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Fast coronary Doppler vibrometry to detect myocardial vibration associated with coronary artery stenosis using flash imaging

机译:快速冠状动脉多普勒振动测定法检测使用闪蒸成像的冠状动脉狭窄相关的心肌振动

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Recently, a new noninvasive ultrasonic technique called the coronary Doppler vibrometry (CDV) was developed to detect the audio-frequency vibrations in the vessel wall and surrounding tissues generated by the turbulence flow associated with the stenosed artery. Inspiring clinical data for diagnosing coronary artery stenosis (CAS) were obtained from CDV with high sensitivity and specificity. However, there still exists a significant limitation, one of which is the long examination time. In estimating myocardial vibrations, we must extract the myocardial tissue Doppler data from the multiple segments that are adjacent to the coronary artery in each echocardiography view and hence we need to acquire multiple data that are as many as the number of segments. To deal with this problem, we consider the use of unfocused transmission which is called the flash imaging. By using the flash imaging technique, we can interrogate all segments associated the coronary artery by using only one unfocused beam in each echocardiography view, and we need less data acquisitions. As a result, the data acquisition time is reduced significantly and so is the examination time. Vibrations were characterized by the vibration index (VI) computed from the tissue velocity spectrum for diagnosing coronary artery stenosis. The feasibility of the proposed approach was confirmed through a series of the clinical testing.
机译:最近,开发了一种称为冠状内多普勒振动器(CDV)的新的非侵入式超声波技术,以检测血管壁中的音频振动和由与狭窄的动脉相关的湍流流产生的湍流流动产生的周围组织。激发诊断冠状动脉狭窄(CAS)的临床数据以高灵敏度和特异性获得。然而,仍然存在显着的限制,其中一个是长的考试时间。在估计心肌振动时,必须从每个超声心动图视图中从邻近冠状动脉的多个段中提取心肌组织多普勒数据,因此我们需要获取多个与段数的多个数据。要处理这个问题,我们考虑使用不专心的传输,称为闪光模拟。通过使用闪存成像技术,我们可以通过在每个超声心动图视图中仅使用一个未聚焦的光束来询问冠状动脉相关联的所有段,并且我们需要更少的数据采集。结果,数据采集时间显着降低,因此检查时间也是如此。通过从组织速度谱计算的振动指数(VI)表征振动,用于诊断冠状动脉狭窄。通过一系列临床检测确认了所提出的方法的可行性。

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