Biomechanical functional and sensory modelling of the gastrointestinal tract

Author:

Liao Donghua1,Lelic Dina12,Gao Feng1,Drewes Asbjørn Mohr12,Gregersen Hans123

Affiliation:

1. Mech-Sense, Aalborg Hospital Science and Innovation CentreSøndre Skovvej 15, 9000 Aalborg, Denmark

2. Institute of Health Technology, Aalborg University9100 Aalborg, Denmark

3. National Center of Ultrasound in Gastroenterology, Bergen University and Haukeland Hospital5021 Bergen, Norway

Abstract

The aim of this review is to describe the biomechanical, functional and sensory modelling work that can be used to integrate the physiological, anatomical and medical knowledge of the gastrointestinal (GI) system. The computational modelling in the GI tract was designed, implemented and evaluated using a series of information and communication technologies-based tools. These tools modelled the morphometry, biomechanics, functions and sensory aspects of the human GI tract. The research presented in this review is based on the virtual physiological human concept that pursues a holistic approach to representation of the human body. Such computational modelling combines imaging data, GI physiology, the gut–brain axis, geometrical and biomechanical reconstruction, and computer graphics for mechanical, electronic and pain analysis. The developed modelling will aid research and ensure that medical professionals benefit through the provision of relevant and precise information about a patient's condition. It will also improve the accuracy and efficiency of the medical procedures that could result in reduced cost for diagnosis and treatment.

Publisher

The Royal Society

Subject

General Physics and Astronomy,General Engineering,General Mathematics

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