Department of Psychological and Brain Sciences, Drexel University, Philadelphia, PA, USA.
Department of Psychological and Brain Sciences, Drexel University, Philadelphia, PA, USA.
Neurobiol Aging. 2023 Dec;132:145-153. doi: 10.1016/j.neurobiolaging.2023.09.003. Epub 2023 Sep 11.
Biological age and brain age estimated using biological and neuroimaging measures have recently emerged as surrogate aging biomarkers shown to be predictive of diverse health outcomes. As aging underlies the development of many chronic conditions, surrogate aging biomarkers capture health at the whole person level, having the potential to improve our understanding of multimorbidity. Our study investigates whether elevated biological age and brain age are associated with an increased risk of multimorbidity using a large dataset from the Midlife in the United States Refresher study. Ensemble learning is utilized to combine multiple machine learning models to estimate biological age using a comprehensive set of biological markers. Brain age is obtained using Gaussian processes regression and neuroimaging data. Our study is the first to examine the relationship between accelerated brain age and multimorbidity. Furthermore, it is the first attempt to explore how biological age and brain age are related to multimorbidity in mental health. Our findings hold the potential to advance the understanding of disease accumulation and their relationship with aging.
生物年龄和大脑年龄是使用生物和神经影像学测量方法来估计的,最近它们作为替代衰老生物标志物出现,这些标志物被证明可以预测多种健康结果。由于衰老是许多慢性疾病发展的基础,替代衰老生物标志物可以从整体水平上捕捉健康状况,有可能提高我们对多种疾病的认识。我们的研究使用来自美国中年更新研究的大型数据集,调查了较高的生物年龄和大脑年龄是否与多种疾病的风险增加有关。我们使用集成学习来结合多个机器学习模型,使用一套全面的生物标志物来估计生物年龄。大脑年龄是使用高斯过程回归和神经影像学数据获得的。我们的研究首次检查了加速大脑年龄与多种疾病之间的关系。此外,这也是首次尝试探索生物年龄和大脑年龄与心理健康中多种疾病的关系。我们的研究结果有可能促进对疾病积累及其与衰老关系的理解。