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4-D geometric sensitivity for multi-headed planar detector PET systems

机译:用于多头平面探测器PET系统的4-D几何灵敏度

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摘要

A general formulation of the geometric sensitivity in the 4D projection domain is presented for multi-headed planar detector PET systems. It mainly has two components. The first defines the geometric sensitivity in the transverse plane. The second defines the geometric sensitivity in the axial direction. For continuous (or small stepping) rotating gantry, the geometric sensitivity is (or can be approximated as) independent of the projection angle, thus it is a 3D function of the projection bin, axial position and axial oblique angle. Generally speaking, the geometric sensitivity is coupled in the transverse plane and axial direction. A method is suggested to decouple these two factors with the cost of losing some partial data. The geometric sensitivity is further modeled with the effect of axial septa, and with the effect of crystal incident angle efficiency at stationary gantry. The theoretical calculation shows good agreement with the Monte Carlo simulation or real acquisition under three cases: rotating gantry with 3D imaging, rotating gantry with axial septa and stationary gantry with 3D imaging.
机译:为多头平面探测器PET系统提供了4D投影域中的几何灵敏度的一般配方。它主要有两个组件。首先定义横向平面中的几何灵敏度。第二个在轴向方向上限定了几何灵敏度。对于连续(或小步进)旋转龙门架,几何灵敏度与投影角度无关(或可以近似为),因此它是投影箱,轴向位置和轴向斜角的3D功能。一般而言,几何灵敏度在横向平面和轴向上耦合。建议一种方法以将这两个因素与丢失一些部分数据的成本分离。几何灵敏度以轴向隔膜的效果进一步建模,以及晶体架的晶体入射角效率的影响。理论计算与三种情况下的Monte Carlo仿真或实际收购良好的协议:带3D成像的旋转龙门,旋转龙门与轴向隔膜和静止龙门,具有3D成像。

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