Parker J C, Cave C B, Ardell J L, Hamm C R, Williams S G
Department of Physiology, University of South Alabama, Mobile, Alabama 36688, USA.
J Appl Physiol (1985). 1997 Oct;83(4):1370-82. doi: 10.1152/jappl.1997.83.4.1370.
Pulmonary arterial tree structures related to blood flow heterogeneity were simulated by using a symmetrical, bifurcating model in three-dimensional space. The branch angle (Theta), daughter-parent length ratio (rL), branch rotation angle (phi), and branch fraction of parent flow (gamma) for a single bifurcation were defined and repeated sequentially through 11 generations. With phi fixed at 90 degrees , tree structures were generated with Theta between 60 and 90 degrees , rL between 0.65 and 0.85, and an initial segment length of 5.6 cm and sectioned into 1-cm3 samples for analysis. Blood flow relative dispersions (RD%) between 52 and 42% and fractal dimensions (Ds) between 1.20 and 1.15 in 1-cm3 samples were observed even with equal branch flows. When gamma not equal 0.5, RD% increased, but Ds either decreased with gravity bias of higher branch flows or increased with random assignment of higher flows. Blood flow gradients along gravity and centripetal vectors increased with biased flow assignment of higher flows, and blood flows correlated negatively with distance only when gamma not equal 0.5. Thus a recursive branching vascular tree structure simulated Ds and RD% values for blood flow heterogeneity similar to those observed experimentally in the pulmonary circulation due to differences in the number of terminal arterioles per 1-cm3 sample, but blood flow gradients and a negative correlation of flows with distance required unequal partitioning of blood flows at branch points.
利用三维空间中的对称分叉模型模拟了与血流异质性相关的肺动脉树结构。定义了单个分叉的分支角度(Theta)、子父长度比(rL)、分支旋转角度(phi)和父流分支分数(gamma),并依次重复11代。将phi固定为90度,生成Theta在60到90度之间、rL在0.65到0.85之间、初始节段长度为5.6 cm的树结构,并将其切成1 cm³的样本进行分析。即使分支流相等,在1 cm³样本中仍观察到血流相对离散度(RD%)在52%到42%之间,分形维数(Ds)在1.20到1.15之间。当gamma不等于0.5时,RD%增加,但Ds要么随着较高分支流的重力偏向而减小,要么随着较高流的随机分配而增加。随着较高流的偏向流分配,沿重力和向心向量的血流梯度增加,并且仅当gamma不等于0.5时血流与距离呈负相关。因此,递归分支血管树结构模拟的血流异质性的Ds和RD%值与在肺循环中实验观察到的相似,这是由于每1 cm³样本中终末小动脉数量的差异所致,但血流梯度以及血流与距离的负相关需要在分支点处血流的不等分配。