Skip to main content
Top
Published in: Surgical and Radiologic Anatomy 10/2020

01-10-2020 | Knee Osteoarthritis | Review

Correlation between notch width index assessed via magnetic resonance imaging and risk of anterior cruciate ligament injury: an updated meta-analysis

Authors: Zheng Li, Changshu Li, Li Li, Ping Wang

Published in: Surgical and Radiologic Anatomy | Issue 10/2020

Login to get access

Abstract

Purpose

To analyze the correlation between notch width index (NWI) and/or femoral intercondylar notch width (NW) assessed by magnetic resonance imaging (MRI) and risk of anterior cruciate ligament (ACL) injury.

Methods

We searched the PubMed, Embase, China National Knowledge Infrastructure and Wanfang databases for literature reporting a correlation between ACL injury and NWI and/or NW. Subgroup analyses were stratified by ethnicity, sex and control source. The weighted mean difference (WMD) and 95% confidence intervals (95% CIs) were calculated for the ACL injury cases and controls using random- or fixed-effects models. Begg’s test and sensitivity analyses were applied to assess publication bias and stability of the results, respectively.

Results

Twenty-eight eligible studies were finally enrolled. The NW was significantly narrowerin the ACL injury cases than in the control cases (pooled WMD, − 1.88 [95% CI, − 2.43 to − 1.32]). The results were similar when stratified by ethnicity and sex. Similarly, the NWI was lower in ACL injury cases than in the controls. Asian populations presented similar results when stratified by ethnicity, among the self-control group when stratified by control source, and among men when stratified by sex. No publication bias was identified; however, the sensitivity analysis suggested unstable results in the NWI subgroup analysis.

