Bank A J, Kaiser D R, Rajala S, Cheng A
Cardiovascular Division, Department of Medicine, and the Graduate Program in Biophysical Sciences and Medical Physics, Department of Radiology, University of Minnesota, Minneapolis, USA.
Circulation. 1999 Jul 6;100(1):41-7. doi: 10.1161/01.cir.100.1.41.
The effects of smooth muscle relaxation on arterial wall mechanics are controversial. We used a new, in vivo, noninvasive technique to measure brachial artery wall mechanics under baseline conditions and following smooth muscle relaxation with nitroglycerin (NTG).
Eight healthy, normal subjects (6 male, 2 female; age 30+/-3.1 years) participated in the study. The nondominant brachial artery was imaged through a water-filled blood pressure cuff using an external ultrasound wall-tracking system at baseline and following 0.4 mg sublingual NTG. Simultaneous radial artery pressure waveforms were recorded by tonometry. Transmural pressure (TP) was reduced by increasing water pressure in the cuff. Brachial artery area, unstressed area, compliance, stress, strain, incremental elastic modulus (Einc), and pulse wave velocity (PWV) were measured over a TP range from 0 to 100 mm Hg. Baseline area versus TP curves generated 30 minutes apart were not significantly different. NTG significantly shifted area versus TP (P<0.0001) and compliance versus TP (P<0.001) curves upward, whereas the Einc versus TP (P<0.05) and PWV versus TP (P<0. 01) curves were shifted downward. NTG also significantly shifted stress versus strain (P<0.01) and Einc versus strain (P<0.01) curves to the right.
We conclude that brachial artery elastic mechanics can be reproducibly measured over a wide range of TP and smooth muscle tone using a new noninvasive ultrasound technique. Smooth muscle relaxation with NTG increases isobaric compliance and decreases isobaric Einc and PWV in the human brachial artery.
平滑肌舒张对动脉壁力学的影响存在争议。我们采用一种新的体内非侵入性技术,在基线条件下以及使用硝酸甘油(NTG)使平滑肌舒张后,测量肱动脉壁力学。
8名健康正常受试者(6名男性,2名女性;年龄30±3.1岁)参与了本研究。在基线时以及舌下含服0.4 mg NTG后,通过充满水的血压袖带,使用外部超声壁跟踪系统对非优势肱动脉进行成像。通过张力测量法记录同时的桡动脉压力波形。通过增加袖带内水压降低跨壁压(TP)。在0至100 mmHg的TP范围内测量肱动脉面积、无应力面积、顺应性、应力、应变、增量弹性模量(Einc)和脉搏波速度(PWV)。间隔30分钟生成的基线面积与TP曲线无显著差异。NTG使面积与TP曲线(P<0.0001)和顺应性与TP曲线(P<0.001)显著向上移动,而Einc与TP曲线(P<0.05)和PWV与TP曲线(P<0.01)向下移动。NTG还使应力与应变曲线(P<0.01)和Einc与应变曲线(P<0.01)显著向右移动。
我们得出结论,使用一种新的非侵入性超声技术,可以在广泛的TP和平滑肌张力范围内可重复地测量肱动脉弹性力学。NTG使平滑肌舒张可增加人体肱动脉的等压顺应性,并降低等压Einc和PWV。