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Comparison of phantom and registration scaling corrections using the ADNI cohort.

机译:使用ADNI队列比较体模和配准缩放校正。

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Rates of brain atrophy derived from serial magnetic resonance (MR) studies may be used to assess therapies for Alzheimer's disease (AD). These measures may be confounded by changes in scanner voxel sizes. For this reason, the Alzheimer's Disease Neuroimaging Initiative (ADNI) included the imaging of a geometric phantom with every scan. This study compares voxel scaling correction using a phantom with correction using a 9 degrees of freedom (9DOF) registration algorithm. We took 129 pairs of baseline and 1-year repeat scans, and calculated the volume scaling correction, previously measured using the phantom. We used the registration algorithm to quantify any residual scaling errors, and found the algorithm to be unbiased, with no significant (p=0.97) difference between control (n=79) and AD subjects (n=50), but with a mean (SD) absolute volume change of 0.20 (0.20) % due to linear scalings. 9DOF registration was shown to be comparable to geometric phantom correction in terms of the effect on atrophy measurement and unbiased with respect to disease status. These results suggest that the additional expense and logistic effort of scanning a phantom with every patient scan can be avoided by registration-based scaling correction. Furthermore, based upon the atrophy rates in the AD subjects in this study, sample size requirements would be approximately 10-12% lower with (either) correction for voxel scaling than if no correction was used.
机译:来自系列磁共振(MR)研究的脑萎缩率可用于评估阿尔茨海默氏病(AD)的治疗方法。这些措施可能会因扫描仪体素大小的变化而混淆。因此,阿尔茨海默氏病神经影像学倡议(ADNI)在每次扫描中都包括了对几何体模的成像。这项研究比较了使用体模的体素缩放校正和使用9自由度(9DOF)配准算法的校正。我们进行了129对基线和1年重复扫描,并计算了先前使用体模测量的体积比例校正。我们使用配准算法对任何残留的缩放误差进行了量化,发现该算法是无偏的,对照组(n = 79)与AD受试者(n = 50)之间没有显着差异(p = 0.97),但均值( SD)由于线性缩放而导致的绝对体积变化为0.20(0.20)%。在对萎缩测量的影响方面,9DOF配准与几何体模校正相当,并且在疾病状态方面无偏见。这些结果表明,通过基于注册的缩放校正,可以避免每次患者扫描时扫描体模的额外费用和后勤工作。此外,根据本研究中AD受试者的萎缩率,与(不使用)体素缩放校正相比,(两种)体素缩放的样本量要求大约要低10-12%。

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