首页> 外文会议>Conference on Visualization, Image-Guided Procedures, and Display: Medical Imaging 2004; 20040215-20040217; San Diego,CA; US >Ultrasound 3D Volume Reconstruction from an Optically Tracked Endorectal Ultrasound (TERUS) Probe
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Ultrasound 3D Volume Reconstruction from an Optically Tracked Endorectal Ultrasound (TERUS) Probe

机译:从光学跟踪的直肠内超声(TERUS)探头进行超声3D体积重建

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Endorectal Ultrasound (ERUS) is essential for the accurate staging of rectal cancer. Staging is important to the treatment of patients with rectal cancer because it will determine whether the patient receives preoperative radiotherapy for the purpose of tumor downstaging. ERUS images are intrinsically different from images taken by Computed Tomography (CT) or Magnetic Resonance Imaging (MRI) in that ultrasound provides 2D images while CT and MRI provide 3D data sets that can be rendered into volumes and then re-sliced and viewed as 2D images in any desired orientation. This fundamental difference between ultrasound and tomographic imaging modalities creates a problem when a direct comparison between ultrasound and CT or MRI is desired. To accomplish the goal of following tumor volume over time, an accurate ultrasound volume must be constructed. By optically tracking the ERUS probe as data is collected, the intensity value for each pixel is saved and then inserted into the nearest voxel in the ERUS volume matrix. We validate the accuracy of volume reconstruction by finding the 3D coordinates of targets that are inside of the ERUS volume and comparing them to their known physical locations.
机译:直肠内超声(ERUS)对于直肠癌的准确分期至关重要。分期对于直肠癌患者的治疗很重要,因为它将决定患者是否出于肿瘤分期的目的接受术前放疗。 ERUS图像与计算机断层扫描(CT)或磁共振成像(MRI)所拍摄的图像本质上有所不同,因为超声提供2D图像,而CT和MRI提供3D数据集,这些数据集可以渲染为体积然后重新切片并以2D形式查看图像以任何所需的方向。当需要在超声与CT或MRI之间进行直接比较时,超声和断层成像方式之间的这种根本差异会产生问题。为了实现随时间推移追踪肿瘤体积的目标,必须构建准确的超声体积。通过在收集数据时光学跟踪ERUS探针,可以保存每个像素的强度值,然后将其插入ERUS体积矩阵中最近的体素中。我们通过找到ERUS体积内目标的3D坐标并将其与已知物理位置进行比较来验证体积重建的准确性。

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