254
Views
1
CrossRef citations to date
0
Altmetric
Research Article

Development of a musculoskeletal model of the wrist to predict frictional work dissipated due to tendon gliding resistance in the carpal tunnel

ORCID Icon, , &
Pages 973-984 | Received 09 Jan 2020, Accepted 07 Dec 2020, Published online: 27 Dec 2020

References

  • Barcenilla A, March LM, Chen JS, Sambrook PN. 2012. Carpal tunnel syndrome and its relationship to occupation: a meta-analysis. Rheumatology (Oxford). 51(2):250–261.
  • Bauer JJ, Pavol MJ, Snow CM, Hayes WC. 2007. MRI-derived body segment parameters of children differ from age-based estimates derived using photogrammetry. J Biomech. 40(13):2904–2910.
  • Filius A, Thoreson AR, Ozasa Y, An KN, Zhao C, Amadio PC. 2017. Delineation of the mechanisms of tendon gliding resistance within the carpal tunnel. Clin Biomech. 41:48–53.
  • Foley M, Silverstein B. 2015. The long-term burden of work-related carpal tunnel syndrome relative to upper-extremity fractures and dermatitis in Washington State. Am J Ind Med. 58(12):1255–1269.
  • Foster B, Joshi AA, Borgese M, Abdelhafez Y, Boutin RD, Chaudhari AJ. 2018. WRIST: a WRist Image Segmentation Toolkit for carpal bone delineation from MRI. Comput Med Imaging Graph. 63:31–40.
  • Garg A, Moore JS, Kapellusch JM. 2017. The revised strain index: an improved upper extremity exposure assessment model. Ergonomics. 60(7):912–922.
  • Giersiepen K, Spallek M. 2011. Carpal tunnel syndrome as an occupational disease. Deutsches Aerzteblatt Online. 108(14):238–242.
  • Haeufle D, Günther M, Bayer A, Schmitt S. 2014. Hill-type muscle model with serial damping and eccentric force-velocity relation. J Biomech. 47(6):1531–1536.
  • Hammer M, Günther M, Haeufle D, Schmitt S. 2019. Tailoring anatomical muscle paths: a sheath-like solution for muscle routing in musculoskeletal computer models. Math Biosci. 311:68–81.
  • Holzbaur KR, Murray WM, Delp SL. 2005. A model of the upper extremity for simulating musculoskeletal surgery and analyzing neuromuscular control. Ann Biomed Eng. 33(6):829–840.
  • Holzbaur KR, Murray WM, Gold GE, Delp SL. 2007. Upper limb muscle volumes in adult subjects. J Biomech. 40(4):742–749.
  • IFA. 2015. Bewertung physischer Belastungen gemäss DGUV. Institut für Arbeitsschutz (IFA) der Deutschen Gesetzlich Unfallversicherung. Report No: Information 208-033 (bisher: BGI/GUV-I 7011) (Anhang 3).
  • Keir PJ, Wells RP. 1999. Changes in geometry of the finger flexor tendons in the carpal tunnel with wrist posture and tendon load: an MRI study on normal wrists. Clin Biomech. 14(9):635–645.
  • Keir PJ, Zuniga AF, Mulla DM, Somasundram KG. 2019. Relationships and mechanisms between occupational risk factors and distal upper extremity disorders. Hum Factors. 001872081986068.
  • Ko C, Brown TD. 2007. A fluid-immersed multi-body contact finite element formulation for median nerve stress in the carpal tunnel. Comput Methods Biomech Biomed Engin. 10(5):343–349.
  • Kociolek AM, Tat J, Keir PJ. 2015. Biomechanical risk factors and flexor tendon frictional work in the cadaveric carpal tunnel. J Biomech. 48(3):449–455.
  • Lieber RL, Fazeli BM, Botte MJ. 1990. Architecture of selected wrist flexor and extensor muscles. J Hand Surg Am. 15(2):244–250.
  • Lieber RL, Jacobson MD, Fazeli BM, Abrams RA, Botte MJ. 1992. Architecture of selected muscles of the arm and forearm: anatomy and implications for tendon transfer. J Hand Surg Am. 17(5):787–798.
  • Mirakhorlo M, Beek NV, Wesseling M, Maas H, Veeger HEJ, Jonkers I. 2018. A musculoskeletal model of the hand and wrist: model definition and evaluation. Comput Methods Biomech Biomed Eng. 21(9):548–557.
  • Mirakhorlo M, Visser JMA, de Monsabert B, van der Helm FCT, Maas H, Veeger HEJ. 2016. Anatomical parameters for musculoskeletal modeling of the hand and wrist. Int Biomech. 3(1):40–49.
  • Monsabert BGD, Edwards D, Shah D, Kedgley A. 2018. Importance of consistent datasets in musculoskeletal modelling: a study of the hand and wrist. Ann Biomed Eng. 46(1):71–85.
  • Moore JS, Garg A. 1995. The strain index: a proposed method to analyze jobs for risk of distal upper extremity disorders. Am Ind Hyg Assoc J. 56(5):443–458.
  • Mouzakis DE, Rachiotis G, Zaoutsos S, Eleftheriou A, Malizos KN. 2014. Finite element simulation of the mechanical impact of computer work on the carpal tunnel syndrome. J Biomech. 47(12):2989–2994.
  • Murgia A, Kyberd PJ, Chappell PH, Light CM. 2004. Marker placement to describe the wrist movements during activities of daily living in cyclical tasks. Clin Biomech (Bristol, Avon). 19(3):248–254.
  • Osamura N, Zhao C, Zobitz ME, An KN, Amadio PC. 2007. Evaluation of the material properties of the subsynovial connective tissue in carpal tunnel syndrome. Clin Biomech. 22(9):999–1003.
  • Palmer KT. 2011. Carpal tunnel syndrome: the role of occupational factors. Best Pract Res Clin Rheumatol. 25(1):15–29.
  • Tat J, Kociolek AM, Keir PJ. 2016. Relative displacement of the tendon and subsynovial connective tissue using ultrasound captures different phenomena than mechanical tendon shear. J Biomech. 49(15):3682–3687.
  • Veeger H, Yu B, An KN, Rozendal R. 1997. Parameters for modeling the upper extremity. J Biomech. 30(6):647–652.
  • Woltring HJ. 1991. Representation and calculation of 3-D joint movement. Hum Mov Sci. 10(5):603–616.
  • Wu G, van der Helm FC, Veeger HD, Makhsous M, Roy PV, Anglin C, Nagels J, Karduna AR, McQuade K, Wang X, et al. 2005. ISB recommendation on definitions of joint coordinate systems of various joints for the reporting of human joint motion-Part II: shoulder, elbow, wrist and hand. J Biomech. 38(5):981–992.
  • Zhao C, Ettema AM, Osamura N, Berglund LJ, An KN, Amadio PC. 2007. Gliding characteristics between flexor tendons and surrounding tissues in the carpal tunnel: a biomechanical cadaver study. J Orthop Res. 25(2):185–190.

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.