Shin Hyun Joo, Kim Myung-Joon, Yoon Choon-Sik, Lee Kwanseop, Lee Kwan Sik, Park Jong-Chul, Lee Mi-Jung, Yoon Haesung
Department of Radiology and Research Institute of Radiological Science, Severance Children's Hospital, Yonsei University College of Medicine, Seoul, Korea.
Department of Radiology, Gangnam Severance Hospital, Yonsei University College of Medicine, Seoul, Korea.
Med Ultrason. 2018 Feb 4;1(1):14-20. doi: 10.11152/mu-1138.
To evaluate the differences between shear wave velocities (SWVs) measured with ultrasound elastography during the continuous motion using liver fibrosis phantoms.
Elasticities were measured with convex and linear transducers of supersonic shear wave imaging (SSI) and acoustic radiation force impulse imaging (ARFI) using liver elasticity phantoms (3.0 and 16.9 kPa) at depths of 2, 3, 4, and 5 cm. Motion velocities were 30 and 60 rpm with the phantoms in an upright position on the Orbital shaker. To simulate different directional motion, the phantoms were laid on their side on the shaker. The values between moving and static status were compared, and the number of measurement failure was counted. Results: In SSI, the convex transducer was less affected by motion at 30 rpm with the 3 kPa phantom. In the higher velocity motion and in the higher stiffness phantom, most values from SSI were different comparing with static status, and there was a tendency for elasticity values to increase during movement. In ARFI, there were frequent measurement failures without stable results during the motion.
Motion affected the measurement of elasticity differently in SSI and ARFI, according to the velocity, direction of the motion, and phantom stiffness. The convex transducer of SSI was less affected by motion in lower velocity motion and when using normal liver stiffness phantom.
使用肝纤维化模型评估在连续运动过程中通过超声弹性成像测量的剪切波速度(SWV)之间的差异。
使用超声剪切波成像(SSI)的凸阵和线阵换能器以及声辐射力脉冲成像(ARFI),在2、3、4和5厘米深度处对肝弹性模型(3.0和16.9千帕)进行弹性测量。将模型直立放置在轨道振荡器上,运动速度为30和60转/分钟。为模拟不同方向的运动,将模型侧卧在振荡器上。比较运动状态和静止状态下的值,并计算测量失败的次数。结果:在SSI中,对于3千帕的模型,凸阵换能器在30转/分钟的运动状态下受影响较小。在较高速度运动和较高硬度模型中,与静止状态相比,SSI的大多数值存在差异,并且运动过程中弹性值有增加的趋势。在ARFI中,运动过程中频繁出现测量失败且结果不稳定。
根据运动速度、运动方向和模型硬度,运动对SSI和ARFI中弹性测量的影响不同。在较低速度运动且使用正常肝脏硬度模型时,SSI的凸阵换能器受运动影响较小。