Does the Suprascapular Nerve Move within the Suprascapular Notch? Biomechanical Perspective Using the Finite Element Method.


Journal

Yonsei medical journal
ISSN: 1976-2437
Titre abrégé: Yonsei Med J
Pays: Korea (South)
ID NLM: 0414003

Informations de publication

Date de publication:
Jul 2022
Historique:
received: 10 09 2021
revised: 18 03 2022
accepted: 29 03 2022
entrez: 24 6 2022
pubmed: 25 6 2022
medline: 28 6 2022
Statut: ppublish

Résumé

We aimed to analyze changes in suprascapular nerve (SSN) position within the suprascapular notch during in vivo shoulder abduction. Three-dimensional models of the shoulder complex were constructed based on magnetic resonance imaging of the brachial plexus (BP-MR) in a patient diagnosed with SSN dysfunction but normal scapular movement. Using BP-MR in neutral position and computed tomography data on shoulder abduction, shoulder abduction was simulated as the transition between two positions of the shoulder complex with overlapping of a neutral and abducted scapula. SSN movement during abduction was evaluated using the finite element method. Contact stress on the SSN was measured in the presence and absence of the transverse scapular ligament (TSL). In the neutral position, the SSN ran almost parallel to the front of the TSL until entering the suprascapular notch and slightly contacted the anterior-inferior border of the TSL. As shoulder abduction progressed, contact stress decreased due to gradual loss of contact with the TSL. In the TSL-free scapula, there was no contact stress on the SSN in the neutral position. Towards the end of shoulder abduction, contact stress increased again as the SSN began to contact the base of the suprascapular notch in both TSL conditions. We identified changes in the position of the SSN path within the suprascapular notch during shoulder abduction. The SSN starts in contact with the TSL and moves toward the base of the suprascapular notch with secondary contact. These findings may provide rationale for TSL release in SSN entrapment.

Identifiants

pubmed: 35748077
pii: 63.657
doi: 10.3349/ymj.2022.63.7.657
pmc: PMC9226829
doi:

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

657-664

Subventions

Organisme : National Research Foundation of Korea
ID : NRF-2016R1D1A1A09920056
Pays : Korea

Informations de copyright

© Copyright: Yonsei University College of Medicine 2022.

Déclaration de conflit d'intérêts

The authors have no potential conflicts of interest to disclose.

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Auteurs

Yon-Sik Yoo (YS)

Camp 9 Orthopedic Clinic, Hwaseong, Korea.

Seong-Wook Jang (SW)

Assistive Technology Research Team for Independent Living, Research Institute, National Rehabilitation Center, Seoul, Korea.

Yoon Sang Kim (YS)

BioComputing Lab, School of Computer Science and Engineering, Korea University of Technology and Education, Cheonan, Korea.

Jung-Ah Choi (JA)

Department of Radiology, Hallym University Dongtan Sacred Heart Hospital, Hallym University College of Medicine, Hwaseong, Korea.

Jung Hyun Oh (JH)

Department of Orthopedic Surgery, Hallym University Dongtan Sacred Heart Hospital, Hallym University College of Medicine, Hwaseong, Korea.

Jeung Yeol Jeong (JY)

Department of Orthopedic Surgery, Hallym University Dongtan Sacred Heart Hospital, Hallym University College of Medicine, Hwaseong, Korea. inzaghy@naver.com.

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