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Published in: Knee Surgery, Sports Traumatology, Arthroscopy 12/2008

01-12-2008 | Knee

Biomechanics of the meniscus-meniscal ligament construct of the knee

Authors: S. D. Masouros, I. D. McDermott, A. A. Amis, A. M. J. Bull

Published in: Knee Surgery, Sports Traumatology, Arthroscopy | Issue 12/2008

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Abstract

The menisci of the knee act primarily to redistribute contact force across the tibio-femoral articulation. This meniscal function is achieved through a combination of the material, geometry and attachments of the menisci. The main ligaments that attach the menisci to the tibia (insertional ligaments, deep medial collateral ligament), the femur (meniscofemoral ligaments, deep medial collateral ligament) and each other (the anterior intermeniscal ligament) are the means by which the contact force between tibia and femur is distributed into hoop stresses in the menisci to reduce contact pressure at the joint. This means that the functional biomechanics of the menisci cannot be considered in isolation and should be considered as the functional biomechanics of the meniscus-meniscal ligament construct. This article presents the current knowledge on the anatomy and functional biomechanics of the meniscus and its associated ligaments. Much is known about the function of the meniscus-meniscal ligament construct; however, there still remain significant gaps in the literature in terms of the properties of the anterior intermeniscal ligament and its function, the properties of the insertional ligaments, and the most appropriate ways to reconstruct meniscal function surgically.
Literature
1.
go back to reference Alhalki MM, Hull ML, Howell SM (2000) Contact mechanics of the medial tibial plateau after implantation of a medial meniscal allograft: a human cadaveric study. Am J Sports Med 28:370–376PubMed Alhalki MM, Hull ML, Howell SM (2000) Contact mechanics of the medial tibial plateau after implantation of a medial meniscal allograft: a human cadaveric study. Am J Sports Med 28:370–376PubMed
2.
go back to reference Allen CR, Wong EK, Livesay GA, Masataka S, Fu FH, Woo SL (2000) Importance of the medial meniscus in the anterior cruciate ligament-deficient knee. J Orthop Res 18:109PubMedCrossRef Allen CR, Wong EK, Livesay GA, Masataka S, Fu FH, Woo SL (2000) Importance of the medial meniscus in the anterior cruciate ligament-deficient knee. J Orthop Res 18:109PubMedCrossRef
3.
go back to reference Amadi HO, Gupte CM, Lie DT, McDermott ID, Amis AA, Bull AMJ (2008) A biomechanical study of the meniscofemoral ligaments and their contribution to contact pressure reduction in the knee. Knee Surg Sports Traumatol Arthrosc (in press), 19 Aug 2008 [Epublished ahead of print] Amadi HO, Gupte CM, Lie DT, McDermott ID, Amis AA, Bull AMJ (2008) A biomechanical study of the meniscofemoral ligaments and their contribution to contact pressure reduction in the knee. Knee Surg Sports Traumatol Arthrosc (in press), 19 Aug 2008 [Epublished ahead of print]
4.
go back to reference Amiri S, Cooke D, Kim I, Wyss U (2007) Mechanics of the passive knee joint. Part 2: interaction between the ligaments and the articular surfaces in guiding the joint motion. Proc Inst Mech Eng H 221:821–832PubMed Amiri S, Cooke D, Kim I, Wyss U (2007) Mechanics of the passive knee joint. Part 2: interaction between the ligaments and the articular surfaces in guiding the joint motion. Proc Inst Mech Eng H 221:821–832PubMed
5.
go back to reference Amis AA, Gupte CM, Bull AMJ, Edwards A (2006) Anatomy of the posterior cruciate ligament and the meniscofemoral ligaments. Knee Surg Sports Traumatol Arthrosc 14:257–263PubMedCrossRef Amis AA, Gupte CM, Bull AMJ, Edwards A (2006) Anatomy of the posterior cruciate ligament and the meniscofemoral ligaments. Knee Surg Sports Traumatol Arthrosc 14:257–263PubMedCrossRef
6.
go back to reference Andriacchi TP, Mundermann A, Smith RL, Alexander EJ, Dyrby CO, Koo S (2004) A framework for the in vivo pathomechanics of osteoarthritis at the knee. Ann Biomed Eng 32:447–457PubMedCrossRef Andriacchi TP, Mundermann A, Smith RL, Alexander EJ, Dyrby CO, Koo S (2004) A framework for the in vivo pathomechanics of osteoarthritis at the knee. Ann Biomed Eng 32:447–457PubMedCrossRef
7.
