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首页> 外文期刊>Human brain mapping >Increasing measurement accuracy of age-related BOLD signal change: minimizing vascular contributions by resting-state-fluctuation-of-amplitude scaling.
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Increasing measurement accuracy of age-related BOLD signal change: minimizing vascular contributions by resting-state-fluctuation-of-amplitude scaling.

机译:增加与年龄相关的BOLD信号变化的测量精度:通过振幅的静止状态波动来最小化血管贡献。

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In this report we demonstrate a hemodynamic scaling method with resting-state fluctuation of amplitude (RSFA) in healthy adult younger and older subject groups. We show that RSFA correlated with breath hold (BH) responses throughout the brain in groups of younger and older subjects which RSFA and BH performed comparably in accounting for age-related hemodynamic coupling changes, and yielded more veridical estimates of age-related differences in task-related neural activity. BOLD data from younger and older adults performing motor and cognitive tasks were scaled using RSFA and BH related signal changes. Scaling with RSFA and BH reduced the skew of the BOLD response amplitude distribution in each subject and reduced mean BOLD amplitude and variability in both age groups. Statistically significant differences in intrasubject amplitude variation across regions of activated cortex, and intersubject amplitude variation in regions of activated cortex were observed between younger and older subject groups. Intra- and intersubject variability differences were mitigated after scaling. RSFA, though similar to BH in minimizing skew in the unscaled BOLD amplitude distribution, attenuated the neural activity-related BOLD amplitude significantly less than BH. The amplitude and spatial extent of group activation were lower in the older than in the younger group before and after scaling. After accounting for vascular variability differences through scaling, age-related decreases in activation volume were observed during the motor and cognitive tasks. The results suggest that RSFA-scaled data yield age-related neural activity differences during task performance with negligible effects from non-neural (i.e., vascular) sources.
机译:在本报告中,我们证明了健康的成年人和老年人组中具有静止状态振幅波动(RSFA)的血液动力学缩放方法。我们显示,在年轻和老年受试者的组中,RSFA与整个大脑的屏气(BH)反应相关,RSFA和BH在解释与年龄相关的血液动力学耦合变化方面具有可比性,并且产生了与年龄相关的任务差异的更多真实估计相关的神经活动。使用RSFA和BH相关信号变化对来自执行运动和认知任务的年轻人和老年人的BOLD数据进行缩放。使用RSFA和BH进行缩放可减少每个受试者中BOLD反应幅度分布的偏斜,并降低两个年龄组的平均BOLD幅度和变异性。在较年轻和较年长的受试者组之间,观察到跨激活皮层区域的受试者内幅度变化和跨激活皮层区域的受试者间幅度变化的统计学显着差异。标度后,受试者之间和受试者间的变异性差异得以缓解。 RSFA尽管在最小化未缩放的BOLD幅度分布中的偏斜方面与BH相似,但与神经活动相关的BOLD幅度的衰减明显小于BH。缩放前后,年龄较大的组的激活幅度和空间程度均低于年龄较小的组。在通过缩放考虑了血管变异性差异后,在运动和认知任务期间观察到了年龄相关的激活量减少。结果表明,RSFA缩放数据在任务执行过程中产生了与年龄相关的神经活动差异,而来自非神经(即血管)来源的影响可忽略不计。

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