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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Long-term Exercise Confers Equivalent Neuroprotection in Females Despite Lower Cardiorespiratory Fitness
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Long-term Exercise Confers Equivalent Neuroprotection in Females Despite Lower Cardiorespiratory Fitness

机译:尽管较低的心肺健身,但长期锻炼赋予女性的相当于神经保护作用

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Females are more prone to cognitive decline, stroke and neurodegenerative disease, possibly due to more marked reductions in cerebral blood flow and cerebrovascular reactivity to CO2 (CVRCO2HYPER) in later life. To what extent regular exercise confers selective neuroprotection in females remains unestablished. To examine this, 73 adults were prospectively assigned to 1 of 4 groups based on sex (male, male vs. female, female) and physical activity status (trained, >= 150 min of moderate-vigorous intensity aerobic exercise/week; n = 18 male vs. 18 female vs. untrained, no formal exercise; n = 18 male vs. 19 female). Middle cerebral artery velocity (MCAv, transcranial Doppler ultrasound), mean arterial pressure (MAP, finger photoplethysmography) and end-tidal CO2 (capnography) were assessed at rest during normocapnea and hypercapnea (5% CO2) enabling CVRCO2HYPER to be assessed. Cerebrovascular resistance/conductance indices (CVRi/CVCi) were calculated as MAP/MCAv and MCAv/MAP. Maximal oxygen uptake (VO2MAX) was determined during incremental semi-recumbent cycling ergometry to volitional exhaustion. Despite having a lower VO2MAX, females were characterized by selective elevations in MCAv, CVRCO2HYPER and lower CVRi (P < 0.05), but the training responses were similar across sexes. Linear relationships were observed between VO2MAX and CVRCO2HYPER (pooled untrained and trained data; male r = 0.70, female r = 0.51; both P < 0.05) with a consistent elevation in the latter equivalent to similar to 1.50%.mmHg(-1) compared to males across the spectrum of cardiorespiratory fitness. These findings indicate that despite having comparatively lower levels of cardiorespiratory fitness, the neuroprotective benefits of regular exercise translate into females and may help combat cerebrovascular disease in later life. (C) 2019 IBRO. Published by Elsevier Ltd. All rights reserved.
机译:女性更容易发生认知的下降,中风和神经变性疾病,可能是由于在后期生命中脑血流量和脑血流和脑血管反应性的更明显的减少而导致的CO 2(CVRCO2HOW)。在多大程度上常规运动赋予女性的选择性神经保护仍然未成本。要检查这一点,73名成人潜行到基于性别(男性,男性,女性,女性)和身体活动状态(培训,> = 150分钟的中等剧烈强度有氧运动/周; n = 18名男性与18女性与未经训练,没有正式运动; n = 18名男性与19名女性)。在Normocapnea和Hypercapnea(5%CO2)期间,在静止期间,在静止中评估中脑动脉速度(MCAV,经颅多普勒超声波),平均动脉压(MAP,手指光增性血压造影)和末端CO2(谱图),使得能够评估CVRCO2次数。脑血管抵抗/电导指数(CVRI / CVCI)计算为地图/ MCAV和MCAV / MAP。在增量半卧式循环循环钻石中测定最大氧吸收(VO2MAX)以加速耗尽。尽管vo2max较低,但雌性的特征在于MCAV,CVRCO2HOWPER和较低的CVRI选择性升高(P <0.05),但训练反应在性别中相似。在VO2MAX和CVRCO2 OWP(汇集未经训练和训练的数据之间观察到线性关系;雄性r = 0.70,雌性r = 0.51; P <0.05),后者在后一个相当于类似于1.50%.mmhg(-1)的升高对患有心肺功能的竞争对手。这些发现表明,尽管存在相对较低的心肺健身水平,但定期运动的神经保护益处转化为雌性,并且可以帮助在后期生命中打击脑血管疾病。 (c)2019年IBRO。 elsevier有限公司出版。保留所有权利。

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