go back to reference Aydin A, Ozenci A, Ozcanli H, Ozdemir H, Urguden M (2002) The reference point to measure the anterior intermeniscal ligament’s thickness: an MRI study. Knee Surg Sports Traumatol Arthrosc 10:343–346PubMedCrossRef Aydin A, Ozenci A, Ozcanli H, Ozdemir H, Urguden M (2002) The reference point to measure the anterior intermeniscal ligament’s thickness: an MRI study. Knee Surg Sports Traumatol Arthrosc 10:343–346PubMedCrossRef
8.
go back to reference Aydingöz U, Kaya A, Atay AO, Öztürk HM, Doral NM (2002) MR imaging of the anterior intermeniscal ligament: classification according to insertion sites. Eur Radiol 12:824–829PubMedCrossRef Aydingöz U, Kaya A, Atay AO, Öztürk HM, Doral NM (2002) MR imaging of the anterior intermeniscal ligament: classification according to insertion sites. Eur Radiol 12:824–829PubMedCrossRef
10.
go back to reference Baratz ME, Fu FH, Mengato R (1986) Meniscal tears: the effect of meniscectomy and of repair on intraarticular contact areas and stress in the human knee. A preliminary report. Am J Sports Med 14:270–275PubMedCrossRef Baratz ME, Fu FH, Mengato R (1986) Meniscal tears: the effect of meniscectomy and of repair on intraarticular contact areas and stress in the human knee. A preliminary report. Am J Sports Med 14:270–275PubMedCrossRef
11.
go back to reference Beaupre A, Choukroun R, Guidouin R, Garneau R, Gerardin H, Cardou A (1986) Knee menisci. Correlation between microstructure and biomechanics. Clin Orthop Relat Res 208:72–75PubMed Beaupre A, Choukroun R, Guidouin R, Garneau R, Gerardin H, Cardou A (1986) Knee menisci. Correlation between microstructure and biomechanics. Clin Orthop Relat Res 208:72–75PubMed
12.
go back to reference Berlet GC, Fowler PJ (1998) The anterior horn of the medial meniscus: an anatomic study of its insertion. Am J Sports Med 26:540–543PubMed Berlet GC, Fowler PJ (1998) The anterior horn of the medial meniscus: an anatomic study of its insertion. Am J Sports Med 26:540–543PubMed
13.
go back to reference Bullough PG, Munuera L, Murphy J, Weinstein AM (1970) The strength of the menisci of the knee as it relates to their fine structure. J Bone Joint Surg Br 52:564–567PubMed Bullough PG, Munuera L, Murphy J, Weinstein AM (1970) The strength of the menisci of the knee as it relates to their fine structure. J Bone Joint Surg Br 52:564–567PubMed
14.
go back to reference Burke DL, Ahmed AM, Miller J (1978) A biomechanical study of partial and total medial meniscectomy of the knee. Trans Orthop Res Soc 3:91 Burke DL, Ahmed AM, Miller J (1978) A biomechanical study of partial and total medial meniscectomy of the knee. Trans Orthop Res Soc 3:91
15.
go back to reference Butler DL, Kay MD, Stouffer DC (1986) Comparison of material properties in fascicle-bone units from human patellar tendon and knee ligaments. J Biomech 19:425–432PubMedCrossRef Butler DL, Kay MD, Stouffer DC (1986) Comparison of material properties in fascicle-bone units from human patellar tendon and knee ligaments. J Biomech 19:425–432PubMedCrossRef
16.
go back to reference Campbell SE, Sanders TG, Morrison WB (2001) MR imaging of meniscal cysts: incidence, location, and clinical significance. Am J Roentgenol 177:409–413 Campbell SE, Sanders TG, Morrison WB (2001) MR imaging of meniscal cysts: incidence, location, and clinical significance. Am J Roentgenol 177:409–413
17.
go back to reference Carlsson LA, Pipes RB (1997) Experimental characterization of advanced composite materials. Technomic Publishing, Lancaster Carlsson LA, Pipes RB (1997) Experimental characterization of advanced composite materials. Technomic Publishing, Lancaster
18.
