Zurich Ultrasound Research and Translation (ZURT), Institute of Diagnostic and Interventional Radiology, University Hospital Zurich, Zürich, Switzerland.
Zurich Ultrasound Research and Translation (ZURT), Institute of Diagnostic and Interventional Radiology, University Hospital Zurich, Zürich, Switzerland.
Ultrasound Med Biol. 2019 Oct;45(10):2591-2611. doi: 10.1016/j.ultrasmedbio.2019.06.417. Epub 2019 Jul 30.
The goal of the study was to investigate the quantitative impact of region of interest (ROI), software choice, muscle fiber orientation and preload tension on shear wave velocity (SWV). First, SWV was assessed in an isotropic elasticity phantom and ex vivo porcine muscle using a commercially available clinical ultrasound system. Secondly, SWV was acquired in relaxed and stretched calf muscles of healthy volunteers (dorsal extension of the talocrural joint), for both parallel and transverse probe direction to the fibers, as well as for different ROIs and software versions. The effect of intermediate probe-fiber alignments was also analyzed. Finally, the impact of confounding factors on SWV reproducibility was minimized with a second force-controlled volunteer study, in which the calf was isometrically loaded, and fiber orientation and ROI were well-defined. 2046 in vivoSWE images were acquired to analyze SWV reproducibility with different confounder settings. In healthy volunteers, the main variance-contributing factors were in order of importance muscle tension, fiber orientation, horizontal ROI size and insertion depth. Regression analysis showed significantly reduced SWV with increasing insertion depth for each study material. Parallel probe-fiber orientation, muscle stretch and increasing horizontal ROI size led to significantly higher SWV. Based on the results of the study, we provide recommendations to minimize the impact of confounders in musculoskeletal elastography and discuss the main confounding mechanisms and trade-offs between confounding variables. Coefficients of variation can be significantly reduced with a controlled protocol, if the confounders are clinically taken into account.
本研究旨在探讨感兴趣区域(ROI)、软件选择、肌纤维方向和预载张力对剪切波速度(SWV)的定量影响。首先,使用商用临床超声系统在各向同性弹性体模型和离体猪肌肉中评估 SWV。其次,在健康志愿者(距下关节背伸)的放松和拉伸小腿肌肉中,分别以平行和垂直于纤维的探头方向,以及不同 ROI 和软件版本获取 SWV。还分析了中间探头-纤维对准的影响。最后,通过第二项基于力控制的志愿者研究,最大限度地减少了混杂因素对 SWV 可重复性的影响,在该研究中,小腿等长加载,纤维方向和 ROI 定义明确。共采集了 2046 例体内 SWE 图像,以分析不同混杂因素设置下的 SWV 可重复性。在健康志愿者中,主要的方差贡献因素按重要性顺序依次为肌肉张力、纤维方向、水平 ROI 大小和插入深度。回归分析显示,每种研究材料的 SWV 随插入深度的增加而显著降低。平行探头-纤维方向、肌肉拉伸和增大水平 ROI 大小会导致 SWV 显著升高。基于研究结果,我们提供了在肌肉骨骼弹性成像中最小化混杂因素影响的建议,并讨论了主要的混杂机制和混杂变量之间的权衡。如果在临床中考虑了混杂因素,则可以通过控制方案显著降低变异系数。