Conclusions

The current meta-analysis evidenced that the NW assessed via MRI was significantly smaller in ACL injury cases than in the controls. The NWI was lower in ACL injury cases among men. Prevention strategies for ACL injury could be applied for people with intercondylar notch stenosis.
Literature
1.
go back to reference Acevedo RJ, Rivera-Vega A, Miranda G, Micheo W (2014) Anterior cruciate ligament injury: identification of risk factors and prevention strategies. Current Sports Med Rep 13:186–191 Acevedo RJ, Rivera-Vega A, Miranda G, Micheo W (2014) Anterior cruciate ligament injury: identification of risk factors and prevention strategies. Current Sports Med Rep 13:186–191
2.
go back to reference Alentorn-Geli E, Myer GD, Silvers HJ, Samitier G, Romero D, Lazaro-Haro C, Cugat R (2009) Prevention of non-contact anterior cruciate ligament injuries in soccer players. Part 1: mechanisms of injury and underlying risk factors. Knee Surg Sports Traumatol Arthrosc 17:705–729PubMed Alentorn-Geli E, Myer GD, Silvers HJ, Samitier G, Romero D, Lazaro-Haro C, Cugat R (2009) Prevention of non-contact anterior cruciate ligament injuries in soccer players. Part 1: mechanisms of injury and underlying risk factors. Knee Surg Sports Traumatol Arthrosc 17:705–729PubMed
3.
go back to reference Alentorn-Geli E, Pelfort X, Mingo F, Lizano-Diez X, Leal-Blanquet J, Torres-Claramunt R, Hinarejos P, Puig-Verdie L, Monllau JC (2015) 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. Arthrosc J Arthrosc Relat Surg 31:2004–2013 Alentorn-Geli E, Pelfort X, Mingo F, Lizano-Diez X, Leal-Blanquet J, Torres-Claramunt R, Hinarejos P, Puig-Verdie L, Monllau JC (2015) 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. Arthrosc J Arthrosc Relat Surg 31:2004–2013
4.
go back to reference Anderson AF, Anderson CN, Gorman TM, Cross MB, Spindler KP (2007) Radiographic measurements of the intercondylar notch: are they accurate? Arthrosc J Arthrosc Relat Surg 23:261–268 Anderson AF, Anderson CN, Gorman TM, Cross MB, Spindler KP (2007) Radiographic measurements of the intercondylar notch: are they accurate? Arthrosc J Arthrosc Relat Surg 23:261–268
5.
go back to reference Bouras T, Fennema P, Burke S, Bosman H (2018) Stenotic intercondylar notch type is correlated with anterior cruciate ligament injury in female patients using magnetic resonance imaging. Knee Surg Sports Traumatol Arthrosc 26:1252–1257PubMed Bouras T, Fennema P, Burke S, Bosman H (2018) Stenotic intercondylar notch type is correlated with anterior cruciate ligament injury in female patients using magnetic resonance imaging. Knee Surg Sports Traumatol Arthrosc 26:1252–1257PubMed
6.
go back to reference Chen C, Ma Y, Geng B, Tan X, Zhang B, Jayswal CK, Khan MS, Meng H, Ding N, Jiang J, Wu M, Wang J, Xia Y (2016) Intercondylar notch stenosis of knee osteoarthritis and relationship between stenosis and osteoarthritis complicated with anterior cruciate ligament injury: a study in MRI. Medicine 95:e3439PubMedPubMedCentral Chen C, Ma Y, Geng B, Tan X, Zhang B, Jayswal CK, Khan MS, Meng H, Ding N, Jiang J, Wu M, Wang J, Xia Y (2016) Intercondylar notch stenosis of knee osteoarthritis and relationship between stenosis and osteoarthritis complicated with anterior cruciate ligament injury: a study in MRI. Medicine 95:e3439PubMedPubMedCentral
7.
go back to reference Dienst M, Schneider G, Altmeyer K, Voelkering K, Georg T, Kramann B, Kohn D (2007) Correlation of intercondylar notch cross sections to the ACL size: a high resolution MR tomographic in vivo analysis. Arch Orthop Trauma Surg 127:253–260PubMed Dienst M, Schneider G, Altmeyer K, Voelkering K, Georg T, Kramann B, Kohn D (2007) Correlation of intercondylar notch cross sections to the ACL size: a high resolution MR tomographic in vivo analysis. Arch Orthop Trauma Surg 127:253–260PubMed
8.
