Anatomically realistic multiscale models of normal and abnormal gastrointestinal electrical activity
- 期刊名字:世界胃肠病学杂志(英文版)
- 文件大小:
- 论文作者:Leo K Cheng,Rie Komuro,Travis
- 作者单位:Bioengineering Institute,Division of Bioengineering,Department of Engineering Science
- 更新时间:2023-02-08
- 下载次数:次
One of the major aims of the Tnternational 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.
-
C4烯烃制丙烯催化剂 2023-02-08
-
煤基聚乙醇酸技术进展 2023-02-08
-
生物质能的应用工程 2023-02-08
-
我国甲醇工业现状 2023-02-08
-
JB/T 11699-2013 高处作业吊篮安装、拆卸、使用技术规程 2023-02-08
-
石油化工设备腐蚀与防护参考书十本免费下载,绝版珍藏 2023-02-08
-
四喷嘴水煤浆气化炉工业应用情况简介 2023-02-08
-
Lurgi和ICI低压甲醇合成工艺比较 2023-02-08
-
甲醇制芳烃研究进展 2023-02-08
-
精甲醇及MTO级甲醇精馏工艺技术进展 2023-02-08
