Department of Medical Physics, University of Wisconsin-Madison, 1111 Highland Avenue, Madison, Wisconsin 53706, USA.
Med Phys. 2010 Mar;37(3):1075-82. doi: 10.1118/1.3301603.
Percutaneous thermal ablation is increasingly being used to destroy hepatic tumors in situ. The success of ablative techniques is highly dependent on adequate ablation zone monitoring, and ultrasound-based strain imaging could become a convenient and cost-effective means to delineate ablation zone boundaries. This study investigates in vivo electrode displacement-based strain imaging for monitoring hepatic ablation procedures that are difficult to perform with conventional elastography.
a In our method, minute displacements (less than a millimeter) are applied to the unconstrained end of the ablation electrode, resulting in localized tissue deformation within the ablation zone that provides the mechanical stimuli required for strain imaging. This article presents electrode displacement strain images of radiofrequency ablation zones created in porcine liver in vivo (n = 13).
Cross-sectional area measurements from strain images of these ablation zones were obtained using manual and automated segmentation. Area measurements from strain images were highly correlated with areas measured on histopathology images, quantitated using linear regression (R = 0.894, P < 0.001 and R = 0.828, P < 0.001, respectively).
This study further demonstrates that electrode displacement elastography is capable of providing high-contrast images using widely available commercial ultrasound systems which may potentially be used to assess the extent of thermal ablation zones.
经皮热消融术越来越多地用于原位破坏肝肿瘤。消融技术的成功高度依赖于充分的消融区监测,基于超声的应变成像可能成为描绘消融区边界的一种方便且具有成本效益的手段。本研究调查了基于电极位移的应变成像在监测常规弹性成像难以进行的肝消融手术中的应用。
在我们的方法中,对不受约束的消融电极末端施加微小的位移(小于一毫米),导致消融区内的局部组织变形,为应变成像提供所需的机械刺激。本文介绍了在活体猪肝中创建的射频消融区的电极位移应变成像(n = 13)。
使用手动和自动分割技术从这些消融区的应变成像中获得了横截面积测量值。应变成像的面积测量值与使用线性回归在组织病理学图像上定量的面积测量值高度相关(R = 0.894,P < 0.001 和 R = 0.828,P < 0.001,分别)。
本研究进一步证明,电极位移弹性成像是能够使用广泛可用的商业超声系统提供高对比度图像的,这可能潜在地用于评估热消融区的范围。