go back to reference Domzalski M, Grzelak P, Gabos P (2010) Risk factors for anterior cruciate ligament injury in skeletally immature patients: analysis of intercondylar notch width using magnetic resonance imaging. Int Orthop 34:703–707PubMedPubMedCentral Domzalski M, Grzelak P, Gabos P (2010) Risk factors for anterior cruciate ligament injury in skeletally immature patients: analysis of intercondylar notch width using magnetic resonance imaging. Int Orthop 34:703–707PubMedPubMedCentral
9.
go back to reference Estes K, Cheruvu B, Lawless M, Laughlin R, Goswami T (2015) Risk assessment for anterior cruciate ligament injury. Arch Orthop Trauma Surg 135:1437–1443PubMed Estes K, Cheruvu B, Lawless M, Laughlin R, Goswami T (2015) Risk assessment for anterior cruciate ligament injury. Arch Orthop Trauma Surg 135:1437–1443PubMed
10.
go back to reference Evans KN, Kilcoyne KG, Dickens JF, Rue JP, Giuliani J, Gwinn D, Wilckens JH (2012) Predisposing risk factors for non-contact ACL injuries in military subjects. Knee Surg Sports Traumatol Arthrosc 20:1554–1559PubMed Evans KN, Kilcoyne KG, Dickens JF, Rue JP, Giuliani J, Gwinn D, Wilckens JH (2012) Predisposing risk factors for non-contact ACL injuries in military subjects. Knee Surg Sports Traumatol Arthrosc 20:1554–1559PubMed
11.
go back to reference Everhart JS, Flanigan DC, Chaudhari AM (2014) Anteromedial ridging of the femoral intercondylar notch: an anatomic study of 170 archival skeletal specimens. Knee Surg Sports Traumatol Arthrosc 22:80–87PubMed Everhart JS, Flanigan DC, Chaudhari AM (2014) Anteromedial ridging of the femoral intercondylar notch: an anatomic study of 170 archival skeletal specimens. Knee Surg Sports Traumatol Arthrosc 22:80–87PubMed
12.
go back to reference Everhart JS, Flanigan DC, Simon RA, Chaudhari AM (2010) Association of noncontact anterior cruciate ligament injury with presence and thickness of a bony ridge on the anteromedial aspect of the femoral intercondylar notch. Am J Sports Med 38:1667–1673PubMed Everhart JS, Flanigan DC, Simon RA, Chaudhari AM (2010) Association of noncontact anterior cruciate ligament injury with presence and thickness of a bony ridge on the anteromedial aspect of the femoral intercondylar notch. Am J Sports Med 38:1667–1673PubMed
13.
go back to reference Fernandez-Jaen T, Lopez-Alcorocho JM, Rodriguez-Inigo E, Castellan F, Hernandez JC, Guillen-Garcia P (2015) The importance of the intercondylar notch in anterior cruciate ligament tears. Orthop J Sports Med 3:2325967115597882PubMedPubMedCentral Fernandez-Jaen T, Lopez-Alcorocho JM, Rodriguez-Inigo E, Castellan F, Hernandez JC, Guillen-Garcia P (2015) The importance of the intercondylar notch in anterior cruciate ligament tears. Orthop J Sports Med 3:2325967115597882PubMedPubMedCentral
14.
go back to reference Feucht MJ, Mauro CS, Brucker PU, Imhoff AB, Hinterwimmer S (2013) The role of the tibial slope in sustaining and treating anterior cruciate ligament injuries. Knee Surg Sports Traumatol Arthrosc 21:134–145PubMed Feucht MJ, Mauro CS, Brucker PU, Imhoff AB, Hinterwimmer S (2013) The role of the tibial slope in sustaining and treating anterior cruciate ligament injuries. Knee Surg Sports Traumatol Arthrosc 21:134–145PubMed
15.
go back to reference Fung DT, Hendrix RW, Koh JL, Zhang LQ (2007) ACL impingement prediction based on MRI scans of individual knees. Clin Orthop Relat Res 460:210–218PubMed Fung DT, Hendrix RW, Koh JL, Zhang LQ (2007) ACL impingement prediction based on MRI scans of individual knees. Clin Orthop Relat Res 460:210–218PubMed
16.
go back to reference Geng B, Wang J, Ma JL, Zhang B, Jiang J, Tan XY, Xia YY (2016) Narrow intercondylar notch and anterior cruciate ligament injury in female nonathletes with knee osteoarthritis aged 41–65 years in plateau region. Chin Med J 129:2540–2545PubMedPubMedCentral Geng B, Wang J, Ma JL, Zhang B, Jiang J, Tan XY, Xia YY (2016) Narrow intercondylar notch and anterior cruciate ligament injury in female nonathletes with knee osteoarthritis aged 41–65 years in plateau region. Chin Med J 129:2540–2545PubMedPubMedCentral
