Skip to main content
Top
Published in: Knee Surgery, Sports Traumatology, Arthroscopy 12/2009

01-12-2009 | Knee

The relationship between tibial slope and meniscal insertion

Authors: Yong Seuk Lee, Jin Goo Kim, Hong Chul Lim, Jung Ho Park, Jong Woong Park, Jae Gyoon Kim

Published in: Knee Surgery, Sports Traumatology, Arthroscopy | Issue 12/2009

Login to get access

Abstract

Despite increasing interest in the anatomic importance of the meniscal insertion, little information is available regarding the relationship between the tibial slope and the meniscal insertion. Lateral radiographs and MRI sagittal images from 100 healthy and young patients were used in this study. Patients without deformation, meniscal pathology, or previous surgery to the ipsilateral knee were included in this study. We measured the angle between a line tangent to the medial and lateral tibial slope and the proximal tibial anatomical axis using a lateral radiographs. We also measured the angle between the tangent line to the medial and lateral tibial insertion of the meniscus and the proximal tibial anatomical axis using sagittal MRI images. The measurements were carried out twice by two observers. Inter-observer reliability ranged from 0.98 to 0.99 and intra-observer reliability ranged from 0.83 to 0.94. For each observer, the mean differences between measurements made using radiographs and MRI images were 16.4° and 16.4° on the lateral side, respectively, and 6.0° and 5.9° on the medial side, respectively. There was a statistically significant difference between measurements made using radiographs and MRI images (p < 0.001). However, the Pearson’s correlation coefficient between the measurements made using radiographs and MRI images did not show a linear correlation. The measurements of posterior slope on lateral radiographs images and meniscal insertion on sagittal MRI images were reproducible and reliable. Differences in measurements ranged from 15° to 17° on the lateral side and from 5° to 6° on the medial side, with 95% confidence intervals. However, there was no statistical correlation between the measurements made using lateral radiographs and MRI images.
Literature
1.
go back to reference Alhalki MM, Howell SM, Hull ML (1999) How three methods for fixing a medial meniscal autograft affect tibial contact mechanics. Am J Sports Med 27:320–328PubMed Alhalki MM, Howell SM, Hull ML (1999) How three methods for fixing a medial meniscal autograft affect tibial contact mechanics. Am J Sports Med 27:320–328PubMed
2.
go back to reference Berlet GC, Fowler PJ (1998) The anterior horn of the medical meniscus. An anatomic study of its insertion. Am J Sports Med 26:540–543PubMed Berlet GC, Fowler PJ (1998) The anterior horn of the medical meniscus. An anatomic study of its insertion. Am J Sports Med 26:540–543PubMed
3.
go back to reference Brazier J, Migaud H, Gougeon F, Cotten A, Fontaine C, Duquennoy A (1996) Evaluation of methods for radiographic measurement of the tibial slope. A study of 83 healthy knees. Rev Chir Orthop Reparatrice Appar Mot 82:195–200PubMed Brazier J, Migaud H, Gougeon F, Cotten A, Fontaine C, Duquennoy A (1996) Evaluation of methods for radiographic measurement of the tibial slope. A study of 83 healthy knees. Rev Chir Orthop Reparatrice Appar Mot 82:195–200PubMed
4.
go back to reference Chen MI, Branch TP, Hutton WC (1996) Is it important to secure the horns during lateral meniscal transplantation? A cadaveric study. Arthroscopy 12:174–181PubMed Chen MI, Branch TP, Hutton WC (1996) Is it important to secure the horns during lateral meniscal transplantation? A cadaveric study. Arthroscopy 12:174–181PubMed
5.
go back to reference Chiu KY, Zhang SD, Zhang GH (2000) Posterior slope of tibial plateau in Chinese. J Arthroplasty 15:224–227CrossRefPubMed Chiu KY, Zhang SD, Zhang GH (2000) Posterior slope of tibial plateau in Chinese. J Arthroplasty 15:224–227CrossRefPubMed
6.
go back to reference Cole BJ, Carter TR, Rodeo SA (2003) Allograft meniscal transplantation: background, techniques, and results. Instr Course Lect 52:383–396PubMed Cole BJ, Carter TR, Rodeo SA (2003) Allograft meniscal transplantation: background, techniques, and results. Instr Course Lect 52:383–396PubMed
7.
