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首页> 外文期刊>IEEE Transactions on Nuclear Science >Investigation of efficiency and spatial resolution using pinholes with small pinhole angle
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Investigation of efficiency and spatial resolution using pinholes with small pinhole angle

机译:使用小针孔角度的针孔的效率和空间分辨率的研究

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摘要

Pinhole collimators are well suited for small animal SPECT, in which high spatial resolution is required over a small field of view (FOV). Typical pinhole collimators have pinhole angles of 90/spl deg/ or more. If their full FOV is used, the trajectories of imaged gamma-rays can be up to 45/spl deg/ away from the pinhole axis, and form angles of incidence at the surface of a planar detector as large as 45/spl deg/. The large incident angle produces a depth-of-interaction (DOI) blur thus reducing spatial resolution for these off-axis locations. This loss of the detector resolution is masked by the accompanying improvement of the pinhole point spread function (PSF) due to the reduced effective aperture size. The magnitude of these effects as a function of the angle between the gamma-ray trajectory and the pinhole axis depends on detector absorption efficiency, and on the physical parameters of the pinhole collimator, including pinhole type, composition, and pinhole angle. In addition, the reduced effective pinhole size results in reduced efficiency for off-axis source points. In this paper we investigate the angular dependence of these effects for pinhole collimators with different compositions and pinhole angles. Results are compared to theoretical expressions that take into account gamma-ray penetration of the pinhole material.
机译:针孔准直器非常适合小动物SPECT,在小视场(FOV)上需要高空间分辨率。典型的针孔准直器具有90 / spl度/或更大的针孔角。如果使用它们的完整视场角,则成像的伽马射线的轨迹可以距针孔轴高达45 / spl deg /,并且在平面探测器的表面形成的入射角最大为45 / spl deg /。大入射角会产生交互深度(DOI)模糊,从而降低这些离轴位置的空间分辨率。由于减小的有效孔径尺寸,针孔点扩展函数(PSF)随之得到改善,掩盖了探测器分辨率的损失。这些影响的大小取决于伽马射线轨迹与针孔轴之间的角度,取决于检测器的吸收效率以及针孔准直仪的物理参数,包括针孔类型,成分和针孔角度。另外,减小的有效针孔尺寸导致轴外源点的效率降低。在本文中,我们研究了具有不同成分和针孔角度的针孔准直器这些效应的角度依赖性。将结果与考虑针孔材料的伽马射线穿透的理论表达式进行比较。

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