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心血管健康水平较高与健康老年人的脑血管反应性和灌注降低有关。

Higher cardiovascular fitness level is associated with lower cerebrovascular reactivity and perfusion in healthy older adults.

机构信息

INDI Department, Concordia University, Montreal, Canada.

PERFORM Centre, Concordia University, Montreal, Canada.

出版信息

J Cereb Blood Flow Metab. 2020 Jul;40(7):1468-1481. doi: 10.1177/0271678X19862873. Epub 2019 Jul 25.

Abstract

Aging is accompanied by vascular and structural changes in the brain, which include decreased grey matter volume (GMV), cerebral blood flow (CBF), and cerebrovascular reactivity (CVR). Enhanced fitness in aging has been related to preservation of GMV and CBF, and in some cases CVR, although there are contradictory relationships reported between CVR and fitness. To gain a better understanding of the complex interplay between fitness and GMV, CBF and CVR, the present study assessed these factors concurrently. Data from 50 participants, aged 55 to 72, were used to derive GMV, CBF, CVR and VOpeak. Results revealed that lower CVR was associated with higher VOpeak throughout large areas of the cerebral cortex. Within these regions lower fitness was associated with higher CBF and a faster hemodynamic response to hypercapnia. Overall, our results indicate that the relationships between age, fitness, cerebral health and cerebral hemodynamics are complex, likely involving changes in chemosensitivity and autoregulation in addition to changes in arterial stiffness. Future studies should collect other physiological outcomes in parallel with quantitative imaging, such as measures of chemosensitivity and autoregulation, to further understand the intricate effects of fitness on the aging brain, and how this may bias quantitative measures of cerebral health.

摘要

衰老伴随着大脑的血管和结构变化,包括灰质体积(GMV)减少、脑血流(CBF)和脑血管反应性(CVR)降低。衰老过程中增强的适应性与 GMV 和 CBF 的保留有关,在某些情况下与 CVR 有关,但 CVR 与适应性之间的关系存在矛盾。为了更好地理解适应性与 GMV、CBF 和 CVR 之间的复杂相互作用,本研究同时评估了这些因素。使用 50 名年龄在 55 至 72 岁的参与者的数据来得出 GMV、CBF、CVR 和 VOpeak。结果表明,大脑皮层的大部分区域,较低的 CVR 与较高的 VOpeak 相关。在这些区域,较低的适应性与较高的 CBF 和更快的脑血管对二氧化碳反应有关。总体而言,我们的结果表明,年龄、适应性、大脑健康和大脑血液动力学之间的关系很复杂,可能涉及除了动脉僵硬变化之外的化学敏感性和自动调节的变化。未来的研究应在并行收集定量成像的其他生理结果,如化学敏感性和自动调节的测量,以进一步了解适应性对衰老大脑的复杂影响,以及这如何影响对大脑健康的定量测量。

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