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Low-frequency fluctuation amplitude analysis of resting-state fMRI in sickle cell disease

机译:镰状细胞疾病休息状态FMRI的低频波动幅度分析

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Sickle cell disease may result in neurological damage and strokes, leading to morbidity and mortality. Currently, there are no dependable biomarkers to predict impending strokes. In this study, we analyzed neuronal processes at resting state and more particularly how this disease affects the default mode network. The amplitude of low frequency fluctuations was used to reflect areas of spontaneous BOLD signal across brain regions. We compared the activations of sickle cell disease patients to a control group using variance analysis and t-test. Significant regional differences among the two groups were observed, especially in the default mode network areas and cortical regions near large cerebral arteries. These findings suggest that sickle cell disease causes activation modifications near vessels, and these changes could be used as a biomarker of the disease.
机译:镰状细胞疾病可能导致神经系统损伤和中风,导致发病率和死亡率。目前,没有可靠的生物标志物预测即将推出的中风。在这项研究中,我们分析了休息状态下的神经元过程,更具体地,该疾病如何影响默认模式网络。低频波动的幅度用于反映脑区域的自发粗体信号的区域。我们将镰状细胞病患者的激活与使用方差分析和T检验进行了对照组。观察到两组的重大区域差异,特别是在默认模式网络区域和大脑动脉附近的皮质区域。这些发现表明,镰状细胞疾病导致血管附近的激活修饰,并且这些变化可以用作疾病的生物标志物。

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