Published Resources Details

Journal Article

Author
Wittek, Adam; Miller, Karol; Kikinis, Ron; Warfield, Simon K.
Title
Patient specific model of brain deformation: Application to medical image registration
In
Journal of Biomechanics
Imprint
vol. 40, no. 4, 2007, pp. 919-929
ISBN/ISSN
0021-9290
Url
https://doi.org/10.1016/j.jbiomech.2006.02.021
Description

Adam Wittek, and Karol Miller, were affiliated with Intelligent Systems for Medicine Laboratory, School of Mechanical Engineering, The University of Western Australia; and Ron Kikinis, and Simon K. Warfield were affiliated with the Computational Radiology Laboratory, Brigham and Women's Hospital and Harvard Medical School, Boston, USA.

[This paper was awarded the George Julius Medal 2012]

Abstract

This contribution presents finite element computation of the deformation field within the brain during craniotomy-induced brain shift. The results were used to illustrate the capabilities of non-linear (i.e. accounting for both geometric and material non-linearities) finite element analysis in non-rigid registration of pre- and intra-operative magnetic resonance images of the brain. We used patient-specific hexahedron-dominant finite element mesh, together with realistic material properties for the brain tissue and appropriate contact conditions at boundaries. The model was loaded by the enforced motion of nodes (i.e. through prescribed motion of a boundary) at the brain surface in the craniotomy area. We suggest using explicit time-integration scheme for discretised equations of motion, as the computational times are much shorter and accuracy, for practical purposes, the same as in the case of implicit integration schemes. Application of the computed deformation field to register (i.e. align) the pre-operative images with the intra-operative ones indicated that the model very accurately predicts the displacements of the tumour and the lateral ventricles even for limited information about the brain surface deformation. The prediction accuracy improves when information about deformation of not only exposed (during craniotomy) but also unexposed parts of the brain surface is used when prescribing loading. However, it appears that the accuracy achieved using information only about the deformation of the exposed surface, that can be determined without intra-operative imaging, is acceptable. The presented results show that non-linear biomechanical models can complement medical image processing techniques when conducting non-rigid registration. Important advantage of such models over the previously used linear ones is that they do not require unrealistic assumptions that brain deformations are infinitesimally small and brain stress-strain relationship is linear.

EOAS ID: bib/ASBS20022.htm

This Edition: 2026 August - Bibliographies
Larneuk - Gariwerd calendar - Pre-spring: late July to August - season of nesting birds
Reference: https://www.bom.gov.au/resources/indigenous-weather-knowledge/indigenous-seasonal-calendars/gariwerd-calendar#bom-anchor-list__item-larneuk-season-of-nesting-birds

Publisher: Swinburne University of Technology.

Except where otherwise noted, content on this site is
Licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International License.
What do we mean by this?

The Encyclopedia of Australian Science and Innovation uses the Online Heritage Resource Manager (OHRM), a relational data curation and web publication system developed by the eScholarship Research Centre and its predecessors at the University of Melbourne 1999-2020. The OHRM has been maintained by Gavan McCarthy since 2020.

Cite this page: https://www.eoas.info/bib/ASBS20022.htm

For earlier editions see the Internet Archive at: https://web.archive.org/web/*/www.eoas.info

"... the rengitj, as a visible mark or imprint on the land, is characterised as a place of origin, the repository of all names, as well as a kind of mapped visual expression of the connection between people and places which is to be carried out in the temporal sequence of the journey." Fanca Tamisari (1998) 'Body, Vision and Movement: In the footprints of the ancestors'. Oceania 68(4) p260