Cheng Leo K, Komuro Rie, Austin Travis M, Buist Martin L, Pullan Andrew J
Bioengineering Institute, The University of Auckland, Private Bag 92019, Auckland 1142, New Zealand.
World J Gastroenterol. 2007 Mar 7;13(9):1378-83. doi: 10.3748/wjg.v13.i9.1378.
One of the major aims of the International Union of Physiological Sciences (IUPS) Physiome Project is to develop multiscale mathematical and computer models that can be used to help understand human health. We present here a small facet of this broad plan that applies to the gastrointestinal system. Specifically, we present an anatomically and physiologically based modelling framework that is capable of simulating normal and pathological electrical activity within the stomach and small intestine. The continuum models used within this framework have been created using anatomical information derived from common medical imaging modalities and data from the Visible Human Project. These models explicitly incorporate the various smooth muscle layers and networks of interstitial cells of Cajal (ICC) that are known to exist within the walls of the stomach and small bowel. Electrical activity within individual ICCs and smooth muscle cells is simulated using a previously published simplified representation of the cell level electrical activity. This simulated cell level activity is incorporated into a bidomain representation of the tissue, allowing electrical activity of the entire stomach or intestine to be simulated in the anatomically derived models. This electrical modelling framework successfully replicates many of the qualitative features of the slow wave activity within the stomach and intestine and has also been used to investigate activity associated with functional uncoupling of the stomach.
国际生理科学联合会(IUPS)生理组计划的主要目标之一是开发多尺度数学和计算机模型,以帮助理解人类健康。我们在此展示这一广泛计划中适用于胃肠系统的一个小方面。具体而言,我们提出了一个基于解剖学和生理学的建模框架,该框架能够模拟胃和小肠内的正常和病理电活动。此框架内使用的连续体模型是利用从常见医学成像模态获得的解剖学信息以及可视人计划的数据创建的。这些模型明确纳入了已知存在于胃和小肠壁内的各种平滑肌层和 Cajal 间质细胞网络。使用先前发表的细胞水平电活动简化表示法来模拟单个 Cajal 间质细胞和平滑肌细胞内的电活动。这种模拟的细胞水平活动被纳入组织的双域表示中,从而能够在源自解剖学的模型中模拟整个胃或肠道的电活动。这个电建模框架成功地复制了胃和肠道内慢波活动的许多定性特征,并且还被用于研究与胃功能解耦相关的活动。