Antonova E, Parslow D, Brammer M, Dawson G R, Jackson S H D, Morris R G
Institute of Psychiatry, King's College London, UK.
Memory. 2009 Feb;17(2):125-43. doi: 10.1080/09658210802077348.
Age-related decline in allocentric (viewer-independent) spatial memory is seen across species. We employed a virtual reality analogue of the Morris Water Maze to study the effect of healthy ageing on neural activity during allocentric spatial memory using functional magnetic resonance imaging. Voxel-based morphometry was used to ascertain hippocampal volumetric integrity. A widespread neural network comprising frontal, parietal, occipital, thalamic, and cerebellar regions was activated in young and older adults, but only young adults significantly activated bilateral hippocampus and left parahippocampus, as well as right frontal pole and dorso-lateral prefrontal cortex (DLPFC) during encoding and right DLPC during retrieval. Hippocampal grey matter volume was unchanged in older adults; however, prefrontal and parahippocampal functional attenuation was accompanied by volumetric reduction. We conclude that the decline in allocentric spatial memory with age is associated with attenuated hippocampal function, as well as compromised function and structure of prefrontal and parahippocampal regions.
在所有物种中都能观察到与年龄相关的以自我为中心(独立于观察者)的空间记忆衰退。我们采用了莫里斯水迷宫的虚拟现实模拟装置,利用功能磁共振成像研究健康衰老对以自我为中心的空间记忆过程中神经活动的影响。基于体素的形态测量法用于确定海马体的体积完整性。在年轻人和老年人中,一个由额叶、顶叶、枕叶、丘脑和小脑区域组成的广泛神经网络被激活,但只有年轻人在编码过程中显著激活双侧海马体和左侧海马旁回,以及右侧额极和背外侧前额叶皮层(DLPFC),在检索过程中激活右侧DLPC。老年人的海马灰质体积没有变化;然而,前额叶和海马旁回的功能衰减伴随着体积减小。我们得出结论,随着年龄增长,以自我为中心的空间记忆衰退与海马体功能减弱以及前额叶和海马旁回区域的功能和结构受损有关。