Krasnoperov Renat A, Stoyan Dietrich
Proxima Technology Ltd., 20a-107, L. Tolstoy St., Pushkino, Moscow Region, 141206, Russia.
Ann Biomed Eng. 2006 May;34(5):810-22. doi: 10.1007/s10439-006-9085-9. Epub 2006 Apr 6.
The study of relations between structural organization and functions of microcirculatory networks is a major aim of modern microangiology. Such a structural aspect of microvessels (MVs) as their spatial arrangement has substantial influence on their transport and other functional properties. This paper describes a methodology of spatial correlation analysis for isotropic blood and lymphatic MVs which is based on a stereological estimator of the pair correlation function [g3D(r)] created recently by the authors for systems of elongated objects. The following main features of the methodology are presented: (i) interpretation of the shape of g3D(r) curves, (ii) their quantitative description by numerical parameters, and (iii) limitations of the method arising from statistical requirements to MVs under investigation. The methodology is considered in the light of multilevel sampling designs, which are typical for biomedical morphology. The estimator with its methodological framework is applied to perifollicular blood capillaries in the adult rat thyroid. Related methods for studying the spatial arrangement of MVs are thoroughly discussed in the paper.
研究微循环网络的结构组织与功能之间的关系是现代微血管学的主要目标。微血管(MVs)的空间排列这种结构方面对其运输及其他功能特性有重大影响。本文描述了一种针对各向同性的血液和淋巴微血管的空间相关性分析方法,该方法基于作者最近为细长物体系统创建的对相关函数[g3D(r)]的体视学估计器。介绍了该方法的以下主要特征:(i)g3D(r)曲线形状的解释,(ii)通过数值参数对其进行定量描述,以及(iii)该方法因对所研究微血管的统计要求而产生的局限性。鉴于生物医学形态学中典型的多级抽样设计来考虑该方法。该估计器及其方法框架应用于成年大鼠甲状腺的滤泡周毛细血管。本文还深入讨论了研究微血管空间排列的相关方法。