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Prostate Cancer Detection Using Crawling Wave Sonoelastography

机译:爬行波超声弹性成像技术检测前列腺癌

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Crawling wave (CrW) sonoelastography is an elasticity imaging technique capable of estimating the localized shear wave speed in tissue and, therefore, can provide a quantitative estimation of the Young's modulus for a given vibration frequency. In this paper, this technique is used to detect cancer in excised human prostates and to provide quantitative estimations of the viscoelastic properties of cancerous and normal tissues. Image processing techniques are introduced to compensate for attenuation and reflection artifacts of the CrW images. Preliminary results were obtained with fifteen prostate glands after radical prostatectomy. The glands were vibrated at 100, 120 and 140Hz. At each frequency, three cross-sections of the gland (apex, mid-gland and base) were imaged using CrW Sonoelastography and compared to corresponding histological slices. Results showed good spatial correspondence with histology and an 80% accuracy in cancer detection. In addition, shear velocities for cancerous and normal tissues were estimated as 4.75±0.97 m/s and 3.26±0.87 m/s, respectively.
机译:爬行波(CrW)超声弹性成像技术是一种弹性成像技术,能够估计组织中的局部剪切波速度,因此可以为给定的振动频率提供杨氏模量的定量估计。在本文中,该技术用于检测切除的人前列腺中的癌症并提供癌组织和正常组织的粘弹性特性的定量估计。引入图像处理技术以补偿CrW图像的衰减和反射伪像。前列腺癌根治术后十五个前列腺获得了初步结果。腺体以100、120和140Hz振动。在每个频率下,使用CrW超声弹性成像对腺体的三个横截面(顶点,中部腺体和基底)成像,并与相应的组织切片相比较。结果显示出与组织学的良好空间对应性,并且在癌症检测中具有80%的准确性。此外,癌组织和正常组织的剪切速度分别估计为4.75±0.97 m / s和3.26±0.87 m / s。

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