Dulong Jean-Luc, Legallais Cécile
Technological University of Compiègne, UMR 6600 CNRS, Department of Biological Engineering, Compiègne, France.
J Biomech Eng. 2005 Dec;127(7):1054-61. doi: 10.1115/1.2073407.
A sphere within a cylinder representing the islet encapsulated in a hollow fiber can model an implantable bioartificial pancreas. Based on a finite element model for insulin response to a glucose load in the presence of various oxygen supplies, the present study aimed at pointing out the major parameters influencing this secretion. The computational results treated with the Taguchi method clearly demonstrated that geometrical parameters (fiber length and islet density) should be precisely optimized for an enhanced insulin response. This requires the collection of more relevant experimental data concerning the islet oxygen consumption. Moreover, the relative errors on glucose consumption or insulin secretion by the islets do not seem to affect the whole optimization process, which should focus on the oxygen supply to islets.
一个置于圆柱体内的球体,代表包裹在中空纤维中的胰岛,可模拟植入式生物人工胰腺。基于在不同氧气供应情况下胰岛素对葡萄糖负荷反应的有限元模型,本研究旨在指出影响这种分泌的主要参数。用田口方法处理的计算结果清楚地表明,为增强胰岛素反应,应精确优化几何参数(纤维长度和胰岛密度)。这需要收集更多关于胰岛氧消耗的相关实验数据。此外,胰岛葡萄糖消耗或胰岛素分泌的相对误差似乎并不影响整个优化过程,该过程应专注于胰岛的氧气供应。