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对正常血容量和低血容量男性及女性的重力应激模拟。

Simulations of gravitational stress on normovolemic and hypovolemic men and women.

作者信息

Zhang Qingguang, Knapp Charles F, Stenger Michael B, Patwardhan Abhijit R, Elayi Samy C, Wang Siqi, Kostas Vladimir I, Evans Joyce M

出版信息

Aviat Space Environ Med. 2014 Apr;85(4):407-13. doi: 10.3357/asem.3828.2014.

Abstract

BACKGROUND

Earth-based simulations of physiologic responses to space mission activities are needed to develop prospective countermeasures. To determine whether upright lower body positive pressure (LBPP) provides a suitable space mission simulation, we investigated the cardiovascular responses of normovolemic and hypovolemic men and women to supine and orthostatic stress induced by head-up tilt (HUT) and upright LBPP, representing standing in lunar, Martian, and Earth gravities.

METHODS

Six men and six women were tested in normovolemic and hypovolemic (furosemide, intravenous, 0.5 mg x kg(-1)) conditions. Continuous electrocardiogram, blood pressure, segmental bioimpedance, and stroke volume (echocardiography) were recorded supine and at lunar, Martian, and Earth gravities (10 degrees, 20 degrees, and 80 degrees HUT vs. 20%, 40%, and 100% bodyweight upright LBPP), respectively. Cardiovascular responses were assessed from mean values, spectral powers, and spontaneous baroreflex parameters.

RESULTS

Hypovolemia reduced plasma volume by approximately 10% and stroke volume by approximately 25% at supine, and increasing orthostatic stress resulted in further reductions. Upright LBPP induced more plasma volume losses at simulated lunar and Martian gravities compared with HUT, while both techniques induced comparable central hypovolemia at each stress. Cardiovascular responses to orthostatic stress were comparable between HUT and upright LBPP in both normovolemic and hypovolemic conditions; however, hypovolemic blood pressure was greater during standing at 100% bodyweight compared to 80 degree HUT due to a greater increase of total peripheral resistance.

CONCLUSIONS

The comparable cardiovascular response to HUT and upright LBPP support the use of upright LBPP as a potential model to simulate activity in lunar and Martian gravities.

摘要

背景

为了开发前瞻性对策,需要对太空任务活动的生理反应进行地面模拟。为了确定直立式下体正压(LBPP)是否能提供合适的太空任务模拟,我们研究了血容量正常和血容量不足的男性和女性对由头高位倾斜(HUT)和直立式LBPP诱导的仰卧位和直立位应激的心血管反应,分别代表在月球、火星和地球重力下站立。

方法

对6名男性和6名女性在血容量正常和血容量不足(静脉注射速尿,0.5mg·kg-1)的条件下进行测试。分别记录仰卧位以及在月球、火星和地球重力下(10度、20度和80度HUT与20%、40%和100%体重的直立式LBPP)的连续心电图、血压、节段生物电阻抗和每搏输出量(超声心动图)。从平均值、频谱功率和自发压力反射参数评估心血管反应。

结果

血容量不足使仰卧位时血浆量减少约10%,每搏输出量减少约25%,直立位应激增加导致进一步减少。与HUT相比,直立式LBPP在模拟月球和火星重力时导致更多的血浆量损失,而两种技术在每种应激下引起的中心血容量不足相当。在血容量正常和血容量不足的情况下,HUT和直立式LBPP对直立位应激的心血管反应相当;然而,由于总外周阻力增加更多,血容量不足时100%体重站立时的血压高于80度HUT站立时的血压。

结论

对HUT和直立式LBPP的心血管反应相当,支持将直立式LBPP用作模拟月球和火星重力下活动的潜在模型。

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本文引用的文献

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Effects of gender and hypovolemia on sympathetic neural responses to orthostatic stress.性别和低血容量对直立位应激交感神经反应的影响。
Am J Physiol Regul Integr Comp Physiol. 2005 Jul;289(1):R109-16. doi: 10.1152/ajpregu.00013.2005. Epub 2005 Mar 10.
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Hypovolemia and neurovascular control during orthostatic stress.直立位应激期间的低血容量与神经血管控制
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