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三维扫查容积超声探头中目标速度和方向对三维斑点追踪性能的影响。

The effect of object speed and direction on the performance of 3D speckle tracking using a 3D swept-volume ultrasound probe.

机构信息

Joint Department of Physics, Institute of Cancer Research, Sutton, Surrey, UK.

出版信息

Phys Med Biol. 2011 Nov 21;56(22):7127-43. doi: 10.1088/0031-9155/56/22/009. Epub 2011 Oct 25.

Abstract

Three-dimensional (3D) soft tissue tracking using 3D ultrasound is of interest for monitoring organ motion during therapy. Previously we demonstrated feature tracking of respiration-induced liver motion in vivo using a 3D swept-volume ultrasound probe. The aim of this study was to investigate how object speed affects the accuracy of tracking ultrasonic speckle in the absence of any structural information, which mimics the situation in homogenous tissue for motion in the azimuthal and elevational directions. For object motion prograde and retrograde to the sweep direction of the transducer, the spatial sampling frequency increases or decreases with object speed, respectively. We examined the effect object motion direction of the transducer on tracking accuracy. We imaged a homogenous ultrasound speckle phantom whilst moving the probe with linear motion at a speed of 0-35 mm s⁻¹. Tracking accuracy and precision were investigated as a function of speed, depth and direction of motion for fixed displacements of 2 and 4 mm. For the azimuthal direction, accuracy was better than 0.1 and 0.15 mm for displacements of 2 and 4 mm, respectively. For a 2 mm displacement in the elevational direction, accuracy was better than 0.5 mm for most speeds. For 4 mm elevational displacement with retrograde motion, accuracy and precision reduced with speed and tracking failure was observed at speeds of greater than 14 mm s⁻¹. Tracking failure was attributed to speckle de-correlation as a result of decreasing spatial sampling frequency with increasing speed of retrograde motion. For prograde motion, tracking failure was not observed. For inter-volume displacements greater than 2 mm, only prograde motion should be tracked which will decrease temporal resolution by a factor of 2. Tracking errors of the order of 0.5 mm for prograde motion in the elevational direction indicates that using the swept probe technology speckle tracking accuracy is currently too poor to track homogenous tissue over a series of volume images as these errors will accumulate. Improvements could be made through increased spatial sampling in the elevational direction.

摘要

使用 3D 超声进行三维(3D)软组织跟踪对于监测治疗过程中的器官运动很有意义。 此前,我们已经证明了使用 3D 扫查式超声探头在体内对呼吸诱导的肝脏运动进行特征跟踪的能力。 本研究旨在探讨在没有任何结构信息的情况下,物体速度如何影响超声斑点跟踪的准确性,这种情况模拟了在方位角和仰角方向上同质组织中的运动情况。 对于沿换能器扫查方向正向和反向运动的物体,其空间采样频率随物体速度的增加或减小而增加或减小。 我们检查了物体运动方向对跟踪准确性的影响。 我们在探头以 0-35mm/s 的速度进行线性运动时对同质超声斑点幻影进行成像。 我们研究了跟踪精度和精度作为速度、深度和运动方向的函数,对于固定的 2mm 和 4mm 位移。 对于方位角方向,对于 2mm 和 4mm 的位移,精度分别优于 0.1 和 0.15mm。 对于 2mm 位移的仰角方向,在大多数速度下精度优于 0.5mm。 对于反向运动的 4mm 仰角位移,精度和精度随速度降低,并且在速度大于 14mm/s 时观察到跟踪失败。 跟踪失败归因于由于反向运动的速度增加而导致的斑点去相关,从而降低了空间采样频率。 对于正向运动,未观察到跟踪失败。 对于大于 2mm 的体积间位移,只能跟踪正向运动,这将使时间分辨率降低 2 倍。 对于正向运动,在仰角方向上的跟踪误差约为 0.5mm,这表明当前使用扫查探头技术进行斑点跟踪的精度太低,无法在一系列体积图像中跟踪同质组织,因为这些误差会累积。 通过增加在仰角方向上的空间采样,可以进行改进。

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