Kassab G S
Department of Bioengineering, University of California, San Diego, La Jolla, USA.
Ann Biomed Eng. 2000 Aug;28(8):903-15. doi: 10.1114/1.1308494.
Recently, we have developed several new innovations in the morphometry of vascular trees. These innovations have been used to study the anatomy of the coronary circulation in the pig and have yielded a complete set of morphometric data on the entire coronary vasculature. Since, the innovations are applicable to any organ that has a tree-like vasculature, their utility in describing the quantitative anatomy of intraorgan vasculature is evident. These advancements in morphometry along with the automation of vascular tree reconstruction, data analysis, and hemodynamic applications should make the data base on intraorgan vasculature more abundant and more useful. The morphometric data will contribute to the Circulatory Network Physiome that will serve as an anatomical basis for the Physiome Project. This article covers several topics: (1) intraorgan vascular trees in terms of their anatomy, mechanical properties, physiological behavior, and adaptation, (2) reconstruction of the coronary vasculature, and (3) some of the shortcomings of the present morphometric data base and some proposed remedies. Finally, a discussion of the constitution of the circulatory network physiome in terms of the available morphometric data on intraorgan vasculature will be presented.
最近,我们在血管树形态测量学方面取得了多项新进展。这些进展已被用于研究猪冠状动脉循环的解剖结构,并获得了关于整个冠状动脉系统的一套完整的形态测量数据。由于这些进展适用于任何具有树状血管系统的器官,它们在描述器官内血管系统的定量解剖学方面的实用性是显而易见的。形态测量学的这些进展以及血管树重建、数据分析和血流动力学应用的自动化,应会使器官内血管系统的数据库更加丰富且更有用。形态测量数据将为循环网络生理组学做出贡献,该生理组学将作为生理组计划的解剖学基础。本文涵盖几个主题:(1)器官内血管树的解剖结构、力学特性、生理行为和适应性;(2)冠状动脉系统的重建;(3)当前形态测量数据库的一些缺点及一些提议的补救措施。最后,将根据现有的器官内血管系统形态测量数据,对循环网络生理组学的构成进行讨论。