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Pinhole edge penetration and scatter in small-animal energy-integrating pinhole emission computed tomography

机译:小动物能量积分针孔发射计算机断层扫描中的针孔边缘穿透和散射

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In small animal emission computed tomography, multiple-camera systems can provide high sensitivity and rapid imaging. With enough cameras, all views can be acquired simultaneously, with no camera rotation. Such a system operated in SPECT mode is expensive because of the cost of the energy-discriminating cameras required for scatter rejection. The scatter from mice and rats is far less than that from humans, reducing the need for scatter rejection. A small-animal ECT system based on energy-integrating detectors could be much more affordable and widely available than a multi-camera SPECT system. Previous Monte Carlo studies have shown that an energy-integrating detector, accepting all scatter, would have a 20% lower effective photon count (based on SNR) than a detector with perfect energy discrimination when imaging a 2-cm diameter water cylinder with Tc-99m. The reduction would be as much as 60% for a 5-cm diameter cylinder imaged with I-125. Signal errors due to scatter would be comparable and would present a challenge for reconstruction algorithms. The effects of scatter and penetration at pinhole edges are well recognized, but have generally been studied with the assumption that scattered photons could be rejected by energy discrimination. This study examines the resolution and noise effects of pinhole edge penetration and scatter for tungsten, gold and platinum pinholes for energy-integrating systems, with effects for energy-discriminating systems examined for comparison.
机译:在小型动物发射计算机断层扫描中,多相机系统可以提供高灵敏度和快速成像。使用足够的相机,无需旋转相机即可同时获取所有视图。在SPECT模式下运行的这种系统很昂贵,因为散射抑制所需的能量分散型摄像机的成本很高。小鼠和大鼠产生的散射远小于人类产生的散射,从而减少了对散射排斥的需求。与多相机SPECT系统相比,基于能量集成检测器的小动物ECT系统可能更便宜且更易获得。以前的蒙特卡洛研究表明,当对直径为2 cm的水缸进行Tc-成像时,接受所有散射的能量积分检测器的有效光子计数(基于SNR)要比具有完美能量判别的检测器低20%。 99m。对于使用I-125成像的直径为5厘米的圆柱体,减少幅度将高达60%。由于散射造成的信号错误将是可比的,并且将对重构算法提出挑战。针孔边缘处的散射和穿透的影响已得到公认,但通常在假设散射光子可以被能量辨别力拒绝的前提下进行研究。这项研究检查了能量集成系统中钨,金和铂针孔的针孔边缘穿透和散射的分辨率和噪声效应,并考察了能量分配系统的效应以进行比较。

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