de Bever Joshua T, Odéen Henrik, Todd Nick, Farrer Alexis I, Parker Dennis L
School of Computing, Utah Center for Advanced Imaging Research, University of Utah, Salt Lake City, Utah, USA.
Department of Physics, Utah Center for Advanced Imaging Research, University of Utah, Salt Lake City, Utah, USA.
Magn Reson Med. 2016 Sep;76(3):803-13. doi: 10.1002/mrm.25971. Epub 2015 Oct 7.
MR guided focused ultrasound procedures require accurate focal spot localization in three dimensions. This study presents a three-dimensional (3D) pulse sequence for acoustic radiation force imaging (ARFI) that efficiently localizes the focal spot by means of ultrasound induced tissue displacement over a large field-of-view.
A novel unbalanced bipolar motion encoding gradient was implemented to maximize time available for motion encoding, reduce echo times, and allow for longer echo train lengths. Two advanced features, kz reduction factor (KZRF) and kz -level interleaving, were implemented to reduce tissue heating. Studies in gelatin phantoms compared the location of peak displacement and temperature measured by 3D MR thermometry. MR-ARFI induced tissue heating was evaluated through a parametric study of sequence parameters and MR thermometry measurements during repeated application of ARFI sonication patterns. Sequence performance was characterized in the presence of respiration and tissue inhomogeneity.
The location of peak displacement and temperature rise agreed within 0.2 ± 0.1 mm and 0.5 ± 0.3 mm in the transverse and longitudinal direction, respectively. The 3D displacement maps were acquired safely, and the KZRF and kz -level interleaving features reduced tissue heating by 51%. High quality displacement maps were obtained despite respiration and tissue inhomogeneities.
This sequence provides a safe, accurate, and simple approach to localizing the focal spot in three dimensions with a single scan. Magn Reson Med 76:803-813, 2016. © 2015 Wiley Periodicals, Inc.
磁共振引导聚焦超声手术需要在三维空间中精确进行焦点定位。本研究提出一种用于声辐射力成像(ARFI)的三维(3D)脉冲序列,该序列通过超声诱导的组织位移在大视野范围内有效定位焦点。
实施了一种新型非平衡双极运动编码梯度,以最大化可用于运动编码的时间、减少回波时间并允许更长的回波链长度。采用了两个先进特性,即kz缩减因子(KZRF)和kz级交织,以减少组织发热。在明胶模型中的研究比较了通过三维磁共振测温法测量的峰值位移位置和温度。通过对序列参数进行参数研究以及在重复应用ARFI超声模式期间进行磁共振测温测量,评估了MR-ARFI诱导的组织发热。在存在呼吸和组织不均匀性的情况下对序列性能进行了表征。
横向和纵向的峰值位移位置与温度上升分别在0.2±0.1毫米和0.5±0.3毫米范围内一致。安全获取了三维位移图,并且KZRF和kz级交织特性使组织发热降低了51%。尽管存在呼吸和组织不均匀性,仍获得了高质量的位移图。
该序列提供了一种安全、准确且简单的方法,通过单次扫描在三维空间中定位焦点。《磁共振医学》76:803 - 813, 2016。© 2015威利期刊公司。