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缺氧暴露对人体头部对称区域微循环参数反应的性别相关特征。

Sex-Related Features of the Reactions of Microcirculation Parameters in Symmetrical Areas of the Human Head to Hypoxic Exposure.

机构信息

P. K. Anokhin Research Institute of Normal Physiology, Moscow, Russia.

出版信息

Bull Exp Biol Med. 2022 Mar;172(5):523-527. doi: 10.1007/s10517-022-05425-2. Epub 2022 Mar 29.

Abstract

We studied sex-related features of the microcirculation response of symmetrical areas of the human head to hypoxic loads. In 20 healthy volunteers (10 male and 10 female), short-term hypoxia was modeled using the ReOxy Cardio device (S. A. Aimediq). Microcirculation parameters were synchronously measured by laser Doppler flowmetry in the initial state and immediately after short-term hypoxic exposure. 3D graphs were constructed and regression equations were formulated that describe the relationships between changes in microcirculation on both sides of the measurement. Using a new method of geometric zoning, it was shown that the direction of reactions to hypoxia of the left microcirculatory bed is opposite in subjects of different sexes. In 80% male subjects, hypoxia led to an increase in perfusion on the left, in 20% - to a decrease. In female subjects, the picture was opposite: perfusion decreased in 90% and increased in 10% subjects. It can be assumed that these differences in the reactions of microcirculation to hypoxia in men and women are an additional confirmation of different structural and functional organization of the male and female brain, which leads to different resistance of males and females to external disturbing influences. The results of the study can be used in medical practice to develop methods for personalized assessments of circulatory disorders and differentiated approaches to the treatment of men and women with cardiovascular diseases.

摘要

我们研究了人类头部对称区域的微循环对缺氧负荷的性别相关特征。在 20 名健康志愿者(10 名男性和 10 名女性)中,使用 ReOxy Cardio 设备(S. A. Aimediq)模拟短期缺氧。使用激光多普勒流量仪同步测量初始状态和短期缺氧暴露后立即的微循环参数。构建了 3D 图,并制定了回归方程,描述了测量两侧微循环变化之间的关系。使用新的几何分区方法,表明不同性别的受试者对缺氧反应的方向相反。在 80%的男性受试者中,缺氧导致左侧灌注增加,在 20%的受试者中则减少。在女性受试者中,情况则相反:90%的受试者灌注减少,10%的受试者灌注增加。可以假设,男性和女性对缺氧的微循环反应的这些差异是对男性和女性大脑结构和功能组织不同的进一步证实,这导致了男性和女性对外部干扰影响的不同抵抗力。该研究结果可用于医学实践,以开发个性化评估循环障碍的方法,并对患有心血管疾病的男性和女性采取有区别的治疗方法。

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