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Simultaneous emission, transmission scan for the measurement of 3-dimensional absolute activity distribution using dual isotope, TEW scatter compensation method and fan beam collimation

机译:同时发射,传输扫描用于测量三维绝对活性分布的三维绝对活性分布,使用双同位素,TEW散射补偿方法和风扇束准直

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Photon attenuation is one of the most important factors degrading the quantitative accuracy of single photon emission computed tomography (SPECT) images. The precise information of attenuation distribution is needed for accurate attenuation compensation. Recently, a lot of methods to measure attenuation distribution using transmission computed tomography (TCT) scans have been reported. The simultaneous SPECT and TCT scan with dual isotopes, which is possible in SPECT systems, but not PET, was investigated as a way to avoid the problems of misalignment and longer scan times for clinical applications. In simultaneous system, however, there are scatter from emission to transmission and from transmission to emission. These scatter must be compensated for quantitative SPECT. To obtain quantitative SPECT images the authors designed and built a simultaneous transmission/emission scan and scatter compensation system (based on a Toshiba GCA-9300A HG triple head SPECT camera) using the TEW method and fan beam collimator for brain SPECT. The analysis of the distribution of the scatter component using the regional energy spectrum is very useful for evaluating scatter compensation. Here, the authors describe the analysis of simulated and measured energy spectrums of TCT scans and three dimensional absolute activity measurement in brain phantoms.
机译:光子衰减是最重要的因素之一,降低单光子发射计算机断层扫描(SPECT)图像的定量精度。准确衰减补偿需要衰减分布的精确信息。最近,已经报道了许多使用传输计算断层扫描(TCT)扫描测量衰减分布的方法。通过双同位素同时SPECT和TCT扫描,在SPECT系统中,但不是PET,以避免临床应用的错位问题和较长扫描时间的方法。然而,在同时系统中,散射从发射到传输并从传输到发射。这些散射必须补偿定量SPECT。为了获得定量SPECT图像,作者设计并建立了一个同时发送/发射扫描和散射补偿系统(基于TOSHIBA GCA-9300A HG三磁头SPECT摄像机),用于脑SPECT的TEW方法和风扇束准直器。使用区域能谱分析散射部件的分布对于评估散射补偿非常有用。这里,作者描述了对TCT扫描的模拟和测量能谱的分析,以及脑映像中的三维绝对活性测量。

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