Skip to main content
Erschienen in: Knee Surgery, Sports Traumatology, Arthroscopy 5/2013

01.05.2013 | Shoulder

Nonlinear stress analysis of the supraspinatus tendon using three-dimensional finite element analysis

verfasst von: Atsushi Inoue, Etsuo Chosa, Keisuke Goto, Naoya Tajima

Erschienen in: Knee Surgery, Sports Traumatology, Arthroscopy | Ausgabe 5/2013

Einloggen, um Zugang zu erhalten

Abstract

Purpose

No studies have used stress analysis with finite element analysis (FEA) to determine the causes of and mechanisms underlying rotator cuff tears. Therefore, we performed a biomechanical evaluation of the changes in stress distribution on the rotator cuff using three-dimensional (3-D) FEA.

Methods

The 3-D FEA model of shoulder joint allowed for abduction angles of 0°, 45° and 90° from the plane of the scapula and included the anatomical insertion points of the three major rotator cuff tendons and the middle fibres of the deltoid muscle. Stress distribution of the supraspinatus tendon on 3-D FEA was validated by a comparison with cadaveric and two-dimensional finite element model.

Results

The principal stress peaked in the region approximately 1 cm proximal to the insertion of the supraspinatus tendon. Furthermore, the stress on the joint side increased at the anterior edge of the supraspinatus tendon at abduction angles of 45° and 90°.

Conclusion

There are differences in stress changes between the joint side and bursal side of the supraspinatus tendon within the angles of abduction. The maximal tensile stress was observed on the articular side of the anterior edge of the supraspinatus tendon at 90° abduction. Our results indicate that the difference in tensile stress between the two layers results in delamination and causes partial-thickness tears.

