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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。

Instrumentation and physical factors related to visualization of stenotic and regurgitant jets by Doppler color flow mapping.

作者信息

Sahn D J

机构信息

Department of Pediatrics, University of California, San Diego.

出版信息

J Am Coll Cardiol. 1988 Nov;12(5):1354-65. doi: 10.1016/0735-1097(88)92621-6.

Abstract

Major clinical uses of the new Doppler color flow mapping technologies involve the imaging of disturbed flow through cardiac defects or valves. Nevertheless, there is little general understanding of the determinants of flow and of how flow is imaged by these new systems. This review will attempt to relate the hydrodynamics through a simplified stenotic or regurgitant orifice with the physics and sampling theories relevant to the functioning of Doppler color flow mapping systems. The goal will be to characterize the velocity resolution, spatial resolution, sensitivity and performance of these systems so that clinicians can understand why flow looks the way it does on Doppler color studies and which aspects of flow mapping can be expected to become more quantifiable than they are at present.

摘要

新型多普勒彩色血流成像技术的主要临床应用包括对心脏缺损或瓣膜处紊乱血流的成像。然而,对于血流的决定因素以及这些新系统如何对血流进行成像,人们普遍了解甚少。本综述将尝试把通过简化的狭窄或反流孔口的流体动力学与多普勒彩色血流成像系统功能相关的物理原理及采样理论联系起来。目的是描述这些系统的速度分辨率、空间分辨率、灵敏度和性能,以便临床医生能够理解为什么在多普勒彩色检查中血流看起来是那样的,以及血流成像的哪些方面有望比目前更具可量化性。

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