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High PRF ultrafast sliding compound doppler imaging: fully qualitative and quantitative analysis of blood flow

机译:高PRF超快滑动复合复合多普勒成像:血流的完全定性和定量分析

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Ultrafast compound Doppler imaging based on plane-wave excitation (UCDI) can be used to evaluate cardiovascular diseases using high frame rates. In particular, it provides a fully quantifiable flow analysis over a large region of interest with high spatio-temporal resolution. However, the pulse- repetition frequency (PRF) in the UCDI method is limited for high- velocity flow imaging since it has a tradeoff between the number of plane- wave angles (N) and acquisition time. In this paper, we present high PRF ultrafast sliding compound Doppler imaging method (HUSDI) to improve quantitative flow analysis. With the HUSDI method, full scanline images (i.e. each tilted plane wave data) in a Doppler frame buffer are consecutively summed using a sliding window to create highquality ensemble data so that there is no reduction in frame rate and flow sensitivity. In addition, by updating a new compounding set with a certain time difference (i.e. sliding window step size or L), the HUSDI method allows various Doppler PRFs with the same acquisition data to enable a fully qualitative, retrospective flow assessment. To evaluate the performance of the proposed HUSDI method, simulation, in vitro and in vivo studies were conducted under diverse flow circumstances. In the simulation and in vitro studies, the HUSDI method showed improved hemodynamic representations without reducing either temporal resolution or sensitivity compared to the UCDI method. For the quantitative analysis, the root mean squared velocity error (RMSVE) was measured using 9 angles (- 12 degrees to 12 degrees) with L of 1-9, and the results were found to be comparable to those of the UCDI method (L = N = 9), i.e. = 0.24 cm s(-1), for all L values. For the in vivo study, the flow data acquired from a full cardiac cycle of the femoral vessels of a healthy volunteer were analyzed using a PW spectrogram, and arterial and venous flows were successfully assessed with high Doppler PRF (e.g. 5 kHz at L = 4). These results indicate that the proposed HUSDI method can improve flow visualization and quantification with a higher frame rate, PRF and flow sensitivity in cardiovascular imaging.
机译:基于平面波激发(UCDI)的超快化合物多普勒成像可用于使用高帧速率评估心血管疾病。特别地,它在具有高时空分辨率的大型兴趣区域提供完全可量化的流量分析。然而,UCDI方法中的脉冲重复频率(PRF)受到高速流量成像的限制,因为它在平面波角(n)和采集时间之间具有折衷。本文展示了高PRF超快滑动复合多普勒成像方法(Husdi)以改善定量流动分析。利用Husdi方法,使用滑动窗口连续地求和多扫描线图像(即每个倾斜平面波数据)以创建高度集合数据,以便帧速率和流动灵敏度没有降低。另外,通过更新具有特定时间差的新的复合集(即滑动窗口步长或l),Husdi方法允许具有相同采集数据的各种多普勒PRF来实现完全定性的回顾性流动评估。为了评估所提出的Husdi方法的性能,在各种流动环境下进行模拟,体外和体内研究。在模拟和体外研究中,Husdi方法显示出改善的血液动力学表示,而不降低与UCDI方法相比的时间分辨率或敏感性。为了定量分析,使用1-9的L为1的9个角度( - 12度至12度)测量根平均平方速度误差(RMSVe),并发现结果与UCDI方法的结果相当(L.对于所有L值,= n = 9),即& = 0.24cm s(-1)。对于体内研究,使用PW谱图分析从健康志愿者的股骨血管的完整心动循环中获取的流动数据,并且通过高多普勒PRF成功评估动脉和静脉流量(例如,在L = 4处5kHz )。这些结果表明,所提出的Husdi方法可以提高具有更高帧速率,PRF和心血管成像的流动敏感性的流量可视化和定量。

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