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首页> 外文期刊>Veterinary Anaesthesia and Analgesia >Comparison of the Bain system and Uniflow universal anaesthetic breathing systems in spontaneously breathing young pigs
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Comparison of the Bain system and Uniflow universal anaesthetic breathing systems in spontaneously breathing young pigs

机译:自发呼吸幼猪的Bain系统和Uniflow通用麻醉呼吸系统的比较

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摘要

OBJECTIVE: To compare minimum fresh gas flow (V(min)) requirements and respiratory resistance in the Uniflow and Bain anaesthetic breathing systems used in the Mapleson D mode. Animals Seven pigs, aged 8-12 weeks, anaesthetized for ophthalmic surgery. MATERIALS AND METHODS: Anaesthesia was maintained with halothane delivered in oxygen using a (Mapleson D) Bain breathing system. The V(min) that prevented re-breathing was found, and peak inspiratory (PIP) and peak expiratory (PEP) pressures measured. The fresh gas flow (V(f)) was then increased to V(min) + 50%, then V(min) + 100%, and respiratory pressures re-measured. A heat and moisture exchanger (HME) was inserted at the endotracheal tube and the procedure repeated. The breathing system was then exchanged for a Uniflow and the protocol repeated. After final disconnection from the breathing system, the animals' peak inspiratory and expiratory flows, tidal, and minute volumes (Vm) were measured over five respiratory cycles. RESULTS: The V(min) (L minute(-1); mL kg(-1) minute(-1)) required to prevent rebreathing in the Uniflow system [8.1(mean) +/-1.7 (SD); 332 +/- 94] was significantly greater than the Bain system (6.5 +/- 1.1; 256 +/- 64). At V(min), PEP with the Uniflow (3.5 +/- 0.1 cm H(2)O) was significantly higher than the Bain system (2 +/- 0.7 cm H(2)O), but PIP values did not differ (Uniflow -0.6 +/- 2.1 cm H(2)O; Bain system -0.2 +/- 0.6 cm H(2)O). With both systems, PEP increased significantly (p < 0.001) with each increase in V(f): Uniflow system 4.2 +/- 0.4 (V(min) + 50%) and 5.5 +/- 0.5 cm H(2)O (V(min) + 100%); Bain system 2.8 +/- 0.7 (V(min) + 50%) and 3.5 +/- 0.7 cm H(2)O (V(min) + 100%). Insertion of the HME did not alter pressures. The mean tidal volume was 6.4 +/- 1.6 mL kg(-1); mean Vm was 184.9 +/- 69.8 mL kg(-1) and mean respiratory rate was 28 +/- 5 breaths minute(-1). In one pig breathing with the Uniflow system PEP rose sharply; respiratory and heart rates increased, and ventricular dysrhythmias occurred. When the system was changed and V(f) reduced, physiological variables became normal. CONCLUSION: The study discredited the hypothesis that the two breathing systems behave similarly. Values for V(min) and PEP were higher with the Uniflow system. Increasing V(f) increased PEP with both systems. Insertion of an HME did not affect respiratory pressures. CLINICAL RELEVANCE: The Uniflow used in Mapleson D mode is not suitable for anaesthesia in young spontaneously breathing pigs.
机译:目的:比较在Mapleson D模式下使用的Uniflow和Bain麻醉呼吸系统中的最低新鲜气体流量(V(min))要求和呼吸阻力。动物将7头8-12周龄的猪麻醉,进行眼科手术。材料与方法:使用(Mapleson D)贝恩呼吸系统在氧气中注入氟烷维持麻醉。发现阻止再次呼吸的V(min),并测量吸气峰值(PIP)和呼气峰值(PEP)。然后将新鲜气体流量(V(f))增加到V(min)+ 50%,然后增加V(min)+ 100%,并重新测量呼吸压力。将热湿交换器(HME)插入气管插管,并重复该过程。然后将呼吸系统换成Uniflow,并重复操作规程。与呼吸系统最终断开连接后,在五个呼吸周期中测量了动物的最大吸气和呼气流量,潮气和分钟体积(Vm)。结果:防止Uniflow系统中重新呼吸所需的V(min)(L分钟(-1); mL kg(-1)分钟(-1))[8.1(平均)+/- 1.7(SD); 332 +/- 94]明显大于贝恩系统(6.5 +/- 1.1; 256 +/- 64)。在V(min)时,具有单向流动(3.5 +/- 0.1 cm H(2)O)的PEP显着高于贝恩系统(2 +/- 0.7 cm H(2)O),但PIP值没有差异(Uniflow -0.6 +/- 2.1 cm H(2)O; Bain系统-0.2 +/- 0.6 cm H(2)O)。两种系统的PEP随V(f)的每增加而显着增加(p <0.001):Uniflow系统4.2 +/- 0.4(V(min)+ 50%)和5.5 +/- 0.5 cm H(2)O( V(最小)+ 100%);贝恩系统2.8 +/- 0.7(V(min)+ 50%)和3.5 +/- 0.7 cm H(2)O(V(min)+ 100%)。插入HME不会改变压力。平均潮气量为6.4 +/- 1.6 mL kg(-1);平均Vm为184.9 +/- 69.8 mL kg(-1),平均呼吸频率为28 +/- 5呼吸分钟(-1)。用Uniflow系统呼吸的一只猪的PEP急剧上升;呼吸和心率增加,并发生室性心律不齐。当系统改变并且V(f)降低时,生理变量变得正常。结论:该研究消除了两个呼吸系统表现相似的假设。在Uniflow系统中,V(min)和PEP的值较高。增大V(f)会增加两个系统的PEP。插入HME不会影响呼吸压力。临床相关性:在Mapleson D模式下使用的Uniflow不适用于年轻的自发呼吸猪的麻醉。

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