17.
go back to reference Gormeli CA, Gormeli G, Ozturk BY, Ozdemir Z, Kahraman AS, Yildirim O, Gozukarab H (2015) The effect of the intercondylar notch width index on anterior cruciate ligament injuries: a study on groups with unilateral and bilateral ACL injury. Acta Orthop Belg 81:240–244PubMed Gormeli CA, Gormeli G, Ozturk BY, Ozdemir Z, Kahraman AS, Yildirim O, Gozukarab H (2015) The effect of the intercondylar notch width index on anterior cruciate ligament injuries: a study on groups with unilateral and bilateral ACL injury. Acta Orthop Belg 81:240–244PubMed
18.
go back to reference Hoteya K, Kato Y, Motojima S, Ingham SJ, Horaguchi T, Saito A, Tokuhashi Y (2011) Association between intercondylar notch narrowing and bilateral anterior cruciate ligament injuries in athletes. Arch Orthop Trauma Surg 131:371–376PubMed Hoteya K, Kato Y, Motojima S, Ingham SJ, Horaguchi T, Saito A, Tokuhashi Y (2011) Association between intercondylar notch narrowing and bilateral anterior cruciate ligament injuries in athletes. Arch Orthop Trauma Surg 131:371–376PubMed
19.
go back to reference Huang JM, Hu WJ, Li DC, Zhang Z, Wang HJ, Li YH, Cao JG, Zhao Q, Chen X (2016) Association of anterior cruciate ligament degeneration with medical meniscuss tear and intercondylar notch impingement. Chinese J Rep Reconst Surg 30:1478–1482 Huang JM, Hu WJ, Li DC, Zhang Z, Wang HJ, Li YH, Cao JG, Zhao Q, Chen X (2016) Association of anterior cruciate ligament degeneration with medical meniscuss tear and intercondylar notch impingement. Chinese J Rep Reconst Surg 30:1478–1482
20.
go back to reference Huang M, Li Y, Guo N, Liao C, Yu B (2019) Relationship between intercondylar notch angle and anterior cruciate ligament injury: a magnetic resonance imaging analysis. J Inter Med Res 47:1602–1609 Huang M, Li Y, Guo N, Liao C, Yu B (2019) Relationship between intercondylar notch angle and anterior cruciate ligament injury: a magnetic resonance imaging analysis. J Inter Med Res 47:1602–1609
21.
go back to reference Ireland ML, Ballantyne BT, Little K, McClay IS (2001) A radiographic analysis of the relationship between the size and shape of the intercondylar notch and anterior cruciate ligament injury. Knee Surg Sports Traumatol Arthrosc 9:200–205PubMed Ireland ML, Ballantyne BT, Little K, McClay IS (2001) A radiographic analysis of the relationship between the size and shape of the intercondylar notch and anterior cruciate ligament injury. Knee Surg Sports Traumatol Arthrosc 9:200–205PubMed
22.
go back to reference K S, Chamala T, Kumar A (2019) Comparison of anatomical risk factors for noncontact anterior cruciate ligament injury using magnetic resonance imaging. J Clinic Orthop Traumatol 10:143–148 K S, Chamala T, Kumar A (2019) Comparison of anatomical risk factors for noncontact anterior cruciate ligament injury using magnetic resonance imaging. J Clinic Orthop Traumatol 10:143–148
23.
go back to reference LaPrade RF, Burnett QM (1994) Femoral intercondylar notch stenosis and correlation to anterior cruciate ligament: injuries a prospective study. Am J Sports Med 22:198–202PubMed LaPrade RF, Burnett QM (1994) Femoral intercondylar notch stenosis and correlation to anterior cruciate ligament: injuries a prospective study. Am J Sports Med 22:198–202PubMed
24.
go back to reference Li H, Wu ZY, Wang DL (2017) Relationship between femoral intercondylar fossa, posterior tibial slope and anterior cruciate ligament injury. Chin J Bone Joint Injury 32:585–588 Li H, Wu ZY, Wang DL (2017) Relationship between femoral intercondylar fossa, posterior tibial slope and anterior cruciate ligament injury. Chin J Bone Joint Injury 32:585–588
25.
