10 |
Tanaka MJ, Jones KJ, Gargiulo AM, et al. Passive anterior tibial subluxation in anterior cruciate ligament-deficient knees [J]. Am J Sports Med, 2013, 41(10): 2347-2352.
|
11 |
Minami TK, Muneta T, Sekiya I, et al. Lateral meniscus posterior root tear contributes to anterolateral rotational instability and meniscus extrusion in anterior cruciate ligament-injured patients [J]. Knee Surg Sports Traumatol Arthrosc, 2018, 26(4): 1174-1181.
|
12 |
Zhuo HW, Pan L, Xu YK, et al. Functional, magnetic resonance imaging, and Second-Look arthroscopic outcomes after pullout repair for avulsion tears of the posterior lateral meniscus root [J]. Am J Sports Med, 2021, 49(2): 450-458.
|
13 |
Saper MG, Popovich JMJ, Fajardo R, et al. The relationship between tibial Tubercle-Trochlear groove distance and noncontact anterior cruciate ligament injuries in adolescents and young adults [J]. Arthroscopy, 2016, 32(1): 63-68.
|
14 |
Griffith JF, Leung CTP, Lee JCH, et al. Positional Mr imaging of normal and injured knees [J]. Eur Radiol, 2023, 33(3): 1553-1564.
|
15 |
Pearse EO, Craig DM. Partial meniscectomy in the presence of severe osteoarthritis does not hasten the symptomatic progression of osteoarthritis [J]. Arthroscopy, 2003, 19(9): 963-968.
|
16 |
Moatshe G, Chahla J, Slette E, et al. Posterior meniscal root injuries: A comprehensive review from anatomy to surgical treatment [J]. Acta Orthop, 2016, 87(5): 452-458.
|
17 |
Tang X, Marshall B, Wang JH, et al. Partial meniscectomy does not affect the biomechanics of anterior cruciate ligament reconstructed knee with a lateral posterior meniscal root tear [J]. Knee Surg Sports Traumatol Arthrosc, 2020, 28(11): 3481-3487.
|
18 |
Lyman S, Oh LS, Reinhardt KR, et al. Surgical decision making for arthroscopic partial meniscectomy in patients aged over 40 years [J]. Arthroscopy, 2012, 28(4): 492-501.e1.
|
19 |
Ahn JH, Lee YS, Yoo JC, et al. Results of arthroscopic all-inside repair for lateral meniscus root tear in patients undergoing concomitant anterior cruciate ligament Reconstruction [J]. Arthroscopy, 2010, 26(1): 67-75.
|
20 |
Jeon YS, Alsomali K, Yang SW, et al. Posterior Horn lateral meniscal oblique radial tear in acute anterior cruciate ligament Reconstruction incidence and outcomes after All-Inside repair: clinical and Second-Look arthroscopic evaluation [J]. Am J Sports Med, 2022, 50(14): 3796-3804.
|
21 |
Allaire R, Muriuki M, Gilbertson L, et al. Biomechanical Consequences of a tear of the posterior root of the medial meniscus. Similar to total meniscectomy [J]. J Bone Joint Surg Am, 2008, 90(9): 1922-1931.
|
22 |
Li MY, Li Z, Li ZZ, et al. Transtibial pull-out repair of lateral meniscus posterior root is beneficial for graft maturation after anterior cruciate ligament Reconstruction: a retrospective study [J]. BMC Musculoskelet Disord, 2022, 23(1): 445.
|
23 |
LaPrade CM, Jansson KS, Dornan G, et al. Altered tibiofemoral contact mechanics due to lateral meniscus posterior Horn root avulsions and radial tears can be restored with in situ pull-out suture repairs [J]. J Bone Joint Surg Am, 2014, 96(6): 471-479.
|
24 |
Leyes M, Flores-Lozano C, de Rus I, et al. Repair of the posterior lateral meniscal root tear: suture anchor fixation through the Outside-In anterior cruciate ligament Reconstruction femoral tunnel [J]. Arthrosc Tech, 2021, 10(1): e151-e158.
