Oh T E, Lin E S, Bhatt S
Department of Anaesthesia and Intensive Care, Chinese University of Hong Kong, Prince of Wales Hospital, Shatin, N.T.
Br J Anaesth. 1991 Feb;66(2):258-63. doi: 10.1093/bja/66.2.258.
The pressures and resistances of a bubble humidifier (Bennett Cascade) and a blow-by humidifier (Fisher and Paykel) were measured and computed at gas flow rates from 4.5 to 100 litre min-1. Pressures increased with flows, with the Bennett pressures being greater at all flows. The resistance of the Fisher-Paykel increased with flows, but remained less than that of the Bennett. An inverse resistance-flow relationship was seen with the Bennett up to a flow of 35 litre min-1. The work of breathing through a Servo 900C ventilator-humidifier circuit was computed, using a lung model. Work was performed by the Servo 900C on the lung, especially with the Fisher-Paykel circuit. The Bennett circuit required considerably greater (3.7 times more) inspiratory work. Thus the Bennett Cascade humidifier may present an unacceptable inspiratory load during spontaneous breathing.
在气体流速为4.5至100升/分钟的情况下,对气泡加湿器(贝内特级联型)和旁通加湿器(费雪派克型)的压力和阻力进行了测量和计算。压力随流速增加,在所有流速下贝内特加湿器的压力都更高。费雪派克加湿器的阻力随流速增加,但仍低于贝内特加湿器。在流速达到35升/分钟之前,贝内特加湿器呈现出阻力与流速的反比关系。使用肺部模型计算了通过Servo 900C呼吸机 - 加湿器回路的呼吸功。Servo 900C对肺部做功,特别是在使用费雪派克回路时。贝内特回路需要的吸气功要大得多(多出3.7倍)。因此,在自主呼吸过程中,贝内特级联型加湿器可能会带来不可接受的吸气负荷。