Sayre George A, Franc Benjamin L, Seo Youngho
UCSF Department of Radiology and Biomedical Imaging, University of California, San Francisco, CA 94143-0628, USA.
Int J Mol Imaging. 2011;2011:185083. doi: 10.1155/2011/185083. Epub 2011 Sep 7.
Currently, kinetic analyses using dynamic positron emission tomography (PET) experience very limited use despite their potential for improving quantitative accuracy in several clinical and research applications. For targeted volume applications, such as radiation treatment planning, treatment monitoring, and cerebral metabolic studies, the key to implementation of these methods is the determination of an arterial input function, which can include time-consuming analysis of blood samples for metabolite correction. Targeted kinetic applications would become practical for the clinic if blood sampling and metabolite correction could be avoided. To this end, we developed a novel method (Patlak-P) of generating parametric maps that is identical to Patlak K(i) (within a global scalar multiple) but does not require the determination of the arterial input function or metabolite correction. In this initial study, we show that Patlak-P (a) mimics Patlak K(i) images in terms of visual assessment and target-to-background (TB) ratios of regions of elevated uptake, (b) has higher visual contrast and (generally) better image quality than SUV, and (c) may have an important role in improving radiotherapy planning, therapy monitoring, and neurometabolism studies.
目前,尽管动态正电子发射断层扫描(PET)的动力学分析在若干临床和研究应用中具有提高定量准确性的潜力,但实际应用却非常有限。对于诸如放射治疗计划、治疗监测和脑代谢研究等靶向体积应用,实施这些方法的关键在于确定动脉输入函数,这可能包括对血样进行耗时的代谢物校正分析。如果能够避免血样采集和代谢物校正,靶向动力学应用在临床上将变得切实可行。为此,我们开发了一种生成参数图的新方法(Patlak-P),该方法与Patlak K(i)(在全局标量倍数范围内)相同,但不需要确定动脉输入函数或进行代谢物校正。在这项初步研究中,我们表明Patlak-P:(a)在视觉评估和摄取增加区域的靶本比方面模仿Patlak K(i)图像;(b)比SUV具有更高的视觉对比度和(通常)更好的图像质量;(c)在改善放射治疗计划、治疗监测和神经代谢研究方面可能发挥重要作用。