超声b型、应变成像、声辐射力脉冲位移和剪切波速成像应用临床实时乳腺图像的比较

Kavitha Manickam, R. Machireddy, B. Raghavan
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摘要

观察到许多病理过程使软组织的弹性模量比正常情况下增加。为了利用超声波成像组织刚度,对感兴趣的组织施加机械压缩,并测量局部组织变形。基于机械激励的超声刚度成像方法分为基于外部压缩的压缩或应变成像和基于聚焦超声产生的力的声辐射力脉冲(ARFI)成像。超声聚焦于组织时,横向产生横波,横波速度与组织刚度成正比。本文介绍的工作是研究应变弹性成像和ARFI成像在临床癌症诊断中使用实时患者数据。50例患者(良性31例,恶性23例)采用西门子S2000超声b超显像、应变显像、ARFI位移和ARFI横波速度显像。根据测量的横波速度计算出真模量对比值。对b超、ARFI位移成像和应变成像,计算良恶性肿瘤的观察图像对比度和噪比。根据横波速度成像计算的真模量对比值,对观测到的对比值进行了比较。此外,对所有四种技术进行了学生未配对t检验,并给出了箱形图。结果表明,应变成像对恶性肿瘤的表现更好,而ARFI成像对良性病变的表现优于应变成像和b模式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparison of ultrasound B-mode, strain imaging, acoustic radiation force impulse displacement and shear wave velocity imaging using real time clinical breast images
It has been observed that many pathological process increase the elastic modulus of soft tissue compared to normal. In order to image tissue stiffness using ultrasound, a mechanical compression is applied to tissues of interest and local tissue deformation is measured. Based on the mechanical excitation, ultrasound stiffness imaging methods are classified as compression or strain imaging which is based on external compression and Acoustic Radiation Force Impulse (ARFI) imaging which is based on force generated by focused ultrasound. When ultrasound is focused on tissue, shear wave is generated in lateral direction and shear wave velocity is proportional to stiffness of tissues. The work presented in this paper investigates strain elastography and ARFI imaging in clinical cancer diagnostics using real time patient data. Ultrasound B-mode imaging, strain imaging, ARFI displacement and ARFI shear wave velocity imaging were conducted on 50 patients (31 Benign and 23 malignant categories) using Siemens S2000 machine. True modulus contrast values were calculated from the measured shear wave velocities. For ultrasound B-mode, ARFI displacement imaging and strain imaging, observed image contrast and Contrast to Noise Ratio were calculated for benign and malignant cancers. Observed contrast values were compared based on the true modulus contrast values calculated from shear wave velocity imaging. In addition to that, student unpaired t-test was conducted for all the four techniques and box plots are presented. Results show that, strain imaging is better for malignant cancers whereas ARFI imaging is superior than strain imaging and B-mode for benign lesions representations.
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