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Grey and white matter SPECT neuroimaging: iterative reconstruction using a high resolution anatomical image to correct for 3-D detector response, attenuation, and scatter

机译:灰白物质SPECT神经成像:使用高分辨率解剖图像进行迭代重建,以校正3-D检测器的响应,衰减和散射

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In the presence of a 3-D detector response, attenuation, scatter, and noise, an iterative reconstruction algorithm (IRA) for single photon emission computed tomography (SPECT) neuroimaging overcomes major limitations of applying standard filtered back-projection (FBP) reconstruction to projection data which have been degraded by convolution of the true radioactivity distribution with a 3-D detector response: the nonuniformity within the grey (or white) matter voxels which results even though the true model is uniform within these voxels; a significantly lower ratio of grey/white matter voxel values than in the true model; and an inability to detect an altered radioactivity value within the grey (or white) matter voxels. The IRA permits the detection of subtle variations in both grey and white matter radioactivity distribution. These results indicate that the IRA implicitly performs accurate partial voluming, attenuation, and scatter corrections. The presence of noise, however, is a partially limiting factor. Thus, the IRA provides the potential for quantitative SPECT imaging of diseases involving both grey and white matter.
机译:在存在3-D检测器响应,衰减,散射和噪声的情况下,用于单光子发射计算机断层扫描(SPECT)神经成像的迭代重建算法(IRA)克服了将标准滤波反投影(FBP)重建应用于通过真实放射性分布与3-D检测器响应的卷积而退化的投影数据:即使这些模型中的真实模型是均匀的,在灰色(或白色)物质体素内也会产生不均匀性;灰色/白色物质体素值的比率比真实模型中的要低得多;并且无法检测到灰色(或白色)物质体素内的放射性值发生了变化。 IRA允许检测灰色和白色物质放射性分布中的细微变化。这些结果表明,IRA隐式执行准确的部分音量,衰减和散射校正。但是,噪声的存在是部分限制因素。因此,IRA提供了对涉及灰质和白质的疾病进行定量SPECT成像的潜力。

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