ISSLS PRIZE IN BIOENGINEERING SCIENCE 2019: biomechanical changes in dynamic sagittal balance and lower limb compensatory strategies following realignment surgery in adult spinal deformity patients.


Journal

European spine journal : official publication of the European Spine Society, the European Spinal Deformity Society, and the European Section of the Cervical Spine Research Society
ISSN: 1432-0932
Titre abrégé: Eur Spine J
Pays: Germany
ID NLM: 9301980

Informations de publication

Date de publication:
05 2019
Historique:
received: 12 02 2019
accepted: 13 02 2019
pubmed: 4 3 2019
medline: 9 7 2020
entrez: 4 3 2019
Statut: ppublish

Résumé

A longitudinal cohort study. To define a set of objective biomechanical metrics that are representative of adult spinal deformity (ASD) post-surgical outcomes and that may forecast post-surgical mechanical complications. Current outcomes for ASD surgical planning and post-surgical assessment are limited to static radiographic alignment and patient-reported questionnaires. Little is known about the compensatory biomechanical strategies for stabilizing sagittal balance during functional movements in ASD patients. We collected in-clinic motion data from 15 ASD patients and 10 controls during an unassisted sit-to-stand (STS) functional maneuver. Joint motions were measured using noninvasive 3D depth mapping sensor technology. Mathematical methods were used to attain high-fidelity joint-position tracking for biomechanical modeling. This approach provided reliable measurements for biomechanical behaviors at the spine, hip, and knee. These included peak sagittal vertical axis (SVA) over the course of the STS, as well as forces and muscular moments at various joints. We compared changes in dynamic sagittal balance (DSB) metrics between pre- and post-surgery and then separately compared pre- and post-surgical data to controls. Standard radiographic and patient-reported outcomes significantly improved following realignment surgery. From the DSB biomechanical metrics, peak SVA and biomechanical loads and muscular forces on the lower lumbar spine significantly reduced following surgery (- 19 to - 30%, all p < 0.05). In addition, as SVA improved, hip moments decreased (- 28 to - 65%, all p < 0.05) and knee moments increased (+ 7 to + 28%, p < 0.05), indicating changes in lower limb compensatory strategies. After surgery, DSB data approached values from the controls, with some post-surgical metrics becoming statistically equivalent to controls. Longitudinal changes in DSB following successful multi-level spinal realignment indicate reduced forces on the lower lumbar spine along with altered lower limb dynamics matching that of controls. Inadequate improvement in DSB may indicate increased risk of post-surgical mechanical failure. These slides can be retrieved under Electronic Supplementary Material.

Identifiants

pubmed: 30826876
doi: 10.1007/s00586-019-05925-2
pii: 10.1007/s00586-019-05925-2
pmc: PMC6536471
doi:

Types de publication

Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

Langues

eng

Sous-ensembles de citation

IM

Pagination

905-913

Subventions

Organisme : NIH HHS
ID : R41AR068202
Pays : United States
Organisme : NIH HHS
ID : 5TL1TR001871-02
Pays : United States

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Auteurs

Jeannie F Bailey (JF)

Department of Orthopaedic Surgery, University of California, San Francisco, USA.

Robert P Matthew (RP)

Department of Electrical Engineering and Computer Science, University of California, Berkeley, USA.

Sarah Seko (S)

Department of Electrical Engineering and Computer Science, University of California, Berkeley, USA.

Patrick Curran (P)

Department of Orthopaedic Surgery, University of California, San Francisco, USA.

Leslie Chu (L)

Department of Orthopaedic Surgery, University of California, San Francisco, USA.

Sigurd H Berven (SH)

Department of Orthopaedic Surgery, University of California, San Francisco, USA.

Vedat Deviren (V)

Department of Orthopaedic Surgery, University of California, San Francisco, USA.

Shane Burch (S)

Department of Orthopaedic Surgery, University of California, San Francisco, USA.

Jeffrey C Lotz (JC)

Department of Orthopaedic Surgery, University of California, San Francisco, USA. Jeffrey.Lotz@ucsf.edu.

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