IEEE Trans Med Imaging. 2018 Dec;37(12):2619-2629. doi: 10.1109/TMI.2018.2844552. Epub 2018 Jun 6.
In vivo characterization of intracardiac blood velocity vector fields may provide new clinical information but is currently not available for bedside evaluation. In this paper, 4-D vector flow imaging for intracardiac flow assessment is demonstrated using a clinical ultrasound (US) system and a matrix array transducer, without the use of contrast agent. Two acquisition schemes were developed, one for full volumetric coverage of the left ventricle (LA) at 50 vps and a 3-D thick-slice setup with continuous frame acquisition (4000 vps), both utilizing ECG-gating. The 3-D vector velocity estimates were obtained using a novel method combining phase and envelope information. In vitro validation in a rotating tissue-mimicking phantom revealed velocity estimates in compliance with the ground truth, with a linear regression slope of 0.80, 0.77, and 1.03 for the , , and velocity components, and with standard deviations of 2.53, 3.19, and 0.95 cm/s, respectively. In vivo measurements in a healthy LV showed good agreement with PC-MRI. Quantitative analysis of energy loss (EL) and kinetic energy (KE) further showed similar trends, with peak KE at 1.5 and 2.4 mJ during systole and 3.6 and 3.1 mJ for diastole for US and PC-MRI. Similar for EL, 0.15- 0.2 and 0.7 mW was found during systole and 0.6 and 0.7 mW during diastole, for US and PC-MRI, respectively. Overall, a potential for US as a future modality for 4D cardiac vector flow imaging was demonstrated, which will be further evaluated in clinical studies.
体内心腔内血流速度矢量场的特征可提供新的临床信息,但目前无法在床边进行评估。本文利用临床超声(US)系统和矩阵阵列换能器,展示了一种无需造影剂即可用于心腔内流动评估的 4D 向量流成像。开发了两种采集方案,一种用于左心室(LA)的全容积覆盖,采集速度为 50 vps;另一种是 3D 厚切片设置,连续帧采集(4000 vps),均利用心电图门控。通过结合相位和包络信息的新方法获得 3D 向量速度估计。在旋转的组织模拟体模中的体外验证表明,速度估计与真实值相符, , 和速度分量的线性回归斜率分别为 0.80、0.77 和 1.03,标准差分别为 2.53、3.19 和 0.95 cm/s。在健康的 LV 中进行的体内测量与 PC-MRI 吻合良好。能量损耗(EL)和动能(KE)的定量分析进一步表明了相似的趋势,在收缩期和舒张期的峰值 KE 分别为 1.5 和 2.4 mJ 和 3.6 和 3.1 mJ,用于 US 和 PC-MRI。EL 也类似,收缩期和舒张期 US 和 PC-MRI 分别为 0.15-0.2 和 0.7 mW。总之,US 作为未来 4D 心脏向量流成像的一种潜在模态的潜力得到了证明,它将在临床研究中进一步评估。