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A versatile mechanical ventilator (DIGIT) with high flow stability and a programmable inspiratory phase flow pattern

机译:通用机械呼吸机(DIGIT),具有高流量稳定性和可编程的吸气相流模式

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Describes the general characteristics of a newly developed nonconstant-flow generator for automatic ventilation of the lungs. It is known that the application of very high pressure to high internal resistance leads to a very stable flow, in that the flow itself is unaffected by external load (patient) variations. The stability of the flow means that the inspiratory process can be controlled by means of the ventilated volume, thus extending DIGIT utilization to high resistance patients. The modulation of the flow is implemented via a digital electromechanical system, which allows the ventilator functions to be accurately programmed. The desired flow waveform is obtained by means of a series of pneumatic valves, the apertures of which are digitally controlled. The design is innovative in that it allows the flow waveform in each of the ten digitalized time steps into which each inspiratory phase is divided to be both programmed and controlled. Other ventilators commercially available and currently in use do not have this functional capability, as they are all designed to model the integral flow of the inspiratory waveform without being able to modify the subunit time steps of a single inspiratory phase. The authors also discuss the results of fundamental tests concerning the performance characteristics of the ventilator.
机译:描述了新开发的用于肺部自动通气的非恒定流量发生器的一般特性。众所周知,对高内阻施加很高的压力会导致流量非常稳定,因为流量本身不受外部负载(患者)变化的影响。流量的稳定性意味着可以通过通气量来控制吸气过程,从而将DIGIT的应用范围扩大到高抵抗力患者。流量的调节是通过数字机电系统实现的,该系统允许对呼吸机功能进行精确编程。借助于一系列气动阀获得所需的流量波形,这些气动阀的孔径是数字控制的。该设计具有创新性,因为它允许对每个吸气阶段分为十个数字化时间步长中的每个步长中的流量波形进行编程和控制。商业上可买到且当前正在使用的其他呼吸机均不具备此功能,因为它们都被设计为模拟吸气波形的积分流,而无法修改单个吸气阶段的亚单位时间步长。作者还讨论了有关呼吸机性能特征的基本测试结果。

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