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
19.
go back to reference Christoforakis J, Pradhan R, Sanchez-Ballester J, Hunt N, Strachan RK (2005) Is there an association between articular cartilage changes and degenerative meniscus tears? Arthroscopy 21:1366–1369PubMed Christoforakis J, Pradhan R, Sanchez-Ballester J, Hunt N, Strachan RK (2005) Is there an association between articular cartilage changes and degenerative meniscus tears? Arthroscopy 21:1366–1369PubMed
20.
go back to reference Dowling NE (1999) Mechanical behavior of materials: engineering methods for deformation, fracture and fatigue, 2nd edn. Prentice Hall, New Jersey Dowling NE (1999) Mechanical behavior of materials: engineering methods for deformation, fracture and fatigue, 2nd edn. Prentice Hall, New Jersey
21.
go back to reference Drosos GI, Pozo JL (2004) The causes and mechanisms of meniscal injuries in the sporting and non-sporting environment in an unselected population. Knee 11:143–149PubMedCrossRef Drosos GI, Pozo JL (2004) The causes and mechanisms of meniscal injuries in the sporting and non-sporting environment in an unselected population. Knee 11:143–149PubMedCrossRef
22.
go back to reference Fairbank TJ (1948) Knee joint changes after meniscectomy. J Bone Joint Surg Br 30-B:664–670 Fairbank TJ (1948) Knee joint changes after meniscectomy. J Bone Joint Surg Br 30-B:664–670
23.
go back to reference Ferguson SJ, Bryant JT, Ito K (2001) The material properties of the bovine acetabular labrum. J Orthop Res 19:887–896PubMedCrossRef Ferguson SJ, Bryant JT, Ito K (2001) The material properties of the bovine acetabular labrum. J Orthop Res 19:887–896PubMedCrossRef
24.
go back to reference Fithian DC, Kelly MA, Mow VC (1990) Material properties and structure-function relationships in the menisci. Clin Orthop Relat Res 252:19–31PubMed Fithian DC, Kelly MA, Mow VC (1990) Material properties and structure-function relationships in the menisci. Clin Orthop Relat Res 252:19–31PubMed
25.
go back to reference Fukubayashi T, Kurosawa H (1980) The contact area and pressure distribution pattern of the knee. A study of normal and osteoarthrotic knee joints. Acta Orthop Scand 51:871–879PubMed Fukubayashi T, Kurosawa H (1980) The contact area and pressure distribution pattern of the knee. A study of normal and osteoarthrotic knee joints. Acta Orthop Scand 51:871–879PubMed
26.
go back to reference Fukubayashi T, Torzilli PA, Sherman MF, Warren RF (1982) An in vitro biomechanical evaluation of anterior–posterior motion of the knee. Tibial displacement, rotation, and torque. J Bone Joint Surg Am 64:258–264PubMed Fukubayashi T, Torzilli PA, Sherman MF, Warren RF (1982) An in vitro biomechanical evaluation of anterior–posterior motion of the knee. Tibial displacement, rotation, and torque. J Bone Joint Surg Am 64:258–264PubMed
27.
go back to reference Goertzen DJ, Budney DR, Cinats JG (1997) Methodology and apparatus to determine material properties of the knee joint meniscus. Med Eng Phys 19:412–419PubMedCrossRef Goertzen DJ, Budney DR, Cinats JG (1997) Methodology and apparatus to determine material properties of the knee joint meniscus. Med Eng Phys 19:412–419PubMedCrossRef
28.
go back to reference Gupte CM, Smith A, McDermott ID, Bull AMJ, Thomas RD, Amis AA (2002) Meniscofemoral ligaments revisited. Anatomical study, age correlation and clinical implications. J Bone Joint Surg Br 84:846–851PubMedCrossRef Gupte CM, Smith A, McDermott ID, Bull AMJ, Thomas RD, Amis AA (2002) Meniscofemoral ligaments revisited. Anatomical study, age correlation and clinical implications. J Bone Joint Surg Br 84:846–851PubMedCrossRef
29.
go back to reference Gupte CM, Bull AM, Thomas RD, Amis AA (2003) A review of the function and biomechanics of the meniscofemoral ligaments. Arthroscopy 19:161–171PubMed Gupte CM, Bull AM, Thomas RD, Amis AA (2003) A review of the function and biomechanics of the meniscofemoral ligaments. Arthroscopy 19:161–171PubMed
30.
go back to reference Gupte CM, Bull AMJ, Thomas RD, Amis AA (2003) The meniscofemoral ligaments: secondary restraints to the posterior drawer. Analysis of anteroposterior and rotary laxity in the intact and posterior-cruciate-deficient knee. J Bone Joint Surg Br 85:765–773PubMed Gupte CM, Bull AMJ, Thomas RD, Amis AA (2003) The meniscofemoral ligaments: secondary restraints to the posterior drawer. Analysis of anteroposterior and rotary laxity in the intact and posterior-cruciate-deficient knee. J Bone Joint Surg Br 85:765–773PubMed
31.
