The sympathetic nervous system in human hypertension.

G Mancia, G Grassi, G Parati, A Zanchetti
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Abstract

While animal models of hypertension have clearly shown an increase in sympathetic activity, a similar demonstration in humans has been more difficult to obtain for methodological reasons. There is now clear evidence, however, of an increase sympathetic activity in essential hypertension by the finding of either an increase in plasma norepinephrine and an increase in muscle sympathetic nerve traffic. Among the mechanisms responsible for this sympathetic activation the arterial baroreflex may play a role although probably a non specific and late one. Central neural influences associated with an excessive hypothalamic response to stress may also be involved, but conclusive evidence is still lacking due to the difficulty of assessing cardiovascular reactivity to stress in man. A deeper insight into the features of human sympathetic cardiovascular control may be offered now by new techniques which allow neural cardiovascular regulation to be assessed in daily life through computer analysis of noninvasive ambulatory beat-by-beat blood pressure and heart rate recordings.

人类高血压的交感神经系统。
虽然高血压动物模型清楚地显示交感神经活动增加,但由于方法学上的原因,在人类身上获得类似的证明更加困难。然而,现在有明确的证据表明,血浆去甲肾上腺素和肌肉交感神经交通量的增加可以增加原发性高血压患者的交感神经活动。在负责这种交感神经激活的机制中,动脉压力反射可能起作用,尽管可能是非特异性的和晚期的。与下丘脑对压力的过度反应相关的中枢神经影响也可能参与其中,但由于难以评估人类心血管对压力的反应,仍然缺乏确凿的证据。现在,通过计算机分析无创动态血压和心率记录,可以在日常生活中评估神经心血管调节,新技术可以更深入地了解人类交感心血管控制的特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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