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太空飞行后体位性不耐受倾向中性别差异机制的理论分析。

Theoretical analysis of the mechanisms of a gender differentiation in the propensity for orthostatic intolerance after spaceflight.

作者信息

Summers Richard L, Platts Steven, Myers Jerry G, Coleman Thomas G

机构信息

Department of Emergency Medicine, University of Mississippi Medical Center, Jackson, Mississippi 39216, USA.

出版信息

Theor Biol Med Model. 2010 Mar 18;7:8. doi: 10.1186/1742-4682-7-8.

Abstract

BACKGROUND

A tendency to develop reentry orthostasis after a prolonged exposure to microgravity is a common problem among astronauts. The problem is 5 times more prevalent in female astronauts as compared to their male counterparts. The mechanisms responsible for this gender differentiation are poorly understood despite many detailed and complex investigations directed toward an analysis of the physiologic control systems involved.

METHODS

In this study, a series of computer simulation studies using a mathematical model of cardiovascular functioning were performed to examine the proposed hypothesis that this phenomenon could be explained by basic physical forces acting through the simple common anatomic differences between men and women. In the computer simulations, the circulatory components and hydrostatic gradients of the model were allowed to adapt to the physical constraints of microgravity. After a simulated period of one month, the model was returned to the conditions of earth's gravity and the standard postflight tilt test protocol was performed while the model output depicting the typical vital signs was monitored.

CONCLUSIONS

The analysis demonstrated that a 15% lowering of the longitudinal center of gravity in the anatomic structure of the model was all that was necessary to prevent the physiologic compensatory mechanisms from overcoming the propensity for reentry orthostasis leading to syncope.

摘要

背景

长时间暴露于微重力环境后出现反复性直立性低血压的倾向是宇航员中常见的问题。与男性宇航员相比,女性宇航员出现该问题的几率高出5倍。尽管针对所涉及的生理控制系统进行了许多详细而复杂的研究,但导致这种性别差异的机制仍知之甚少。

方法

在本研究中,使用心血管功能数学模型进行了一系列计算机模拟研究,以检验所提出的假设,即这种现象可以通过作用于男女之间简单常见解剖学差异的基本物理力来解释。在计算机模拟中,模型的循环组件和流体静力梯度被允许适应微重力的物理限制。经过一个月的模拟期后,模型恢复到地球重力条件,并执行标准的飞行后倾斜试验方案,同时监测描绘典型生命体征的模型输出。

结论

分析表明,模型解剖结构中纵向重心降低15%是防止生理代偿机制克服导致晕厥的反复性直立性低血压倾向所必需的全部条件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2a6f/2847550/d1ebeda851fb/1742-4682-7-8-1.jpg

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