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Comparison of circular and polygonal planar orbits for pinhole and slit-slat SPECT

机译:针孔和狭缝板条SPECT的圆形和多边形平面轨道的比较

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摘要

Analytic formulas and Monte Carlo simulation are used to calculate and compare the sensitivity of circular and polygonal orbits at different points in the Field of View (FoV) for both pinhole and slit-slat collimation. Results show that for a given slit-slat collimator an N-sided polygonal orbit tangent to the FoV generally provides average sensitivity lower than the tightest circular orbit consistent with the same aperture angle, but with better spatial resolution that can be traded for sensitivity for a constant-resolution comparison. This generally results in a slight advantage for the polygonal orbit. However, this advantage depends on the clearance that must be allowed between the orbit and the FoV and decreases quickly, vanishing when even a few millimeters of space are left, which in practice is necessary to accommodate mechanical constraints. For a pinhole collimator the advantage for the tangent polygonal orbit is more consistent, but similar conclusions are reached again when clearance is considered. A direct comparison at constant resolution between slit-slat and pinhole collimation in a single transverse plane is shown to be possible with parameters typical of small-animal imaging applications only for detectors with excellent intrinsic resolution; in this case, pinhole collimation is shown to be more sensitive in magnifying geometries, but reduced axial FoV and increased axial blurring should also be considered for a more complete comparison.
机译:解析公式和蒙特卡洛模拟用于计算和比较圆形和多边形轨道在针孔和狭缝平板准直视场(FoV)中不同点的灵敏度。结果表明,对于给定的狭缝平板准直器,与FoV相切的N边形多边形轨道通常提供的平均灵敏度要低于与相同孔径角一致的最紧密圆形轨道的平均灵敏度,但具有更好的空间分辨率,可以将灵敏度换成恒定分辨率比较。对于多边形轨道,这通常会带来一点好处。但是,这种优势取决于在轨道和FoV之间必须留出的间隙,并且该间隙会迅速减小,即使剩下几毫米的空间,间隙也会消失,实际上这是适应机械限制所必需的。对于针孔准直仪,切线多边形轨道的优势更加一致,但是当考虑间隙时,仍然可以得出类似的结论。使用小动物成像应用的典型参数(仅适用于具有出色内在分辨率的探测器),可以在单个横向平面中以狭缝板条和针孔准直在恒定分辨率下直接进行比较。在这种情况下,针孔准直在放大的几何形状中显示出更高的灵敏度,但是为了更完整的比较,也应考虑减小轴向FoV和增大轴向模糊。

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