406
Views
1
CrossRef citations to date
0
Altmetric
Research Article

Effect of the medial collateral ligament and the lateral ulnar collateral ligament injury on elbow stability: a finite element analysis

, , , , &
Pages 1517-1529 | Received 25 Mar 2020, Accepted 01 Mar 2021, Published online: 14 Mar 2021

References

  • Bendjaballah MZ, Shirazi-Adl A, Zukor DJ. 1997. Finite element analysis of human knee joint in varus-valgus. Clin Biomech (Bristol, Avon). 12(3):139–148.
  • Borzelli D, Gastaldi L, Bignardi C, Audenino A, Terzini M, Sard A, Pastorelli S. 2018. Method for measuring the displacement of cadaveric elbow after the section of medial collateral ligament anterior and posterior bundles. In: Ferraresi C, Quaglia G, editors. Advances in service and industrial robotics. RAAD 2017. Mechanisms and machine science. Cham: Springer, vol. 49; p. 972–979.
  • Büchler P, Ramaniraka NA, Rakotomanana LR, Iannotti JP, Farron A. 2002. A finite element model of the shoulder application to the comparison of normal and osteoarthritic joints. Clin Biomech (Bristol, Avon). 17(9–10):630–639.
  • Callaway GH, Field LD, Deng XH, Torzilli PA, Warren RF. 1997. Biomechanical evaluation of the medial collateral ligament of the elbow. J Bone & Joint Surg Am. 79(8):1223–1231.
  • Debski RE, Weiss JA, Newman WJ, Moore SM, McMahon PJ. 2005. Stress and strain in the anterior band of the inferior glenohumeral ligament during a simulated clinical examination. J Shoulder Elbow Surg. 14(1 Suppl S):24S–31S.
  • Dodds SD, Fishler T. 2013. Terrible triad of the elbow. Orthop Clin North Am. 44(1):47–58.
  • Du D, Hsu P, Zhu Z, Zhang C. 2020. Current surgical options and innovation for repairing articular cartilage defects in the femoral head. J Orthop Translat. 21:122–128.
  • Edwards DS, Arshad MS, Luokkala T, Kedgley AE, Watts AC. 2018. The contribution of the posterolateral capsule to elbow joint stability: a cadaveric biomechanical investigation. J Shoulder Elbow Surg. 27(7):1178–1184.
  • Floris S, Olsen BS, Dalstra M, Slzrjbierg JO, Sneppen O. 1998. The medial collateral ligament of the elbow joint:Anatomy and kinematics. J Shoulder Elbow Surg, 7(4):345–351.
  • Forthman C, Henket M, Ring DC. 2007. Elbow dislocation with intra-articular fracture: the results of operative treatment without repair of the medial collateral ligament. J Hand Surg Am. 32(8):1200–1209.
  • Ghosh S, Bowen J, Jiang K, Espino DM, Shepherd DE. 2013. Investigation of techniques for the measurement of articular cartilage surface roughness. Micron. 44:179–184.
  • Gluck MJ, Beck CM, Golan EJ, Nasser P, Shukla DR, Hausman MR. 2018. Varus posteromedial rotatory instability: a biomechanical analysis of posterior bundle of the medial ulnar collateral ligament reconstruction. J Shoulder Elbow Surg. 27(7):1317–1325.
  • Harrison JWK, Chitre A, Lammin K, Warner JG, Hodgson SP. 2007. Radial head fractures in adults. Current Orthopaedics. 21(1):59–64.
  • Hattori H, Akasaka K, Otsudo T, Hall T. 2020. Grip strength is not related to increased medial elbow joint-space gapping induced by repetitive pitching. JSES Int. 4(4):1026–1030.
  • Hernandez V, Rezzoug N, Jacquier-Bret J, Gorce P. 2016. Human upper-limb force capacities evaluation with robotic models for ergonomic applications: effect of elbow flexion. Comput Methods Biomech Biomed Engin. 19(4):440–449.
  • Hyman J, Breazeale NM, Altchek DW. 2001. Valgus instability of the elbow in athletes. Clin Sports Med. 20(1):25–45.
  • Jeong WK, Oh JK, Hwang JH, Hwang SM, Lee WS. 2010. Results of terrible triads in the elbow: the advantage of primary restoration of medial structure. J Orthop Sci. 15(5):612–619.
  • Karademir G, Bachman DR, Stylianou AP, Cil A. 2019. Posteromedial rotatory incongruity of the elbow: a computational kinematics study. J Shoulder Elbow Surg. 28(2):371–380.
