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瞬时自主调节功能受损与老年人和高血压患者站立后立即出现的血压下降有关。

Impairment of instantaneous autonomic regulation relates to blood pressure fall immediately after standing in the elderly and hypertensives.

作者信息

Moriguchi Koichi, Rakugi Hiromi, Nagata Shinya, Nagai Ryuji, Moriguchi Atsushi, Okamura Atsunori, Ohishi Mitsuru, Higaki Jitsuo, Ogihara Toshio

机构信息

Department of Geriatric Medicine, Osaka University Graduate School of Medicine, Suita, Japan.

出版信息

Hypertens Res. 2006 Aug;29(8):557-66. doi: 10.1291/hypres.29.557.

Abstract

The relation between changes in blood pressure and changes in autonomic activity over a very short period of time has not been reported thus far. To examine this relation, we here introduced a new method of power spectrum analysis with wavelet transformation, which has very fine time resolution and is able to assess changes in autonomic activity quantitatively even during movement. Our subjects were 15 hypertensive and 17 normotensive subjects. A head-up tilt test was performed in all subjects, and during the test, electrocardiogram and blood pressure were recorded continuously. The power spectrums for both parameters were calculated simultaneously every 5 s using wavelet transformation. The high frequency of the RR interval of the electrocardiogram (RR-HF) and low frequency of systolic blood pressure (SBP-LF) were defined and calculated as markers of parasympathetic and alpha-1 receptor blocker, bunazosin-sensitive sympathetic activity, respectively. Focusing on the changes for 2 min immediately after head-up tilting, it was found that the changes in SBP-LF and RR-HF were significantly delayed, by at least 40 s, in hypertensives compared with normotensives and also in elderly compared with non-elderly subjects. Multiple regression analysis demonstrated that the instantaneous change in RR-HF was the most important confounding factor for a fall in blood pressure immediately after head-up tilting. In conclusion, real-time changes in autonomic activity calculated by wavelet transformation may provide sensitive and useful information about acute changes in cardiovascular regulation, such as delayed reaction of the autonomic regulation after head-up tilting, that may be major causes of the blood pressure fall in hypertensive and elderly subjects.

摘要

迄今为止,尚未有关于极短时间内血压变化与自主神经活动变化之间关系的报道。为了研究这种关系,我们在此引入了一种新的小波变换功率谱分析方法,该方法具有非常高的时间分辨率,甚至在运动过程中也能够定量评估自主神经活动的变化。我们的研究对象包括15名高血压患者和17名血压正常者。对所有受试者进行了头高位倾斜试验,试验过程中连续记录心电图和血压。使用小波变换每5秒同时计算这两个参数的功率谱。心电图RR间期的高频成分(RR-HF)和收缩压的低频成分(SBP-LF)分别被定义和计算为副交感神经和α-1受体阻滞剂、布那唑嗪敏感交感神经活动的标志物。聚焦于头高位倾斜后立即出现的2分钟内的变化,发现与血压正常者相比,高血压患者以及与非老年受试者相比,老年受试者的SBP-LF和RR-HF变化显著延迟,至少延迟40秒。多元回归分析表明,RR-HF的瞬时变化是头高位倾斜后立即出现血压下降的最重要混杂因素。总之,通过小波变换计算的自主神经活动实时变化可能为心血管调节的急性变化提供敏感且有用的信息,例如头高位倾斜后自主调节的延迟反应,这可能是高血压患者和老年受试者血压下降的主要原因。

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