首页> 外文会议>Conference on Penetrating Radiation Systems and Applications II, Aug 2-3, 2000, San Diego, USA >Evaluation of Performance of Dedicated, Compact Scintillation Cameras
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Evaluation of Performance of Dedicated, Compact Scintillation Cameras

机译:专用紧凑型闪烁摄像机的性能评估

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As part of the development of dedicated scintillation cameras, we compared the performances of 2 dedicated cameras with a standard clinical camera (Siemens Orbiter, with high resolution collimator). The dedicated cameras were based on Position Sensitive Photomultipliers (PSPMTs): first, a single PSPMT coupled to a 6 by 6 by 0.6 cm NaI(Tl) crystal and second, multiple-PSPMTs coupled to a matrix of 2 by 2 by 6 mm NaI(Tl) crystals with hexagonal hole collimator. Image resolution was measured with all cameras as a function of depth. The ability of the cameras to measure small superficial tumors was tested with a phantom consisting of 6 hot cylindrical tumors of height 3 mm and varying diameters against a warm background of 4, 1 cm thick cylinders. Tumors were stepped through the background and imaged at each level, starting at the collimator face, using a tumor to background activity concentration ratio of 10:1 and adjusting the imaging time for each to compensate for decay. Images were made of an anthropomorphic human thorax phantom with simulated breast lesions and detectability between the multi-PSPMT camera and the clinical camera was compared. The unproved performance of dedicated cameras in specific tasks suggests that these devices will have a role in scintimammography and assisting in O.R. procedures such as sentinel node dissection and other shallow depth of field applications.
机译:作为专用闪烁摄像头开发的一部分,我们将2台专用摄像头与标准临床摄像头(Siemens Orbiter,带有高分辨率准直仪)的性能进行了比较。专用相机基于位置敏感光电倍增管(PSPMT):首先,将单个PSPMT耦合到6 x 6 x 0.6厘米NaI(Tl)晶体,然后将多个PSPMT耦合到2 x 2 x 6毫米NaI矩阵(Tl)具有六角孔准直器的晶体。使用所有相机测量图像分辨率是深度的函数。相机测量幻影的能力由一个幻影测试,该幻影由6个高度3 mm,直径可变的热圆柱形肿瘤组成,在4个1 cm厚的圆柱体的温暖背景下进行。从准直仪表面开始,沿肿瘤背景移动并在每个水平上成像,使用肿瘤与背景活性的浓度比为10:1,并调整每个成像时间以补偿衰变。图像由拟人化的人类胸模制成,具有模拟的乳腺病变,并比较了多PSPMT相机和临床相机之间的可检测性。专用相机在特定任务中的未经证实的性能表明,这些设备将在闪烁摄影和O.R辅助中发挥作用。前哨淋巴结清扫和其他浅景深应用等程序。

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