新型光子计数CT检测器的特性

Petra Mimica, Tatjana Matijaš
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摘要

放射学是医学发展最快的分支之一,而计算机断层扫描设备正是紧跟这一发展最快的设备之一。科学家们最关注的是研究如何改进x射线管和探测器的参数,这是这种成像方式中最重要的部分。除了作为日常临床实践的一部分广泛使用的能量集成检测器之外,研究的主题也是光子计数检测器。这种新型检测器的众多优点使人们普遍认为,在未来,这种新技术将在临床实践中主导CT设备,改善许多诊断和介入程序的获取。相信这项技术正是以其提高的空间分辨率和对比度分辨率、降噪和提高的比噪比,以及多种造影剂和多能成像等新的可能性,将放射学带入了一个新的时代。碘造影剂可见度的提高提供了更多的诊断可能性和更准确地区分良恶性可疑病变。该探测器上显着较小的像素尺寸提供了几乎两倍的空间分辨率增加,从而增加了辐射剂量效率。因此,使用带有光子计数器的检测器也适用于儿科患者,并且还有广泛的低剂量成像选择,用于预防癌症筛查。材料分解和光谱成像等技术仍在研究过程中,但在优化未来的日常临床实践中具有很大的潜力。我们还需要做更多的工作和发表更多的研究成果,但可以肯定的是,这项技术总有一天会让放射技术专家和放射科医生的工作变得更容易。
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Characteristics of the new Photon counting CT detector
Radiology is one of the fastest growing branches of medicine, and precisely one of the devices that follows this development the fastest is the computerized tomography device. Scientists are most focused on research into improving the parameters of the X-ray tube and detector as the most important parts of this imaging modality. In addition to the detector with energy integration, which is widely used today as part of everyday clinical practice, the subject of research is also a Photon countng detector. The numerous virtues that stand out in the new type of detector are responsible for the general opinion that in the future this new technology will dominate CT devices in clinical practice, improving the acquisition of numerous diagnostic and interventional procedures. It is believed that this technology ushers radiology into a new era precisely with its improved spatial and contrast resolution, noise reduction and increase of contrast to noise ratio, but also with new possibilities such as simultaneous imaging of multiple contrast agents and multi-energy imaging. Improvements in the visibility of iodine contrast agent provide additional diagnostic possibilities and more accurate differentiation of benign and malignant suspected lesions. The significantly smaller pixel size on this detector offers an almost two-fold increase in spatial resolution, and thus an increase in radiation dose efficiency. The use of a detector with a photon counter is therefore also suitable for pediatric patients, and there is also a wide range of low-dose imaging options for the purpose of preventive cancer screening. Processes such as the material decomposition and spectral imaging are still in the research process, but have great potential to optimize future daily clinical practice. More work and published research results are needed, but surely this technology will one day make the work of radiologic technologists and radiologists easier.
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