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用于冠状动脉血流速度血管内测量的多普勒导丝的验证

Validation of a Doppler guide wire for intravascular measurement of coronary artery flow velocity.

作者信息

Doucette J W, Corl P D, Payne H M, Flynn A E, Goto M, Nassi M, Segal J

机构信息

Cardiovascular Research Institute, University of California, San Francisco.

出版信息

Circulation. 1992 May;85(5):1899-911. doi: 10.1161/01.cir.85.5.1899.

Abstract

BACKGROUND

An improved intravascular ultrasonic Doppler device could aid the clinical assessment of coronary hemodynamics. We evaluated a new device consisting of a 12-MHz piezoelectric transducer integrated onto the tip of a 0.018-in. flexible, steerable angioplasty guide wire.

METHODS AND RESULTS

Doppler spectra were recorded in model tubes with pulsatile blood flow and in-line electromagnetic flowmeter. In four straight tubes (i.d., 0.79-4.76 mm), the time average of spectral peak velocity (APV) was linearly related to blood flow (QEMF) (r2 greater than or equal to 0.98 for each tube). A Doppler-derived quantitative flow estimate (QD) was calculated as the product of vessel cross-sectional area and mean velocity, with mean velocity estimated as 0.5 x APV. The slope of QD versus QEMF for the four tubes was near unity. APV was less accurate in a 7.94-mm straight tube and in tortuous segments. In four dogs, the left circumflex coronary artery (LCx) was perfused from the femoral artery via a cannula with in-line electromagnetic flowmeter. Good-quality signals were obtained in proximal and distal LCx vessels 3.3-1.2 mm in diameter. APV varied linearly with QEMF (r2 greater than or equal to 0.99 in the cannula, r2 = 0.93-0.99 in proximal LCx, and r2 = 0.86-0.99 in distal LCx). QD was calculated by quantitative angiography to determine proximal LCx diameter. For all dogs combined, the slope of QD versus QEMF was 0.95 in the cannula and 0.85 in the proximal LCx.

CONCLUSIONS

The Doppler guide wire measures phasic flow velocity patterns and linearly tracks changes in flow rate in small, straight coronary arteries. It should facilitate measurement of phasic coronary flow velocity during coronary angiography and angioplasty.

摘要

背景

一种改进的血管内超声多普勒装置有助于冠状动脉血流动力学的临床评估。我们评估了一种新装置,它由一个集成在0.018英寸柔性、可操纵血管成形术导丝尖端的12兆赫压电换能器组成。

方法与结果

在具有脉动血流的模型管和在线电磁流量计中记录多普勒频谱。在四根直管(内径0.79 - 4.76毫米)中,频谱峰值速度(APV)的时间平均值与血流(QEMF)呈线性相关(每根管子的r2大于或等于0.98)。通过将血管横截面积与平均速度相乘来计算多普勒衍生的定量流量估计值(QD),平均速度估计为0.5×APV。四根管子的QD与QEMF的斜率接近1。在一根7.94毫米的直管和弯曲段中,APV的准确性较低。在四只狗中,通过带有在线电磁流量计的插管从股动脉灌注左旋冠状动脉(LCx)。在直径为3.3 - 1.2毫米的近端和远端LCx血管中获得了高质量信号。APV与QEMF呈线性变化(插管中的r2大于或等于0.99,近端LCx中的r2 = 0.93 - 0.99,远端LCx中的r2 = 0.86 - 0.99)。通过定量血管造影计算QD以确定近端LCx直径。对于所有狗的综合数据,插管中QD与QEMF的斜率为0.95,近端LCx中为0.85。

结论

多普勒导丝可测量小的、直的冠状动脉中的相性流速模式,并线性跟踪流速变化。它应有助于在冠状动脉造影和血管成形术期间测量相性冠状动脉流速。

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