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一种基于分流电阻调节的廉价伺服呼吸器。

An inexpensive servo-respirator based upon regulation of a shunt resistance.

作者信息

Daubenspeck J A, Pichon D, Knuth K V, Bartlett D, St John W M

机构信息

Department of Physiology, Dartmouth Medical School, Hanover, NH 03756.

出版信息

Respir Physiol. 1988 Jul;73(1):87-96. doi: 10.1016/0034-5687(88)90129-6.

Abstract

We have designed and built an inexpensive servo-respirator for use in investigations of respiratory control in small animals. The device uses a butterfly valve to alter the resistance of an outflow shunt from a manifold that connects the animal's tracheal cannula to a pressure source. Tracheal pressure is regulated in response to a command provided by a suitably processed neural signal, often the integrated phrenic neurogram. As the valve opens, tracheal pressure approaches atmospheric; as it closes, tracheal pressure approaches the source pressure. An electronic controller circuit was developed to permit experimental procedures that include withholding volume delivery while maintaining a desired level of positive end-expiratory pressure. The device is able to track the neural command signal satisfactorily, and its performance appears to be limited primarily by the constraints applied by the respiratory system mechanics.

摘要

我们设计并制造了一种价格低廉的伺服呼吸器,用于小动物呼吸控制的研究。该装置使用一个蝶形阀来改变从连接动物气管插管与压力源的歧管流出的分流器的阻力。气管压力根据经过适当处理的神经信号(通常是整合的膈神经电图)提供的指令进行调节。当阀门打开时,气管压力接近大气压;当阀门关闭时,气管压力接近源压力。开发了一种电子控制电路,以允许进行包括在保持所需呼气末正压水平的同时停止容积输送的实验程序。该装置能够令人满意地跟踪神经指令信号,其性能似乎主要受呼吸系统力学施加的限制。

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