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应用声辐射力脉冲成像技术对心肌硬度进行体内评估。

In vivo assessment of myocardial stiffness with acoustic radiation force impulse imaging.

作者信息

Hsu Stephen J, Bouchard Richard R, Dumont Douglas M, Wolf Patrick D, Trahey Gregg E

机构信息

Department of Biomedical Engineering, Duke University, Durham, NC, USA.

出版信息

Ultrasound Med Biol. 2007 Nov;33(11):1706-19. doi: 10.1016/j.ultrasmedbio.2007.05.009. Epub 2007 Aug 15.

Abstract

Acoustic radiation force impulse (ARFI) imaging has been demonstrated to be capable of visualizing variations in local stiffness within soft tissue. Recent advances in ARFI beam sequencing and parallel imaging have shortened acquisition times and lessened transducer heating to a point where ARFI acquisitions can be executed at high frame rates on commercially available diagnostic scanners. In vivo ARFI images were acquired with a linear array placed on an exposed canine heart. The electrocardiogram (ECG) was also recorded. When coregistered with the ECG, ARFI displacement images of the heart reflect the expected myocardial stiffness changes during the cardiac cycle. A radio-frequency ablation was performed on the epicardial surface of the left ventricular free wall, creating a small lesion that did not vary in stiffness during a heartbeat, though continued to move with the rest of the heart. ARFI images showed a hemispherical, stiffer region at the ablation site whose displacement magnitude and temporal variation through the cardiac cycle were less than the surrounding untreated myocardium. Sequences with radiation force pulse amplitudes set to zero were acquired to measure potential cardiac motion artifacts within the ARFI images. The results show promise for real-time cardiac ARFI imaging.

摘要

声辐射力脉冲(ARFI)成像已被证明能够可视化软组织内局部硬度的变化。ARFI波束序列和并行成像的最新进展缩短了采集时间,并将换能器发热降低到可以在商用诊断扫描仪上以高帧率执行ARFI采集的程度。使用放置在暴露的犬心脏上的线性阵列采集体内ARFI图像。同时记录心电图(ECG)。当与ECG配准后,心脏的ARFI位移图像反映了心动周期中预期的心肌硬度变化。在左心室游离壁的心外膜表面进行射频消融,形成一个小病变,该病变在心跳期间硬度不变,但仍随心脏其他部分移动。ARFI图像显示消融部位有一个半球形、较硬的区域,其在心动周期中的位移幅度和时间变化小于周围未处理的心肌。采集辐射力脉冲幅度设置为零的序列,以测量ARFI图像内潜在的心脏运动伪影。结果显示了实时心脏ARFI成像的前景。

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