go back to reference Dienst M, Greis PE, Ellis BJ, Bachus KN, Burks RT (2007) Effect of lateral meniscal allograft sizing on contact mechanics of the lateral tibial plateau: an experimental study in human cadaveric knee joints. Am J Sports Med 35:34–42CrossRefPubMed Dienst M, Greis PE, Ellis BJ, Bachus KN, Burks RT (2007) Effect of lateral meniscal allograft sizing on contact mechanics of the lateral tibial plateau: an experimental study in human cadaveric knee joints. Am J Sports Med 35:34–42CrossRefPubMed
8.
go back to reference Haut TL, Hull ML, Howell SM (2000) Use of roentgenography and magnetic resonance imaging to predict meniscal geometry determined with a three-dimensional coordinate digitizing system. J Orthop Res 18:228–237CrossRefPubMed Haut TL, Hull ML, Howell SM (2000) Use of roentgenography and magnetic resonance imaging to predict meniscal geometry determined with a three-dimensional coordinate digitizing system. J Orthop Res 18:228–237CrossRefPubMed
9.
go back to reference Itoi E, Sashi R, Minagawa H, Shimizu T, Wakabayashi I, Sato K (2001) Position of immobilization after dislocation of the glenohumeral joint. A study with use of magnetic resonance imaging. J Bone Joint Surg Am 83-A:661–667PubMed Itoi E, Sashi R, Minagawa H, Shimizu T, Wakabayashi I, Sato K (2001) Position of immobilization after dislocation of the glenohumeral joint. A study with use of magnetic resonance imaging. J Bone Joint Surg Am 83-A:661–667PubMed
10.
go back to reference Johnson DL, Swenson TM, Livesay GA, Aizawa H, Fu FH, Harner CD (1995) Insertion-site anatomy of the human menisci: gross, arthroscopic, and topographical anatomy as a basis for meniscal transplantation. Arthroscopy 11:386–394PubMed Johnson DL, Swenson TM, Livesay GA, Aizawa H, Fu FH, Harner CD (1995) Insertion-site anatomy of the human menisci: gross, arthroscopic, and topographical anatomy as a basis for meniscal transplantation. Arthroscopy 11:386–394PubMed
11.
go back to reference Kim SH, Yoo JC, Ahn JM (2005) Arthroscopically repaired Bankart lesions and the effect of two different arm positions on immediate postoperative evaluation with magnetic resonance arthrography. Arthroscopy 21:867–874PubMed Kim SH, Yoo JC, Ahn JM (2005) Arthroscopically repaired Bankart lesions and the effect of two different arm positions on immediate postoperative evaluation with magnetic resonance arthrography. Arthroscopy 21:867–874PubMed
12.
go back to reference Kohn D, Moreno B (1995) Meniscus insertion anatomy as a basis for meniscus replacement: a morphological cadaveric study. Arthroscopy 11:96–103PubMedCrossRef Kohn D, Moreno B (1995) Meniscus insertion anatomy as a basis for meniscus replacement: a morphological cadaveric study. Arthroscopy 11:96–103PubMedCrossRef
13.
go back to reference Lazovic D, Wirth CJ, Sieg A, Gosse F, Maschek HG (1997) Effect of surgical technique on meniscus transplants. A histological, animal experiment study. Unfallchirurg 100:541–546CrossRefPubMed Lazovic D, Wirth CJ, Sieg A, Gosse F, Maschek HG (1997) Effect of surgical technique on meniscus transplants. A histological, animal experiment study. Unfallchirurg 100:541–546CrossRefPubMed
14.
go back to reference Lee YS, Ahn JH, Lim HC, Kim JG, Yoo JH, Wang JH, Park JS (2009) Structural change of soft tissue anterior cruciate ligament reconstructions with cross-pin fixation between immediate and postoperative 8 weeks: a study with use of magnetic resonance imaging. Am J Sports Med 37:285–290CrossRefPubMed Lee YS, Ahn JH, Lim HC, Kim JG, Yoo JH, Wang JH, Park JS (2009) Structural change of soft tissue anterior cruciate ligament reconstructions with cross-pin fixation between immediate and postoperative 8 weeks: a study with use of magnetic resonance imaging. Am J Sports Med 37:285–290CrossRefPubMed
15.
go back to reference Lubowitz JH, Verdonk PC, Reid JB 3rd, Verdonk R (2007) Meniscus allograft transplantation: a current concepts review. Knee Surg Sports Traumatol Arthrosc 15:476–492CrossRefPubMed Lubowitz JH, Verdonk PC, Reid JB 3rd, Verdonk R (2007) Meniscus allograft transplantation: a current concepts review. Knee Surg Sports Traumatol Arthrosc 15:476–492CrossRefPubMed
16.
go back to reference McDermott ID, Sharifi F, Bull AM, Gupte CM, Thomas RW, Amis AA (2004) An anatomical study of meniscal allograft sizing. Knee Surg Sports Traumatol Arthrosc 12:130–135CrossRefPubMed McDermott ID, Sharifi F, Bull AM, Gupte CM, Thomas RW, Amis AA (2004) An anatomical study of meniscal allograft sizing. Knee Surg Sports Traumatol Arthrosc 12:130–135CrossRefPubMed
17.