go back to reference Gupte CM, Smith A, Jamieson N, Bull AMJ, Thomas RD, Amis AA (2002) Meniscofemoral ligaments—structural and material properties. J Biomech 35:1623–1629PubMedCrossRef Gupte CM, Smith A, Jamieson N, Bull AMJ, Thomas RD, Amis AA (2002) Meniscofemoral ligaments—structural and material properties. J Biomech 35:1623–1629PubMedCrossRef
32.
go back to reference Hansen U, Masouros S, Amis AA (2006) (iii) Material properties of biological tissues related to joint surgery. Curr Orthop 20:16–22CrossRef Hansen U, Masouros S, Amis AA (2006) (iii) Material properties of biological tissues related to joint surgery. Curr Orthop 20:16–22CrossRef
33.
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 18:228–237PubMedCrossRef 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 18:228–237PubMedCrossRef
34.
go back to reference Hunter D, Zhang Y, Niu J, Tu X, Amin S, Clancy M, Guermazi A, Grigorian M, Gale D, Felson D (2006) The association of meniscal pathologic changes with cartilage loss in symptomatic knee osteoarthritis. Arthritis Rheum 54:795–801PubMedCrossRef Hunter D, Zhang Y, Niu J, Tu X, Amin S, Clancy M, Guermazi A, Grigorian M, Gale D, Felson D (2006) The association of meniscal pathologic changes with cartilage loss in symptomatic knee osteoarthritis. Arthritis Rheum 54:795–801PubMedCrossRef
35.
go back to reference Ishiko T, Naito M, Moriyama S (2005) Tensile properties of the human acetabular labrum—the first report. J Orthop Res 23:1448–1453PubMed Ishiko T, Naito M, Moriyama S (2005) Tensile properties of the human acetabular labrum—the first report. J Orthop Res 23:1448–1453PubMed
36.
go back to reference Iwaki H, Pinskerova V, Freeman MAR (2000) Tibiofemoral movement 1: the shapes and relative movements of the femur and tibia in the unloaded cadaver knee. J Bone Joint Surg Br 82:1189–1195PubMedCrossRef Iwaki H, Pinskerova V, Freeman MAR (2000) Tibiofemoral movement 1: the shapes and relative movements of the femur and tibia in the unloaded cadaver knee. J Bone Joint Surg Br 82:1189–1195PubMedCrossRef
37.
go back to reference Joshi MD, Suh JK, Marui T, Woo SL (1995) Interspecies variation of compressive biomechanical properties of the meniscus. J Biomed Mater Res 29:823–828PubMedCrossRef Joshi MD, Suh JK, Marui T, Woo SL (1995) Interspecies variation of compressive biomechanical properties of the meniscus. J Biomed Mater Res 29:823–828PubMedCrossRef
38.
go back to reference Kohn D, Moreno B (1995) Meniscus insertion anatomy as a basis for meniscus replacement: a morphological cadaveric study. Arthroscopy 11:96–103PubMed Kohn D, Moreno B (1995) Meniscus insertion anatomy as a basis for meniscus replacement: a morphological cadaveric study. Arthroscopy 11:96–103PubMed
39.
go back to reference Krause WR, Pope MH, Johnson RJ, Wilder DG (1976) Mechanical changes in the knee after meniscectomy. J Bone Joint Surg Am 58:599–604PubMed Krause WR, Pope MH, Johnson RJ, Wilder DG (1976) Mechanical changes in the knee after meniscectomy. J Bone Joint Surg Am 58:599–604PubMed
40.
go back to reference Kurosawa H, Fukubayashi T, Nakajima H (1980) Load-bearing mode of the knee joint: physical behavior of the knee joint with or without menisci. Clin Orthop Relat Res 149:283–290PubMed Kurosawa H, Fukubayashi T, Nakajima H (1980) Load-bearing mode of the knee joint: physical behavior of the knee joint with or without menisci. Clin Orthop Relat Res 149:283–290PubMed
41.
