McConnell Brain Imaging Centre, Montreal Neurological Institute and Hospital, McGill University, Montreal, Quebec H3A 2B4, Canada.
University of York, York YO10 5DD, UK.
Cereb Cortex. 2021 Jun 10;31(7):3213-3225. doi: 10.1093/cercor/bhab001.
Prior research has shown a role of the medial temporal lobe, particularly the hippocampal-parahippocampal complex, in spatial cognition. Here, we developed a new paradigm, the conformational shift spatial task (CSST), which examines the ability to encode and retrieve spatial relations between unrelated items. This task is short, uses symbolic cues, incorporates two difficulty levels, and can be administered inside the scanner. A cohort of 48 healthy young adults underwent the CSST, together with a set of behavioral measures and multimodal magnetic resonance imaging (MRI). Inter-individual differences in CSST performance correlated with scores on an established spatial memory paradigm, but neither with episodic memory nor mnemonic discrimination, supporting specificity. Analyzing high-resolution structural MRI data, individuals with better spatial memory showed thicker medial and lateral temporal cortices. Functional relevance of these findings was supported by task-based functional MRI analysis in the same participants and ad hoc meta-analysis. Exploratory resting-state functional MRI analyses centered on clusters of morphological effects revealed additional modulation of intrinsic network integration, particularly between lateral and medial temporal structures. Our work presents a novel spatial memory paradigm and supports an integrated structure-function substrate in the human temporal lobe. Task paradigms are programmed in python and made open access.
先前的研究表明,内侧颞叶,特别是海马-旁海马复合体,在空间认知中发挥作用。在这里,我们开发了一种新的范式,即构象转换空间任务(CSST),该任务检查了对不相关项目之间的空间关系进行编码和检索的能力。该任务时间短,使用符号提示,包含两个难度级别,并且可以在扫描仪内进行管理。一组 48 名健康的年轻成年人接受了 CSST 测试,以及一组行为测量和多模态磁共振成像(MRI)。CSST 表现的个体差异与既定的空间记忆范式的分数相关,但与情景记忆或记忆辨别力无关,支持了特异性。对高分辨率结构 MRI 数据的分析表明,空间记忆更好的个体具有更厚的内侧和外侧颞叶皮质。在相同的参与者中进行基于任务的功能 MRI 分析以及专门的荟萃分析支持了这些发现的功能相关性。以形态效应的聚类为中心的探索性静息状态功能 MRI 分析揭示了内在网络整合的额外调节,特别是在外侧和内侧颞叶结构之间。我们的工作提出了一种新的空间记忆范式,并支持了人类颞叶中的综合结构-功能基础。任务范式是用 python 编写的,并提供了开放访问。