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一种用于保护质谱采样管的自动化机制。

An automated mechanism for protection of mass spectrometry sampling tubing.

作者信息

Carlon G C, Miodownik S, Ray C, Kopec I C

机构信息

Department of Anesthesiology, Cornell University Medical College, New York, NY.

出版信息

J Clin Monit. 1988 Oct;4(4):264-6. doi: 10.1007/BF01617324.

Abstract

The usefulness of medical mass spectrometers in intensive care units can be limited by too frequent obstruction of the tubing that transports gases from the patients to the analyzing unit. To overcome this problem, we developed an automated system consisting of an infrared light sensor and a three-way valve. One port of the three-way valve connects to 2.4-m disposable tubing that collects gases from the patient's airway. The second port is connected to a mass spectrometer analyzing unit through 30-m permanently installed tubing. The third port is connected to a pressurized oxygen source. An infrared light sensor is placed on the shorter tubing, between the patient and the three-way valve. When increased optical density is detected, due to entrainment of respiratory secretions, the three-way valve is activated. Gas flow is closed between the patient and the mass spectrometer and opened between the pressurized oxygen source and patient tubing to flush its contents. During the six years that the protection system has been in use, the frequency with which the disposable gas collection tubing is changed has been halved. Furthermore, periodic tests of delay and response times, performed at each bedside station, indicate that permanent connection tubing only needed cleaning at 2- to 3-year intervals. The system has decreased the cost of operating our mass spectrometers while also reducing periods of unavailability due to equipment failure.

摘要

医疗质谱仪在重症监护病房的使用可能会受到限制,原因是从患者传输气体至分析单元的管道频繁堵塞。为克服这一问题,我们开发了一种由红外光传感器和三通阀组成的自动化系统。三通阀的一个端口连接到2.4米长的一次性管道,该管道从患者气道收集气体。第二个端口通过30米长的永久安装管道连接到质谱仪分析单元。第三个端口连接到加压氧气源。一个红外光传感器放置在较短的管道上,位于患者和三通阀之间。当检测到由于呼吸道分泌物夹带导致光密度增加时,三通阀被激活。患者与质谱仪之间的气流关闭,加压氧气源与患者管道之间的气流打开,以冲洗管道内容物。在该保护系统投入使用的六年中,一次性气体收集管道的更换频率减半。此外,在每个床边工作站进行的延迟和响应时间的定期测试表明,永久连接管道仅需每2至3年清洁一次。该系统降低了我们操作质谱仪的成本,同时也减少了因设备故障导致的不可用时间。

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