定量SPECT/ ct技术及其临床应用。

Philipp Ritt, Torsten Kuwert
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引用次数: 9

摘要

在过去的50年里,SPECT的不断发展已经改善了图像质量,增加了诊断的信心。最具影响力的发展包括实现混合SPECT/CT设备,以及衰减校正和迭代图像重建技术的实现。这些发展导致了对SPECT/CT设备的偏好,而不是仅使用SPECT系统,并广泛采用前者,加强了SPECT/CT作为核医学成像主力的作用。SPECT/CT正在发展的新趋势是多样的。例如,以PET/CT的方式从多个连续床位采集的全身SPECT/CT图像越来越多地被应用。此外,近年来,探测器技术中一些有趣的方法已经进入商业产品。例如,一些专用于特定器官的SPECT相机采用碲化镉或碲化镉锌制成的半导体探测器,已被证明通过提供更高的灵敏度和能量分辨率来提高可获得的图像质量。然而,定量SPECT/CT的出现,像PET一样,可以以Bq/mL或作为标准摄取值来量化示踪剂的量,可以被视为最重要的发展。这是一项重大创新,将提高诊断的准确性和可信度,特别是在纵向研究和治疗反应监测方面。目前的工作主要包括两个方面。首先,描述了SPECT图像形成的物理和技术基础,并回顾了定量SPECT/CT的必要条件。此外,给出了基于文献报告的典型可实现的定量准确性。其次,提供并回顾了大量关于定量SPECT/CT临床应用的研究报告。
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Quantitative SPECT/CT-Technique and Clinical Applications.

The continuous development of SPECT over the past 50 years has led to improved image quality and increased diagnostic confidence. The most influential developments include the realization of hybrid SPECT/CT devices, as well as the implementation of attenuation correction and iterative image reconstruction techniques. These developments have led to a preference for SPECT/CT devices over SPECT-only systems and to the widespread adoption of the former, strengthening the role of SPECT/CT as the workhorse of Nuclear Medicine imaging. New trends in the ongoing development of SPECT/CT are diverse. For example, whole-body SPECT/CT images, consisting of acquisitions from multiple consecutive bed positions in the manner of PET/CT, are increasingly performed. Additionally, in recent years, some interesting approaches in detector technology have found their way into commercial products. For example, some SPECT cameras dedicated to specific organs employ semiconductor detectors made of cadmium telluride or cadmium zinc telluride, which have been shown to increase the obtainable image quality by offering a higher sensitivity and energy resolution. However, the advent of quantitative SPECT/CT which, like PET, can quantify the amount of tracer in terms of Bq/mL or as a standardized uptake value could be regarded as most important development. It is a major innovation that will lead to increased diagnostic accuracy and confidence, especially in longitudinal studies and in the monitoring of treatment response. The current work comprises two main aspects. At first, physical and technical fundamentals of SPECT image formation are described and necessary prerequisites of quantitative SPECT/CT are reviewed. Additionally, the typically achievable quantitative accuracy based on reports from the literature is given. Second, an extensive list of studies reporting on clinical applications of quantitative SPECT/CT is provided and reviewed.

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