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A Harmonic Motion Imaging (HMI)clinical System for Detection and Characterization of in Vivo Human Breast Masses - Initial Feasibility

机译:用于检测和表征体内人类乳腺肿块的谐波运动成像(HMI)临床系统-初步可行性

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Harmonic motion imaging (HMI)has been previously proven as a successful imaging technique to measure the relative stiffness of normal and abnormal tissues of postsurgical human breast. The objective of this study was to evaluate the potential of HMI to measure the relative stiffness of tissue in patients with breast masses. The HMI clinical system was composed of an assembly of two co-aligned imaging and focused ultrasound transducers that was moved using a robotic arm to scan a female patient with a suspicious breast mass before needle biopsy. The average of peak-to-peak HMI displacement amplitude in the tumor was estimated and determined to be twice greater than that in non-cancerous breast tissue. Good agreement was found between the size of the tumor measured on the B-mode image and on the HMI displacement image. Our findings indicate that HMI is capable of detecting and assessing elasticity variation of in vivo human breast tissue as a result of pathological changes.
机译:谐波运动成像(HMI)先前已被证明是一种成功的成像技术,可用于测量手术后人乳房正常组织和异常组织的相对刚度。这项研究的目的是评估HMI在乳腺肿块患者中测量组织相对刚度的潜力。 HMI临床系统由两个共对准的成像和聚焦超声换能器组成,该超声换能器使用机械​​臂移动,以在进行穿刺活检之前扫描具有可疑乳腺肿块的女性患者。估计肿瘤中峰-峰HMI位移幅度的平均值是非癌性乳腺组织的两倍。在B型图像和HMI位移图像上测得的肿瘤大小之间找到了很好的一致性。我们的发现表明,HMI能够检测和评估由于病理变化而导致的体内人乳房组织的弹性变化。

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