Clem C J, Rigaut J P
Laboratoire d'Analyse d'Images en Pathologie Cellulaire, Institut Universitaire d'Hematologie, Hopital Saint Louis, France.
Acta Biotheor. 1995 Dec;43(4):425-42. doi: 10.1007/BF00713563.
Recent technical improvements, such as 3D microscopy imaging, have shown the necessity of studying 3D biological tissue architecture during carcinogenesis. In the present paper a computer simulation model is developed allowing the visualization of the microscopic biological tissue architecture during the development of metaplastic and dysplastic lesions. The static part of the model allows the simulation of the normal, metaplastic and dysplastic architecture of an external epithelium. This model is associated to a knowledge base which contains only data on the nasal epithelium. The latter has been well studied by numerous authors and its lesional states are well known. An inference engine allows the initialization of the static model parameters. A statistical comparison between simulated epithelia and real epithelia is achieved by adjusting the parameter values during the simulation. The dynamic part of the model allows the simulation of a growth process on a 3D representation based on the static model. The main hypothesis is that nasal epithelium is submitted to a continuous transformation from normal to cancer through metaplasia and dysplasia. The evolution of each cell (represented by its nucleus) depends on its local environment and also on its heritage from its mother-cell. Simulation of tissue renewal of the nasal pseudostratified epithelium has been achieved. The evolution from normal to hyperplasia has been simulated. After modification of the cell cycle modelling, the simulation of the development of metaplastic foci has been obtained.
近期的技术改进,如三维显微镜成像,已表明在致癌过程中研究三维生物组织结构的必要性。在本文中,开发了一种计算机模拟模型,可实现化生和发育异常病变发展过程中微观生物组织结构的可视化。该模型的静态部分能够模拟外部上皮组织的正常、化生和发育异常结构。此模型与一个知识库相关联,该知识库仅包含有关鼻上皮的数据。鼻上皮已被众多作者深入研究,其病变状态也广为人知。推理引擎可初始化静态模型参数。通过在模拟过程中调整参数值,实现了模拟上皮与真实上皮之间的统计比较。该模型的动态部分能够基于静态模型在三维表示上模拟生长过程。主要假设是鼻上皮会通过化生和发育异常从正常状态持续转变为癌症状态。每个细胞(由其细胞核表示)的演化取决于其局部环境以及来自母细胞的遗传信息。已实现鼻假复层上皮组织更新的模拟。模拟了从正常到增生的演变过程。在修改细胞周期建模后,获得了化生灶发展的模拟结果。