Level of evidence

Decision analysis, Level II.
Literatur
1.
Zurück zum Zitat Apreleva M, Parsons IM, Warner JJP, Fu FH, Woo SLY (2000) Experimental investigation of reaction forces at the glenohumeral joint during active abduction. J Should Elbow Surg 9:409–417CrossRef Apreleva M, Parsons IM, Warner JJP, Fu FH, Woo SLY (2000) Experimental investigation of reaction forces at the glenohumeral joint during active abduction. J Should Elbow Surg 9:409–417CrossRef
3.
Zurück zum Zitat Buchler B, Ramaniraka NA, Rakotomanaa LR, Ianotii JP, Farron A (2002) A finite element model of the shoulder: application to the comparison of ormal and osteoartritic joint. Clin Biomech 17:630–639CrossRef Buchler B, Ramaniraka NA, Rakotomanaa LR, Ianotii JP, Farron A (2002) A finite element model of the shoulder: application to the comparison of ormal and osteoartritic joint. Clin Biomech 17:630–639CrossRef
4.
Zurück zum Zitat Codman EA (1931) The pathology associated with rupture of the supraspinatus tendon. Ann Surg 93:348–359PubMedCrossRef Codman EA (1931) The pathology associated with rupture of the supraspinatus tendon. Ann Surg 93:348–359PubMedCrossRef
5.
Zurück zum Zitat Goto K, Tajima N, Chosa E, Totoribe K, Kuroki H, Arizumi Y, Takashi A (2002) Mechanical analysis of the lumbar vertebrae in a three-dimensional finite element method model in which intradiscal pressure in the nucleus pulposus was used to establish the model. J Orthop Sci 7:243–246PubMedCrossRef Goto K, Tajima N, Chosa E, Totoribe K, Kuroki H, Arizumi Y, Takashi A (2002) Mechanical analysis of the lumbar vertebrae in a three-dimensional finite element method model in which intradiscal pressure in the nucleus pulposus was used to establish the model. J Orthop Sci 7:243–246PubMedCrossRef
6.
Zurück zum Zitat Inman VT, Saunders M, Abbott LC (1944) Observations on the function of the shoulder joint. J Bone Jt Surg Am 42:1–30 Inman VT, Saunders M, Abbott LC (1944) Observations on the function of the shoulder joint. J Bone Jt Surg Am 42:1–30
7.
Zurück zum Zitat Itoi E, Berblund LJ, Grabowski JJ, Schultz FM, Growney ES, Morrey BF, An KN (2005) Tensile properties of the supraspinatus tendon. J Orthop Res 13:578–584CrossRef Itoi E, Berblund LJ, Grabowski JJ, Schultz FM, Growney ES, Morrey BF, An KN (2005) Tensile properties of the supraspinatus tendon. J Orthop Res 13:578–584CrossRef
8.
Zurück zum Zitat Karlsson D, Peterson B (1992) Towards a model for force predictions in the human shoulder. J Biomech 25:189–199PubMedCrossRef Karlsson D, Peterson B (1992) Towards a model for force predictions in the human shoulder. J Biomech 25:189–199PubMedCrossRef
9.
Zurück zum Zitat Keyes EL (1935) Anatomical observations on senile changes in the shoulder. J Bone Jt Surg 17-A:953–960 Keyes EL (1935) Anatomical observations on senile changes in the shoulder. J Bone Jt Surg 17-A:953–960
10.
Zurück zum Zitat Lindblom K (1939) On pathogenesis of ruptures of the tendon aponeurosis of the shoulder joint. Acta Radial 20:563–577CrossRef Lindblom K (1939) On pathogenesis of ruptures of the tendon aponeurosis of the shoulder joint. Acta Radial 20:563–577CrossRef
11.
Zurück zum Zitat Luo ZP, Hsh HC, Grabowski JJ, Morrey BF, An KN (1998) Mechanical environment associated with rotator cuff tears. J Should Elbow Surg 7:616–620CrossRef Luo ZP, Hsh HC, Grabowski JJ, Morrey BF, An KN (1998) Mechanical environment associated with rotator cuff tears. J Should Elbow Surg 7:616–620CrossRef
12.
Zurück zum Zitat Nakajima T, Rokuuma N, Hamada K, Tomatsu T, Fukuda H (1994) Histologic and biomechanical characteristics of the supraspinatus tendon: reference to rotator cuff tearing. J Should Elbow Surg 3:79–87CrossRef Nakajima T, Rokuuma N, Hamada K, Tomatsu T, Fukuda H (1994) Histologic and biomechanical characteristics of the supraspinatus tendon: reference to rotator cuff tearing. J Should Elbow Surg 3:79–87CrossRef
13.
14.
Zurück zum Zitat Parsons IM, Apreleva M, Fu FH, Woo SLY (2002) The effect of the rotator cuff tears on reaction forces at the glenohumeral joint. J Orthop Res 20:439–446PubMedCrossRef Parsons IM, Apreleva M, Fu FH, Woo SLY (2002) The effect of the rotator cuff tears on reaction forces at the glenohumeral joint. J Orthop Res 20:439–446PubMedCrossRef
15.
Zurück zum Zitat Reilly P, Amis AA, Wallace AL, Emery RJH (2003) Mechanical factors in the initiation and propagation of tears the rotator cuff. J Bone Jt Surg 4:559–594 Reilly P, Amis AA, Wallace AL, Emery RJH (2003) Mechanical factors in the initiation and propagation of tears the rotator cuff. J Bone Jt Surg 4:559–594
16.
Zurück zum Zitat Sano H, Wakabayashi I, Itoi E (2006) Stress distribution in the supraspinatus tendon with partial thickness tears. J Should Elbow Surg 15:100–105CrossRef Sano H, Wakabayashi I, Itoi E (2006) Stress distribution in the supraspinatus tendon with partial thickness tears. J Should Elbow Surg 15:100–105CrossRef
17.
Zurück zum Zitat Seki N, Itoi E, Shibuya Y, Wakabayashi I, Sano H, Sashi R (2008) Mechanical environment of the supraspinatus tendon three-dimensional finite element model analysis. J Orthop Sci 13:348–353PubMedCrossRef Seki N, Itoi E, Shibuya Y, Wakabayashi I, Sano H, Sashi R (2008) Mechanical environment of the supraspinatus tendon three-dimensional finite element model analysis. J Orthop Sci 13:348–353PubMedCrossRef
18.
Zurück zum Zitat Terrier A, Reist A, Vogel A, Farron A (2007) Effect of supraspinatus deficiency on humerus translation and glenohumeral contact force during abduction. Clin Biomech 22:645–651CrossRef Terrier A, Reist A, Vogel A, Farron A (2007) Effect of supraspinatus deficiency on humerus translation and glenohumeral contact force during abduction. Clin Biomech 22:645–651CrossRef
19.
Zurück zum Zitat Tuite MJ, Turnbull JR, Orwin JF (1998) Anterior versus posterior and rim-rent rotator cuff tears. Skeletal Radiol 27:237–243PubMedCrossRef Tuite MJ, Turnbull JR, Orwin JF (1998) Anterior versus posterior and rim-rent rotator cuff tears. Skeletal Radiol 27:237–243PubMedCrossRef
20.
Zurück zum Zitat Van der Helm FCT (1994) A finite element musculoskeletal model of the shoulder mechanism. J Biomech 24:551–569CrossRef Van der Helm FCT (1994) A finite element musculoskeletal model of the shoulder mechanism. J Biomech 24:551–569CrossRef
21.
Zurück zum Zitat Wakabayashi I, Itoi E, Sano H, Shibuya Y, Sashi R, Minagawa H, Kobayashi M (2003) Mechanical environment of the supraspinatus tendon: a two-dimensional finite element model analysis. J Should Elbow Surg 12:612–617CrossRef Wakabayashi I, Itoi E, Sano H, Shibuya Y, Sashi R, Minagawa H, Kobayashi M (2003) Mechanical environment of the supraspinatus tendon: a two-dimensional finite element model analysis. J Should Elbow Surg 12:612–617CrossRef
22.
Zurück zum Zitat Walch G, Boileau P, Noel E, Donell ST (1992) Impingement of the deep surface of the supraspinatus tendon on the posterosuperior glenoid rim: an arthroscopic study. J Should Elbow Surg 1:238–245CrossRef Walch G, Boileau P, Noel E, Donell ST (1992) Impingement of the deep surface of the supraspinatus tendon on the posterosuperior glenoid rim: an arthroscopic study. J Should Elbow Surg 1:238–245CrossRef
Metadaten
Titel
Nonlinear stress analysis of the supraspinatus tendon using three-dimensional finite element analysis
verfasst von
Atsushi Inoue
Etsuo Chosa
Keisuke Goto
Naoya Tajima
Publikationsdatum
01.05.2013
Verlag
Springer-Verlag
Erschienen in
Knee Surgery, Sports Traumatology, Arthroscopy / Ausgabe 5/2013
Print ISSN: 0942-2056
Elektronische ISSN: 1433-7347
DOI
https://doi.org/10.1007/s00167-012-2008-4

Weitere Artikel der Ausgabe 5/2013

Knee Surgery, Sports Traumatology, Arthroscopy 5/2013 Zur Ausgabe

Arthropedia

Grundlagenwissen der Arthroskopie und Gelenkchirurgie. Erweitert durch Fallbeispiele, Videos und Abbildungen. 
» Jetzt entdecken

Update Orthopädie und Unfallchirurgie

Bestellen Sie unseren Fach-Newsletter und bleiben Sie gut informiert.