go back to reference LaPrade RF, Engebretsen AH, Ly TV, Johansen S, Wentorf FA, Engebretsen L (2007) The anatomy of the medial part of the knee. J Bone Joint Surg Am 89:2000–2010PubMedCrossRef LaPrade RF, Engebretsen AH, Ly TV, Johansen S, Wentorf FA, Engebretsen L (2007) The anatomy of the medial part of the knee. J Bone Joint Surg Am 89:2000–2010PubMedCrossRef
42.
go back to reference Lechner K, Hull ML, Howell SM (2000) Is the circumferential tensile modulus within a human medial meniscus affected by the test sample location and cross-sectional area? J Orthop Res 18:945–951PubMedCrossRef Lechner K, Hull ML, Howell SM (2000) Is the circumferential tensile modulus within a human medial meniscus affected by the test sample location and cross-sectional area? J Orthop Res 18:945–951PubMedCrossRef
43.
go back to reference Levy IM, Torzilli PA, Gould JD, Warren RF (1989) The effect of lateral meniscectomy on motion of the knee. J Bone Joint Surg Am 71:401–406PubMed Levy IM, Torzilli PA, Gould JD, Warren RF (1989) The effect of lateral meniscectomy on motion of the knee. J Bone Joint Surg Am 71:401–406PubMed
44.
go back to reference Levy IM, Torzilli PA, Warren RF (1982) The effect of medial meniscectomy on anterior–posterior motion of the knee. J Bone Joint Surg Am 64:883–888PubMed Levy IM, Torzilli PA, Warren RF (1982) The effect of medial meniscectomy on anterior–posterior motion of the knee. J Bone Joint Surg Am 64:883–888PubMed
45.
go back to reference Li L, Shirazi-Adl A, Buschmann MD (2003) Investigation of mechanical behavior of articular cartilage by fibril reinforced poroelastic models. Biorheology 40:227–233PubMed Li L, Shirazi-Adl A, Buschmann MD (2003) Investigation of mechanical behavior of articular cartilage by fibril reinforced poroelastic models. Biorheology 40:227–233PubMed
46.
go back to reference Magyar O, Illyes A, Knoll Z, Kiss R (2008) Effect of medial meniscectomy on gait parameters. Knee Surg Sports Traumatol Arthrosc 16:427–433PubMedCrossRef Magyar O, Illyes A, Knoll Z, Kiss R (2008) Effect of medial meniscectomy on gait parameters. Knee Surg Sports Traumatol Arthrosc 16:427–433PubMedCrossRef
47.
go back to reference Markolf KL, Bargar WL, Shoemaker SC, Amstutz HC (1981) The role of joint load in knee stability. J Bone Joint Surg Am 63:570–585PubMed Markolf KL, Bargar WL, Shoemaker SC, Amstutz HC (1981) The role of joint load in knee stability. J Bone Joint Surg Am 63:570–585PubMed
48.
go back to reference Markolf KL, Mensch JS, Amstutz HC (1976) Stiffness and laxity of the knee—the contributions of the supporting structures. A quantitative in vitro study. J Bone Joint Surg Am 58:583–594PubMed Markolf KL, Mensch JS, Amstutz HC (1976) Stiffness and laxity of the knee—the contributions of the supporting structures. A quantitative in vitro study. J Bone Joint Surg Am 58:583–594PubMed
49.
go back to reference McDermott ID, Amis AA (2006) The consequences of meniscectomy. J Bone Joint Surg Br 88:1549–1556PubMed McDermott ID, Amis AA (2006) The consequences of meniscectomy. J Bone Joint Surg Br 88:1549–1556PubMed
50.
go back to reference McDermott ID, Lie DT, Edwards A, Bull AMJ, Amis AA (2008) The effects of lateral meniscal allograft transplantation techniques on tibio-femoral contact pressures. Knee Surg Sports Traumatol Arthrosc 16(6):553–560PubMedCrossRef McDermott ID, Lie DT, Edwards A, Bull AMJ, Amis AA (2008) The effects of lateral meniscal allograft transplantation techniques on tibio-femoral contact pressures. Knee Surg Sports Traumatol Arthrosc 16(6):553–560PubMedCrossRef
51.
