Department of Psychological and Brain Sciences, University of Iowa, Iowa City, IA 52242, USA.
Interdisciplinary Graduate Program in Neuroscience, University of Iowa, Iowa City, IA 52242, USA; Department of Neurology, University of Iowa, Iowa City, IA, 52242, USA.
Neuroimage. 2021 Dec 15;245:118682. doi: 10.1016/j.neuroimage.2021.118682. Epub 2021 Oct 30.
The hippocampus is negatively affected by aging and is critical for spatial navigation. While there is evidence that wayfinding navigation tasks are especially sensitive to preclinical hippocampal deterioration, these studies have primarily used volumetric hippocampal imaging without considering microstructural properties or anatomical variation within the hippocampus. T1ρ is an MRI measure sensitive to regional pH, with longer relaxation rates reflecting acidosis as a marker of metabolic dysfunction and neuropathological burden. For the first time, we investigate how measures of wayfinding including landmark location learning and delayed memory in cognitively normal older adults (N = 84) relate to both hippocampal volume and T1ρ in the anterior and posterior hippocampus. Regression analyses revealed hippocampal volume was bilaterally related to learning, while right lateralized T1ρ was related to delayed landmark location memory and bilateral T1ρ was related to the delayed use of a cognitive map. Overall, results suggest hippocampal volume and T1ρ relaxation rate tap into distinct mechanisms involved in preclinical cognitive decline as assessed by wayfinding navigation, and laterality influenced these relationships more than the anterior-posterior longitudinal axis of the hippocampus.
海马体受衰老影响,对空间导航至关重要。虽然有证据表明,寻路导航任务对临床前海马体退化特别敏感,但这些研究主要使用了海马体容积成像,而没有考虑到海马体内部的微观结构特性或解剖学变异。T1ρ 是一种对局部 pH 值敏感的 MRI 测量方法,其弛豫率较长反映了酸中毒,是代谢功能障碍和神经病理学负担的标志物。我们首次研究了认知正常的老年人(N=84)的寻路方法测量指标,包括地标位置学习和延迟记忆,与前、后海马体的海马体体积和 T1ρ 之间的关系。回归分析显示,海马体体积与学习呈双侧相关,而右侧 T1ρ 与延迟地标位置记忆相关,双侧 T1ρ 与延迟使用认知图相关。总的来说,研究结果表明,海马体体积和 T1ρ 弛豫率反映了寻路导航评估的临床前认知衰退所涉及的不同机制,而偏侧性比海马体的前后纵向轴更能影响这些关系。