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首页> 外文期刊>Canadian Journal of Physiology and Pharmacology >The effect of total spinal anesthesia on cardiac function in a large animal model of brain death
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The effect of total spinal anesthesia on cardiac function in a large animal model of brain death

机译:在大型脑死亡动物模型中,全麻麻醉对心脏功能的影响

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摘要

Brain death (BD) causes cardiac dysfunction in organ donors, attributable to the catecholamine storm that occurs with raised intracerebral pressure (ICP). However the direct contribution of the spinal sympathetics has not been well described. We examined the effect of total spinal anesthesia (TSA) on cardiac function in a large animal model of BD. Eighteen pigs were allocated to 3 experimental groups: Group 1, the saline-treated control group; Group 2, TSA administered prior to BD; and Group 3, TSA administered 30 min after BD. Inflation of an intracerebral balloon-tipped catheter was used to induce BD. Ventricular function was assessed using a pressure-volume loop catheter and magnetic resonance imaging. Serum catecholamine levels were assessed with high performance liquid chromatography. Inflation of the intracerebral balloon-tipped catheter was associated with a dramatic rise in heart rate and blood pressure, along with increased concentrations of serum epinephrine and norepinephrine. This phenomenon was not observed in Group 2. In Group 1, there was a significant decline in contractility, whereas groups 2 and 3 saw no change. Group 2 had greater contractile reserve than groups 1 and 3. Our data demonstrate the central role of spinal sympathetics in the hemodynamic response to raised ICP. Further work is required to determine the utility of TSA in reversing cardiac dysfunction in BD donors.
机译:脑死亡(BD)会导致器官供体心脏功能障碍,这归因于脑内压力(ICP)升高引起的儿茶酚胺风暴。但是,对脊柱交感神经的直接贡献尚未得到很好的描述。我们在BD的大型动物模型中检查了全脊髓麻醉(TSA)对心脏功能的影响。将18头猪分为3个实验组:第1组,盐水处理的对照组;第1组,生理盐水处理的对照组。第2组,TSA在BD之前服用;和第3组,TSA在BD后30分钟给药。使用脑内球囊导管的膨胀来诱发BD。使用压力定量环导管和磁共振成像评估心室功能。用高效液相色谱法评估血清儿茶酚胺水平。脑内气囊球囊导管的膨胀与心率和血压的急剧升高以及血清肾上腺素和去甲肾上腺素的浓度升高有关。在第2组中未观察到这种现象。在第1组中,收缩力显着下降,而第2组和第3组则没有变化。第2组比第1组和第3组具有更大的收缩储备。我们的数据证明了脊柱交感神经在ICP升高的血液动力学反应中的核心作用。需要进一步的工作来确定TSA在逆转BD供体心脏功能障碍中的效用。

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