University of Rochester, Rochester, New York 14627, USA.
Med Phys. 2011 May;38(5):2563-71. doi: 10.1118/1.3569578.
The focus of this article is to develop signal and imaging processing methods to derive an accurate estimation of local tissue elasticity using the crawling wave (CrW) sonoelastography method. The task is to reduce noise and to improve the contrast of the elasticity map.
The protocol of the CrW approach was first tested on heterogeneous elastic phantoms as a model of prostate cancers. Then, the contrast-to-noise ratio of the estimation was calculated iteratively with various sequences of algorithms to determine the optimal signal processing settings. Finally, the optimized signal processing was applied to ex vivo prostate cancer detection. The comparison of the segmented elasticity map and the histology tumor outline was made by quadrants to evaluate the diagnostic performance of the protocol. Furthermore, the CrW approach was combined with amplitude-sonoelastography to achieve a higher specificity.
This study demonstrated the feasibility of the proposed approach for clinical applications. In the application to ex vivo prostate cancer detection, the established approach was tested on 43 excised prostate glands. The combination of the CrW approach and amplitude-sonoelastography achieved an accuracy of over 80% for finding tumors larger than 4 mm in diameter. The elasticity values and contrast found by the CrW approach were in agreement with the previous results derived from mechanical testing.
Crawling waves can be applied to detect prostate cancer with accuracy approaching 80% and can quantify the stiffness or shear modulus of both cancerous and noncancerous tissues. The technique therefore shows promise for guiding biopsies to suspect regions that are otherwise difficult to identify.
本文的重点是开发信号和成像处理方法,以使用爬行波(CrW)声弹性成像方法准确估计局部组织弹性。任务是减少噪声并提高弹性图的对比度。
首先在异质弹性体模中测试 CrW 方法的方案,作为前列腺癌的模型。然后,通过各种算法序列迭代计算估计的对比噪声比,以确定最佳信号处理设置。最后,将优化的信号处理应用于前列腺癌的离体检测。通过象限比较分割的弹性图和组织学肿瘤轮廓,评估方案的诊断性能。此外,将 CrW 方法与幅度声弹性成像相结合,以提高特异性。
本研究证明了所提出的方法在临床应用中的可行性。在离体前列腺癌检测中的应用中,该方法在 43 个切除的前列腺上进行了测试。CrW 方法与幅度声弹性成像的结合,对于检测直径大于 4 毫米的肿瘤,准确率超过 80%。CrW 方法获得的弹性值和对比度与从机械测试得出的先前结果一致。
爬行波可用于以接近 80%的准确率检测前列腺癌,并定量测量癌性和非癌性组织的硬度或剪切模量。因此,该技术有望指导活检到难以识别的可疑区域。