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Uniformity correction using non-uniform floods

机译:使用非均匀洪水进行均匀性校正

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Calibration and quality control (QC) of gamma cameras with fixed pinhole collimators presents unique challenges since the usual assumption of uniform flood intensity at the surface of the detector is violated. For the GE Discovery NM 530c, a fast cardiac SPECT system with multiple pinholes and CZT detectors focused on the heart, the problem is further complicated by the fact that the plane of the pinhole may not be parallel to either the detector or the flood source. To address this, we derived an expression for the geometrical response to an ideal uniform flood source, then added further terms to approximate the attenuation and scatter behavior of a real flood source. The model was validated with Monte Carlo simulations for a range of angles for both flood and pinhole. Accurate knowledge of the flood source orientation is essential for good uniformity correction; we developed a jig that permits repeatable flood positioning for rapid daily QC. Alternatively we have shown that the angle of the flood can be calculated from observed systematic flood non-uniformity. Experimental measurements show that variations in pinhole penetration as a function of angle can be detected in the residual error of the floods; the magnitude of the effect agrees very well with predictions from a simple model of the knife edge collimator. Uniformity effects attributable to the finite stopping power of CZT were also observed. The methods described in this paper have been implemented in the GE Discovery NM 530c and Discovery NM/CT 570c imaging systems, and portions of the technology are patent pending.
机译:带有固定针孔准直器的伽马相机的校准和质量控制(QC)提出了独特的挑战,因为这违反了通常在探测器表面均匀注入强度的假设。对于GE Discovery NM 530c * ,这是一种具有多个针孔和CZT检测器聚焦在心脏上的快速心脏SPECT系统,该问题由于针孔平面可能与探测器或洪水源。为了解决这个问题,我们导出了对理想均匀洪水源的几何响应的表达式,然后添加了更多项来近似真实洪水源的衰减和散射行为。该模型已通过蒙特卡洛模拟针对洪水和针孔的一系列角度进行了验证。准确了解洪水源的方向对于良好的均匀性校正至关重要;我们开发了一种夹具,可以对洪水进行重复定位,以实现快速的每日质量控制。或者,我们已经表明,可以根据观测到的系统洪水非均匀性来计算洪水的角度。实验测量表明,可以在洪水的剩余误差中检测出针孔穿透随角度的变化。效果的大小与刀刃准直器的简单模型的预测非常吻合。还观察到归因于CZT有限停止能力的均匀性效应。本文描述的方法已在GE Discovery NM 530c和Discovery NM / CT 570c成像系统中实现,部分技术正在申请专利。

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