Harada S, Ando S, Imaizumi T, Hirooka Y, Sunagawa K, Takeshita A
Research Institute of Angiocardiology, Faculty of Medicine, Kyushu University, Fukuoka, Japan.
Am J Physiol. 1991 Aug;261(2 Pt 2):R296-300. doi: 10.1152/ajpregu.1991.261.2.R296.
To investigate wideband dynamic properties of arterial baroreflex control of cardiac and renal sympathetic nerve activities, we assessed the transfer function using a "white-noise technique." In pentobarbital sodium-anesthetized cats, we simultaneously recorded, as the output, cardiac sympathetic nerve activity (CSNA) and renal sympathetic nerve activity (RSNA), while aortic pressure (AP) was randomly perturbed to impose input pressure changes with broad frequencies. We calculated the transfer function from AP to CSNA or to RSNA over the frequency range of 0.01-5 Hz through the spectral analysis of the input and output. We found that the gain, phase shift, and coherence of those transfer functions were statistically indistinguishable. The gain was rather flat below 0.05 Hz, steadily increased above 0.05 Hz, and plateaued above 0.3 Hz. The phase shift was out of phase up to 0.05 Hz and led by approximately 4 degrees above 0.05 Hz. The coherence was high (above 0.7) below 0.3 Hz and became lower above 0.3 Hz. These results suggest that arterial baroreflex control is uniform and similar between the two activities in the frequency range of 0.01-0.7 Hz.
为了研究动脉压力反射对心脏和肾交感神经活动控制的宽带动态特性,我们使用“白噪声技术”评估传递函数。在戊巴比妥钠麻醉的猫中,我们同时记录心脏交感神经活动(CSNA)和肾交感神经活动(RSNA)作为输出,同时随机扰动主动脉压力(AP)以施加具有宽频率范围的输入压力变化。我们通过对输入和输出进行频谱分析,计算了0.01 - 5 Hz频率范围内从AP到CSNA或到RSNA的传递函数。我们发现这些传递函数的增益、相移和相干性在统计学上无显著差异。增益在0.05 Hz以下相当平坦,在0.05 Hz以上稳步增加,并在0.3 Hz以上趋于平稳。相移在0.05 Hz以下异相,在0.05 Hz以上超前约4度。相干性在0.3 Hz以下较高(高于0.7),在0.3 Hz以上降低。这些结果表明,在0.01 - 0.7 Hz频率范围内,动脉压力反射控制在这两种活动之间是统一且相似的。