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犬壁内侧支循环的功能解剖部位。

Functional anatomical site of intramural collaterals in dogs.

作者信息

Scheel K W, Daulat G, Williams S E

机构信息

Department of Physiology, Texas College of Osteopathic Medicine, Fort Worth 76107-2690.

出版信息

Am J Physiol. 1990 Sep;259(3 Pt 2):H706-11. doi: 10.1152/ajpheart.1990.259.3.H706.

Abstract

The objectives of the present study were to determine quantitatively whether the retrograde flow measurement reflects the total flow from collateral vessels or overestimates or underestimates collateral flow, and to determine the functional anatomical origin of intramural collaterals in the native dog heart. In an isolated heart preparation, three experimental procedures were used. 1) The left circumflex coronary artery was embolized with microspheres of different sizes; then retrograde flows and the peripheral coronary pressures were measured. 2) Epicardial collaterals were cauterized, and retrograde flows were measured before and after cautery. 3) Epicardial collaterals were cauterized followed by embolization of the circumflex coronary artery with different size spheres. We found that 1) the retrograde flow measurement underestimates the total collateral flow to the circumflex coronary artery by approximately 25%, 2) intramural collateral flow constitutes 58 +/- 3.5% of the retrograde flow measurement, 3) the antegrade component of blood flow that is not measured during a retrograde flow measurement is from the intramural collateral circulation, and 4) the functional site of origin of intramural collaterals is greater than 25 microns but less than 80 microns in diameter. We conclude that, in our preparation, retrograde flow underestimates total collateral flow, and that intramural collateral flow is a major component of retrograde flow in the native dog heart.

摘要

本研究的目的是定量确定逆向血流测量是否反映了来自侧支血管的总血流,还是高估或低估了侧支血流,并确定在正常犬心脏中壁内侧支血管的功能解剖学起源。在离体心脏制备中,采用了三种实验方法。1)用不同大小的微球栓塞左旋冠状动脉;然后测量逆向血流和外周冠状动脉压力。2)烧灼心外膜侧支血管,并在烧灼前后测量逆向血流。3)烧灼心外膜侧支血管,随后用不同大小的球体栓塞左旋冠状动脉。我们发现:1)逆向血流测量低估了流向左旋冠状动脉的总侧支血流约25%;2)壁内侧支血流占逆向血流测量值的58±3.5%;3)在逆向血流测量期间未测量的血流顺行成分来自壁内侧支循环;4)壁内侧支血管的功能起源部位直径大于25微米但小于80微米。我们得出结论,在我们的制备中,逆向血流低估了总侧支血流,并且壁内侧支血流是正常犬心脏中逆向血流的主要成分。

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