52.
go back to reference McDevitt CA, Webber RJ (1990) The ultrastructure and biochemistry of meniscal cartilage. Clin Orthop Relat Res 252:8–18PubMed McDevitt CA, Webber RJ (1990) The ultrastructure and biochemistry of meniscal cartilage. Clin Orthop Relat Res 252:8–18PubMed
53.
go back to reference Messner K, Gao J (1998) The menisci of the knee joint. Anatomical and functional characteristics, and a rationale for clinical treatment. J Anat 193(Pt 2):161–178 Messner K, Gao J (1998) The menisci of the knee joint. Anatomical and functional characteristics, and a rationale for clinical treatment. J Anat 193(Pt 2):161–178
54.
go back to reference Mow VC, Kuei SC, Lai WM, Armstrong CG (1980) Biphasic creep and stress relaxation of articular cartilage in compression? Theory and experiments. J Biomech Eng 102:73–84PubMedCrossRef Mow VC, Kuei SC, Lai WM, Armstrong CG (1980) Biphasic creep and stress relaxation of articular cartilage in compression? Theory and experiments. J Biomech Eng 102:73–84PubMedCrossRef
55.
go back to reference Muratsu H, Ishimoto K, Kurosaka M, Yoshima S, Mizuno K (2000) The mechanical mapping of the meniscus. In: Proceedings of the 46th annual meeting of the Orthopaedic Research Society, Orlando, FL, 12–15 March 2000, p 171 Muratsu H, Ishimoto K, Kurosaka M, Yoshima S, Mizuno K (2000) The mechanical mapping of the meniscus. In: Proceedings of the 46th annual meeting of the Orthopaedic Research Society, Orlando, FL, 12–15 March 2000, p 171
56.
go back to reference Nelson EW, LaPrade RF (2000) The anterior intermeniscal ligament of the knee: an anatomic study. Am J Sports Med 28:74–76PubMed Nelson EW, LaPrade RF (2000) The anterior intermeniscal ligament of the knee: an anatomic study. Am J Sports Med 28:74–76PubMed
57.
go back to reference Nuno N, Ahmed AM (2003) Three-dimensional morphometry of the femoral condyles. Clin Biomech 18:924–932CrossRef Nuno N, Ahmed AM (2003) Three-dimensional morphometry of the femoral condyles. Clin Biomech 18:924–932CrossRef
58.
go back to reference Oretorp N, Gillquist J, Liljedahl SO (1979) Long term results of surgery for non-acute anteromedial rotatory instability of the knee. Acta Orthop Scand 50:329–336PubMedCrossRef Oretorp N, Gillquist J, Liljedahl SO (1979) Long term results of surgery for non-acute anteromedial rotatory instability of the knee. Acta Orthop Scand 50:329–336PubMedCrossRef
59.
go back to reference Paletta GA Jr, Manning T, Snell E, Parker R, Bergfeld J (1997) The effect of allograft meniscal replacement on intraarticular contact area and pressures in the human knee: a biomechanical study. Am J Sports Med 25:692–698PubMedCrossRef Paletta GA Jr, Manning T, Snell E, Parker R, Bergfeld J (1997) The effect of allograft meniscal replacement on intraarticular contact area and pressures in the human knee: a biomechanical study. Am J Sports Med 25:692–698PubMedCrossRef
60.
go back to reference Petersen W, Tillmann B (1998) Collagenous fibril texture of the human knee joint menisci. Anat Embryol 197:317–324PubMedCrossRef Petersen W, Tillmann B (1998) Collagenous fibril texture of the human knee joint menisci. Anat Embryol 197:317–324PubMedCrossRef
61.
go back to reference Proctor CS, Schmidt MB, Whipple RR, Kelly MA, Mow VC (1989) Material properties of the normal medial bovine meniscus. J Orthop Res 7:771–782PubMedCrossRef Proctor CS, Schmidt MB, Whipple RR, Kelly MA, Mow VC (1989) Material properties of the normal medial bovine meniscus. J Orthop Res 7:771–782PubMedCrossRef
62.
go back to reference Quapp KM, Weiss JA (1998) Material characterization of human medial collateral ligament. J Biomech Eng 120:757–763PubMedCrossRef Quapp KM, Weiss JA (1998) Material characterization of human medial collateral ligament. J Biomech Eng 120:757–763PubMedCrossRef
63.
go back to reference Race A, Amis AA (1994) The mechanical properties of the two bundles of the human posterior cruciate ligament. J Biomech 27:13–24PubMedCrossRef Race A, Amis AA (1994) The mechanical properties of the two bundles of the human posterior cruciate ligament. J Biomech 27:13–24PubMedCrossRef
64.
go back to reference Renstrom P, Johnson RJ (1990) Anatomy and biomechanics of the menisci. Clin Sport Med 9:523–538 Renstrom P, Johnson RJ (1990) Anatomy and biomechanics of the menisci. Clin Sport Med 9:523–538
65.
