Department of Cardiovascular Dynamics, National Cerebral and Cardiovascular Center Research Institute, Osaka, Japan.
Am J Physiol Regul Integr Comp Physiol. 2011 Jan;300(1):R155-65. doi: 10.1152/ajpregu.00540.2010. Epub 2010 Nov 3.
Although baroreceptors are known to reset to operate in a higher pressure range in spontaneously hypertensive rats (SHR), the total profile of dynamic arterial pressure (AP) regulation remains to be clarified. We estimated open-loop transfer functions of the carotid sinus baroreflex in SHR and Wistar Kyoto (WKY) rats. Mean input pressures were set at 120 (WKY₁₂₀ and SHR₁₂₀) and 160 mmHg (SHR₁₆₀). The neural arc transfer function from carotid sinus pressure to efferent splanchnic sympathetic nerve activity (SNA) revealed derivative characteristics in both WKY and SHR. The slope of dynamic gain (in decibels per decade) between 0.1 and 1 Hz was not different between WKY₁₂₀ (10.1 ± 1.0) and SHR₁₂₀ (10.4 ± 1.1) but was significantly greater in SHR₁₆₀ (13.2 ± 0.8, P < 0.05 with Bonferroni correction) than in SHR₁₂₀. The peripheral arc transfer function from SNA to AP showed low-pass characteristics. The slope of dynamic gain (in decibels per decade) did not differ between WKY₁₂₀ (-34.0 ± 1.2) and SHR₁₂₀ (-31.4 ± 1.0) or between SHR₁₂₀ and SHR₁₆₀ (-32.8 ± 1.3). The total baroreflex showed low-pass characteristics and the dynamic gain at 0.01 Hz did not differ between WKY₁₂₀ (0.91 ± 0.08) and SHR₁₂₀ (0.84 ± 0.13) or between SHR₁₂₀ and SHR₁₆₀ (0.83 ± 0.11). In both WKY and SHR, the declining slope of dynamic gain was significantly gentler for the total baroreflex than for the peripheral arc, suggesting improved dynamic AP response in the total baroreflex. In conclusion, the dynamic characteristics of AP regulation by the carotid sinus baroreflex were well preserved in SHR despite significantly higher mean AP.
虽然已知在自发性高血压大鼠(SHR)中,压力感受器会重置以在较高的压力范围内运行,但动态动脉压(AP)调节的总体概况仍有待阐明。我们估计了颈动脉窦压力感受器在 SHR 和 Wistar Kyoto(WKY)大鼠中的开环传递函数。平均输入压力设定为 120mmHg(WKY₁₂₀和 SHR₁₂₀)和 160mmHg(SHR₁₆₀)。颈动脉窦压力到传出内脏交感神经活动(SNA)的神经弧传递函数在 WKY 和 SHR 中均表现出导数特征。0.1 至 1Hz 之间动态增益的斜率(以分贝每十倍为单位)在 WKY₁₂₀(10.1±1.0)和 SHR₁₂₀(10.4±1.1)之间没有差异,但在 SHR₁₆₀(13.2±0.8,P<0.05,Bonferroni 校正)中显著大于 SHR₁₂₀。从 SNA 到 AP 的外周弧传递函数表现出低通特性。动态增益的斜率(以分贝每十倍为单位)在 WKY₁₂₀(-34.0±1.2)和 SHR₁₂₀(-31.4±1.0)或 SHR₁₂₀和 SHR₁₆₀(-32.8±1.3)之间没有差异。总压力反射呈现低通特性,0.01Hz 时的动态增益在 WKY₁₂₀(0.91±0.08)和 SHR₁₂₀(0.84±0.13)或 SHR₁₂₀和 SHR₁₆₀(0.83±0.11)之间没有差异。在 WKY 和 SHR 中,总压力反射的动态增益斜率下降明显比外周弧平缓,表明总压力反射的动态 AP 反应得到改善。总之,尽管平均 AP 显著升高,但 SHR 中颈动脉窦压力感受器调节 AP 的动态特征仍得到很好的保留。