Hillen B
Acta Morphol Neerl Scand. 1986;24(2):87-101.
The results are presented of a statistical analysis of the variability of the circle of Willis using univariate and bivariate methods. For this purpose 100 circles of Willis were available. From each circle 19 indexes of arterial size were determined, the basilar artery was measured in two places. Half the circumference was measured. This data yielded no evidence of differences between left- and right-sided vessels in the sample. An important source of variation is the general size of all vessels considered. When the data are cleared from this general size variation, correlation coefficients reveal interesting relations between the vessels. The posterior communicating arteries are strongly related to the ipsilateral carotid artery, whereas a strong inverse relationship exists with the basilar artery and the precommunicating part of the ipsilateral posterior cerebral artery. These relationships can be understood from the expected patterns of the blood flow in these vessels. Similar relationships can be found in the anterior part of the circle of Willis and in the vertebro-basilar junction. In a different manner, based on previous haemodynamic studies, the relation between blood flow and vessel size within the circle of Willis can be demonstrated by relating the ratios of the sizes of afferent and efferent arteries to the sizes of the posterior communicating arteries, an "intuitive" model. The supposed correlations of the outcome of this "intuitive" model with the size of the communicating arteries appeared to by highly significant. It is concluded that the variations of the circle of Willis are related to the individual variations of the blood flow in this arterial network.
本文呈现了使用单变量和双变量方法对 Willis 环变异性进行统计分析的结果。为此,共获取了 100 个 Willis 环。从每个环中确定了 19 个动脉大小指标,在两个位置测量了基底动脉,并测量了半周长。这些数据未显示样本中左右侧血管之间存在差异。一个重要的变异来源是所考虑的所有血管的总体大小。当去除这种总体大小变异的数据后,相关系数揭示了血管之间有趣的关系。后交通动脉与同侧颈动脉密切相关,而与基底动脉和同侧大脑后动脉的交通前段存在强烈的负相关。这些关系可以从这些血管中预期的血流模式来理解。在 Willis 环的前部和椎基底交界处也能发现类似的关系。以不同的方式,基于先前的血流动力学研究,通过将传入和传出动脉的大小比与后交通动脉的大小相关联,可以证明 Willis 环内血流与血管大小之间的关系,这是一个“直观”模型。该“直观”模型的结果与交通动脉大小的假定相关性似乎非常显著。结论是,Willis 环的变异与该动脉网络中血流的个体变异有关。