go back to reference Robinson JR, Bull AMJ, Amis AA (2005) Structural properties of the medial collateral ligament complex of the human knee. J Biomech 38:1067–1074PubMedCrossRef Robinson JR, Bull AMJ, Amis AA (2005) Structural properties of the medial collateral ligament complex of the human knee. J Biomech 38:1067–1074PubMedCrossRef
66.
go back to reference Robinson JR, Bull AMJ, Thomas RR, Amis AA (2006) The role of the medial collateral ligament and posteromedial capsule in controlling knee laxity. Am J Sports Med 34:1815–1823PubMedCrossRef Robinson JR, Bull AMJ, Thomas RR, Amis AA (2006) The role of the medial collateral ligament and posteromedial capsule in controlling knee laxity. Am J Sports Med 34:1815–1823PubMedCrossRef
67.
go back to reference Roos E (2005) Joint injury causes knee osteoarthritis in young adults. Curr Opin Rheumatol 17:195–200PubMedCrossRef Roos E (2005) Joint injury causes knee osteoarthritis in young adults. Curr Opin Rheumatol 17:195–200PubMedCrossRef
68.
go back to reference Roos H, Adalberth T, Dahlberg L, Lohmander LS (1995) Osteoarthritis of the knee after injury to the anterior cruciate ligament or meniscus: the influence of time and age. Osteoarthr Cartil 3:261–267PubMedCrossRef Roos H, Adalberth T, Dahlberg L, Lohmander LS (1995) Osteoarthritis of the knee after injury to the anterior cruciate ligament or meniscus: the influence of time and age. Osteoarthr Cartil 3:261–267PubMedCrossRef
69.
go back to reference Seedhom BB (1976) Loadbearing function of the menisci. Physiotherapy 62:223PubMed Seedhom BB (1976) Loadbearing function of the menisci. Physiotherapy 62:223PubMed
70.
go back to reference Seedhom BB, Hargreaves D (1979) Transmission of the load in the knee joint with special reference to the role of the menisci. Part II: experimental results, discussion and conclusions. Eng Med 8:220–228CrossRef Seedhom BB, Hargreaves D (1979) Transmission of the load in the knee joint with special reference to the role of the menisci. Part II: experimental results, discussion and conclusions. Eng Med 8:220–228CrossRef
71.
go back to reference Sekaran SV, Hull ML, Howell SM (2002) Nonanatomic location of the posterior horn of a medial meniscal autograft implanted in a cadaveric knee adversely affects the pressure distribution on the tibial plateau. Am J Sports Med 30:74–82PubMed Sekaran SV, Hull ML, Howell SM (2002) Nonanatomic location of the posterior horn of a medial meniscal autograft implanted in a cadaveric knee adversely affects the pressure distribution on the tibial plateau. Am J Sports Med 30:74–82PubMed
72.
go back to reference Shoemaker SC, Markolf KL (1986) The role of the meniscus in the anterior–posterior stability of the loaded anterior cruciate-deficient knee. Effects of partial versus total excision. J Bone Joint Surg Am 68:71–79PubMed Shoemaker SC, Markolf KL (1986) The role of the meniscus in the anterior–posterior stability of the loaded anterior cruciate-deficient knee. Effects of partial versus total excision. J Bone Joint Surg Am 68:71–79PubMed
73.
go back to reference Smith CD, Masouros SD, Hill AM, Wallace AL, Amis AA, Bull AMJ (2008) Tensile properties of the human glenoid labrum. J Anat 212:49–54PubMed Smith CD, Masouros SD, Hill AM, Wallace AL, Amis AA, Bull AMJ (2008) Tensile properties of the human glenoid labrum. J Anat 212:49–54PubMed
74.
go back to reference Sommerlath K, Gillquist J (1992) The effect of a meniscal prosthesis on knee biomechanics and cartilage. An experimental study in rabbits. Am J Sports Med 20:73–81PubMedCrossRef Sommerlath K, Gillquist J (1992) The effect of a meniscal prosthesis on knee biomechanics and cartilage. An experimental study in rabbits. Am J Sports Med 20:73–81PubMedCrossRef
75.
