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Equipment for airway warming in the treatment of accidental hypothermia

机译:气道增温治疗意外体温过低的设备

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Airway warming as a method of treating accidental hypothermia produces its main benefit through reducing or preventing the respiratory loss of heat and moisture, though, with some devices, there may be a small additional heat input. Warm water vapour can be added to the inspired gas. The power to heat the water can be provided by electricity or by gas. An alternative method utilizes a chemical reaction to produce heat and moisture, which is transported by the inspired gases passing through the reaction bed. The most widely used reaction is that between carbon dioxide and soda lime, and practical designs use either an open (non-return) or closed breathing system.nnHeat and moisture exchangers (HMEs) vary in efficiency, but all are less efficient than the other methods, since they merely reduce the individual's respiratory heat and moisture loss. HMEs probably have a role as first aid equipment to be carried by individuals or groups going into the wild. The more efficient equipment, which provides positive heat and moisture input, is more suitable for rescue services. All the currently available models have practical advantages and disadvantages, and each rescue service will have to decide which design best suits its particular needs.
机译:气道升温是一种治疗意外体温过低的方法,可通过减少或防止呼吸道的热量和水分流失而产生其主要优势,尽管对于某些设备,可能会有少量额外的热量输入。可以将温暖的水蒸气添加到吸入的气体中。加热水的动力可以通过电或天然气来提供。另一种方法是利用化学反应产生热量和湿气,这些热量和湿气由通过反应床的吸入气体输送。使用最广泛的反应是二氧化碳和苏打石灰之间的反应,实际设计中使用开放式(止回)或封闭式呼吸系统。nn换热器和湿气交换器(HME)的效率各不相同,但效率均低于其他方法,因为它们仅减少个人的呼吸热量和水分流失。 HME可能充当急救设备,由野外的个人或团体携带。提供正热量和水分输入的效率更高的设备更适合救援服务。当前所有可用的模型都有实际的优缺点,每个救援部门都必须决定哪种设计最适合其特定需求。

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