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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Coded excitation plane wave imaging for shear wave motion detection
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Coded excitation plane wave imaging for shear wave motion detection

机译:编码激发平面波成像用于剪切波运动检测

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摘要

Plane wave imaging has greatly advanced the field of shear wave elastography thanks to its ultrafast imaging frame rate and the large field-of-view (FOV). However, plane wave imaging also has decreased penetration due to lack of transmit focusing, which makes it challenging to use plane waves for shear wave detection in deep tissues and in obese patients. This study investigated the feasibility of implementing coded excitation in plane wave imaging for shear wave detection, with the hypothesis that coded ultrasound signals can provide superior detection penetration and shear wave SNR compared with conventional ultrasound signals. Both phase encoding (Barker code) and frequency encoding (chirp code) methods were studied. A first phantom experiment showed an approximate penetration gain of 2 to 4 cm for the coded pulses. Two subsequent phantom studies showed that all coded pulses outperformed the conventional short imaging pulse by providing superior sensitivity to small motion and robustness to weak ultrasound signals. Finally, an in vivo liver case study on an obese subject (body mass index = 40) demonstrated the feasibility of using the proposed method for in vivo applications, and showed that all coded pulses could provide higher SNR shear wave signals than the conventional short pulse. These findings indicate that by using coded excitation shear wave detection, one can benefit from the ultrafast imaging frame rate and large FOV provided by plane wave imaging while preserving good penetration and shear wave signal quality, which is essential for obtaining robust shear elasticity measurements of tissue.
机译:平面波成像技术具有超快的成像帧频和大视野(FOV),极大地推动了剪切波弹性成像技术的发展。然而,由于缺乏发射聚焦,平面波成像也降低了穿透力,这使得在深部组织和肥胖患者中使用平面波检测切变波具有挑战性。这项研究调查了在平面波成像中实施编码激励进行切变波检测的可行性,并假设与常规超声信号相比,编码超声信号可以提供更好的检测穿透力和切变SNR。研究了相位编码(巴克码)和频率编码(chi码)方法。第一个幻像实验表明,编码脉冲的穿透深度约为2至4 cm。随后的两次幻像研究表明,所有编码脉冲均通过提供对小运动的出色灵敏度和对微弱超声信号的鲁棒性而胜过传统的短成像脉冲。最后,针对肥胖受试者(体重指数= 40)的体内肝脏案例研究证明了将所提出的方法用于体内应用的可行性,并且表明与常规的短脉冲相比,所有编码脉冲均可以提供更高的SNR剪切波信号。 。这些发现表明,通过使用编码激励剪切波检测,可以受益于平面波成像提供的超快成像帧频和大FOV,同时保持良好的穿透力和剪切波信号质量,这对于获得鲁棒的组织剪切弹性测量结果至关重要。

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