  • Karbach LE, Elfar J. 2017. Elbow instability: Anatomy, biomechanics, diagnostic Maneuvers, and testing. J Hand Surg Am. 42(2):118–126.
  • Kodek T, Munih M. 2003. An analysis of static and dynamic joint torques in elbow flexion-extension movements. Simul Modell Pract Theory. 11(3–4):297–311.
  • Koo TK, Mak AF. 2006. A neuromusculoskeletal model to simulate the constant angular velocity elbow extension test of spasticity. Med Eng Phys. 28(1):60–69.
  • Lawless BM, Sadeghi H, Temple DK, Dhaliwal H, Espino DM, Hukins DWL. 2017. Viscoelasticity of articular cartilage: Analysing the effect of induced stress and the restraint of bone in a dynamic environment. J Mech Behav Biomed Mater. 75:293–301.
  • Luokkala T, Temperley D, Basu S, Karjalainen TV, Watts AC. 2019. Analysis of magnetic resonance imaging-confirmed soft tissue injury pattern in simple elbow dislocations. J Shoulder Elbow Surg. 28(2):341–348.
  • Morrey BF, An KN. 1985. Functional anatomy of the ligaments of the elbow. Clin Orthop. 201(201):84.
  • Mulla DM, Hodder JN, Maly MR, Lyons JL, Keir PJ. 2019. Modeling the effects of musculoskeletal geometry on scapulohumeral muscle moment arms and lines of action. Comput Methods Biomech Biomed Engin. 22(16):1311–1322.
  • O’Brien MJ, Iii FHS. 2018. Treatment and rehabilitation of elbow dislocations. Clin Orthopaed Rehabil A Team Appr, 2018:77–80.
  • Panero E, Gastaldi L, Terzini M, Bignardi C, Sard A, Pastorelli S. 2019. Biomechanical role and motion contribution of ligaments and bony constraints in the elbow stability: A preliminary study. Bioengineering (Basel). 6(3):68.
  • Pichora JE, Fraser GS, Ferreira LF, Brownhill JR, Johnson JA, King GJ. 2007. The effect of medial collateral ligament repair tension on elbow joint kinematics and stability. J Hand Surg Am. 32(8):1210–1217.
  • Quapp KM, Weiss JA. 1998. Material characterization of human medial collateral ligament. J Biomech Eng. 120(6):757–763.
  • Rahman M, Cil A, Stylianou AP. 2016. Prediction of elbow joint contact mechanics in the multibody framework. Med Eng Phys. 38(3):257–266.
  • Safran MR, Baillargeon D. 2005. Soft-tissue stabilizers of the elbow. J Shoulder Elbow Surg. 14(1 Suppl S):179S–185S.
  • Salin D, Arnoux PJ, Kayvantash K, Behr M. 2016. Implementation of reflex loops in a biomechanical finite element model. Comput Methods Biomech Biomed Engin. 19(14):1578–1582.
  • Shukla DR, Golan E, Weiser MC, Nasser P, Choueka J, Hausman M. 2018. The posterior bundle's effect on posteromedial elbow instability after a transverse coronoid fracture: A biomechanical study. J Hand Surg Am. 43(4):381.e381–381.e388.
  • Sochol KM, Andelman SM, Koehler SM, Hausman MR. 2019. Treatment of traumatic elbow instability with an internal joint stabilizer. J Hand Surg Am. 44(2):161.e1–161.e167.
  • Stoneback JW, Owens BD, Sykes J, Athwal GS, Pointer L, Wolf JM. 2012. Incidence of elbow dislocations in the United States population. J Bone Joint Surg Am. 94(3):240–245.
  • Takatori K, Hashizume H, Wake H, Inoue H, Nagayama N. 2002. Analysis of stress distribution in the humeroradial joint. J Orthop Sci. 7(6):650–657.
  • Tarassoli P, McCann P, Amirfeyz R. 2017. Complex instability of the elbow. Injury. 48(3):568–577.
  • Terzini M, Zanetti EM, Audenino AL, Putame G, Gastaldi L, Pastorelli S, Panero E, Sard A, Bignardi C. 2019. Multibody modelling of ligamentous and bony stabilizers in the human elbow. Muscle Ligaments and Tendons J. 7(4):493.
  • Willing RT, Lalone EA, Shannon H, Johnson JA, King GJ. 2013. Validation of a finite element model of the human elbow for determining cartilage contact mechanics. J Biomech. 46(10):1767–1771.
  • Zhang K, Li L, Yang L, Shi J, Zhu L, Liang H, Wang X, Yang X, Jiang Q. 2019. Effect of degenerative and radial tears of the meniscus and resultant meniscectomy on the knee joint: a finite element analysis. J Orthop Translat. 18:20–31.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.