Inoue K, Miyake S, Kumashiro M, Ogata H, Ueta T, Akatsu T
Department of Ergonomics, University of Occupational and Environmental Health, Kitakyushu, Japan.
Am J Physiol. 1991 Mar;260(3 Pt 2):H842-7. doi: 10.1152/ajpheart.1991.260.3.H842.
A study was performed on seven traumatic neurologically complete quadriplegic (QP) males and seven age-matched healthy males (control) while they were at rest in the supine position in a climatic chamber (temperature 30 degrees C, relative humidity 60%). Arterial blood pressure waveforms were measured by a continuous noninvasive blood pressure-monitoring system based on arterial tonometry. Furthermore, the spontaneous beat-to-beat systolic blood pressure (SBP) variabilities of subjects were investigated by means of autoregressive power spectral analysis. As shown by earlier studies with an invasive (intra-arterial) blood pressure-monitoring system, in the control group there were two major spectral components: a high-frequency (HF) component [center frequency 0.27 +/- 0.02 (SE) Hz eq, power 0.9 +/- 0.2 mmHg2] and a low-frequency (LF) component (0.10 +/- 0.01 Hz eq, 5.2 +/- 1.4 mmHg2). On the contrary, in the QP group only the HF component was observed (0.28 +/- 0.03 Hz eq, 3.2 +/- 1.4 mmHg2). The results suggest that 1) in the QP subject the disappearance of the LF component in the SBP variability (i.e., the Mayer waves in humans) is presumably caused by the interruption of the spinal pathways linking supraspinal cardiovascular centers with the peripheral sympathetic outflow and 2) the cervical spinal sympathetic pathways may be instrumental in the genesis of the Mayer waves in humans.
对7名创伤性神经完全性四肢瘫痪(QP)男性和7名年龄匹配的健康男性(对照组)进行了一项研究,他们在气候舱(温度30摄氏度,相对湿度60%)中仰卧休息时接受研究。通过基于动脉张力测量的连续无创血压监测系统测量动脉血压波形。此外,通过自回归功率谱分析研究受试者的自发逐搏收缩压(SBP)变异性。如早期使用有创(动脉内)血压监测系统的研究所表明的,在对照组中有两个主要频谱成分:一个高频(HF)成分[中心频率0.27±0.02(SE)Hz等效,功率0.9±0.2 mmHg2]和一个低频(LF)成分(0.10±0.01 Hz等效,5.2±1.4 mmHg2)。相反,在QP组中仅观察到HF成分(0.28±0.03 Hz等效,3.2±1.4 mmHg2)。结果表明:1)在QP受试者中,SBP变异性中LF成分(即人类的迈尔氏波)的消失可能是由于连接脊髓上心血管中枢与外周交感神经流出的脊髓通路中断所致;2)颈脊髓交感神经通路可能在人类迈尔氏波的产生中起作用。