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A method for calculating the gas volume proportions and inhalation temperature of inert gas mixtures allowing reaching normothermic or hypothermic target body temperature in the awake rat

机译:一种计算惰性气体混合物的气体体积比例和吸入温度的方法,该方法可使清醒的大鼠达到正常的体温或体温目标温度

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The noble gases xenon (Xe) and helium (He) are known to possess neuroprotective properties. Xe is considered the golden standard neuroprotective gas. However, Xe has a higher molecular weight and lower thermal conductivity and specific heat than those of nitrogen, the main diluent of oxygen (O2) in air, conditions that could impair or at least reduce the intrinsic neuroprotective properties of Xe by increasing the critical care patient's respiratory workload and body temperature. In contrast, He has a lower molecular weight and higher thermal conductivity and specific heat than those of nitrogen, but is unfortunately far less potent than Xe at providing neuroprotection. Therefore, combining Xe with He could allow obtaining, depending on the gas inhalation temperature and composition, gas mixtures with neutral or hypothermic properties, the latter being advantageous in term of neuroprotection. However, calculating the thermal properties of a mixture, whatever the substances – gases, metals, rubbers, etc. – is not trivial. To answer this question, we provide a graphical method to assess the volume proportions of Xe, He and O2 that a gas mixture should contain, and the inhalation temperature to which it should be administered to allow a clinician to maintain the patient at a target body temperature.
机译:已知稀有气体氙(Xe)和氦气(He)具有神经保护特性。 Xe被认为是黄金级的神经保护气体。但是,Xe的分子量更高,热导率和比热低于氮,后者是空气中氧气(O2)的主要稀释剂,其状况可能会通过增加重症监护而损害或至少降低其固有的神经保护特性患者的呼吸负荷和体温。相比之下,He的分子量更低,热导率和比热均高于氮,但不幸的是,在提供神经保护方面,他的功效远低于Xe。因此,将Xe与He结合可以根据气体吸入温度和组成,获得具有中性或低温特性的气体混合物,后者在神经保护方面是有利的。但是,不管气体,金属,橡胶等各种物质如何,计算混合物的热性能并非易事。为了回答这个问题,我们提供了一种图形方法来评估混合气体应包含的Xe,He和O2的体积比例,以及应给予的吸入温度以使临床医生将患者保持在目标身体上温度。

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