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使用磁共振弹性成像观察到记忆和流畅智力的结构-功能关系的双重分离。

Double dissociation of structure-function relationships in memory and fluid intelligence observed with magnetic resonance elastography.

机构信息

Department of Biomedical Engineering, University of Delaware, Newark, DE, United States.

Beckman Institute for Advanced Science and Technology, University of Illinois at Urbana-Champaign, Urbana, IL, United States.

出版信息

Neuroimage. 2018 May 1;171:99-106. doi: 10.1016/j.neuroimage.2018.01.007. Epub 2018 Jan 6.

Abstract

Brain tissue mechanical properties, measured in vivo with magnetic resonance elastography (MRE), have proven to be sensitive metrics of neural tissue integrity. Recently, our group has reported on the positive relationship between viscoelasticity of the hippocampus and performance on a relational memory task in healthy young adults, which highlighted the potential of sensitive MRE measures for studying brain health and its relation to cognitive function; however, structure-function relationships outside of the hippocampus have not yet been explored. In this study, we examined the relationships between viscoelasticity of both the hippocampus and the orbitofrontal cortex and performance on behavioral assessments of relational memory and fluid intelligence. In a sample of healthy, young adults (N = 53), there was a significant, positive relationship between orbitofrontal cortex viscoelasticity and fluid intelligence performance (r = 0.42; p = .002). This finding is consistent with the previously reported relationship between hippocampal viscoelasticity and relational memory performance (r = 0.41; p = .002). Further, a significant double dissociation between the orbitofrontal-fluid intelligence relationship and the hippocampal-relational memory relationship was observed. These data support the specificity of regional brain MRE measures in support of separable cognitive functions. This report of a structure-function relationship observed with MRE beyond the hippocampus suggests a future role for MRE as a sensitive neuroimaging technique for brain mapping.

摘要

脑组织的力学特性可以通过磁共振弹性成像(MRE)在体内进行测量,已被证明是神经组织完整性的敏感指标。最近,我们的研究小组报告了海马体的粘弹性与健康年轻成年人在关系记忆任务中的表现之间存在正相关关系,这突显了敏感的 MRE 测量在研究大脑健康及其与认知功能的关系方面的潜力;然而,海马体以外的结构-功能关系尚未得到探索。在这项研究中,我们研究了海马体和眶额皮层的粘弹性与关系记忆和流体智力行为评估表现之间的关系。在一组健康的年轻成年人(N=53)中,眶额皮层粘弹性与流体智力表现之间存在显著的正相关关系(r=0.42;p=0.002)。这一发现与先前报道的海马体粘弹性与关系记忆表现之间的关系一致(r=0.41;p=0.002)。此外,还观察到眶额皮质-流体智力关系与海马体-关系记忆关系之间存在显著的双重分离。这些数据支持了局部脑 MRE 测量在支持可分离认知功能方面的特异性。本报告报道了 MRE 在海马体以外观察到的结构-功能关系,这表明 MRE 作为一种敏感的神经影像学技术,未来可能用于大脑图谱绘制。

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