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脉冲重复频率和高通滤波器对体外汇聚血流彩色多普勒图的影响。

Influence of pulse repetition frequency and high pass filter on color Doppler maps of converging flow in vitro.

作者信息

Giesler M, Göller V, Pfob A, Bajtay D, Kochs M, Hombach V, Grossmann G

机构信息

Department of Internal Medicine II, Cardiology, Angiology, Pneumonology and Nephrology, Ulm University, Germany.

出版信息

Int J Card Imaging. 1996 Dec;12(4):257-61. doi: 10.1007/BF01797739.

DOI:10.1007/BF01797739
PMID:8993988
Abstract

Assessment of regurgitant flow by the flow convergence method is based on reading absolute velocities from color Doppler maps. Velocity overestimation by high pass filtering above 100 Hz has been reported. An extremely low filter, however, is impracticable in patients. A ratio of pulse repetition frequency (PRF)/filter of 10/1 usually results in good quality color maps as judged visually. We studied in vitro the influence of RPF and filter on the absolute velocities within color maps of the flow convergence, keeping PRF/filter at 10/1. The color maps were also compared with computerized flow simulations. Flow across different orifice plates was scanned using two different setups for each flow condition: low velocity setup (PRF 600-2500 Hz, filter 50-300 Hz) and high (PRF 1500-6000 Hz, filter 200-600 Hz). From the color maps, velocity profile curves were read along the flow center line across the flow convergence. The high velocity setup provided artefact-free color maps at a distance d = 2-4 through 8-11 mm to the orifice, the low setup at d = 6-8 through 18 mm. Within the overlapping range (d = 6-8 through 8-11 mm), the resulting curves showed no significant differences in local velocity, with a slight trend towards higher velocities with the high velocity setup (2.2-2.9%). The simulations agreed well with color Doppler except for slightly lower values at d > 10-12 mm. Changes in PRF and filter have no significant influence on the absolute velocities displayed within color maps as long as PRF/filter is kept close to 10/1.

摘要

通过血流会聚法评估反流流量是基于从彩色多普勒图读取绝对速度。据报道,高于100Hz的高通滤波会导致速度高估。然而,极低的滤波器对患者而言不实用。视觉判断显示,脉冲重复频率(PRF)与滤波器之比为10/1时,通常会得到质量良好的彩色图。我们在体外研究了PRF和滤波器对血流会聚彩色图中绝对速度的影响,将PRF/滤波器保持在10/1。还将彩色图与计算机化血流模拟进行了比较。针对每种血流状况,使用两种不同设置扫描通过不同孔板的血流:低速设置(PRF 600 - 2500Hz,滤波器50 - 300Hz)和高速设置(PRF 1500 - 6000Hz,滤波器200 - 600Hz)。从彩色图中,沿着血流会聚处的血流中心线读取速度剖面曲线。高速设置在距孔口d = 2 - 4至8 - 11mm的距离处提供无伪像的彩色图,低速设置在d = 6 - 8至18mm处提供。在重叠范围内(d = 6 - 8至8 - 11mm),所得曲线在局部速度上无显著差异,高速设置下速度略有升高趋势(2.2 - 2.9%)。模拟结果与彩色多普勒结果吻合良好,只是在d > 10 - 12mm时数值略低。只要PRF/滤波器保持接近10/ l,PRF和滤波器变化对彩色图中显示的绝对速度无显著影响。

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本文引用的文献

1
Color Doppler determination of regurgitant flow: from proximal isovelocity surface areas to proximal velocity profiles. An in vitro study.
Echocardiography. 1992 Jan;9(1):51-62. doi: 10.1111/j.1540-8175.1992.tb00439.x.
2
The shape of the proximal isovelocity surface area varies with regurgitant orifice size and distance from orifice: computer simulation and model experiments with color M-mode technique.近端等速表面积的形状随反流口大小和距口部的距离而变化:彩色M型技术的计算机模拟和模型实验
J Am Soc Echocardiogr. 1993 Jul-Aug;6(4):433-45. doi: 10.1016/s0894-7317(14)80242-3.
3
Quantification of heart valve regurgitation: a critical analysis from a theoretical and experimental point of view.心脏瓣膜反流的量化:从理论和实验角度的批判性分析。
Clin Physiol. 1985 Feb;5(1):81-8. doi: 10.1111/j.1475-097x.1985.tb00749.x.
4
Instrumentation and physical factors related to visualization of stenotic and regurgitant jets by Doppler color flow mapping.与通过多普勒彩色血流图显示狭窄和反流射流相关的仪器设备及物理因素。
J Am Coll Cardiol. 1988 Nov;12(5):1354-65. doi: 10.1016/0735-1097(88)92621-6.
5
Spatial velocity distribution and acceleration in serial subvalve tunnel and valvular obstructions: an in vitro study using Doppler color flow mapping.串联式瓣下隧道及瓣膜狭窄中的空间速度分布与加速度:一项使用多普勒彩色血流图的体外研究
J Am Coll Cardiol. 1989 Jan;13(1):241-8. doi: 10.1016/0735-1097(89)90577-9.
6
Doppler color flow "proximal isovelocity surface area" method for estimating volume flow rate: effects of orifice shape and machine factors.用多普勒彩色血流“近端等速表面积”法估计容积流量:孔口形状和机器因素的影响
J Am Coll Cardiol. 1991 Apr;17(5):1103-11. doi: 10.1016/0735-1097(91)90839-2.
7
A new method for quantification of regurgitant flow rate using color Doppler flow imaging of the flow convergence region proximal to a discrete orifice. An in vitro study.
Circulation. 1991 Feb;83(2):594-604. doi: 10.1161/01.cir.83.2.594.
8
Impact of finite orifice size on proximal flow convergence. Implications for Doppler quantification of valvular regurgitation.
Circ Res. 1992 May;70(5):923-30. doi: 10.1161/01.res.70.5.923.