首页> 外文期刊>IEEE Transactions on Medical Imaging >Feasibility of Harmonic Motion Imaging Using a Single Transducer: In Vivo Imaging of Breast Cancer in a Mouse Model and Human Subjects
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Feasibility of Harmonic Motion Imaging Using a Single Transducer: In Vivo Imaging of Breast Cancer in a Mouse Model and Human Subjects

机译:使用单个换能器的谐波运动成像的可行性:在小鼠模型和人类受试者中的乳腺癌体内成像

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Harmonic motion imaging (HMI) interrogates the mechanical properties of tissues by simultaneously generating and tracking harmonic oscillation using focused ultrasound and imaging transducers, respectively. Instead of using two transducers, the objective of this work is to develop a single transducer HMI (ST-HMI) to both generate and track harmonicmotion at "on-axis" to the force for facilitating data acquisition. In ST-HMI, the amplitude-modulated force was generated by modulating excitation pulse duration and tracking of motion was performed by transmitting tracking pulses interleaved between excitation pulses. The feasibility of ST-HMI was performed by imaging two elastic phantoms with three inclusions (N = 6) and comparing it with acoustic radiation force impulse (ARFI) imaging, in vivo longitudinal monitoring of 4T1, orthotropic breast cancer mice (N = 4), and patients (N = 3) with breast masses in vivo. Six inclusions with Young's moduli of 8, 10, 15, 20, 40, and 60 kPa were embedded in a 5 kPa background. The ST-HMI-derived peak-to-peak displacement (P2PD) successfully detected all inclusions with R-2 = 0.93 of the linear regression between the P2PD ratio of background to inclusion versus Young's moduli ratio of inclusion to background. The contrasts of 10 and 15 kPa inclusions were higher in ST-HMI than ARFI-derived images. In the mouse study, the median P2PD ratio of tumor to non-cancerous tissues was 3.0, 5.1, 6.1, and 7.7 at 1, 2, 3, and 4 weeks post-injection of the tumor cells, respectively. In the clinical study, ST-HMI detected breast masses including fibroadenoma, pseudo angiomatous stromal hyperplasia, and invasive ductal carcinoma with a P2PD ratio of 1.37, 1.61, and 1.78, respectively. These results indicate that ST-HMI can assess the mechanical properties of tissues via generation and tracking of harmonic motion "on-axis" to the ARF. This study is the first step towards translating ST-HMI in clinics.
机译:谐波运动成像(HMI)通过分别使用聚焦超声和成像换能器同时产生和跟踪谐波振荡来询问组织的机械性能。而不是使用两个换能器,这项工作的目的是开发一个换能器HMI(ST-HMI),以在以便促进数据采集的力的“轴”上产生和跟踪和轨道和轨道的音量。在ST-HMI中,通过调制激发脉冲持续时间来产生幅度调制力,并且通过在激发脉冲之间交织的跟踪脉冲来执行运动的跟踪。通过成像两个具有三个夹杂物(n = 6)的弹性模子来进行ST-HMI的可行性,并将其与声辐射力脉冲(ARFI)成像进行比较,体内纵向监测4T1,正交乳腺癌小鼠(n = 4)和患者(n = 3),体内乳腺菌肿块。患有8,10,15,20,40和60kPa的六个夹杂物嵌入5kPa背景中。 ST-HMI导出的峰 - 峰位位移(P2PD)成功地检测到与R-2 = 0.93之间的所有夹杂物在P2PD比率之间的线性回归与包含到背景的夹杂物的比例与背景。 ST-HMI的10和15kPa夹杂物的对比度高于ARFI衍生的图像。在小鼠研究中,肿瘤与非癌组织的中位数P2PD比分别在注射肿瘤细胞的1,2,3和4周时为3.0,5.1,6.1和7.7。在临床研究中,ST-HMI检测到的乳房肿块,包括纤维腺瘤,伪血管基质增生和P2PD比例分别为1.37,1.61和1.78的侵入性导管癌。这些结果表明,ST-HMI可以通过生成和跟踪对ARF的谐波运动“谐振”谐波运动跟踪来评估组织的机械性能。本研究是朝着诊所翻译ST-HMI的第一步。

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