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CarbMetSim:用于模拟人体碳水化合物代谢的离散事件模拟器。

CarbMetSim: A discrete-event simulator for carbohydrate metabolism in humans.

机构信息

Computer Science Department, University of Wisconsin Milwaukee, Milwaukee, WI, United States of America.

Meridian Health Plans, Detroit, MI, United States of America.

出版信息

PLoS One. 2020 Mar 10;15(3):e0209725. doi: 10.1371/journal.pone.0209725. eCollection 2020.

Abstract

This paper describes CarbMetSim, a discrete-event simulator that tracks the blood glucose level of a person in response to a timed sequence of diet and exercise activities. CarbMetSim implements broader aspects of carbohydrate metabolism in human beings with the objective of capturing the average impact of various diet/exercise activities on the blood glucose level. Key organs (stomach, intestine, portal vein, liver, kidney, muscles, adipose tissue, brain and heart) are implemented to the extent necessary to capture their impact on the production and consumption of glucose. Key metabolic pathways (glucose oxidation, glycolysis and gluconeogenesis) are accounted for in the operation of different organs. The impact of insulin and insulin resistance on the operation of various organs and pathways is captured in accordance with published research. CarbMetSim provides broad flexibility to configure the insulin production ability, the average flux along various metabolic pathways and the impact of insulin resistance on different aspects of carbohydrate metabolism. The simulator does not yet have a detailed implementation of protein and lipid metabolism. This paper contains a preliminary validation of the simulator's behavior. Significant additional validation is required before the simulator can be considered ready for use by people with Diabetes.

摘要

本文描述了 CarbMetSim,这是一个离散事件模拟器,用于跟踪人体对定时饮食和运动活动的血糖水平。CarbMetSim 实现了人类碳水化合物代谢的更广泛方面,旨在捕捉各种饮食/运动活动对血糖水平的平均影响。关键器官(胃、肠、门静脉、肝、肾、肌肉、脂肪组织、脑和心脏)的实现程度足以捕捉它们对葡萄糖产生和消耗的影响。不同器官的操作考虑了关键代谢途径(葡萄糖氧化、糖酵解和糖异生)。根据已发表的研究,模拟胰岛素和胰岛素抵抗对各种器官和途径的运作的影响。CarbMetSim 为配置胰岛素产生能力、各种代谢途径的平均通量以及胰岛素抵抗对碳水化合物代谢各个方面的影响提供了广泛的灵活性。该模拟器尚未详细实现蛋白质和脂质代谢。本文对模拟器的行为进行了初步验证。在模拟器可以被糖尿病患者使用之前,还需要进行大量额外的验证。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f1a0/7064176/8dbe366db51d/pone.0209725.g001.jpg

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