Denny E, Schroter R C
Centre for Biological and Medical Systems, Imperial College of Science, Technology and Medicine, London, England.
J Biomech Eng. 1996 May;118(2):210-5. doi: 10.1115/1.2795961.
A computational method is proposed for the construction of a three-dimensional space-filling model of an acinar ventilatory unit. Its geometry consists of truncated octahedra arranged in a cuboidal block. The ducts and alveoli are formed by opening specific common faces between polyhedra. The branching structure is automatically computed using algorithms solely to maximise the number of alveoli and minimise the average path lengths; it is not formed with reference to published experimental data. Properties of the model such as the total alveolar and ductal volumes, the distribution of individual path lengths to the alveolar sacs, and the average number of ducts per generation are calculated. The predicted morphology of the model compares well with published data for rat lungs.
提出了一种用于构建腺泡通气单元三维空间填充模型的计算方法。其几何结构由排列在长方体块中的截顶八面体组成。导管和肺泡是通过打开多面体之间特定的公共面形成的。分支结构仅使用算法自动计算,以最大化肺泡数量并最小化平均路径长度;它不是参照已发表的实验数据形成的。计算了模型的属性,如肺泡和导管的总体积、到肺泡囊的个体路径长度分布以及每一代的平均导管数量。该模型预测的形态与已发表的大鼠肺数据比较吻合。