go back to reference Sweigart MA, Zhu CF, Burt DM, Deholl PD, Agrawal CM, Clanton TO, Athanasiou KA (2004) Intraspecies and interspecies comparison of the compressive properties of the medial meniscus. Ann Biomed Eng 32:1569–1579PubMedCrossRef Sweigart MA, Zhu CF, Burt DM, Deholl PD, Agrawal CM, Clanton TO, Athanasiou KA (2004) Intraspecies and interspecies comparison of the compressive properties of the medial meniscus. Ann Biomed Eng 32:1569–1579PubMedCrossRef
76.
go back to reference Tissakht M, Ahmed AM (1995) Tensile stress–strain characteristics of the human meniscal material. J Biomech 28:411–422PubMedCrossRef Tissakht M, Ahmed AM (1995) Tensile stress–strain characteristics of the human meniscal material. J Biomech 28:411–422PubMedCrossRef
77.
go back to reference Vedi V, Williams A, Tennant SJ, Spouse E, Hunt DM, Gedroyc WM (1999) Meniscal movement. An in-vivo study using dynamic MRI. J Bone Joint Surg Br 81:37–41PubMedCrossRef Vedi V, Williams A, Tennant SJ, Spouse E, Hunt DM, Gedroyc WM (1999) Meniscal movement. An in-vivo study using dynamic MRI. J Bone Joint Surg Br 81:37–41PubMedCrossRef
78.
go back to reference Verdonk P, Depaepe Y, Desmyter S, De Muynck M, Almqvist KF, Verstraete K, Verdonk R (2004) Normal and transplanted lateral knee menisci: evaluation of extrusion using magnetic resonance imaging and ultrasound. Knee Surg Sports Traumatol Arthrosc 12:411–419PubMedCrossRef Verdonk P, Depaepe Y, Desmyter S, De Muynck M, Almqvist KF, Verstraete K, Verdonk R (2004) Normal and transplanted lateral knee menisci: evaluation of extrusion using magnetic resonance imaging and ultrasound. Knee Surg Sports Traumatol Arthrosc 12:411–419PubMedCrossRef
79.
go back to reference Villegas DF, Maes JA, Magee SD, Haut Donahue TL (2007) Failure properties and strain distribution analysis of meniscal attachments. J Biomech 40:2655–2662PubMedCrossRef Villegas DF, Maes JA, Magee SD, Haut Donahue TL (2007) Failure properties and strain distribution analysis of meniscal attachments. J Biomech 40:2655–2662PubMedCrossRef
80.
go back to reference Voloshin AS, Wosk J (1983) Shock absorption of meniscectomized and painful knees: a comparative in vivo study. J Biomed Eng 5:157–161PubMedCrossRef Voloshin AS, Wosk J (1983) Shock absorption of meniscectomized and painful knees: a comparative in vivo study. J Biomed Eng 5:157–161PubMedCrossRef
81.
go back to reference Walker PS, Erkman MJ (1975) The role of the menisci in force transmission across the knee. Clin Orthop Relat Res 109:184–192PubMedCrossRef Walker PS, Erkman MJ (1975) The role of the menisci in force transmission across the knee. Clin Orthop Relat Res 109:184–192PubMedCrossRef
82.
go back to reference Wang CJ, Walker PS (1974) Rotatory laxity of the human knee joint. J Bone Joint Surg Am 56:161–170PubMed Wang CJ, Walker PS (1974) Rotatory laxity of the human knee joint. J Bone Joint Surg Am 56:161–170PubMed
83.
go back to reference Wirth CJ (1996) The meniscus—structure, morphology and function. Knee 3:57–58CrossRef Wirth CJ (1996) The meniscus—structure, morphology and function. Knee 3:57–58CrossRef
84.
go back to reference Yao J, Lancianese S, Hovinga K, Lee J, Lerner AL (2008) Magnetic resonance image analysis of meniscal translation and tibio-menisco-femoral contact in deep knee flexion. J Orthop Res 26:673–684PubMedCrossRef Yao J, Lancianese S, Hovinga K, Lee J, Lerner AL (2008) Magnetic resonance image analysis of meniscal translation and tibio-menisco-femoral contact in deep knee flexion. J Orthop Res 26:673–684PubMedCrossRef
Metadata
Title
Biomechanics of the meniscus-meniscal ligament construct of the knee
Authors
S. D. Masouros
I. D. McDermott
A. A. Amis
A. M. J. Bull
Publication date
01-12-2008
Publisher
Springer-Verlag
Published in
Knee Surgery, Sports Traumatology, Arthroscopy / Issue 12/2008
Print ISSN: 0942-2056
Electronic ISSN: 1433-7347
DOI
https://doi.org/10.1007/s00167-008-0616-9

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