Shaw A M, Bunton D C, Fisher A, McGrath J C, Montgomery I, Daly C, MacDonald A
School of Biological and Biomedical Sciences, Glasgow Caledonian University, Glasgow G4 0BA, United Kingdom.
J Appl Physiol (1985). 1999 Dec;87(6):2348-56. doi: 10.1152/jappl.1999.87.6.2348.
This study investigates the anatomic structure at the origin of pulmonary supernumerary arteries and their parent conventional artery. Histological examination showed that at the origin of each supernumerary artery the wall of the parent conventional artery is organized into a distinct V-shaped structure, which begins on the hilum side of each supernumerary artery as a funnel-shaped channel running into the supernumerary artery. The base of the channel is particularly thin walled. The lateral walls of the channel are composed of musculoelastic cushions that become more pronounced toward the supernumerary artery and fuse on its distal side, forming a baffle that projects over the supernumerary artery lumen. These V-shaped structures/cushions were observed with video stereo dissecting microscopy in both an open and closed state in isolated arteries in vitro. Pulmonary vasoconstriction of isolated arteries with the thromboxane A(2) mimetic U-46619 increased the number of V-shaped structures in the closed state. These studies indicate the presence of a novel anatomic structure at the origin of pulmonary supernumerary arteries, which may be able to regulate blood flow into the supernumerary artery.
本研究调查了肺额外动脉起源处及其母代常规动脉的解剖结构。组织学检查显示,在每条额外动脉的起源处,母代常规动脉的壁组织成一种独特的V形结构,该结构在每条额外动脉的肺门侧开始,为一条漏斗形通道,延伸至额外动脉。通道底部的壁特别薄。通道的侧壁由肌弹性垫组成,这些肌弹性垫向额外动脉方向变得更加明显,并在其远端融合,形成一个突出于额外动脉管腔上方的挡板。在体外分离动脉的开放和闭合状态下,通过视频立体解剖显微镜观察到了这些V形结构/垫。用血栓素A(2)模拟物U-46619对分离动脉进行肺血管收缩,增加了闭合状态下V形结构的数量。这些研究表明,在肺额外动脉起源处存在一种新的解剖结构,其可能能够调节流入额外动脉的血流。