Department of Electrical and Computer Engineering, University of Rochester, Rochester, New York, USA.
Department of Biostatistics and Computational Biology, University of Rochester Medical Center, Rochester, New York, USA.
Hum Brain Mapp. 2021 Jan;42(1):95-109. doi: 10.1002/hbm.25207. Epub 2020 Sep 17.
MRI-based neuroimaging techniques have been used to investigate brain injury associated with HIV-infection. Whole-brain cortical mean-field dynamic modeling provides a way to integrate structural and functional imaging outcomes, allowing investigation of microscale brain dynamics. In this study, we adopted the relaxed mean-field dynamic modeling to investigate structural and functional connectivity in 42 HIV-infected subjects before and after 12-week of combination antiretroviral therapy (cART) and compared them with 46 age-matched healthy subjects. Microscale brain dynamics were modeled by a set of parameters including two region-specific microscale brain properties, recurrent connection strengths, and subcortical inputs. We also analyzed the relationship between the model parameters (i.e., the recurrent connection and subcortical inputs) and functional network topological characterizations, including smallworldness, clustering coefficient, and network efficiency. The results show that untreated HIV-infected individuals have disrupted local brain dynamics that in part correlate with network topological measurements. Notably, after 12 weeks of cART, both the microscale brain dynamics and the network topological measurements improved and were closer to those in the healthy brain. This was also associated with improved cognitive performance, suggesting that improvement in local brain dynamics translates into clinical improvement.
基于 MRI 的神经影像学技术已被用于研究与 HIV 感染相关的脑损伤。全脑皮质平均场动力学建模提供了一种整合结构和功能成像结果的方法,允许研究微观脑动力学。在这项研究中,我们采用放松的平均场动力学建模来研究 42 名接受联合抗逆转录病毒治疗(cART)前后的 HIV 感染患者的结构和功能连接,并将他们与 46 名年龄匹配的健康受试者进行比较。通过一组参数来模拟微观脑动力学,包括两个特定于区域的微观脑特性、递归连接强度和皮质下输入。我们还分析了模型参数(即递归连接和皮质下输入)与功能网络拓扑特征之间的关系,包括小世界性、聚类系数和网络效率。结果表明,未经治疗的 HIV 感染个体的局部脑动力学受到破坏,部分与网络拓扑测量有关。值得注意的是,在接受 12 周 cART 治疗后,微观脑动力学和网络拓扑测量均得到改善,并且更接近健康大脑。这也与认知表现的改善有关,表明局部脑动力学的改善转化为临床改善。