|
25 |
Cuéllar A, Cuéllar A, Sánchez A, et al. Posterior lateral meniscus root reattachment with suture anchors: an arthroscopic technique [J]. Arthrosc Tech, 2017, 6(5): e1919-e1925.
|
26 |
Familiari F, Palco M, Russo R, et al. Arthroscopic repair of posterior root tears of the lateral meniscus with All-Suture anchor [J]. Arthrosc Tech, 2022, 11(5): e781-e787.
|
27 |
Jung YH, Choi NH, Oh JS, et al. All-inside repair for a root tear of the medial meniscus using a suture anchor [J]. Am J Sports Med, 2012, 40(6): 1406-1411.
|
28 |
Okazaki Y, Furumatsu T, Kamatsuki Y, et al. Transtibial pullout repair of the lateral meniscus posterior root tear combined with anterior cruciate ligament Reconstruction reduces lateral meniscus extrusion: A retrospective study [J]. Orthop Traumatol Surg Res, 2020, 106(3): 469-473.
|
29 |
Zheng T, Song GY, Li Y, et al. Clinical, radiographic, and arthroscopic outcomes of surgical repair for radial and avulsed lesions on the lateral meniscus posterior root during ACL Reconstruction: a systematic review [J]. Orthop J Sports Med, 2021, 9(3): 2325967121989678.
|
30 |
Shekhar A, Tapasvi S, Williams A. Outcomes of combined lateral meniscus posterior root repair and anterior cruciate ligament Reconstruction [J]. Orthop J Sports Med, 2022, 10(3): 23259671221083318.
|
31 |
Chen HN, Yang K, Dong QR, et al. Assessment of tibial rotation and meniscal movement using kinematic magnetic resonance imaging [J]. J Orthop Surg Res, 2014, 9: 65.
|
1 |
West RV, Kim JG, Armfield D, et al. Lateral meniscal root tears associated with anterior cruciate ligament injury: Classification and management (ss-70) [J]. Arthroscopy, 2004, 20: e32-e33.
|
2 |
Zheng T, Song GY, Feng H, et al. Lateral meniscus posterior root lesion influences anterior tibial subluxation of the lateral compartment in extension after anterior cruciate ligament injury [J]. Am J Sports Med, 2020, 48(4): 838-846.
|
3 |
Bhatia S, LaPrade CM, Ellman MB, et al. Meniscal root tears: significance, diagnosis, and treatment [J]. Am J Sports Med, 2014, 42(12): 3016-3030.
|
4 |
Shybut TB, Vega CE, Haddad J, et al. Effect of lateral meniscal root tear on the stability of the anterior cruciate ligament-deficient knee [J]. Am J Sports Med, 2015, 43(4): 905-911.
|
5 |
Tang X, Marshall B, Wang JH, et al. Lateral meniscal posterior root repair with anterior cruciate ligament Reconstruction better restores knee stability [J]. Am J Sports Med, 2019, 47(1): 59-65.
|
6 |
Novaretti JV, Herbst E, Chan CK, et al. Small lateral meniscus tears propagate over time in ACL intact and deficient knees [J]. Knee Surg Sports Traumatol Arthrosc, 2021, 29(9): 3068-3076.
|
7 |
Hoshino Y, Hiroshima Y, Miyaji N, et al. Unrepaired lateral meniscus tears Lead to remaining pivot-shift in ACL-reconstructed knees [J]. Knee Surg Sports Traumatol Arthrosc, 2020, 28(11): 3504-3510.
|
8 |
Polat AE, Polat B, Gürpınar T, et al. Tibial tubercle-trochlear groove (TT-TG) distance is a reliable measurement of increased rotational laxity in the knee with an anterior cruciate ligament injury [J]. Knee, 2020, 27(5): 1601-1607.
|
9 |
Vassalou EE, Klontzas ME, Kouvidis GK, et al. Rotational knee laxity in anterior cruciate ligament deficiency: an additional secondary sign on MRI [J]. AJR Am J Roentgenol, 2016, 206(1): 151-154.
|