Imaizumi T, Harasawa Y, Ando S, Sugimachi M, Takeshita A
Research Institute of Angiocardiology and Cardiovascular Clinic, Faculty of Medicine, Kyushu University, Fukuoka, Japan.
Am J Physiol. 1994 Jan;266(1 Pt 2):H36-42. doi: 10.1152/ajpheart.1994.266.1.H36.
In vagotomized and anesthetized rabbits, aortic pressure (AP), aortic depressor nerve activity (ANA), and renal sympathetic nerve activity (RNA) were simultaneously measured while perturbing AP randomly. To quantitatively characterize the role of the arterial baroreflex system in generating RNA, we determined the transfer function (TF) of the central baroreflex arc from ANA to RNA in the frequency domain (0.02-5 Hz). The magnitude of squared coherence was > 0.5, the phase was close to -180 degrees, and the gain of TF was flat over 0.02-0.3 Hz, indicating that changes in RNA were linearly and instantaneously but inversely related to changes in ANA over this frequency range. Above 0.3 Hz, the coherence was low, suggesting that RNA unrelated to ANA existed in the frequency range. In animals without AP perturbations, power spectrum of RNA resided over 0.2-5 Hz with a broad peak at 1 Hz, which may represent central activity. Our results suggest that over 0.02-0.3 Hz the relationship between arterial baroreceptor afferent nerve activity and RNA is linear and instantaneous but above 0.3 Hz it is not linear possibly due to an interaction between central activity and arterial baroreflex.
在迷走神经切断并麻醉的家兔中,随机扰动主动脉血压(AP)的同时,同步测量主动脉血压、主动脉减压神经活动(ANA)和肾交感神经活动(RNA)。为了定量表征动脉压力反射系统在产生RNA中的作用,我们在频域(0.02 - 5 Hz)中确定了从ANA到RNA的中枢压力反射弧的传递函数(TF)。相干平方的幅度> 0.5,相位接近 -180度,并且TF的增益在0.02 - 0.3 Hz范围内平坦,表明在该频率范围内RNA的变化与ANA的变化呈线性、即时但反向相关。高于0.3 Hz时,相干性较低,表明在该频率范围内存在与ANA无关的RNA。在没有AP扰动的动物中,RNA的功率谱位于0.2 - 5 Hz范围内,在1 Hz处有一个宽峰,这可能代表中枢活动。我们的结果表明,在0.02 - 0.3 Hz范围内,动脉压力感受器传入神经活动与RNA之间的关系是线性且即时的,但在0.3 Hz以上则不是线性的,这可能是由于中枢活动与动脉压力反射之间的相互作用所致。