“沃尔多在哪里”搜索范式中的低碳酸血症、高碳酸血症和高碳酸血症:跨心脏周期和生物性别的神经血管耦合。

IF 4.5 2区 医学 Q1 ENDOCRINOLOGY & METABOLISM
Nathan E Johnson, Joel S Burma, Matthew G Neill, Joshua J Burkart, Elizabeth Ks Fletcher, Jonathan D Smirl
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引用次数: 0

摘要

本研究通过一个复杂的视觉场景搜索任务(“沃尔多在哪里?”),探讨了潮末二氧化碳分压(PETCO2)改变对心脏周期内颞神经血管耦合(NVC)反应的影响,以及生物性别的影响。10名女性和10名男性完成了5个谜题,每个谜题的眼睛睁开40秒,闭上20秒,在PETCO2夹在~ 40 mmHg(高欣快),~ 55 mmHg(高碳酸血症)和~ 25 mmHg(低碳酸血症)下。经颅多普勒超声检测大鼠大脑中、后动脉(MCAv)脑血流速度(CBv)。随机效应的线性混合效应模型分析了NVC指标,包括基线和峰值CBv、相对增加和曲线下面积(AUC30)。在高碳酸血症试验中,PCAv和MCAv AUC30的降低在整个心脏周期中都被注意到(均p)。低capic PCAv AUC30降低(均p),收缩期MCAv AUC30也降低(p = 0.003)。女性显示更大的基线PCA舒张(p = 0.048)。基线(所有p > 0.050)、峰值(所有p > 0.054)、相对增加(所有p > 0.511)和AUC30指标(所有p > 0.514)在不同条件下均未观察到其他生物学性别差异。尽管对高碳酸和低碳酸刺激的反应存在差异,但在整个生理CO2范围内,NVC对复杂视觉任务的反应仍然强劲。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hypocapnia, eucapnia and hypercapnia during "Where's Waldo" search paradigms: Neurovascular coupling across the cardiac cycle and biological sexes.

This investigation explored the impact of partial pressure of end-tidal carbon dioxide (PETCO2) alterations on temporal neurovascular coupling (NVC) responses across the cardiac cycle and the influence of biological sex via a complex visual scene-search task ("Where's Waldo?"). 10 females and 10 males completed five puzzles, each with 40 seconds of eyes open and 20 seconds of eyes closed, under PETCO2 clamped at ∼40 mmHg (eucapnia), ∼55 mmHg (hypercapnia), and ∼25 mmHg (hypocapnia). Cerebral blood velocity (CBv) in the middle and posterior cerebral arteries (MCAv, PCAv) were measured via Transcranial Doppler ultrasound. Linear mixed-effects models with participants as a random effect analyzed NVC metrics, including baseline and peak CBv, relative increase, and area-under-the-curve (AUC30). During hypercapnic trials, reductions in PCAv and MCAv AUC30 were noted across the cardiac cycle (all p < 0.001). Hypocapnic PCAv AUC30 was reduced (all p < 0.012), as was systolic MCAv AUC30 (p = 0.003). Females displayed greater baseline PCA diastole (p = 0.048). No other biological sex differences were observed across conditions in baseline (all p > 0.050), peak (all p > 0.054), relative increase (all p > 0.511), and AUC30 metrics (all p > 0.514). Despite differences in responses to hypercapnic and hypocapnic stimuli, NVC responses to complex visual tasks remain robust, across the physiological CO2 range.

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来源期刊
Journal of Cerebral Blood Flow and Metabolism
Journal of Cerebral Blood Flow and Metabolism 医学-内分泌学与代谢
CiteScore
12.00
自引率
4.80%
发文量
300
审稿时长
3 months
期刊介绍: JCBFM is the official journal of the International Society for Cerebral Blood Flow & Metabolism, which is committed to publishing high quality, independently peer-reviewed research and review material. JCBFM stands at the interface between basic and clinical neurovascular research, and features timely and relevant research highlighting experimental, theoretical, and clinical aspects of brain circulation, metabolism and imaging. The journal is relevant to any physician or scientist with an interest in brain function, cerebrovascular disease, cerebral vascular regulation and brain metabolism, including neurologists, neurochemists, physiologists, pharmacologists, anesthesiologists, neuroradiologists, neurosurgeons, neuropathologists and neuroscientists.
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