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首页> 外文期刊>Neurobiology of Aging: Experimental and Clinical Research >Neuroprotective pathways: Lifestyle activity, brain pathology, and cognition in cognitively normal older adults
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Neuroprotective pathways: Lifestyle activity, brain pathology, and cognition in cognitively normal older adults

机译:神经保护途径:认知正常的老年人的生活方式活动,脑部病理和认知

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摘要

This study used path analysis to examine effects of cognitive activity and physical activity on cognitive functioning in older adults, through pathways involving beta-amyloid (Aβ) burden, cerebrovascular lesions, and neural injury within the brain regions affected in Alzheimer's disease (AD). Ninety-two cognitively normal older adults (75.2 ± 5.6years) reported lifetime cognitive activity and current physical activity using validated questionnaires. For each participant, we evaluated cortical Aβ burden (using [11C] labeled Pittsburgh-Compound-B positron emission tomography), cerebrovascular lesions (using magnetic resonance imaging-defined white matter lesion [WML]), and neural integrity within AD regions (using a multimodal neuroimaging biomarker). Path models (adjusted for age, gender, and education) indicated that higher lifetime cognitive activity and higher current physical activity was associated with fewer WMLs. Lower WML volumes were in turn related to higher neural integrity and higher global cognitive functioning. As shown previously, higher lifetime cognitive activity was associated with lower [11C] labeled Pittsburgh-Compound-B retention, which itself moderated the impact of neural integrity on cognitive functioning. Lifestyle activity may thus promote cognitive health in aging by protecting against cerebrovascular pathology and Aβ pathology thought to be relevant to AD development.
机译:这项研究使用路径分析方法,通过涉及β-淀粉样蛋白(Aβ)负担,脑血管病变和受阿尔茨海默氏病(AD)影响的大脑区域内的神经损伤的途径,研究认知活动和体育活动对老年人认知功能的影响。 92名认知正常的成年人(75.2±5.6岁)使用经验证的问卷报告了终生的认知活动和当前的身体活动。对于每位参与者,我们评估了皮质Aβ负担(使用[11C]标记的匹兹堡-化合物-B正电子发射断层扫描),脑血管病变(使用磁共振成像定义的白质病变[WML])和AD区域内的神经完整性(使用多模式神经影像生物标记物)。路径模型(针对年龄,性别和教育程度进行了调整)表明,一生中较高的终生认知活动和较高的当前体育活动与较少的WML相关。较低的WML量又与较高的神经完整性和较高的整体认知功能有关。如先前所示,较高的终生认知活动与较低的[11C]标记的匹兹堡-化合物-B保留相关,这本身缓解了神经完整性对认知功能的影响。因此,生活方式活动可通过预防脑血管病和认为与AD发育有关的Aβ病理来促进衰老中的认知健康。

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