Suppr超能文献

[七氟烷低流量和微流量麻醉]

[Low-flow and minimal-flow anesthesia with sevoflurane].

作者信息

Baum J, Stanke H G

机构信息

Abteilung für Anästhesie und Intensivmdizin, Krankenhaus St. Elisabeth-Stift Damme.

出版信息

Anaesthesist. 1998 Nov;47 Suppl 1:S70-6. doi: 10.1007/pl00002503.

Abstract

Due to its low solubility and the high maximum concentration delivered by the vaporizer sevoflurane is especially suitable for the performance of low flow anaesthetic techniques. High flow phases for wash-in or wash-out of anaesthetic gases can be kept short, the difference between the volatile's concentration in the fresh gas and within the breathing system is comparatively small, and the time constants are short even during low flow anaesthesia. The monitoring, required to sufficiently ensure the safety of the patients, corresponds to the current obliging technical safety standards. As compound A may accumulate in the breathing system, sevoflurane should not be administered with fresh gas flows lower than 1.0 l/min, until the scientific discussion on nephrotoxicity of this substance in humans is solved. Low flow anaesthesia guarantees a sufficient and continuous wash-out of trace gases. Thoroughly the use of sevoflurane with dry soda lime must be avoided, as this volatile in an extreme exothermic reaction is absorbed nearly totally and degraded to a considerable degree by dry carbon dioxide absorbent. The gaseous degradation products are pungent and possibly may be harmful to the patients. Only by low flow anaesthesia the use of sevoflurane will gain an economically and ecologically acceptable range of efficiency.

摘要

由于其低溶解度以及蒸发器输送的高最大浓度,七氟烷特别适合用于低流量麻醉技术。麻醉气体冲洗进或冲洗出的高流量阶段可以保持较短,新鲜气体中挥发性物质的浓度与呼吸系统内的浓度差异相对较小,即使在低流量麻醉期间时间常数也较短。充分确保患者安全所需的监测符合当前强制的技术安全标准。由于化合物A可能在呼吸系统中积聚,在关于该物质对人类肾毒性的科学讨论解决之前,七氟烷不应在新鲜气体流量低于1.0升/分钟的情况下使用。低流量麻醉可确保对微量气体进行充分且持续的冲洗。必须彻底避免将七氟烷与干石灰苏打一起使用,因为这种挥发性物质在极端放热反应中几乎被完全吸收,并被干二氧化碳吸收剂大量降解。气态降解产物有刺激性,可能对患者有害。只有通过低流量麻醉,七氟烷的使用才能在经济和生态上获得可接受的效率范围。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验