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Acoustic output of multi-line transmit beamforming for fast cardiac imaging: a simulation study

机译:用于快速心脏成像的多线传输波束成形的声输出:仿真研究

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Achieving higher frame rates in cardiac ultrasound could unveil short-lived myocardial events and lead to new insights on cardiac function. Multi-line transmit (MLT) beamforming (i.e., simultaneously transmitting multiple focused beams) is a potential approach to achieve this. However, two challenges come with it: first, it leads to cross-talk between the MLT beams, appearing as imaging artifacts, and second, it presents acoustic summation in the near field, where multiple MLT beams overlap. Although several studies have focused on the former, no studies have looked into the implications of the latter on acoustic safety. In this paper, the acoustic field of 4-MLT was simulated and compared with single-line transmit (SLT). The findings suggest that standard MLT does present potential concerns. Compared with SLT, it shows a 2-fold increase in mechanical index (MI) (from 1.0 to 2.3), a 6-fold increase in spatial-peak pulse-average intensity (I) (from 99 to 576 W???cm) and a 12-fold increase in spatial-peak temporalaverage intensity (I) (from 119 to 1407 mW???cm). Subsequently, modifications of the transmit pulse and delay line of MLT were studied. These modifications allowed for a change in the spatio-temporal distribution of the acoustic output, thereby significantly decreasing the safety indices (MI = 1.2, I = 92 W???cm and I = 366 mW???cm). Accordingly, they help mitigate the concerns around MLT, reducing potential tradeoffs between acoustic safety and image quality.
机译:在心脏超声中获得更高的帧速率可能会揭示短暂的心肌事件,并导致对心脏功能的新见解。多线发射(MLT)波束成形(即,同时发射多个聚焦波束)是实现这一目标的一种潜在方法。然而,随之而来的是两个挑战:首先,它导致MLT光束之间的串扰,表现为成像伪像;其次,它在近场中呈现了声音求和,多个MLT光束重叠。尽管有几项研究集中在前者上,但还没有研究探讨后者对声音安全的影响。本文对4-MLT的声场进行了仿真,并与单线传输(SLT)进行了比较。研究结果表明标准的MLT确实存在潜在的问题。与SLT相比,它的机械指数(MI)增加了2倍(从1.0到2.3),空间峰脉冲平均强度(I)增加了6倍(从99到576 W·cm )和时空平均强度(I)增加12倍(从119到1407 mW·cm)。随后,研究了MLT的发射脉冲和延迟线的修改。这些修改允许改变声音输出的时空分布,从而显着降低安全指数(MI = 1.2,I = 92 W·cm 3和I = 366 mW·cm 3)。因此,它们有助于减轻围绕MLT的担忧,减少声音安全性和图像质量之间的潜在折衷。

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