首页> 外文会议>Instrumentation and Measurement Technology Conference, 1999. IMTC/99. Proceedings of the 16th IEEE >Three-dimensional ultrasound-guided minimally invasive therapy of the prostate
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Three-dimensional ultrasound-guided minimally invasive therapy of the prostate

机译:三维超声引导的前列腺微创治疗

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Prostate cancer is the most commonly diagnosed cancer in men in North America. Although 2D transrectal ultrasound imaging is widely used for the evaluation of prostate disease it suffers from limitations that limit its use in diagnosis and therapy of prostate cancer. The outcome of a 2D-ultrasound guided minimally invasive procedure depends on the skill and expertise of the operator in manipulating the transducer and in forming a correct mental impression of the 3D anatomy and pathology. In addition, the process of quantifying and monitoring small changes during the therapeutic procedure is also severely limited by using a spatially variable 2D imaging technique. We have developed a 3D ultrasound imaging approach that overcomes these problems. In this paper, we describe a 3D ultrasound imaging system for use in prostate imaging and report on its performance. The system consists of a conventional ultrasound machine, a microcomputer with an video frame grabber, and a custom-built assembly for rotating the ultrasound transducer. A typical scan of 100 2D B-mode images takes 7 seconds. These images can then be reconstructed into a 3D image, which can be displayed and interactively manipulated using 3D visualization software. We also show that the process of reconstruction does not distort the geometry, and that the 3D system can be used to localize brachytherapy seeds in phantoms with a precision (SEM) of better than 0.4 mm. We also show that the 3D system can be used to image brachytherapy seeds in patients post-implantation.
机译:前列腺癌是北美男性最常见的癌症。虽然2D委托超声成像广泛用于评估前列腺疾病,但它受到限制其在前列腺癌的诊断和治疗中使用的限制。 2D超声引导的微创程序的结果取决于操作者在操纵换能器中的技能和专业知识以及形成3D解剖学和病理学的正确心理印象。另外,通过使用空间可变的2D成像技术,对治疗过程中的量化和监测较小变化的过程也受到空间可变的2D成像技术的严重限制。我们开发了一种克服了这些问题的3D超声成像方法。在本文中,我们描述了一种用于前列腺成像和报告其性能的3D超声成像系统。该系统由传统的超声机,具有视频帧抓取器的微型计算机以及用于旋转超声换能器的定制组件。 100 2D B模式图像的典型扫描需要7秒。然后可以将这些图像重构成3D图像,这可以使用3D可视化软件显示和交互地操作。我们还表明,重建过程并不扭曲几何形状,并且3D系统可用于在幻影中定位近距离放射治疗的种子,精确(SEM)优于0.4mm。我们还表明3D系统可用于在植入后患者的近距离放射性种子进行图像。

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