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Design and characterization of a laterally mounted phased-array transducer breast-specific MRgHIFU device with integrated 11-channel receiver array

机译:具有集成的11通道接收器阵列的侧向安装的相控阵换能器针对乳房的MRgHIFU设备的设计和表征

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摘要

>Purpose: This work presents the design and preliminary evaluation of a new laterally mounted phased-array MRI-guided high-intensity focused ultrasound (MRgHIFU) system with an integrated 11-channel phased-array radio frequency (RF) coil intended for breast cancer treatment. The design goals for the system included the ability to treat the majority of tumor locations, to increase the MR image’s signal-to-noise ratio (SNR) throughout the treatment volume and to provide adequate comfort for the patient.>Methods: In order to treat the majority of the breast volume, the device was designed such that the treated breast is suspended in a 17-cm diameter treatment cylinder. A laterally shooting 1-MHz, 256-element phased-array ultrasound transducer with flexible positioning is mounted outside the treatment cylinder. This configuration achieves a reduced water volume to minimize RF coil loading effects, to position the coils closer to the breast for increased signal sensitivity, and to reduce the MR image noise associated with using water as the coupling fluid. This design uses an 11-channel phased-array RF coil that is placed on the outer surface of the cylinder surrounding the breast. Mechanical positioning of the transducer and electronic steering of the focal spot enable placement of the ultrasound focus at arbitrary locations throughout the suspended breast. The treatment platform allows the patient to lie prone in a face-down position. The system was tested for comfort with 18 normal volunteers and SNR capabilities in one normal volunteer and for heating accuracy and stability in homogeneous phantom and inhomogeneous ex vivo porcine tissue.>Results: There was a 61% increase in mean relative SNR achieved in a homogeneous phantom using the 11-channel RF coil when compared to using only a single-loop coil around the chest wall. The repeatability of the system’s energy delivery in a single location was excellent, with less than 3% variability between repeated temperature measurements at the same location. The execution of a continuously sonicated, predefined 48-point, 8-min trajectory path resulted in an ablation volume of 8.17 cm3, with one standard deviation of 0.35 cm3 between inhomogeneous ex vivo tissue samples. Comfort testing resulted in negligible side effects for all volunteers.>Conclusions: The initial results suggest that this new device will potentially be suitable for MRgHIFU treatment in a wide range of breast sizes and tumor locations.
机译:>目的:这项工作介绍了具有集成的11通道相控阵射频(RF)的新型侧向安装相控阵MRI引导的高强度聚焦超声(MRgHIFU)系统的设计和初步评估。 )用于乳腺癌治疗的线圈。该系统的设计目标包括能够治疗大多数肿瘤部位,在整个治疗量中增加MR图像的信噪比(SNR)并为患者提供足够的舒适感。>方法:< / strong>为了治疗大部分乳房体积,该设备设计为将治疗过的乳房悬挂在直径17厘米的治疗筒中。具有灵活定位的横向发射1 MHz,256元素相控阵超声换能器安装在治疗缸外部。该配置实现了减小的水量,以最小化RF线圈的负载影响,将线圈放置在靠近乳房的位置,从而提高了信号灵敏度,并减少了与使用水作为耦合液相关的MR图像噪声。此设计使用一个11通道相控阵RF线圈,该线圈放置在围绕乳房的圆柱体的外表面上。换能器的机械定位和焦点的电子控制可将超声焦点放置在整个悬吊乳房的任意位置。该治疗平台允许患者俯卧于面部朝下的位置。测试了该系统在18名正常志愿者的舒适度和一名正常志愿者的SNR能力以及均质体模和不均质离体猪组织中的加热准确性和稳定性。>结果:平均数增加了61%与仅在胸壁周围使用单环线圈相比,使用11通道RF线圈在同质幻象中获得的相对SNR。该系统在单个位置的能量传输具有很高的可重复性,同一位置重复进行的温度测量之间的差异小于3%。连续超声预定义的48点,8分钟轨迹路径的执行导致消融体积为8.17 cm 3 ,之间的标准偏差为0.35 cm 3 不均匀的离体组织样本。舒适度测试对所有志愿者产生的副作用均可以忽略不计。>结论:初步结果表明,该新设备可能适合在各种乳房大小和肿瘤部位进行MRgHIFU治疗。

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