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海马体依赖的任务表现与海马体灰质髓鞘形成及铁含量之间的关系。

The relationship between hippocampal-dependent task performance and hippocampal grey matter myelination and iron content.

作者信息

Clark Ian A, Callaghan Martina F, Weiskopf Nikolaus, Maguire Eleanor A

机构信息

Wellcome Centre for Human Neuroimaging, UCL Queen Square Institute of Neurology, University College London, London, UK.

Department of Neurophysics, Max Planck Institute for Human Cognitive and Brain Sciences, Leipzig, Germany.

出版信息

Brain Neurosci Adv. 2021 Apr 26;5:23982128211011923. doi: 10.1177/23982128211011923. eCollection 2021 Jan-Dec.

Abstract

Individual differences in scene imagination, autobiographical memory recall, future thinking and spatial navigation have long been linked with hippocampal structure in healthy people, although evidence for such relationships is, in fact, mixed. Extant studies have predominantly concentrated on hippocampal volume. However, it is now possible to use quantitative neuroimaging techniques to model different properties of tissue microstructure in vivo such as myelination and iron. Previous work has linked such measures with cognitive task performance, particularly in older adults. Here we investigated whether performance on scene imagination, autobiographical memory, future thinking and spatial navigation tasks was associated with hippocampal grey matter myelination or iron content in young, healthy adult participants. Magnetic resonance imaging data were collected using a multi-parameter mapping protocol (0.8 mm isotropic voxels) from a large sample of 217 people with widely-varying cognitive task scores. We found little evidence that hippocampal grey matter myelination or iron content were related to task performance. This was the case using different analysis methods (voxel-based quantification, partial correlations), when whole brain, hippocampal regions of interest, and posterior:anterior hippocampal ratios were examined, and across different participant sub-groups (divided by gender and task performance). Variations in hippocampal grey matter myelin and iron levels may not, therefore, help to explain individual differences in performance on hippocampal-dependent tasks, at least in young, healthy individuals.

摘要

长期以来,在健康人群中,场景想象、自传体记忆回忆、前瞻性思维和空间导航方面的个体差异一直与海马体结构有关,尽管事实上支持这种关系的证据并不一致。现有研究主要集中在海马体体积上。然而,现在可以使用定量神经成像技术在体内对组织微观结构的不同特性进行建模,如髓鞘形成和铁含量。先前的研究已经将这些测量结果与认知任务表现联系起来,尤其是在老年人中。在这里,我们研究了在年轻、健康的成年参与者中,场景想象、自传体记忆、前瞻性思维和空间导航任务的表现是否与海马体灰质的髓鞘形成或铁含量有关。使用多参数映射协议(0.8毫米各向同性体素)从217名认知任务得分差异很大的大样本人群中收集了磁共振成像数据。我们几乎没有发现证据表明海马体灰质的髓鞘形成或铁含量与任务表现有关。在使用不同分析方法(基于体素的量化、偏相关)时,在检查全脑、海马体感兴趣区域以及后海马体与前海马体比例时,以及在不同参与者亚组(按性别和任务表现划分)中都是如此。因此,海马体灰质髓鞘和铁水平的变化可能无法帮助解释在依赖海马体的任务中表现的个体差异,至少在年轻、健康的个体中是这样。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d038/8079931/611883933a89/10.1177_23982128211011923-fig1.jpg

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