Engelson E T, Skalak T C, Schmid-Schönbein G W
Microvasc Res. 1985 Jul;30(1):29-44. doi: 10.1016/0026-2862(85)90035-4.
A quantitative analysis of blood flow dynamics in skeletal muscle requires a detailed picture of the microvascular network. This report presents an analysis of the arteriolar network structure in the spinotrapezius muscle of the rat. The microvasculature is visualized by injection of a carbon suspension and recorded in the form of photomicrographs with a complete reconstruction of the microvasculature on transparent overlays. The spinotrapezius muscle has several major feeding arterioles which supply blood into an extensive meshwork of interconnecting or arcading arterioles spanning the entire muscle. The connections from the arcade arterioles to the capillaries are provided by transverse arterioles, which branch from the arcades at regular intervals. Each transverse arteriole forms a single asymmetric dichotomous tree and within each muscle there is a wide range in the size of transverse arterioles. A new branching schema is proposed to describe the arteriolar network. A set of network parameters is derived and typical values of these parameters in the spinotrapezius muscle of the rat are provided.
对骨骼肌血流动力学进行定量分析需要详细了解微血管网络。本报告对大鼠斜方肌的小动脉网络结构进行了分析。通过注射碳悬浮液使微血管可视化,并以显微照片的形式记录下来,同时在透明覆盖物上对微血管进行完整重建。斜方肌有几条主要的供血小动脉,这些小动脉将血液供应到一个广泛的相互连接或呈拱形的小动脉网络中,该网络横跨整个肌肉。从拱形小动脉到毛细血管的连接由横向小动脉提供,横向小动脉以规则的间隔从拱形小动脉分支出来。每条横向小动脉形成一个单一的不对称二叉树,并且在每块肌肉中横向小动脉的大小范围很广。提出了一种新的分支模式来描述小动脉网络。推导了一组网络参数,并给出了这些参数在大鼠斜方肌中的典型值。