go back to reference Li H, Zeng C, Wang Y, Wei J, Yang T, Cui Y, Xie D, Liu H, Lei GH (2018) Association between magnetic resonance imaging-measured intercondylar notch dimensions and anterior cruciate ligament injury: a meta-analysis. Arthrosc J Arthrosc Relat Surg 34:889–900 Li H, Zeng C, Wang Y, Wei J, Yang T, Cui Y, Xie D, Liu H, Lei GH (2018) Association between magnetic resonance imaging-measured intercondylar notch dimensions and anterior cruciate ligament injury: a meta-analysis. Arthrosc J Arthrosc Relat Surg 34:889–900
26.
go back to reference Li YL (2012) The intercondylar notch characteristics research on the signs of MRI and anterior cruciate ligament rupture. Master's thesis, Taishan Medical University, China Li YL (2012) The intercondylar notch characteristics research on the signs of MRI and anterior cruciate ligament rupture. Master's thesis, Taishan Medical University, China
27.
go back to reference Liao Z, Cui H (2015) MRI measurement and its correlation between the femoral condyle and the femoral condyle after the rupture of the anterior vruciate ligament. Heilongjiang Med J 28:1218–1230 Liao Z, Cui H (2015) MRI measurement and its correlation between the femoral condyle and the femoral condyle after the rupture of the anterior vruciate ligament. Heilongjiang Med J 28:1218–1230
28.
go back to reference Lombardo S, Sethi PM, Starkey C (2005) Intercondylar notch stenosis is not a risk factor for anterior cruciate ligament tears in professional male basketball players: an 11-year prospective study. Am J Sports Med 33:29–34PubMed Lombardo S, Sethi PM, Starkey C (2005) Intercondylar notch stenosis is not a risk factor for anterior cruciate ligament tears in professional male basketball players: an 11-year prospective study. Am J Sports Med 33:29–34PubMed
29.
go back to reference Miljko M, Grle M, Kozul S, Kolobaric M, Djak I (2012) Intercondylar notch width and inner angle of lateral femoral condyle as the risk factors for anterior cruciate ligament injury in female handball players in Herzegovina. Coll Antropol 36:195–200PubMed Miljko M, Grle M, Kozul S, Kolobaric M, Djak I (2012) Intercondylar notch width and inner angle of lateral femoral condyle as the risk factors for anterior cruciate ligament injury in female handball players in Herzegovina. Coll Antropol 36:195–200PubMed
30.
go back to reference Muneta T, Takakuda K, Yamamoto H (1997) Intercondylar notch width and its relation to the configuration and cross-sectional area of the anterior cruciate ligament. A cadaveric knee study. Am J Sports Med 25:69–72PubMed Muneta T, Takakuda K, Yamamoto H (1997) Intercondylar notch width and its relation to the configuration and cross-sectional area of the anterior cruciate ligament. A cadaveric knee study. Am J Sports Med 25:69–72PubMed
31.
go back to reference Nacey NC, Geeslin MG, Miller GW, Pierce JL (2017) Magnetic resonance imaging of the knee: an overview and update of conventional and state of the art imaging. J Magn Reson Imag 45:1257–1275 Nacey NC, Geeslin MG, Miller GW, Pierce JL (2017) Magnetic resonance imaging of the knee: an overview and update of conventional and state of the art imaging. J Magn Reson Imag 45:1257–1275
32.
go back to reference Ouyang X, Wang YH, Wang J, Hong SD, Xin F, Wang L, Yang XW, Wang JR, Wang LM, Wei BO, Wang Q, Cui WD, Fu XL (2016) MRI measurement on intercondylar notch after anterior cruciate ligament rupture and its correlation. Exp Ther Med 11:1275–1278PubMedPubMedCentral Ouyang X, Wang YH, Wang J, Hong SD, Xin F, Wang L, Yang XW, Wang JR, Wang LM, Wei BO, Wang Q, Cui WD, Fu XL (2016) MRI measurement on intercondylar notch after anterior cruciate ligament rupture and its correlation. Exp Ther Med 11:1275–1278PubMedPubMedCentral
33.
go back to reference Park JS, Nam DC, Kim DH, Kim HK, Hwang SC (2012) Measurement of knee morphometrics using MRI: a comparative study between acl-injured and non-injured knees. Knee Surg Relat Res 24:180–185PubMedPubMedCentral Park JS, Nam DC, Kim DH, Kim HK, Hwang SC (2012) Measurement of knee morphometrics using MRI: a comparative study between acl-injured and non-injured knees. Knee Surg Relat Res 24:180–185PubMedPubMedCentral
