Holden D J
Division of Companion Animals, Department of Clinical Veterinary Science, Langford House, Langford, Bristol, UK.
Vet Anaesth Analg. 2000 Jan;27(1):50-53. doi: 10.1046/j.1467-2995.2000.00009.x. Epub 2016 Nov 15.
To compare the fresh gas flow requirements of the 'Maxima' and Jackson-Rees modified Ayre's T-piece (JRMATP) in spontaneously breathing anaesthetized in cats.
Prospective randomized clinical study.
Fifteen adult cats (6 male, 9 female, 3.1 ± 0.4 kg [ x¯ ± SD]).
MATERIALS & METHODS: After pre-anaesthetic medication with acepromazine and pethidine, anaesthesia was induced using thiopentone and the trachea was intubated with a cuffed endotracheal tube. This was attached to either a 'Maxima' or a JRMATP breathing system; allocation was randomized. Anaesthesia was maintained with halothane delivered in a 1 : 1 oxygen : nitrous oxide mixture. Initial total fresh gas flow (FGF) was set at 600 mL kg min After 20 minutes, FGF was reduced in increments of 200 mL min until rebreathing (inspired CO concentration >0.2%) occurred. At this point, FGF was increased to 600 mL kg and the process was repeated with the other breathing system. The respiratory rate and airway pressure at the endotracheal tube connector were monitored throughout anaesthesia.
The mean fresh gas flow that prevented rebreathing with the Maxima system (164 ± 39 mL kg) was significantly less (p < 0.0001) than that required in the modified T-piece (455 ± 0.77 mL kg). Respiratory rates and airway pressures at the endotracheal tube connector were not significantly affected by breathing system employed.
In terms of the gas flow requirements that prevent rebreathing, the 'Maxima' breathing system is more efficient than the modified Ayre's T-piece in spontaneously breathing cats anaesthetised with halothane.
比较“Maxima”系统与改良的杰克逊 - 里斯(Jackson-Rees)艾yre氏T形管(JRMATP)在猫自主呼吸麻醉状态下的新鲜气体流量需求。
前瞻性随机临床研究。
15只成年猫(6只雄性,9只雌性,体重3.1±0.4千克[均值±标准差])。
在使用乙酰丙嗪和哌替啶进行麻醉前用药后,用硫喷妥钠诱导麻醉,并使用带套囊的气管内导管进行气管插管。该导管连接到“Maxima”系统或JRMATP呼吸回路;分配是随机的。用含1:1氧气:一氧化二氮混合物的氟烷维持麻醉。初始总新鲜气体流量(FGF)设定为600毫升/千克/分钟。20分钟后,FGF以200毫升/分钟的增量降低,直至出现重复呼吸(吸入二氧化碳浓度>0.2%)。此时,FGF增加到600毫升/千克,并用另一个呼吸回路重复该过程。在整个麻醉过程中监测气管导管接头处的呼吸频率和气道压力。
防止使用Maxima系统重复呼吸所需的平均新鲜气体流量(164±39毫升/千克)显著低于改良T形管所需的流量(455±0.77毫升/千克)(p<0.0001)。气管导管接头处的呼吸频率和气道压力不受所使用的呼吸回路的显著影响。
就防止重复呼吸的气体流量需求而言,在使用氟烷麻醉的自主呼吸猫中,“Maxima”呼吸回路比改良的艾yre氏T形管更有效。