Evaluation of ComBat Harmonization for Reducing Across-Tracer Differences in Regional Amyloid PET Analyses

IF 3.5 2区 医学 Q1 NEUROIMAGING Human Brain Mapping Pub Date : 2024-11-14 DOI:10.1002/hbm.70068
Braden Yang, Tom Earnest, Sayantan Kumar, Deydeep Kothapalli, Tammie Benzinger, Brian Gordon, Aristeidis Sotiras
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Abstract

Differences in amyloid positron emission tomography (PET) radiotracer pharmacokinetics and binding properties lead to discrepancies in amyloid-β uptake estimates. Harmonization of tracer-specific biases is crucial for optimal performance of downstream tasks. Here, we investigated the efficacy of ComBat, a data-driven harmonization model, for reducing tracer-specific biases in regional amyloid PET measurements from [18F]-florbetapir (FBP) and [11C]-Pittsburgh compound-B (PiB). One hundred thirteen head-to-head FBP-PiB scan pairs, scanned from the same subject within 90 days, were selected from the Open Access Series of Imaging Studies 3 (OASIS-3) dataset. The Centiloid scale, ComBat with no covariates, ComBat with biological covariates, and GAM-ComBat with biological covariates were used to harmonize both global and regional amyloid standardized uptake value ratios (SUVR). Variants of ComBat, including longitudinal ComBat and PEACE, were also tested. Intraclass correlation coefficient (ICC) and mean absolute error (MAE) were computed to measure the absolute agreement between tracers. Additionally, longitudinal amyloid SUVRs from an anti-amyloid drug trial were simulated using linear mixed effects modeling. Differences in rates-of-change between simulated treatment and placebo groups were tested, and change in statistical power/Type-I error after harmonization was quantified. In the head-to-head tracer comparison, ComBat with no covariates was the best at increasing ICC and decreasing MAE of both global summary and regional amyloid PET SUVRs between scan pairs of the same group of subjects. In the clinical trial simulation, harmonization with both Centiloid and ComBat increased statistical power of detecting true rate-of-change differences between groups and decreased false discovery rate in the absence of a treatment effect. The greatest benefit of harmonization was observed when groups exhibited differing FBP-to-PiB proportions. ComBat outperformed the Centiloid scale in harmonizing both global and regional amyloid estimates. Additionally, ComBat improved the detection of rate-of-change differences between clinical trial groups. Our findings suggest that ComBat is a viable alternative to Centiloid for harmonizing regional amyloid PET analyses.

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评估 ComBat 一致性以减少区域淀粉样蛋白 PET 分析中的跨示踪剂差异。
淀粉样蛋白正电子发射断层扫描(PET)放射性示踪剂药代动力学和结合特性的差异导致淀粉样蛋白-β摄取估计值的差异。协调示踪剂特异性偏差对于优化下游任务的执行至关重要。在这里,我们研究了 ComBat(一种数据驱动的协调模型)在减少[18F]-氟贝他匹(FBP)和[11C]-匹兹堡化合物-B(PiB)区域淀粉样蛋白 PET 测量中示踪剂特异性偏差方面的功效。从 "开放存取成像研究系列 3"(OASIS-3)数据集中选取了 113 对头对头 FBP-PiB 扫描对,这些扫描对是在 90 天内对同一受试者进行的扫描。使用Centiloid量表、无协变量的ComBat、有生物协变量的ComBat和有生物协变量的GAM-ComBat来协调全球和区域淀粉样蛋白标准化摄取值比(SUVR)。还测试了 ComBat 的变体,包括纵向 ComBat 和 PEACE。通过计算类内相关系数(ICC)和平均绝对误差(MAE)来衡量示踪剂之间的绝对一致性。此外,还使用线性混合效应模型模拟了抗淀粉样蛋白药物试验的纵向淀粉样蛋白 SUVR。测试了模拟治疗组和安慰剂组之间的变化率差异,并量化了协调后统计能力/I 类误差的变化。在头对头示踪剂比较中,无协变量的ComBat最能提高同组受试者扫描对之间全球汇总和区域淀粉样PET SUVR的ICC,降低MAE。在临床试验模拟中,Centiloid 和 ComBat 的协调提高了检测组间真实变化率差异的统计能力,降低了无治疗效果的误发现率。当各组的 FBP 与 PiB 的比例不同时,协调的好处最大。在协调全球和区域淀粉样蛋白估计值方面,ComBat优于Centiloid量表。此外,ComBat 还能更好地检测临床试验组之间的变化率差异。我们的研究结果表明,在协调区域淀粉样蛋白 PET 分析方面,ComBat 是 Centiloid 的可行替代品。
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来源期刊
Human Brain Mapping
Human Brain Mapping 医学-核医学
CiteScore
8.30
自引率
6.20%
发文量
401
审稿时长
3-6 weeks
期刊介绍: Human Brain Mapping publishes peer-reviewed basic, clinical, technical, and theoretical research in the interdisciplinary and rapidly expanding field of human brain mapping. The journal features research derived from non-invasive brain imaging modalities used to explore the spatial and temporal organization of the neural systems supporting human behavior. Imaging modalities of interest include positron emission tomography, event-related potentials, electro-and magnetoencephalography, magnetic resonance imaging, and single-photon emission tomography. Brain mapping research in both normal and clinical populations is encouraged. Article formats include Research Articles, Review Articles, Clinical Case Studies, and Technique, as well as Technological Developments, Theoretical Articles, and Synthetic Reviews. Technical advances, such as novel brain imaging methods, analyses for detecting or localizing neural activity, synergistic uses of multiple imaging modalities, and strategies for the design of behavioral paradigms and neural-systems modeling are of particular interest. The journal endorses the propagation of methodological standards and encourages database development in the field of human brain mapping.
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