Departments of Anesthesiology, Mayo Clinic, Rochester, Minn 55904, USA.
Hypertension. 2010 Feb;55(2):264-9. doi: 10.1161/HYPERTENSIONAHA.109.141739. Epub 2009 Dec 21.
Within an individual, diastolic blood pressure (DBP) is negatively related to sympathetic burst incidence, such that lower pressure is associated with high burst incidence. Our goal was to explore the use of a calculation of a DBP "error signal" in the control of muscle sympathetic nerve activity in men and women. Baseline muscle sympathetic nerve activity was measured in healthy young men (n=22) and women (n=28). Women had significantly lower muscle sympathetic nerve activity than men (29+/-3 versus 43+/-2 bursts per 100 heartbeats; P<0.05). For each individual, the DBP at which there is a 50% likelihood of a muscle sympathetic nerve activity burst, the "T50" value, was calculated. Mean DBP was subtracted from the T50 blood pressure as an approximate error signal for burst activation. Error signal was negative in both sexes, indicating that DBP in both sexes was higher than the DBP value associated with a 50% burst likelihood. However, average error signal was significantly larger in women (-4+/-2 mm Hg) than in men (-1+/-0 mm Hg; P<0.05 versus women). We conclude that women operate at a mean DBP greater than their T50 compared with men, and this may be a contributing factor to low basal muscle sympathetic nerve activity in women. The relationship between error signal and burst incidence may provide important insight into the control of muscle sympathetic nerve activity across sexes and in various populations.
在个体中,舒张压(DBP)与交感神经爆发的发生率呈负相关,即血压越低,爆发发生率越高。我们的目标是探索使用 DBP“误差信号”计算来控制男性和女性的肌肉交感神经活动。在健康的年轻男性(n=22)和女性(n=28)中测量了基线肌肉交感神经活动。女性的肌肉交感神经活动明显低于男性(29+/-3 次与 43+/-2 次每 100 次心跳;P<0.05)。对于每个人,计算了肌肉交感神经活动爆发的 50%可能性的 DBP,即“T50”值。将平均 DBP 从 T50 血压中减去作为爆发激活的近似误差信号。在两种性别中,误差信号均为负,表明两种性别中的 DBP 均高于与 50%爆发可能性相关的 DBP 值。然而,女性的平均误差信号(-4+/-2 mmHg)明显大于男性(-1+/-0 mmHg;P<0.05 与女性相比)。我们得出的结论是,与男性相比,女性的平均 DBP 高于其 T50,这可能是女性基础肌肉交感神经活动低的一个促成因素。误差信号与爆发发生率之间的关系可能为跨性别和各种人群中肌肉交感神经活动的控制提供重要的见解。