Hillen B, Hoogstraten H W, Van Overbeeke J J, Van der Zwan A
Department of Functional Anatomy, University of Utrecht, The Netherlands.
Bull Assoc Anat (Nancy). 1991 Jun;75(229):123-6.
The requirements for understanding the role played by the circle of Willis in the cerebral circulation are two-fold: 1. The basic patterns of blood flow in the circle of Willis should be studied in relation to the interindividual variation of the circle itself and 2. The interindividual variation should be investigated in a quantitative way and possible hemodynamically induced relations should be clarified. With regard to the first question an extensive study on mathematical models of the cerebral circulation was performed, revealing that flow patterns can be understood by applying the principles of the Wheatstone bridge, known from electric circuit theory. With this knowledge the question of the variability was investigated. For this purpose 19 measurements of 100 circles of Willis were obtained from human cadavers. This data set was analysed using both bivariate and multivariate statistical techniques. The result of this analysis indicated that several sources of variation are involved. The first one is the size: some people have larger vessels than others, probably depending on age sex and genetic factors. Other sources of variation appeared to be of hemodynamic origin. The clear hemodynamic relation between vessel sizes in the circle of Willis indicate that they are adapted to the amount of flow, just like vessels elsewhere in the body. For instance, the size of the posterior communicating artery reflects the relative contribution of the anterior (carotid) and posterior (vertebral) vessels to the cerebral circulation. Furthermore, a relation could be established between the variations of the major cerebral vascular territories and the circle of Willis, both during development and in adults.(ABSTRACT TRUNCATED AT 250 WORDS)
理解 Willis 环在脑循环中所起作用的要求有两个方面:1. 应结合 Willis 环本身的个体间差异来研究 Willis 环内的基本血流模式;2. 应以定量方式研究个体间差异,并阐明可能由血流动力学引起的关系。关于第一个问题,对脑循环的数学模型进行了广泛研究,结果表明可通过应用电路理论中已知的惠斯通电桥原理来理解血流模式。基于这一认识,对变异性问题进行了研究。为此,从人体尸体上获取了 100 个 Willis 环的 19 次测量数据。使用双变量和多变量统计技术对该数据集进行了分析。分析结果表明涉及多个变异来源。第一个是大小:有些人的血管比其他人的大,这可能取决于年龄、性别和遗传因素。其他变异来源似乎源于血流动力学。Willis 环中血管大小之间明显的血流动力学关系表明,它们如同身体其他部位的血管一样,是根据血流量进行适配的。例如,后交通动脉的大小反映了前(颈动脉)后(椎动脉)血管对脑循环的相对贡献。此外,在发育过程中和成人阶段,大脑主要血管区域的变异与 Willis 环之间都能建立起一种关系。(摘要截选至第 250 个单词)