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Different Partial Volume Correction Methods Lead to Different Conclusions: an 18F-FDG PET Study of Aging

机译:不同的部分体积校正方法得出不同的结论:18F-FDG PET老化研究

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摘要

A cross-sectional group study of the effects of aging on brain metabolism as measured with 18F-FDG PET was performed using several different partial volume correction (PVC) methods: no correction (NoPVC), Meltzer (MZ), Müller-Gärtner (MG), and the symmetric geometric transfer matrix (SGTM) using 99 subjects aged 65-87 from the Harvard Aging Brain study. Sensitivity to parameter selection was tested for MZ and MG. The various methods and parameter settings resulted in an extremely wide range of conclusions as to the effects of age on metabolism, from almost no changes to virtually all of cortical regions showing a decrease with age. Simulations showed that NoPVC had significant bias that made the age effect on metabolism appear to be much larger and more significant than it is. MZ was found to be the same as NoPVC for liberal brain masks; for conservative brain masks, MZ showed few areas correlated with age. MG and SGTM were found to be similar; however, MG was sensitive to a thresholding parameter that can result in data loss. CSF uptake was surprisingly high at about 15% of that in gray matter. Exclusion of CSF from SGTM and MG models, which is almost universally done, caused a substantial loss in the power to detect age-related changes. This diversity of results reflects the literature on the metabolism of aging and suggests that extreme care should be taken when applying PVC or interpreting results that have been corrected for partial volume effects. Using the SGTM, significant age-related changes of about 7% per decade were found in frontal and cingulate cortices as well as primary visual and insular cortices.
机译:使用几种不同的部分体积校正(PVC)方法,采用 18 F-FDG PET测量了衰老对脑代谢的影响的横断面研究:无校正(NoPVC),Meltzer( MZ),Müller-Gärtner(MG)和对称几何传递矩阵(SGTM),使用了来自哈佛老龄脑研究的99位65-87岁的受试者。测试了MZ和MG对参数选择的敏感性。各种方法和参数设置可以得出关于年龄对新陈代谢影响的广泛结论,从几乎没有变化到几乎所有皮质区域都显示随着年龄的增长而减少。模拟表明,NoPVC具有明显的偏见,这使得年龄对新陈代谢的影响似乎要大得多,并且比其显着得多。发现MZ与NoPVC的自由脑罩相同;对于保守的脑罩,MZ几乎没有显示与年龄相关的区域。发现MG和SGTM相似;但是,MG对可能导致数据丢失的阈值参数敏感。脑脊液摄取惊人地高,约为灰质的15%。 SGTM和MG模型几乎排除了CSF,这导致检测与年龄有关的变化的能力大大降低。结果的多样性反映了有关衰老代谢的文献,并建议在应用PVC或解释已针对部分体积效应校正的结果时应格外小心。使用SGTM,在额叶和扣带状皮层以及主要的视觉和岛状皮层中发现与年龄相关的显着年龄变化,每十年约7%。

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