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A Scaffold for Efficiency in the Human Brain

机译:人脑效率支架

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摘要

The comprehensive relations between healthy adult human brain white matter (WM) microstructure and gray matter (GM) function, and their joint relations to cognitive performance, remain poorly understood. We investigated these associations in 27 younger and 28 older healthy adults by linking diffusion tensor imaging (DTI) with functional magnetic resonance imaging (fMRI) data collected during an n-back working memory task. We present a novel application of multivariate Partial Least Squares (PLS) analysis that permitted the simultaneous modeling of relations between WM integrity values from all major WM tracts and patterns of condition-related BOLD signal across all GM regions. Our results indicate that greater microstructural integrity of the major WM tracts was negatively related to condition-related blood oxygenation level-dependent (BOLD) signal in task-positive GM regions. This negative relationship suggests that better quality of structural connections allows for more efficient use of task-related GM processing resources. Individuals with more intact WM further showed greater BOLD signal increases in typical “task-negative” regions during fixation, and notably exhibited a balanced magnitude of BOLD response across task-positive and -negative states. Structure—function relations also predicted task performance, including accuracy and speed of responding. Finally, structure–function–behavior relations reflected individual differences over and above chronological age. Our findings provide evidence for the role of WM microstructure as a scaffold for the context-relevant utilization of GM regions.
机译:健康成人大脑白质(WM)的微结构与灰质(GM)功能之间的全面关系,以及它们与认知能力的联合关系,仍然知之甚少。我们通过将扩散张量成像(DTI)与在n背工作记忆任务中收集的功能磁共振成像(fMRI)数据联系起来,调查了27位年轻的成年人和28位年龄较大的健康成年人的这些关联。我们提出了多元偏最小二乘(PLS)分析的一种新颖应用,该分析允许对来自所有主要WM区域的WM完整性值与所有GM区域中与条件相关的BOLD信号的模式进行同时建模。我们的结果表明,主要WM道的更大的微结构完整性与任务阳性GM区域中与条件相关的血液氧合水平依赖性(BOLD)信号负相关。这种负面关系表明,结构连接的质量更高,可以更有效地使用与任务相关的GM处理资源。具有更完整WM的个体在固定过程中在典型的“任务阴性”区域中进一步显示出更大的BOLD信号增加,并且在任务阳性和阴性状态之间的BOLD反应表现出明显的平衡。结构—功能关系还可以预测任务性能,包括响应的准确性和速度。最后,结构-功能-行为关系反映了按时间顺序排序的个人差异。我们的发现提供了证据,证明WM的微结构作为转基因地区相关利用的支架的作用。

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