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64-channel photon-counting computed tomography using a new MPPC-CT system

机译:使用新的MPPC-CT系统,64通道光子计数计算断层扫描

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摘要

X-ray computed tomography (CT) is a widely used diagnostic tool to visualize the interior of the human body. However, the exposure dose of conventional CT in a single scan is large, typically 10 mSv, and therefore, it is necessary to find ways to reduce the radiation dose. Furthermore, conventional CT does not contain the energy information of individual X-ray photons because the X-ray signals are read out as an integrated form. This causes misidentification of materials. To resolve this issue, we propose a novel photon counting CT (PC-CT) system consisting of multi-pixel photon counters (MPPCs) coupled with high speed scintillators. The system has a 64-channel MPPC array that improves energy information and wide-area imaging. By fine energy adjustment and increasing the number of energy thresholds to six, which were newly implemented in the 64-channel PC-CT system, we succeeded in accurately estimating the concentrations of contrast agents such as iodine and gadolinium. Moreover, for mixed phantoms of iodine and gadolinium, we demonstrate discrimination between them, and estimate the concentrations individually, which cannot be done by conventional CTs. This shows great potential in expanding the applications of X-ray CTs.
机译:X射线计算机断层扫描(CT)是一种广泛使用的诊断工具,可视化人体内部。然而,常规CT在单个扫描中的曝光剂量大,通常为10msV,因此,有必要找到减少辐射剂量的方法。此外,传统的CT不包含各个X射线光子的能量信息,因为X射线信号被读出为集成形式。这会导致材料的误识。为了解决这个问题,我们提出了一种新颖的光子计数CT(PC-CT)系统,包括与高速闪烁体的多像素光子计数器(MPPC)组成。该系统具有64通道MPPC阵列,可提高能量信息和广域成像。通过精细的能量调节并增加能量阈值的数量,在64通道PC-CT系统中新实施,我们成功地估计了碘和钆等造影剂的浓度。此外,对于碘和钆的混合幽灵,我们在它们之间表现出歧视,并且单独估计浓度,其不能通过常规CTS进行。这在扩展X射线CTS的应用方面表现出很大的潜力。

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