34.
go back to reference Parkar AP, Adriaensen ME, Fischer-Bredenbeck C, Inderhaug E, Strand T, Assmus J, Solheim E (2015) Measurements of tunnel placements after anterior cruciate ligament reconstruction–a comparison between CT, radiographs and MRI. Knee 22:574–579PubMed Parkar AP, Adriaensen ME, Fischer-Bredenbeck C, Inderhaug E, Strand T, Assmus J, Solheim E (2015) Measurements of tunnel placements after anterior cruciate ligament reconstruction–a comparison between CT, radiographs and MRI. Knee 22:574–579PubMed
35.
go back to reference Pekala L, Podgorski M, Shukla A, Winnicka M, Biernacka K, Grzelak P (2019) Do variants of the intercondylar notch predispose children to the injury of the anterior cruciate ligament? Clin Anat 32:706–709PubMed Pekala L, Podgorski M, Shukla A, Winnicka M, Biernacka K, Grzelak P (2019) Do variants of the intercondylar notch predispose children to the injury of the anterior cruciate ligament? Clin Anat 32:706–709PubMed
36.
go back to reference Rahnemai-Azar AA, Yaseen Z, van Eck CF, Irrgang JJ, Fu FH, Musahl V (2016) Increased lateral tibial plateau slope predisposes male college football players to anterior cruciate ligament injury. J Bone Joint Surg Am 98:1001–1006PubMed Rahnemai-Azar AA, Yaseen Z, van Eck CF, Irrgang JJ, Fu FH, Musahl V (2016) Increased lateral tibial plateau slope predisposes male college football players to anterior cruciate ligament injury. J Bone Joint Surg Am 98:1001–1006PubMed
37.
go back to reference Shelbourne KD, Davis TJ, Klootwyk TE (1998) The relationship between intercondylar notch width of the femur and the incidence of anterior cruciate ligament tears. a prospective study. Amer J Sports Med 26:402–408 Shelbourne KD, Davis TJ, Klootwyk TE (1998) The relationship between intercondylar notch width of the femur and the incidence of anterior cruciate ligament tears. a prospective study. Amer J Sports Med 26:402–408
38.
go back to reference Simon RA, Everhart JS, Nagaraja HN, Chaudhari AM (2010) A case-control study of anterior cruciate ligament volume, tibial plateau slopes and intercondylar notch dimensions in ACL-injured knees. J Biomech 43:1702–1707PubMedPubMedCentral Simon RA, Everhart JS, Nagaraja HN, Chaudhari AM (2010) A case-control study of anterior cruciate ligament volume, tibial plateau slopes and intercondylar notch dimensions in ACL-injured knees. J Biomech 43:1702–1707PubMedPubMedCentral
39.
go back to reference Sonnery-Cottet B, Archbold P, Cucurulo T, Fayard JM, Bortolletto J, Thaunat M, Prost T, Chambat P (2011) The influence of the tibial slope and the size of the intercondylar notch on rupture of the anterior cruciate ligament. J Bone Joint Surg Br 93:1475–1478PubMed Sonnery-Cottet B, Archbold P, Cucurulo T, Fayard JM, Bortolletto J, Thaunat M, Prost T, Chambat P (2011) The influence of the tibial slope and the size of the intercondylar notch on rupture of the anterior cruciate ligament. J Bone Joint Surg Br 93:1475–1478PubMed
40.
go back to reference Souryal TO, Freeman TR (1993) Intercondylar notch size and anterior cruciate ligament injuries in athletes. a prospective study. Am J Sports Med 21:535–539PubMed Souryal TO, Freeman TR (1993) Intercondylar notch size and anterior cruciate ligament injuries in athletes. a prospective study. Am J Sports Med 21:535–539PubMed
41.
go back to reference Souryal TO, Moore HA, Evans JP (1988) Bilaterality in anterior cruciate ligament injuries: associated intercondylar notch stenosis. Am J Sports Med 16:449–454PubMed Souryal TO, Moore HA, Evans JP (1988) Bilaterality in anterior cruciate ligament injuries: associated intercondylar notch stenosis. Am J Sports Med 16:449–454PubMed
42.