go back to reference Puig L, Monllau JC, Corrales M, Pelfort X, Melendo E, Caceres E (2006) Factors affecting meniscal extrusion: correlation with MRI, clinical, and arthroscopic findings. Knee Surg Sports Traumatol Arthrosc 14:394–398CrossRefPubMed Puig L, Monllau JC, Corrales M, Pelfort X, Melendo E, Caceres E (2006) Factors affecting meniscal extrusion: correlation with MRI, clinical, and arthroscopic findings. Knee Surg Sports Traumatol Arthrosc 14:394–398CrossRefPubMed
18.
go back to reference Rijk PC (2004) Meniscal allograft transplantation–part I: background, results, graft selection and preservation, and surgical considerations. Arthroscopy 20:728–743PubMed Rijk PC (2004) Meniscal allograft transplantation–part I: background, results, graft selection and preservation, and surgical considerations. Arthroscopy 20:728–743PubMed
19.
go back to reference Shaffer B, Kennedy S, Klimkiewicz J, Yao L (2000) Preoperative sizing of meniscal allografts in meniscus transplantation. Am J Sports Med 28:524–533PubMed Shaffer B, Kennedy S, Klimkiewicz J, Yao L (2000) Preoperative sizing of meniscal allografts in meniscus transplantation. Am J Sports Med 28:524–533PubMed
20.
go back to reference Urban WP Jr, Nyland J, Caborn DN, Johnson DL (1999) The radiographic position of medial and lateral meniscal horns as a basis for meniscal reconstruction. Arthroscopy 15:147–154PubMed Urban WP Jr, Nyland J, Caborn DN, Johnson DL (1999) The radiographic position of medial and lateral meniscal horns as a basis for meniscal reconstruction. Arthroscopy 15:147–154PubMed
21.
go back to reference Verdonk PC, Verstraete KL, Almqvist KF, De Cuyper K, Veys EM, Verbruggen G, Verdonk R (2006) Meniscal allograft transplantation: long-term clinical results with radiological and magnetic resonance imaging correlations. Knee Surg Sports Traumatol Arthrosc 14:694–706CrossRefPubMed Verdonk PC, Verstraete KL, Almqvist KF, De Cuyper K, Veys EM, Verbruggen G, Verdonk R (2006) Meniscal allograft transplantation: long-term clinical results with radiological and magnetic resonance imaging correlations. Knee Surg Sports Traumatol Arthrosc 14:694–706CrossRefPubMed
22.
go back to reference Villegas DF, Hansen TA, Liu DF, Donahue TL (2008) A quantitative study of the microstructure and biochemistry of the medial meniscal horn attachments. Ann Biomed Eng 36:123–131CrossRefPubMed Villegas DF, Hansen TA, Liu DF, Donahue TL (2008) A quantitative study of the microstructure and biochemistry of the medial meniscal horn attachments. Ann Biomed Eng 36:123–131CrossRefPubMed
23.
go back to reference von Lewinski G, Milachowski KA, Weismeier K, Kohn D, Wirth CJ (2007) Twenty-year results of combined meniscal allograft transplantation, anterior cruciate ligament reconstruction and advancement of the medial collateral ligament. Knee Surg Sports Traumatol Arthrosc 15:1072–1082CrossRef von Lewinski G, Milachowski KA, Weismeier K, Kohn D, Wirth CJ (2007) Twenty-year results of combined meniscal allograft transplantation, anterior cruciate ligament reconstruction and advancement of the medial collateral ligament. Knee Surg Sports Traumatol Arthrosc 15:1072–1082CrossRef
24.
go back to reference Wilmes P, Anagnostakos K, Weth C, Kohn D, Seil R (2008) The reproducibility of radiographic measurement of medial meniscus horn position. Arthroscopy 24:660–668PubMedCrossRef Wilmes P, Anagnostakos K, Weth C, Kohn D, Seil R (2008) The reproducibility of radiographic measurement of medial meniscus horn position. Arthroscopy 24:660–668PubMedCrossRef
25.
go back to reference Yoo JC, Lee YS, Tae SK, Park JH, Park JW, Ha HC (2008) Magnetic resonance imaging appearance of a repaired capsulolabral complex after arthroscopic bankart repair. Am J Sports Med 36:2310–2316CrossRefPubMed Yoo JC, Lee YS, Tae SK, Park JH, Park JW, Ha HC (2008) Magnetic resonance imaging appearance of a repaired capsulolabral complex after arthroscopic bankart repair. Am J Sports Med 36:2310–2316CrossRefPubMed
Metadata
Title
The relationship between tibial slope and meniscal insertion
Authors
Yong Seuk Lee
Jin Goo Kim
Hong Chul Lim
Jung Ho Park
Jong Woong Park
Jae Gyoon Kim
Publication date
01-12-2009
Publisher
Springer-Verlag
Published in
Knee Surgery, Sports Traumatology, Arthroscopy / Issue 12/2009
Print ISSN: 0942-2056
Electronic ISSN: 1433-7347
DOI
https://doi.org/10.1007/s00167-009-0847-4

Other articles of this Issue 12/2009

Knee Surgery, Sports Traumatology, Arthroscopy 12/2009 Go to the issue