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Very Low Frequency Modulation in Renal Autoregulation

机译:肾脏自我调节中的极低频调制

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This study aims to examine the presence of a possible third renal autoregulatory mechanism in the very low frequency (VLF) band (~10 mHz) using a high-resolution time- frequency spectral method. Blood pressure and renal blood flow data were measured from conscious and anesthetized Sprague-Dawley and spontaneously hypertensive rats, at the level of the whole kidney (via ultrasound flow probe) and local cortical tissue of a kidney (via laser Doppler flow probe). In addition, N-nitro-L-arginine (LNAME) was used in order to assess the effect of nitric oxide on the third mechanism. Using a complex demodulation method with high time and frequency resolution, a VLF band was often observed, as well as amplitude modulation at the VLF of the two other autoregulation mechanisms. The presence of amplitude modulation is an indication of a particular form of nonlinear interaction between the autoregulatory mechanisms. Physically, such interactions may arise from the fact that all three mechanisms share a common effector, the afferent arteriole. In addition, the magnitude of amplitude modulation of the VLF on the other autoregulatory mechanisms was enhanced by the addition of LNAME, suggesting an important role of nitric oxide in the autoregulatory process
机译:这项研究的目的是使用高分辨率时频谱方法研究在非常低频(VLF)频段(〜10 mHz)中可能存在的第三种肾脏自我调节机制。从清醒和麻醉的Sprague-Dawley和自发性高血压大鼠的血压和肾脏血流数据在整个肾脏(通过超声流量探针)和肾脏局部皮质组织(通过激光多普勒血流探针)的水平上进行测量。此外,使用N-硝基-L-精氨酸(LNAME)来评估一氧化氮对第三种机制的影响。使用具有高时间和频率分辨率的复杂解调方法,经常会观察到VLF频段,以及另外两个自动调节机制的VLF处的幅度调制。振幅调制的存在是自调节机制之间非线性相互作用的一种特殊形式的指示。从物理上讲,这种相互作用可能是由于这三种机制共享一个共同的效应子,即传入的小动脉这一事实而引起的。此外,通过添加LNAME,可以增强VLF在其他自动调节机制上的振幅调制幅度,这表明一氧化氮在自动调节过程中的重要作用

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