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The fractal spatial distribution of pancreatic islets in three dimensions: a self-avoiding growth model

机译:胰岛在三个维度上的分形空间分布:一种自我避免的生长模型

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摘要

The islets of Langerhans, responsible for controlling blood glucose levels, are dispersed within the pancreas. A universal power law governing the fractal spatial distribution of islets in two-dimensional pancreatic sections has been reported. However, the fractal geometry in the actual three-dimensional pancreas volume, and the developmental process that gives rise to such a self-similar structure, has not been investigated. Here, we examined the three-dimensional spatial distribution of islets in intact mouse pancreata using optical projection tomography and found a power law with a fractal dimension of 2.1. Furthermore, based on two-dimensional pancreatic sections of human autopsies, we found that the distribution of human islets also follows a universal power law with a fractal dimension of 1.5 in adult pancreata, which agrees with the value previously reported in smaller mammalian pancreas sections. Finally, we developed a self-avoiding growth model for the development of the islet distribution and found that the fractal nature of the spatial islet distribution may be associated with the self-avoidance in the branching process of vascularization in the pancreas.
机译:负责控制血糖水平的朗格罕氏小岛分散在胰腺内。据报道,一个普遍的幂律支配着胰岛在二维胰腺区域中的分形空间分布。然而,尚未研究实际三维胰腺体积中的分形几何形状以及产生这种自相似结构的发育过程。在这里,我们使用光学投影层析成像技术检查了完整小鼠胰腺中胰岛的三维空间分布,并发现了分形维数为2.1的幂律。此外,基于人体解剖的二维胰腺切片,我们发现人胰岛的分布也遵循成年胰腺的分形维数为1.5的普遍幂定律,这与先前在较小的哺乳动物胰腺切片中报道的值相符。最后,我们为胰岛分布的发展建立了一个自我避免的生长模型,发现空间胰岛分布的分形性质可能与胰腺血管化分支过程中的自我回避有关。

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