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利用整合微循环模型和细胞模型的组织模型评估缺氧状态下的心脏氧消耗。

Evaluation of cardiac oxygen consumption under hypoxia with tissue model integrating microcirculation model and cell model.

作者信息

Amano Akira, Kubota Yuuta, Shimayoshi Takao, Matsuda Tetsuya

机构信息

Department of Bioinformatics, Ritsumeikan Univerisity, Shiga-ken, Japan.

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2009;2009:3885-8. doi: 10.1109/IEMBS.2009.5332645.

Abstract

Analyzing the microscopic energy balance of cardiac tissue is very important for understanding heart diseases. However, such analysis is difficult with animal experiments. Therefore, the accurate simulation model is expected to be an important tool for such research. We propose a cardiac tissue model which can reproduce accurate distribution of oxygen consumption under hypoxia. The model includes blood tissue exchange model of capillary and oxygen consumption model of cells. The capillary model is based on the model proposed by Dash et al. 2006, and the cell model is based on the model proposed by Kuzumoto et al. 2007. By analyzing the oxygen consumption of the proposed model, the relation between the oxygen consumption and the arterial oxygen concentration was found to be largely different from that of single cell model. This implies that the animal experimental data should be carefully used for constructing a biological simulation model, depending on whether the experiment is performed within a cell or a tissue.

摘要

分析心脏组织的微观能量平衡对于理解心脏病非常重要。然而,动物实验很难进行这样的分析。因此,精确的模拟模型有望成为此类研究的重要工具。我们提出了一种心脏组织模型,该模型能够在缺氧情况下重现准确的氧消耗分布。该模型包括毛细血管的血液组织交换模型和细胞的氧消耗模型。毛细血管模型基于Dash等人在2006年提出的模型,细胞模型基于Kuzumoto等人在2007年提出的模型。通过分析所提出模型的氧消耗情况,发现氧消耗与动脉氧浓度之间的关系与单细胞模型有很大不同。这意味着在构建生物模拟模型时,应根据实验是在细胞内还是组织内进行,谨慎使用动物实验数据。

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