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对比增强能量多普勒谐波成像——对肾血管系统可视化的影响

Contrast-enhanced power Doppler harmonic imaging--influence on visualization of renal vasculature.

作者信息

Huber S, Steinbach R, Sommer O, Zuna I, Czembirek H, Delorme S

机构信息

Department of Radiology, Lainz Hospital, Wolkersbergenstr.1, 1130 Vienna, Austria.

出版信息

Ultrasound Med Biol. 2000 Sep;26(7):1109-15. doi: 10.1016/s0301-5629(00)00247-7.

Abstract

To compare contrast-enhanced power Doppler (PD) harmonic imaging (CHI) with contrast-enhanced power Doppler fundamental imaging (CPD) in the depiction of renal cortical vessels, 20 healthy volunteers were subjected to PD imaging and HI assessment of the kidney after bolus injection of Levovist(R) (SH U 508A). System settings were standardized and the pulse-repetition frequencies (PRF) systematically toggled from 750 to 500 and 250. Videotapes were independently reviewed by three readers with regard to the presence of artefacts, the degree of Doppler signal enhancement, demarcation of vessels and the extent of visualization. The assessments were graded separately for each PRF in accordance with a multistage scoring system. In comparison to contrast-enhanced PD, artefacts were significantly lower with CHI for all PRF (p = 0.0001). Vessels were better visualized (p = 0.002) and less blurred (p = 0.006) with CHI than with CPD. There was no significant difference in the extent of Doppler signal increase between CPD and the contrast-enhanced harmonic mode. Combination of the contrast-enhanced harmonic method and PD allows the PRF to be lowered and, by balancing the greater susceptibility of PD to interference from clutter, increases the likelihood of detection of flow in small vessels.

摘要

为比较对比增强能量多普勒(PD)谐波成像(CHI)与对比增强能量多普勒基波成像(CPD)在显示肾皮质血管方面的差异,对20名健康志愿者在静脉注射Levovist®(SH U 508A)后进行肾脏的PD成像和HI评估。系统设置标准化,脉冲重复频率(PRF)系统地从750切换到500和250。三位阅片者独立查看录像带,评估伪像的存在、多普勒信号增强程度、血管的清晰度以及可视化范围。根据多阶段评分系统,对每个PRF分别进行评估分级。与对比增强PD相比,CHI在所有PRF下的伪像均显著减少(p = 0.0001)。与CPD相比,CHI能更好地显示血管(p = 0.002)且血管模糊程度更低(p = 0.006)。CPD与对比增强谐波模式之间的多普勒信号增加程度无显著差异。对比增强谐波方法与PD相结合可降低PRF,并通过平衡PD对杂波干扰的更高敏感性,增加检测小血管内血流的可能性。

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