索引超出了数组界限。
[1] Schillhammer CK, Reid JB 3rd, Rister J, et al. Arthroscopy up to date: anterior cruciate ligament anatomy[J]. Arthroscopy, 2016, 32(1):209-212.
[2] Hunter DJ, Niu J, Zhang Y, et al. Change in cartilage morphometry: a sample of the progression cohort of the Osteoarthritis Initiative[J]. Ann Rheum Dis, 2009, 68(3):349-356.
[3] Mihata LC, Beutler AI, Boden BP. Comparing the incidence of anterior cruciate ligament injury in collegiate lacrosse, soccer, and basketball players: implications for anterior cruciate ligament mechanism and prevention[J]. Am J Sports Med, 2006, 34(6):899-904.
[4] Alentorn-Geli E, Pelfort X, Mingo F, et al. An evaluation of the association between radiographic intercondylar notch narrowing and anterior cruciate ligament injury in men: the notch angle is a better parameter than notch width[J]. Arthroscopy, 2015, 31(10):2004-2013.
[5] Anderson AF, Dome DC, Gautam S, et al. Correlation of anthropometric measurements, strength, anterior cruciate ligament size, and intercondylar notch characteristics to sex differences in anterior cruciate ligament tear rates[J]. Am J Sports Med, 2001, 29(1):58-66.
[6] Smith HC, Vacek P, Johnson RJ, et al. Risk factors for anterior cruciate ligament injury: a review of the literature. Part 1: neuromuscular and anatomic risk[J]. Sports Health, 2012, 4(1):69-78.
[7] Keays SL, Keays R, Newcombe PA. Femoral intercondylar notch width size: a comparison between siblings with and without anterior cruciate ligament injuries[J]. Knee Surg Sports Traumatol Arthrosc, 2016, 24(3):672-679.
[8] Olsen OE, Myklebust G, Engebretsen L, et al. Injury mechanisms for anterior cruciate ligament injuries in team handball: a systematic video analysis[J]. Am J Sports Med, 2004, 32(4):1002-1012.
[9] Petersen W, Tillmann B. Structure and vascularization of the cruciate ligaments of the human knee joint[J]. Anat Embryol(Berl), 1999, 200(3):325-334.
[10] Anderson AF, Lipscomb AB, Liudahl KJ, et al. Analysis of the intercondylar notch by computed tomography[J]. Am J Sports Med, 1987, 15(6):547-552.
[11] Simon RA, Everhart JS, Nagaraja HN, et al. A case-control study of anterior cruciate ligament volume, tibial plateau slopes and intercondylar notch dimensions in ACL-injured knees[J]. J Biomech, 2010, 43(9):1702-1707.
[12] Anderson AF, Anderson CN, Gorman TM, et al. Radiographic measurements of the intercondylar notch: are they accurate?[J]. Arthroscopy, 2007, 23(3):261-268.
[13] Ireland ML, Ballantyne BT, Little K, et al. A radiographic analysis of the relationship between the size and shape of the intercondylar notch and anterior cruciate ligament injury[J]. Knee Surg Sports Traumatol Arthrosc, 2001, 9(4):200-205.
[14] Hoteya K, Kato Y, Motojima S, et al. Association between intercondylar notch narrowing and bilateral anterior cruciate ligament injuries in athletes[J]. Arch Orthop Trauma Surg, 2011, 131(3):371-376.
[15] Sturnick DR, Vacek PM, DeSarno MJ, et al. Combined anatomic factors predicting risk of anterior cruciate ligament injury for males and females[J]. Am J Sports Med, 2015, 43(4):839-847.
[16] Shelbourne KD, Facibene WA, Hunt JJ. Radiographic and intraoperative intercondylar notch width measurements in men and women with unilateral and bilateral anterior cruciate ligament tears[J]. Knee Surg Sports Traumatol Arthrosc, 1997, 5(4):229-233.
[17] Whitney DC, Sturnick DR, Vacek PM, et al. Relationship between the risk of suffering a first-time noncontact ACL injury and geometry of the femoral notch and ACL: a prospective cohort study with a nested case-control analysis[J]. Am J Sports Med, 2014, 42(8):1796-1805.
[18] Zeng C, Gao SG, Wei J, et al. The influence of the intercondylar notch dimensions on injury of the anterior cruciate ligament: a meta-analysis[J]. Knee Surg Sports Traumatol Arthrosc, 2013, 21(4):804-815.
[19] Hernigou P, Garabedian JM. Intercondylar notch width and the risk for anterior cruciate ligament rupture in the osteoarthritic knee: evaluation by plain radiography and CT scan[J]. Knee, 2002, 9(4):313-316.
[20] Lombardo S, Sethi PM, Starkey C. Intercondylar notch stenosis is not a risk factor for anterior cruciate ligament tears in professional male basketball players: an 11-year prospective study[J]. Am J Sports Med, 2005, 33(1):29-34.
[21] Mohamed EE, Useh U, Mtshali BF. Q-angle, Pelvic width, and Intercondylar notch width as predictors of knee injuries in women soccer players in South Africa[J]. Afr Health Sci, 2012, 12(2):174-180.
[22] Shaw KA, Dunoski B, Mardis N, et al. Knee morphometric risk factors for acute anterior cruciate ligament injury in skeletally immature patients[J]. J Child Orthop, 2015, 9(2):161-168.
[23] Shelbourne KD, Gray T, Benner RW. Intercondylar notch width measurement differences between African American and white men and women with intact anterior cruciate ligament knees[J]. Am J Sports Med, 2007, 35(8):1304-1307.
[24] Park JS, Nam DC, Kim DH, et al. Measurement of knee morphometrics using MRI: a comparative study between ACL-injured and non-injured knees[J]. Knee Surg Relat Res, 2012, 24(3):180-185.