go back to reference Stein V, Li L, Guermazi A, Zhang Y, Kent Kwoh C, Eaton CB, Hunter DJ, Investigators OAI (2010) The relation of femoral notch stenosis to ACL tears in persons with knee osteoarthritis. Osteoarthr Cartil 18:192–199PubMed Stein V, Li L, Guermazi A, Zhang Y, Kent Kwoh C, Eaton CB, Hunter DJ, Investigators OAI (2010) The relation of femoral notch stenosis to ACL tears in persons with knee osteoarthritis. Osteoarthr Cartil 18:192–199PubMed
43.
go back to reference Stijak L, Herzog RF, Schai P (2008) Is there an influence of the tibial slope of the lateral condyle on the ACL lesion? a case control study. Knee Surg Sports Traumatol 16:112–117 Stijak L, Herzog RF, Schai P (2008) Is there an influence of the tibial slope of the lateral condyle on the ACL lesion? a case control study. Knee Surg Sports Traumatol 16:112–117
44.
go back to reference Stijak L, Bumbasirevic M, Kadija M, Stankovic G, Herzog R, Filipovic B (2014) Morphometric parameters as risk factors for anterior cruciate ligament injuries—a MRI case control study. Vojnosanit Pregl 71:271–276PubMed Stijak L, Bumbasirevic M, Kadija M, Stankovic G, Herzog R, Filipovic B (2014) Morphometric parameters as risk factors for anterior cruciate ligament injuries—a MRI case control study. Vojnosanit Pregl 71:271–276PubMed
45.
go back to reference Taneja AK, Miranda FC, Demange MK, Prado MP, Santos DCB, Rosemberg LA, Baroni RH (2018) Evaluation of posterior cruciate ligament and intercondylar notch in subjects with anterior cruciate ligament tear: a comparative flexed-knee 3D magnetic resonance imaging study. Arthroscopy J Arthrosc Relat Surg 34:557–565 Taneja AK, Miranda FC, Demange MK, Prado MP, Santos DCB, Rosemberg LA, Baroni RH (2018) Evaluation of posterior cruciate ligament and intercondylar notch in subjects with anterior cruciate ligament tear: a comparative flexed-knee 3D magnetic resonance imaging study. Arthroscopy J Arthrosc Relat Surg 34:557–565
46.
go back to reference Teitz CC, Lind BK, Sacks BM (1997) Symmetry of the femoral notch width index. Am J Sports Med 25:687–690PubMed Teitz CC, Lind BK, Sacks BM (1997) Symmetry of the femoral notch width index. Am J Sports Med 25:687–690PubMed
47.
go back to reference Uhorchak JM, Scoville CR, Williams GN, Arciero RA, St Pierre P, Taylor DC (2003) Risk factors associated with noncontact injury of the anterior cruciate ligament: a prospective four-year evaluation of 859 west point cadets. Am J Sports Med 31:831–842PubMed Uhorchak JM, Scoville CR, Williams GN, Arciero RA, St Pierre P, Taylor DC (2003) Risk factors associated with noncontact injury of the anterior cruciate ligament: a prospective four-year evaluation of 859 west point cadets. Am J Sports Med 31:831–842PubMed
48.
go back to reference van Diek FM, Wolf MR, Murawski CD, van Eck CF, Fu FH (2014) Knee morphology and risk factors for developing an anterior cruciate ligament rupture: an MRI comparison between ACL-ruptured and non-injured knees. Knee Surg Sports Traumatol Arthrosc 22:987–994PubMed van Diek FM, Wolf MR, Murawski CD, van Eck CF, Fu FH (2014) Knee morphology and risk factors for developing an anterior cruciate ligament rupture: an MRI comparison between ACL-ruptured and non-injured knees. Knee Surg Sports Traumatol Arthrosc 22:987–994PubMed
49.
go back to reference van Eck CF, Martins CA, Lorenz SG, Fu FH, Smolinski P (2010) Assessment of correlation between knee notch width index and the three-dimensional notch volume. Knee Surg Sports Traumatol Arthrosc 18:1239–1244PubMedPubMedCentral van Eck CF, Martins CA, Lorenz SG, Fu FH, Smolinski P (2010) Assessment of correlation between knee notch width index and the three-dimensional notch volume. Knee Surg Sports Traumatol Arthrosc 18:1239–1244PubMedPubMedCentral
50.
go back to reference Van Eck CF, Martins CA, Kopf S, Lertwanich P, Fu FH, Tashman S (2011) Correlation between the 2-dimensional notch width and the 3-dimensional notch volume: a cadaveric study. Arthrosc J Arthrosc Relat Surg 27:207–212 Van Eck CF, Martins CA, Kopf S, Lertwanich P, Fu FH, Tashman S (2011) Correlation between the 2-dimensional notch width and the 3-dimensional notch volume: a cadaveric study. Arthrosc J Arthrosc Relat Surg 27:207–212
