首页> 外文会议>Engineering in Medicine and Biology Society, 2001. Proceedings of the 23rd Annual International Conference of the IEEE >Realization of combined diagnosis/treatment system by ultrasound strain measurement-based shear modulus reconstruction/imaging technique examples with application on the new type interstitial rf electromagnetic wave thermal therap
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Realization of combined diagnosis/treatment system by ultrasound strain measurement-based shear modulus reconstruction/imaging technique examples with application on the new type interstitial rf electromagnetic wave thermal therap

机译:基于超声应变测量的剪切模量重构/成像技术实例实现组合诊疗系统及其在新型间隙射频电磁波热疗中的应用

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For various soft tissues (e.g., breast, liver, etc.), we are developing the ultrasonic strain measurement-based shear modulus reconstruction/imaging technique. To clarify the limitation of this technique as a diagnostic tool, together with improving the technique, we are collecting clinical shear modulus images. Furthermore, we are applying the technique as the monitoring technique for the effectiveness of chemical therapy (e.g., anticancer drug, ethanol) and thermal therapy (e.g., rf electromagnetic wave, HIFU, etc.). Here, we showed shear modulus images obtained in quasi-real time. Using a conventional work station, quantitative images were obtained in the order of ten seconds. In particular, by exhibiting the superiority of shear modulus imaging compared with simultaneous B-mode imaging, we delineated the effectiveness of the technique as the clinical visualization technique for diagnosis and therapy. For instance, the shear modulus value of in vivo human breast carcinoma was significantly high (typical value: 6.33 /spl times/ 10/sup 6/ N/m/sup 2/). Shear modulus images were also obtained on in vivo human liver tissues. On the in vitro calf liver, the shear modulus value of an electromagnetic wave-induced thermal lesion became about five times higher after cooling down. We believe that this technique is currently solely available as a diagnosis or monitoring tool, and yet in the near future this technique will allow combined diagnosis/therapy systems for opening up a novel clinical style.
机译:对于各种软组织(例如,乳房,肝脏等),我们正在开发基于超声应变测量的剪切模量重建/成像技术。为了阐明该技术作为诊断工具的局限性,以及改进该技术,我们正在收集临床剪切模量图像。此外,我们将该技术用作化学疗法(例如抗癌药,乙醇)和热疗法(例如射频电磁波,HIFU等)有效性的监测技术。在这里,我们显示了准实时获得的剪切模量图像。使用常规工作站,可以在十秒钟的时间内获得定量图像。特别是,与同时进行的B模式成像相比,通过展示剪切模量成像的优越性,我们描述了该技术作为临床可视化技术进行诊断和治疗的有效性。例如,体内人乳腺癌的剪切模量值非常高(典型值:6.33 / spl倍/ 10 / sup 6 / N / m / sup 2 /)。在体内人肝脏组织上也获得了剪切模量图像。在体外小牛肝脏上,冷却后,电磁波引起的热损伤的剪切模量值大约提高了五倍。我们认为,该技术目前仅可作为诊断或监测工具使用,但是在不久的将来,该技术将允许组合的诊断/治疗系统打开一种新颖的临床风格。

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