Department of Biomedical Engineering, Duke University, Durham, NC, USA.
IEEE Trans Ultrason Ferroelectr Freq Control. 2013 Apr;60(4):758-70. doi: 10.1109/TUFFC.2013.2624.
A system capable of tracking radiation-force-induced shear wave propagation in a 3-D volume using ultrasound is presented. In contrast to existing systems, which use 1-D array transducers, a 2-D matrix array is used for tracking shear wave displacements. A separate single-element transducer is used for radiation force excitation. This system allows shear wave propagation in all directions away from the push to be observed. It is shown that for a limit of 64 tracking beams, by placing the beams at the edges of the measurement region of interest (ROI) at multiple directions from the push, time-of- flight (TOF) shear wave speed (SWS) measurement uncertainty can theoretically be reduced by 40% compared with equally spacing the tracking beams within the ROI along a single plane, as is typical when using a 1-D array for tracking. This was verified by simulation, and a reduction of 30% was experimentally observed on a homogeneous phantom. Analytical expressions are presented for the relationship between TOF SWS measurement uncertainty and various shear wave imaging parameters. It is shown that TOF SWS uncertainty is inversely proportional to ROI size, and inversely proportional to the square root of the number of tracking locations for a given distribution of beam locations relative to the push. TOF SWS uncertainty is shown to increase with the square of the SWS, indicating that TOF SWS measurements are intrinsically less precise for stiffer materials.
本文提出了一种使用超声跟踪三维体积内辐射力诱导剪切波传播的系统。与使用一维阵列换能器的现有系统不同,该系统使用二维矩阵阵列来跟踪剪切波位移。单独的单个元件换能器用于辐射力激励。该系统允许观察从推动方向各个方向的剪切波传播。结果表明,对于 64 个跟踪波束的限制,通过在多个方向上将波束放置在感兴趣区域(ROI)的边缘,与在 ROI 内沿单个平面均匀间隔跟踪波束(当使用一维阵列进行跟踪时通常如此)相比,理论上可以将飞行时间(TOF)剪切波速度(SWS)测量不确定性降低 40%。这通过仿真得到了验证,并在均匀的仿体上观察到了 30%的降低。本文提出了 TOF SWS 测量不确定性与各种剪切波成像参数之间的关系的解析表达式。结果表明,TOF SWS 不确定性与 ROI 尺寸成反比,并且与相对于推动的波束位置分布的跟踪位置数量的平方根成反比。结果表明,TOF SWS 不确定性与 SWS 的平方成正比,这表明对于较硬的材料,TOF SWS 测量本质上精度较低。