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小儿患者心脏的实时经胸矢量血流成像

Real-Time Transthoracic Vector Flow Imaging of the Heart in Pediatric Patients.

作者信息

Collins R Thomas, Laughlin Megan E, Lang Sean M, Bolin Elijah H, Daily Joshua A, Jensen Hanna A, Jensen Morten O

机构信息

Stanford University, Department of Pediatrics, 750 Welch Road, Palo Alto, CA 94304, United States.

University of Arkansas, Department of Biomedical Engineering, 790 W. Dickson St., Fayetteville, AR 72701, United States.

出版信息

Prog Pediatr Cardiol. 2019 Jun;53:28-36. doi: 10.1016/j.ppedcard.2019.02.003. Epub 2019 Mar 5.

Abstract

In children with congenital heart defects, Doppler ultrasound is the standard, bedside imaging modality. However, precise characterization of blood flow is challenging due to angle-dependent and one-dimensional velocity estimation. Contrast agent free Vector Flow Imaging is a new ultrasound technology that enables angle-independent visualization of the detailed flow field. Two piglets, one with normal cardiac anatomy and one with congenital heart disease comprised of valvular pulmonary stenosis, a dilated main pulmonary artery, and an incomplete atrioventricular canal defect, were imaged transthoracically and epicardially using a BK Ultrasound bk5000 with built-in vector flow imaging and a 5MHz linear probe. Subsequently, two children, one with normal cardiac anatomy and one with congenital heart disease comprised of aortic valve stenosis and coarctation of the aorta were imaged transthoracically. Transthoracic two-dimensional echocardiography and vector flow imaging were readily performed in both animals and were limited only by the geometry of the porcine thorax. In addition, transthoracic vector flow imaging was successfully performed in both children, and abnormal flow secondary to cardiac anomalies was visible. Adequate penetration was obtained to a depth of 6.5 cm. Our group has previously demonstrated for the first time that transthoracic vector flow imaging echocardiography is feasible and practicable in pediatric-sized patients, and this paper describes examples of these concepts and in-depth comparisons with traditional imaging modalities. This paper demonstrates that commercially available vector flow imaging technology can be utilized in pediatric cardiac applications as a bedside transthoracic imaging modality, providing advanced detail of blood flow patterns within the cardiac chambers, across valves, and in the great arteries.

摘要

对于患有先天性心脏缺陷的儿童,多普勒超声是标准的床边成像方式。然而,由于角度依赖性和一维速度估计,血流的精确特征描述具有挑战性。无造影剂矢量流成像(Vector Flow Imaging)是一种新的超声技术,能够实现与角度无关的详细流场可视化。使用配备内置矢量流成像功能的BK超声bk5000和5MHz线性探头,对两只仔猪进行经胸和心外膜成像,其中一只心脏解剖结构正常,另一只患有先天性心脏病,包括瓣膜性肺动脉狭窄、扩张的主肺动脉和不完全房室通道缺损。随后,对两名儿童进行经胸成像,其中一名心脏解剖结构正常,另一名患有先天性心脏病,包括主动脉瓣狭窄和主动脉缩窄。二维经胸超声心动图和矢量流成像在两只动物中都很容易进行,仅受猪胸部几何形状的限制。此外,两名儿童均成功进行了经胸矢量流成像,心脏异常继发的异常血流清晰可见。获得了6.5厘米深度的足够穿透深度。我们团队此前首次证明经胸矢量流成像超声心动图在小儿体型患者中是可行且实用的,本文描述了这些概念的实例以及与传统成像方式的深入比较。本文表明,市售的矢量流成像技术可作为床边经胸成像方式用于儿科心脏应用,提供心腔内、跨瓣膜以及大动脉内血流模式的详细信息。

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Real-Time Transthoracic Vector Flow Imaging of the Heart in Pediatric Patients.小儿患者心脏的实时经胸矢量血流成像
Prog Pediatr Cardiol. 2019 Jun;53:28-36. doi: 10.1016/j.ppedcard.2019.02.003. Epub 2019 Mar 5.

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