Zheng F, Kidd C, Bowser-Riley F
Department of Biomedical Sciences, Marischal College, University of Aberdeen, UK.
Exp Physiol. 1996 May;81(3):409-20. doi: 10.1113/expphysiol.1996.sp003945.
The effects on the baroreceptor reflexes and pulmonary reflexes of moderate immersion hypothermia (core temperature, 30.2 +/- 0.07 degrees C) have been investigated in the decerebrate ferret. Baroreflex sensitivity was estimated from the relationship between change in cardiac interval and change in systolic blood pressure following i.v. bolus injection of phenylephrine. The responses to phenylephrine in ferrets were best fitted by two linear slopes with an initial shallow slope, a, followed by a steeper slope, b. The slope or sensitivity of b was increased significantly by moderate cooling (n = 6 animals, 36 responses, P < 0.05). Pulmonary J-receptor reflex sensitivity was assessed by i.v. injection of phenylbiguanide (PBG), which evokes a dose-dependent bradycardia. The bradycardic response was unaltered by the hypothermia (n = 6 animals, 88 responses). Electrical stimulation of the right peripheral vagal nerve was employed to assess effects on the efferent components of the reflexes. The bradycardia, in response to stimulation, was significantly increased by moderate cooling at all stimulation frequencies (n = 8 animals, 88 responses, P < 0.001). Thus the results suggested that baroreceptor heart rate reflex sensitivity was enhanced by the moderate hypothermia. At least one component of the enhanced baroreflex response may be the result of changes in the efferent pathway of the reflex response. However, the absence of effect of PBG may indicate a differential afferent and efferent organization of pulmonary J-receptors compared with baroreceptors.
在去大脑的雪貂身上研究了中度低温(核心温度为30.2±0.07℃)对压力感受器反射和肺反射的影响。通过静脉推注去氧肾上腺素后,根据心动周期变化与收缩压变化之间的关系来估计压力反射敏感性。雪貂对去氧肾上腺素的反应最适合用两个线性斜率来拟合,初始斜率较浅,为a,随后是较陡的斜率,为b。中度降温使b的斜率或敏感性显著增加(n = 6只动物,36次反应,P < 0.05)。通过静脉注射苯乙双胍(PBG)来评估肺J受体反射敏感性,PBG可引起剂量依赖性心动过缓。低温对心动过缓反应无影响(n = 6只动物,88次反应)。采用电刺激右侧外周迷走神经来评估对反射传出成分的影响。在所有刺激频率下,中度降温均使刺激引起的心动过缓显著增加(n = 8只动物,88次反应,P < 0.001)。因此,结果表明中度低温可增强压力感受器心率反射敏感性。压力反射反应增强的至少一个成分可能是反射反应传出通路变化的结果。然而,PBG无作用可能表明与压力感受器相比,肺J受体的传入和传出组织存在差异。