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一种用于超声重新聚焦的快速磁共振声辐射力成像序列。

A rapid magnetic resonance acoustic radiation force imaging sequence for ultrasonic refocusing.

作者信息

Mougenot Charles, Pichardo Samuel, Engler Steven, Waspe Adam, Colas Elodie Constanciel, Drake James M

机构信息

Philips Healthcare, Toronto, ON, Canada.

出版信息

Phys Med Biol. 2016 Aug 7;61(15):5724-40. doi: 10.1088/0031-9155/61/15/5724. Epub 2016 Jul 12.

Abstract

Magnetic resonance guided acoustic radiation force imaging (MR-ARFI) is being used to correct for aberrations induced by tissue heterogeneities when using high intensity focusing ultrasound (HIFU). A compromise between published MR-ARFI adaptive solutions is proposed to achieve efficient refocusing of the ultrasound beam in under 10 min. In addition, an ARFI sequence based on an EPI gradient echo sequence was used to simultaneously monitor displacement and temperature with a large SNR and low distortion. This study was conducted inside an Achieva 3T clinical MRI using a Philips Sonalleve MR-HIFU system to emit a 1 ms pulsed sonication with duty cycle of 2.3% at 300 Wac inside a polymer phantom. Virtual elements defined by a Hadamard array with sonication patterns composed of 6 phase steps were used to characterize 64 groups of 4 elements to find the optimal phase of the 256 elements of the transducer. The 384 sonication patterns were acquired in 580 s to identify the set of phases that maximize the displacement at the focal point. Three aberrators (neonatal skull, 8 year old skull and a checkered pattern) were added to each sonication pattern to evaluate the performance of this refocusing algorithm (n  =  4). These aberrators reduced the relative intensities to 95.3%, 69.6% and 25.5% for the neonatal skull, 8 year old skull, and checkered pattern virtual aberrators respectively. Using a 10 min refocusing algorithm, relative intensities of 101.6%, 91.3% and 93.3% were obtained. Better relative intensities of 103.9%, 94.3% and 101% were achieved using a 25 min refocusing algorithm. An average temperature increase of 4.2 °C per refocusing test was induced for the 10 min refocusing algorithm, resulting in a negligible thermal dose of 2 EM. A rapid refocusing of the beam can be achieved while keeping thermal effects to a minimum.

摘要

磁共振引导的声辐射力成像(MR - ARFI)正被用于在使用高强度聚焦超声(HIFU)时校正由组织异质性引起的像差。提出了一种已发表的MR - ARFI自适应解决方案之间的折衷方案,以在10分钟内实现超声束的有效重新聚焦。此外,基于EPI梯度回波序列的ARFI序列被用于以高信噪比和低失真同时监测位移和温度。本研究在一台Achieva 3T临床MRI内进行,使用飞利浦Sonalleve MR - HIFU系统在聚合物模型内以300 W交流功率发射1 ms脉冲超声,占空比为2.3%。由具有由6个相位步长组成的超声模式的哈达玛阵列定义的虚拟元件用于表征64组4个元件,以找到换能器256个元件的最佳相位。在580秒内采集384个超声模式,以确定使焦点处位移最大化的相位集。将三个像差器(新生儿颅骨、8岁儿童颅骨和棋盘图案)添加到每个超声模式中,以评估这种重新聚焦算法的性能(n = 4)。这些像差器分别将新生儿颅骨、8岁儿童颅骨和棋盘图案虚拟像差器的相对强度降低到95.3%、69.6%和25.5%。使用10分钟的重新聚焦算法,获得的相对强度分别为101.6%、91.3%和93.3%。使用25分钟的重新聚焦算法,相对强度分别达到了更好的103.9%、94.3%和101%。对于10分钟的重新聚焦算法,每次重新聚焦测试平均温度升高4.2°C,导致热剂量可忽略不计,为2 EM。在将热效应保持在最低限度的同时,可以实现光束的快速重新聚焦。

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