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Multi-energy performance of a research prototype CT scanner with small-pixel counting detector

机译:具有小像素计数检测器的研究型CT扫描仪的多能性能

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We have investigated the multi-energy performance of our most recent prototype CT scanner with CdTe-based counting detector. With its small pixel pitch of 225 μm this device is prepared for the high X-ray fluxes occurring in clinical CT. Each of these pixels is equipped with two adjustable counters. The ASIC architecture of the detector allows configuration of the counter thresholds in chess patterns, enabling data acquisition in up to four energy bins. We have studied the material separation capability of counting CT with respect to potential clinical applications. Therefore we have analyzed contrast and noise properties in material decomposed CT images using up to four base materials. We have studied contrast agents containing iodine, gadolinium, or gold, and the body-like materials calcium, fat, and water. We describe the mathematical framework used in this work and demonstrate the general multi-energy capability of counting CT with simulations and experimental data from our prototype scanner. To prove the clinical relevance of our studies we compare the results to those obtained with well-established dual-kVp techniques recorded at same patient dose and with identical image sharpness.
机译:我们已经研究了最新的带CdTe计数检测器的原型CT扫描仪的多能性能。该器件具有225μm的小像素间距,可用于临床CT中出现的高X射线通量。这些像素中的每一个都配备了两个可调计数器。检测器的ASIC架构允许以国际象棋模式配置计数器阈值,从而可以在多达四个能量仓中进行数据采集。我们已经针对潜在的临床应用研究了计算CT的材料分离能力。因此,我们分析了使用多达四种基础材料的材料分解CT图像中的对比度和噪声特性。我们已经研究了含碘,g或金以及类似人体的钙,脂肪和水的造影剂。我们描述了这项工作中使用的数学框架,并通过我们的原型扫描仪的模拟和实验数据证明了计算CT的一般多能能力。为了证明我们研究的临床相关性,我们将结果与采用成熟的双重kVp技术以相同的患者剂量和相同的图像清晰度记录的结果进行比较。

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