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认知健康成年样本中脑结构变化的可靠性。

Reliability of structural brain change in cognitively healthy adult samples.

作者信息

Vidal-Piñeiro Didac, Sørensen Øystein, Strømstad Marie, Amlien Inge K, Anderson Micael, Baaré William F C, Bartrés-Faz David, Brandmaier Andreas M, Bråthen Anne Cecilie, Garrido Pablo, Ghisletta Paolo, Grydeland Håkon, Henson Richard N, Kievit Rogier A, Korbmacher Max, Kühn Simone, Lindenberger Ulman, Mowinckel Athanasia M, Nyberg Lars, Roe James M, Sneve Markus H, Sole-Padulles Cristina, Watne Leiv-Otto, Walhovd Kristine B, Fjell Anders M

机构信息

Center for Lifespan Changes in Brain and Cognition, Department of Psychology, University of Oslo, Oslo, Norway.

Umeå Centre for Functional Brain Imaging, Umeå, Sweden.

出版信息

Imaging Neurosci (Camb). 2025 Apr 22;3. doi: 10.1162/imag_a_00547. eCollection 2025.

Abstract

In neuroimaging research, tracking individuals over time is key to understanding the interplay between brain changes and genetic, environmental, or cognitive factors across the lifespan. Yet, the extent to which we can estimate the individual trajectories of brain change over time with precision remains uncertain. In this study, we estimated the reliability of structural brain change in cognitively healthy adults from multiple samples and assessed the influence of follow-up time and number of observations. Estimates of cross-sectional measurement error and brain change variance were obtained using the longitudinal FreeSurfer processing stream. Our findings showed, on average, modest longitudinal reliability with 2 years of follow-up. Increasing the follow-up time was associated with a substantial increase in longitudinal reliability, while the impact of increasing the number of observations was comparatively minor. On average, 2-year follow-up studies require ≈2.7 and ≈4.0 times more individuals than designs with follow-ups of 4 and 6 years to achieve comparable statistical power. Subcortical volume exhibited higher longitudinal reliability than cortical area, thickness, and volume. The reliability estimates were comparable with those estimated from empirical data. The reliability estimates were affected by both the cohort's age where younger adults had lower reliability of change and the preprocessing pipeline where the FreeSurfer's longitudinal stream was notably superior than the cross-sectional stream. Suboptimal reliability inflated sample size requirements and compromised the ability to distinguish individual trajectories of brain aging. This study underscores the importance of long-term follow-ups and the need to consider reliability in longitudinal neuroimaging research.

摘要

在神经影像学研究中,对个体进行长期跟踪是理解大脑变化与一生中基因、环境或认知因素之间相互作用的关键。然而,我们能够精确估计大脑随时间变化的个体轨迹的程度仍不确定。在本研究中,我们从多个样本中估计了认知健康成年人脑结构变化的可靠性,并评估了随访时间和观察次数的影响。使用纵向FreeSurfer处理流程获得横断面测量误差和脑变化方差的估计值。我们的研究结果表明,平均而言,2年随访的纵向可靠性适中。随访时间的增加与纵向可靠性的大幅提高相关,而增加观察次数的影响相对较小。平均而言,与4年和6年随访的设计相比,2年随访研究需要多约2.7倍和约4.0倍的个体才能达到可比的统计功效。皮层下体积的纵向可靠性高于皮层面积、厚度和体积。可靠性估计值与从经验数据估计的值相当。可靠性估计值受队列年龄(年轻成年人的变化可靠性较低)和预处理流程(FreeSurfer的纵向流程明显优于横断面流程)的影响。可靠性欠佳会增加样本量需求,并损害区分大脑老化个体轨迹的能力。本研究强调了长期随访的重要性以及在纵向神经影像学研究中考虑可靠性的必要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a533/12319936/84d783826863/imag_a_00547_fig1.jpg

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