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Kinetic modelling in small animal imaging with PET.

机译:用PET在小动物成像中进行动力学建模。

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摘要

Small animal imaging with positron emission tomography has undergone a major evolution. This has been driven by technical improvements and the development of dedicated PET camera's for small animals. The focus has shifted from detection of tracer uptake and visualization of the tracer distribution towards the quantification of the physiological parameters necessary to use this technique for kinetic modelling of tracers. At the moment there are still several issues which need further research and evaluation before we can fully employ the possibilities of PET as an in-vivo measurement of underlying molecular biology. These issues relate to improved quantification of measurements, improved image reconstruction and processing, and the use of blood plasma data in combination with kinetic models. Besides the more technical issues, there are two more issues which need further clarification: the effect of the anaesthesia, and the effect of radiation on the experiment itself. In this review, we will give an overview of how the technique can be used but we will also discuss the issues mentioned above. The focus will be on the three major parts of the imaging procedure: acquisition, reconstruction of images, and kinetic modelling of the data.
机译:用正电子发射断层摄影术对小动物进行成像已经历了重大发展。这是由技术改进和专用于小型动物的PET相机的发展所推动的。重点已从检测示踪剂摄取和可视化示踪剂分布转移到了量化使用此技术进行示踪剂动力学建模所需的生理参数。目前,在我们充分利用PET作为基础分子生物学的体内测量方法之前,还有几个问题需要进一步研究和评估。这些问题与改进的测量量化,改进的图像重建和处理以及与动力学模型结合使用血浆数据有关。除了更多的技术问题外,还有两个问题需要进一步阐明:麻醉的效果以及辐射对实验本身的影响。在这篇综述中,我们将概述如何使用该技术,但还将讨论上述问题。重点将放在成像过程的三个主要部分上:采集,图像重建和数据动力学建模。

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