The University of Texas Medical School, Department of Diagnostic and Interventional Imaging, Ultrasonics Laboratory, Houston, TX 77030, USA.
Ultrasound Med Biol. 2011 Mar;37(3):426-33. doi: 10.1016/j.ultrasmedbio.2010.11.009. Epub 2011 Jan 26.
In this paper, we report on a study that investigated the feasibility of reliably visualizing high-intensity focused ultrasound (HIFU) lesion boundaries using axial-shear strain elastograms (ASSE). The HIFU-induced lesion cases used in the present work were selected from data acquired in a previous study. The samples consisted of excised canine livers with thermal lesions produced by a magnetic resonance-compatible HIFU system (GE Medical System, Milwaukee, WI, USA) and were cast in a gelatin block for the elastographic experiment. Both single and multiple HIFU-lesion samples were investigated. For each of the single-lesion samples, the lesion boundaries were determined independently from the axial strain elastogram (ASE) and ASSE at various iso-intensity contour thresholds (from -2 dB to -6 dB), and the area of the enclosed lesion was computed. For samples with multiple lesions, the corresponding ASSE was analyzed for identifying any unique axial-shear strain zones of interest. We further performed finite element modeling (FEM) of simple two-inclusion cases to verify whether the in vitro ASSE obtained were reasonable. The results show that the estimation of the lesion area using ASSE is less sensitive to iso-intensity threshold selection, making this method more robust compared with the ASE-based method. For multiple lesion cases, it was shown that ASSE enables high-contrast visualization of a "thin" untreated region in between multiple fully-treated HIFU-lesions. This contrast visualization was also noticed in the FEM predictions. In summary, the results demonstrate that it is feasible to reliably visualize HIFU lesion boundaries using ASSE.
在本文中,我们报告了一项研究,该研究旨在探讨使用轴向剪切应变弹性图(ASSE)可靠可视化高强度聚焦超声(HIFU)损伤边界的可行性。本工作中使用的 HIFU 诱导损伤病例选自先前研究中获得的数据。样本由经磁共振兼容 HIFU 系统(GE Medical System,Milwaukee,WI,USA)产生的热损伤的切除犬肝组成,并铸造成凝胶块用于弹性成像实验。研究了单个和多个 HIFU 损伤样本。对于每个单损伤样本,使用不同的等强度轮廓阈值(从-2dB 到-6dB)从轴向应变弹性图(ASE)和 ASSE 中独立确定损伤边界,并计算封闭损伤的面积。对于具有多个损伤的样本,分析了相应的 ASSE 以识别任何感兴趣的独特轴向剪切应变区。我们进一步对简单的双包含情况进行了有限元建模(FEM),以验证体外获得的 ASSE 是否合理。结果表明,使用 ASSE 估计损伤面积对等强度阈值选择的敏感性较低,与基于 ASE 的方法相比,该方法更稳健。对于多个损伤情况,结果表明 ASSE 能够高对比度地可视化多个完全治疗的 HIFU 损伤之间的“薄”未处理区域。这种对比可视化也在 FEM 预测中得到了注意。总之,结果表明使用 ASSE 可靠地可视化 HIFU 损伤边界是可行的。