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Vapor Pressures of Anesthetic Agents at Temperatures below Zero Degrees Celsius and a Novel Anesthetic Delivery Device

机译:温度低于零摄氏度时麻醉剂的蒸气压和新型麻醉剂输送装置

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摘要

At room temperature, the vapor pressures of desflurane, isoflurane, and sevoflurane are well above the clinically useful range. We hypothesized that therapeutic concentrations of these agents could be achieved at temperatures below zero, but the vapor pressure-temperature relationship is unknown below zero. Secondarily, we hypothesized that this relationship could be exploited to deliver therapeutic-range concentrations of anesthetic vapor. We therefore set out to determine the low temperature-vapor pressure relationships of each anesthetic agent thereby identifying the saturated vapor concentration of each agent at any temperature below zero. To test our hypothesis, we measured the saturated vapor concentration at 1 atmosphere of pressure for temperatures between -60°C and 0°C thus developing an empiric relationship for each agent. There was consistency in repeated experiments for all three agents. To test the empiric data we constructed a digitally-controlled thermoelectric anesthetic vaporizer, characterized the device, and used it to deliver anesthetic vapor to laboratory mice. We report, for the first time, the temperature-vapor pressure relationship at temperatures below 0°C for desflurane, isoflurane, and sevoflurane as well as the TMAC of these agents: the temperature at which the vapor pressure is equal to the minimum alveolar concentration. We describe the construction and limited validation of an anesthetic vaporizer prototype based on this principle. We conclude that clinically relevant concentrations of volatile anesthetics may be achieved at low temperatures.
机译:在室温下,地氟醚,异氟烷和七氟醚的蒸气压远高于临床使用范围。我们假设这些药物的治疗浓度可以在零以下的温度下实现,但是蒸气压与温度的关系在零以下是未知的。其次,我们假设可以利用这种关系来输送麻醉蒸汽的治疗范围浓度。因此,我们着手确定每种麻醉剂的低温-蒸气压关系,从而确定在低于零的任何温度下每种试剂的饱和蒸汽浓度。为了检验我们的假设,我们在-60°C到0°C的温度下在1个大气压下测量了饱和蒸气浓度,从而建立了每种试剂的经验关系。三种试剂的重复实验均具有一致性。为了测试经验数据,我们构造了数字控制的热电麻醉蒸发器,对设备进行了表征,然后将其用于将麻醉蒸汽输送到实验室小鼠。我们首次报告了地氟醚,异氟烷和七氟醚在低于0°C的温度下的温度-蒸汽压力关系以及这些药物的TMAC:蒸汽压力等于最低肺泡浓度的温度。我们描述了基于此原理的麻醉蒸发器原型的构造和有限验证。我们得出结论,在低温下可以达到临床上相关浓度的挥发性麻醉剂。

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