A. et al.

Synthetic grafts in the treatment of ruptured anterior cruciate ligament of the knee joint.

Polim Med. 47: 55-59Mouarbes D. Menetrey J. Marot V. et al.

Anterior cruciate ligament reconstruction: a systematic review and meta-analysis of outcomes for quadriceps tendon autograft versus bone-patellar tendon-bone and hamstring-tendon autografts.

Am J Sports Med. 47: 3531-3540Papalia R. Franceschi F. D'Adamio S. et al.

Hamstring tendon regeneration after harvest for anterior cruciate ligament reconstruction: a systematic review.

Arthroscopy. 31: 1169-1183Simmons R. Howell S.M. Hull M.L.

Effect of the angle of the femoral and tibial tunnels in the coronal plane and incremental excision of the posterior cruciate ligament on tension of an anterior cruciate ligament graft: an in vitro study.

J Bone Joint Surg Am. 85: 1018-1029Perkins C.A. Willimon S.C.

Pediatric Anterior Cruciate Ligament Reconstruction.

Orthop Clin North Am. 51: 55-63Svensson M. Kartus J. Ejerhed L. et al.

Does the patellar tendon normalize after harvesting its central third?: a prospective long-term MRI study.

Am J Sports Med. 32: 34-38Horton L.K. Jacobson J.A. Lin J. et al.

MR imaging of anterior cruciate ligament reconstruction graft.

Am J Roentgenology. 175: 1091-1097Howell S.M. Berns G.S. Farley T.E.

Unimpinged and impinged anterior cruciate ligament grafts: MR signal intensity measurements.

Radiology. 179: 639-643Simpfendorfer C. Miniaci A. Subhas N. et al.

Pseudocyclops: two cases of ACL graft partial tears mimicking cyclops lesions on MRI.

Skeletal Radiol. 44: 1169-1173Groves C. Chandramohan M. Chew C. et al.

Use of CT in the management of anterior cruciate ligament revision surgery.

Clin Radiol. 68: e552-e559Parkar AP Alcalá-Galiano A.

Rupture of the Posterior Cruciate Ligament: Preoperative and Postoperative Assessment.

in: Seminars in Musculoskeletal Radiology. vol. 20. Thieme Medical Publishers, Inc., : 43-51https://doi.org/10.1055/s-0036-1579711Pache S. Aman Z.S. Kennedy M. et al.

Current concepts review posterior cruciate ligament: current concepts review.

Arch Bone Jt Surg. 6 () (): 8-18

Posterior cruciate ligament injuries in trauma patients: Part II.

Arthroscopy. 11: 526-529DePhillipo N.N. Cinque M.E. Godin J.A. et al.

Posterior tibial translation measurements on magnetic resonance imaging improve diagnostic sensitivity for chronic posterior cruciate ligament injuries and graft tears.

Am J Sports Med. 46: 341-347Ross G. Driscoll J. McDevitt E. et al.

Arthroscopic posterior cruciate ligament repair for acute femoral “peel off” tears.

Arthroscopy. 19: 431-435Rodriguez Jr., W. Vinson E.N. Helms C.A. et al.

MRI appearance of posterior cruciate ligament tears.

AJR Am J Roentgenol. 191: 1031Akisue T. Kurosaka M. Yoshiya S. et al.

Evaluation of healing of the injured posterior cruciate ligament: Analysis of instability and magnetic resonance imaging.

Arthroscopy. 17: 264-269Jung Y.B. Jung H.J. Yang J.J.

Characterization of spontaneous healing of chronic posterior cruciate ligament injury: analysis of instability and magnetic resonance imaging.

J Magn Reson Imaging. 27: 1336-1340Degnan A.J. Maldjian C. Adam R.J. et al.

Passive posterior tibial subluxation on routine knee MRI as a secondary sign of PCL tear.

Radiol Res Pract. 2014: 1-6Boynton M.D. Tietjens B.R.

Long-term followup of the untreated isolated posterior cruciate ligament-deficient knee.

Am J Sports Med. 24: 306-310Strobel M.J. Weiler A. Schulz M.S. et al.

Arthroscopic evaluation of articular cartilage lesions in posterior-cruciate-ligament-deficient knees.

Arthroscopy. 19: 262-268Wijdicks C.A. Kennedy N.I. Goldsmith M.T. et al.

Kinematic analysis of the posterior cruciate ligament, part 2: a comparison of anatomic single- versus double-bundle reconstruction.

Am J Sports Med. 41: 2839-2848Bergfeld J.A. McAllister D.R. Parker R.D. et al.

A biomechanical comparison of posterior cruciate ligament reconstruction techniques.

Am J Sports Med. 29: 129-136

Basic principles for surgical reconstruction of the PCL in chronic posterior knee instability.

Knee Surg Sports Traumatol Arthrosc. 11: 289-296Alcalá-Galiano A. Baeva M. Ismael M. et al.

Imaging of posterior cruciate ligament (PCL) reconstruction: normal postsurgical appearance and complications.

Skeletal Radiol. 43: 1659-1668

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