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PMID: 14685821 Published · ppublish English Journal Article

Anatomically based geometric modelling of the musculo-skeletal system and other organs.

Biomechanics and modeling in mechanobiology ·Vol. 2 ·No. 3 ·2004-03-00 ·Pages 139-55

Fernandez JW, Mithraratne P, Thrupp SF, Tawhai MH, Hunter PJ

Abstract

Anatomically based finite element geometries are becoming increasingly popular in physiological modelling, owing to the demand for modelling that links organ function to spatially distributed properties at the protein, cell and tissue level. We present a collection of anatomically based finite element geometries of the musculo-skeletal system and other organs suitable for use in continuum analysis. These meshes are derived from the widely used Visible Human (VH) dataset and constitute a contribution to the world wide International Union of Physiological Sciences (IUPS) Physiome Project (www.physiome.org.nz). The method of mesh generation and fitting of tricubic Hermite volume meshes to a given dataset is illustrated using a least-squares algorithm that is modified with smoothing (Sobolev) constraints via the penalty method to account for sparse and scattered data. A technique ("host mesh" fitting) based on "free-form" deformation (FFD) is used to customise the fitted (generic) geometry. Lung lobes, the rectus femoris muscle and the lower limb bones are used as examples to illustrate these methods. Geometries of the lower limb, knee joint, forearm and neck are also presented. Finally, the issues and limitations of the methods are discussed.

MeSH Terms
Algorithms Biomechanical Phenomena Computer Simulation Databases as Topic Female Human Body Humans Internet Male Models, Anatomic Models, Statistical Models, Theoretical Musculoskeletal System/anatomy & histology Software
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Fernandez J W
Bioengineering Institute, The University of Auckland, Auckland, New Zealand. [email protected]
Mithraratne P
Thrupp S F
Tawhai M H
Hunter P J
Article Info
Journal
Biomechanics and modeling in mechanobiology
Abbr.
Biomech Model Mechanobiol
ISSN
1617-7959
Published
2004-03-00
Epub
2003-00-17
Pages
139-55
Language
English
Region
Germany
NLM ID
101135325
Subset
IM
Analysis Services
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