51.
go back to reference Whitney DC, Sturnick DR, Vacek PM, DeSarno MJ, Gardner-Morse M, Tourville TW, Smith HC, Slauterbeck JR, Johnson RJ, Shultz SJ, Hashemi J, Beynnon BD (2014) 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. Am J Sports Med 42:1796–1805PubMedPubMedCentral Whitney DC, Sturnick DR, Vacek PM, DeSarno MJ, Gardner-Morse M, Tourville TW, Smith HC, Slauterbeck JR, Johnson RJ, Shultz SJ, Hashemi J, Beynnon BD (2014) 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. Am J Sports Med 42:1796–1805PubMedPubMedCentral
52.
go back to reference Wolters F, Vrooijink SH, Van Eck CF, Fu FH (2011) Does notch size predict ACL insertion site size? Knee Surg Sports Traumatol Arthrosc 19(Suppl 1):S17–21PubMed Wolters F, Vrooijink SH, Van Eck CF, Fu FH (2011) Does notch size predict ACL insertion site size? Knee Surg Sports Traumatol Arthrosc 19(Suppl 1):S17–21PubMed
53.
go back to reference Zeng C, Cheng L, Wei J, Gao SG, Yang TB, Luo W, Li YS, Xu M, Lei GH (2014) The influence of the tibial plateau slopes on injury of the anterior cruciate ligament: a meta-analysis. Knee Surg Sports Traumatol Arthrosc 22:53–65PubMed Zeng C, Cheng L, Wei J, Gao SG, Yang TB, Luo W, Li YS, Xu M, Lei GH (2014) The influence of the tibial plateau slopes on injury of the anterior cruciate ligament: a meta-analysis. Knee Surg Sports Traumatol Arthrosc 22:53–65PubMed
54.
go back to reference Zeng C, Gao SG, Wei J, Yang TB, Cheng L, Luo W, Tu M, Xie Q, Hu Z, Liu PF, Li H, Yang T, Zhou B, Lei GH (2013) The influence of the intercondylar notch dimensions on injury of the anterior cruciate ligament: a meta-analysis. Knee Surg Sports Traumatol Arthrosc 21:804–815PubMed Zeng C, Gao SG, Wei J, Yang TB, Cheng L, Luo W, Tu M, Xie Q, Hu Z, Liu PF, Li H, Yang T, Zhou B, Lei GH (2013) The influence of the intercondylar notch dimensions on injury of the anterior cruciate ligament: a meta-analysis. Knee Surg Sports Traumatol Arthrosc 21:804–815PubMed
55.
go back to reference Zhang B, Geng B, Tan XY, Chen C, Yang LJ, Wang J, Wang CF, Xia YY (2015) Relationship between first-time noncontact ACL injury and geometry of the femoral intercondylar notch: a highresolution MRI research. Orthopedic J China 23:1888–1892 Zhang B, Geng B, Tan XY, Chen C, Yang LJ, Wang J, Wang CF, Xia YY (2015) Relationship between first-time noncontact ACL injury and geometry of the femoral intercondylar notch: a highresolution MRI research. Orthopedic J China 23:1888–1892
56.
go back to reference Zhang C, Zhang X, Fang Z, Wang F, Yuan F, Xie G, Zhao J (2019) The correlation between common 2D femoral notch parameters and 3D notch volume: a retrospective MRI study. BMC Musculoskelet Disord 20:146PubMedPubMedCentral Zhang C, Zhang X, Fang Z, Wang F, Yuan F, Xie G, Zhao J (2019) The correlation between common 2D femoral notch parameters and 3D notch volume: a retrospective MRI study. BMC Musculoskelet Disord 20:146PubMedPubMedCentral
57.
go back to reference Zhang PR, Xu B, Xu HG, Wang R, Zhang HY (2015) Association between intercondylar notch width and noncontact anterior cruciate ligament injury. Chin J Bone Joint Injury 30:1058–1061 Zhang PR, Xu B, Xu HG, Wang R, Zhang HY (2015) Association between intercondylar notch width and noncontact anterior cruciate ligament injury. Chin J Bone Joint Injury 30:1058–1061
Metadata
Title
Correlation between notch width index assessed via magnetic resonance imaging and risk of anterior cruciate ligament injury: an updated meta-analysis
Authors
Zheng Li
Changshu Li
Li Li
Ping Wang
Publication date
01-10-2020
Publisher
Springer Paris
Published in
Surgical and Radiologic Anatomy / Issue 10/2020
Print ISSN: 0930-1038
Electronic ISSN: 1279-8517
DOI
https://doi.org/10.1007/s00276-020-02496-6

Other articles of this Issue 10/2020

Surgical and Radiologic Anatomy 10/2020 Go to the issue