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White matter integrity hippocampal volume and cognitive performance of a world-famous nonagenarian track and field athlete

机译:举世闻名的非田径运动员的白质完整性海马体积和认知能力

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摘要

Physical activity (PA) and cardiorespiratory fitness (CRF) are associated with successful brain and cognitive aging. However, little is known about the effects of PA, CRF, and exercise on the brain in the oldest-old. Here we examined white matter (WM) integrity, measured as fractional anisotropy (FA) and WM hyperintensity (WMH) burden, and hippocampal volume of Olga Kotelko (1919–2014). Olga began training for competitions at age of 77 and as of June 2014 held over 30 world records in her age category in track-and-field. We found that Olga’s WMH burden was larger and the hippocampus was smaller than in the reference sample (58 healthy low-active women 60–78 years old), and her FA was consistently lower in the regions overlapping with WMH. Olga’s FA in many normal-appearing WM regions, however, did not differ or was greater than in the reference sample. In particular, FA in her genu corpus callosum was higher than any FA value observed in the reference sample. We speculate that her relatively high FA may be related to both successful aging and the beneficial effects of exercise in old age. In addition, Olga had lower scores on memory, reasoning and speed tasks than the younger reference sample, but outperformed typical adults of age 90–95 on speed and memory. Together, our findings open the possibility of old-age benefits of increasing PA on WM microstructure and cognition despite age-related increase in WMH burden and hippocampal shrinkage, and add to the still scarce neuroimaging data of the healthy oldest-old (> 90 years) adults.
机译:体力活动(PA)和心肺健康(CRF)与成功的大脑和认知衰老相关。但是,对于PA,CRF和运动对最老的大脑的影响知之甚少。在这里,我们检查了白质(WM)的完整性,以分数各向异性(FA)和WM高强度(WMH)负担以及Olga Kotelko(1919-2014)的海马体积来衡量。奥尔加(Olga)从77岁开始参加比赛训练,截至2014年6月,她在田径比赛中以其年龄段保持了30多个世界纪录。我们发现,奥尔加的WMH负担比参考样本(58位60-78岁的健康低活跃女性)更大,海马更小,并且与WMH重叠的区域的FA一直较低。但是,在许多正常出现的WM地区,Olga的FA没有差异或大于参考样品。特别地,她的gen体FA中的FA高于参考样品中观察到的任何FA值。我们推测她相对较高的FA可能与成功的衰老以及老年运动的有益效果有关。此外,奥尔加在记忆,推理和速度任务方面的得分低于年轻的参考样本,但在速度和记忆方面优于90-95岁的典型成年人。总之,尽管与年龄相关的WMH负担增加和海马体收缩与年龄相关,但我们的发现共同为增加PA对WM显微结构和认知带来老年益处的可能性提供了可能性,并增加了健康高龄者(> 90岁)仍然缺乏的神经影像学数据)成人。

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