[25] Charlton WP, St-John TA, Ciccotti MG, et al. Differences in femoral notch anatomy between men and women: a magnetic resonance imaging study[J]. Am J Sports Med, 2002, 30(3):329-333.
[26] Sonnery-Cottet B, Archbold P, Cucurulo T, et al. The influence of the tibial slope and the size of the intercondylar notch on rupture of the anterior cruciate ligament[J]. J Bone Joint Surg Br, 2011, 93(11):1475-1478.
[27] Ouyang X, Wang YH, Wang J, et al. MRI measurement on intercondylar notch after anterior cruciate ligament rupture and its correlation[J]. Exp Ther Med, 2016, 11(4):1275-1278.
[28] Alentorn-Geli E, Myer GD, Silvers HJ, et al. Prevention of non-contact anterior cruciate ligament injuries in soccer players. Part 1: mechanisms of injury and underlying risk factors[J]. Knee Surg Sports Traumatol Arthrosc, 2009, 17(7):705-729.
[29] Freychet B, Lakhal W, Daggett M, et al. Intercondylar notch dysplasia in open-physis anterior cruciate ligament injuries: a case-control study[J]. Orthop Traumatol Surg Res, 2016, 102(2):203-206.
[30] Domzalski M, Grzelak P, Gabos P. Risk factors for Anterior Cruciate Ligament injury in skeletally immature patients: analysis of intercondylar notch width using Magnetic Resonance Imaging[J]. Int Orthop, 2010, 34(5):703-707.
[31] Stein V, Li L, Guermazi A, et al. The relation of femoral notch stenosis to ACL tears in persons with knee osteoarthritis[J]. Osteoarthritis Cartilage, 2010, 18(2):192-199.
[32] Al-Saeed O, Brown M, Athyal R, et al. Association of femoral intercondylar notch morphology, width index and the risk of anterior cruciate ligament injury[J]. Knee Surg Sports Traumatol Arthrosc, 2013, 21(3):678-682.
[33] Geng B, Wang J, Ma JL, et al. Narrow intercondylar notch and anterior cruciate ligament injury in female nonathletes with knee osteoarthritis aged 41-65 years in plateau region[J]. Chin Med J(Engl), 2016, 129(21):2540-2545.
[34] Chen C, Ma Y, Geng B, et al. Intercondylar notch stenosis of knee osteoarthritis and relationship between stenosis and osteoarthritis complicated with anterior cruciate ligament injury: a study in MRI[J]. Medicine(Baltimore), 2016, 95(17):e3439.
[35] Zeng C, Lei GH. Comment on “Association of femoral intercondylar notch morphology, width index and the risk of anterior cruciate ligament injury”[J]. Knee Surg Sports Traumatol Arthrosc, 2015, 23(4):1263-1264.
[36] Estes K, Cheruvu B, Lawless M, et al. Risk assessment for anterior cruciate ligament injury[J]. Arch Orthop Trauma Surg, 2015, 135(10):1437-1443.
[37] van Eck CF, Martins CA, Kopf S, et al. Correlation between the 2-dimensional notch width and the 3-dimensional notch volume: a cadaveric study[J]. Arthroscopy, 2011, 27(2):207-212.
[38] Swami VG, Mabee M, Hui C, et al. Three-dimensional intercondylar notch volumes in a skeletally immature pediatric population: a magnetic resonance imaging-based anatomic comparison of knees with torn and intact anterior cruciate ligaments[J]. Arthroscopy, 2013, 29(12):1954-1962.
[39] Wratten CJ, Tetsworth K, Hohmann E. Three-dimensional femoral notch volume in anterior cruciate ligament-deficient versus anterior cruciate ligament-intact patients: a matched case-control study with inter-gender comparison[J]. Arthroscopy, 2015, 31(6):1117-1122.
[40] van Eck CF, Kopf S, van Dijk CN, et al. Comparison of 3-dimensional notch volume between subjects with and subjects without anterior cruciate ligament rupture[J]. Arthroscopy, 2011, 27(9):1235-1241.
[41] van Eck CF, Martins CA, Vyas SM, et al. Femoral intercondylar notch shape and dimensions in ACL-injured patients[J]. Knee Surg Sports Traumatol Arthrosc, 2010, 18(9):1257-1262.
[42] Chaudhari AM, Zelman EA, Flanigan DC, et al. Anterior cruciate ligament-injured subjects have smaller anterior cruciate ligaments than matched controls: a magnetic resonance imaging study[J]. Am J Sports Med, 2009, 37(7):1282-1287.
[43] Chandrashekar N, Slauterbeck J, Hashemi J. Sex-based differences in the anthropometric characteristics of the anterior cruciate ligament and its relation to intercondylar notch geometry: a cadaveric study[J]. Am J Sports Med, 2005, 33(10):1492-1498.
[44] Hendrix ST, Barrett AM, Chrea B, et al. Relationship between posterior-inferior tibial slope and bilateral noncontact ACL injury[J]. Orthopedics, 2017, 40(1):e136-e140.
[45] Weinberg DS, Williamson DF, Gebhart JJ, et al. Differences in medial and lateral posterior tibial slope[J]. Am J Sports Med, 2017, 45(1):106-113.
[46] Waiwaiole A, Gurbani A, Motamedi K, et al. Relationship of ACL injury and posterior tibial slope with patient age, sex, and race[J]. Orthop J Sports Med, 2016, 4(11):2325967116672852.
[47] Hudek R, Fuchs B, Regenfelder F, et al. Is noncontact ACL injury associated with the posterior tibial and meniscal slope?[J]. Clin Orthop Relat Res, 2011, 469(8):2377-2384.