Division of Physiology, Gravitational Physiology and Medicine Research Unit, Otto Löwi Research Center of Vascular Biology, Inflammation, and Immunity, Medical University of Graz, Neue Stiftingtalstrasse 6, D-5, 8036, Graz, Austria.
College of Medicine, Mohammed Bin Rashid University of Medicine and Health Sciences, Dubai, United Arab Emirates.
J Muscle Res Cell Motil. 2023 Jun;44(2):89-94. doi: 10.1007/s10974-022-09635-z. Epub 2022 Nov 15.
Central hypovolemia is accompanied by hemodynamic compensatory responses. Understanding the complex systemic compensatory responses to altered hemodynamic patterns during conditions of central hypovolemia-as induced by standing up and/or lower body negative pressure (LBNP)-in humans are important. LBNP has been widely used to understand the integrated physiological responses, which occur during sit to stand tests (orthostasis), different levels of hemorrhages (different levels of LBNP simulate different amount of blood loss) as well as a countermeasure against the cephalad fluid shifts which are seen during spaceflight. Additionally, LBNP application (used singly or together with head up tilt, HUT) is useful in understanding the physiology of orthostatic intolerance. The role seasonal variations in hormonal, autonomic and circulatory state play in LBNP-induced hemodynamic responses and LBNP tolerance as well as sex-based differences during central hypovolemia and the adaptations to exercise training have been investigated using LBNP. The data generated from LBNP studies have been useful in developing better models for prediction of orthostatic tolerance and/or for developing countermeasures. This review examines how LBNP application influences coagulatory parameters and outlines the effects of temperature changes on LBNP responses. Finally, the review outlines how LBNP can be used as innovative teaching tool and for developing research capacities and interests of medical students and students from other disciplines such as mathematics and computational biology.
中心性低血容量伴随着血流动力学代偿反应。了解人体在中心性低血容量状态下(如由站立和/或下体负压(LBNP)引起)改变血流动力学模式时的复杂全身代偿反应非常重要。LBNP 已被广泛用于了解在坐立测试(直立)期间发生的综合生理反应、不同程度的出血(不同程度的 LBNP 模拟不同量的失血)以及对抗在太空飞行期间发生的颅内液体转移的对策。此外,LBNP 应用(单独使用或与头高位倾斜(HUT)一起使用)有助于理解直立不耐受的生理学。使用 LBNP 研究了季节性变化的激素、自主和循环状态在 LBNP 诱导的血流动力学反应和 LBNP 耐受性以及在中心性低血容量期间的性别差异以及对运动训练的适应中的作用。从 LBNP 研究中获得的数据有助于开发更好的预测直立耐受力的模型和/或开发对策。本综述考察了 LBNP 应用如何影响凝血参数,并概述了温度变化对 LBNP 反应的影响。最后,综述概述了 LBNP 如何可用作创新教学工具,并培养医学生和来自数学和计算生物学等其他学科的学生的研究能力和兴趣。