Sherstov Igor V, Pustovalova Ruta V
Institute of Laser Physics, Siberian Branch of the Russian Academy of Sciences (ILP SB RAS), 15B, Ac. Lavrentieva ave, Novosibirsk, Russia, 630090.
Novosibirsk State University, 1, Pirogova str, Novosibirsk, Russia, 630090.
Lasers Med Sci. 2021 Feb;36(1):33-41. doi: 10.1007/s10103-020-03000-7. Epub 2020 Apr 14.
The present work is devoted to the development of a new system for collecting and drying patient exhalation samples for a laser photo-acoustic gas analyzer for express analysis of exhaled air, as well as the possibility of ozone sterilization of the gas tract after use. It is proposed to collect the patient's exhalation in a disposable sterile plastic bag, place it in a low-temperature freezer chamber to freeze the water vapor, and then transfer part of the dried exhaled sample to the gas analyzer using a disposable syringe. It is proposed to use ozone purge for 10-15 min to sterilize the gas path. Experimentally, it is shown that the water vapor content in the exhalation samples decreased by ~ 20 times when the packet with samples was kept at a temperature of - 18 °C during 10 min. Cooling the exhalation sample in the packet to - 45 °С and lower will allow reducing the water vapor content at least 200 times from the initial level. A new universal system for collecting and drying of patient exhalation samples for a medical laser photo-acoustic gas analyzer has been developed and tested. A gas path for a medical laser gas analyzer has been designed, which allows sterilization of the internal gas path surfaces using ozone purging.
目前的工作致力于开发一种新系统,用于为激光光声气体分析仪收集和干燥患者呼出气体样本,以便对呼出气体进行快速分析,同时研究使用后对气道进行臭氧消毒的可能性。建议将患者呼出气体收集到一次性无菌塑料袋中,放入低温冷冻室冷冻水蒸气,然后使用一次性注射器将部分干燥后的呼出气体样本转移到气体分析仪中。建议使用臭氧吹扫10 - 15分钟对气体路径进行消毒。实验表明,当装有样本的袋子在-18°C温度下保存10分钟时,呼出气体样本中的水蒸气含量降低了约20倍。将袋子中的呼出气体样本冷却至-45°C及更低温度,可使水蒸气含量从初始水平降低至少200倍。已开发并测试了一种用于医疗激光光声气体分析仪的新型通用患者呼出气体样本收集和干燥系统。设计了一种用于医疗激光气体分析仪的气体路径,该路径允许通过臭氧吹扫对内部气体路径表面进行消毒。