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首页> 外文期刊>The journal of physiological sciences: JPS >Baroreflex increases correlation and coherence of muscle sympathetic nerve activity (SNA) with renal and cardiac SNAs.
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Baroreflex increases correlation and coherence of muscle sympathetic nerve activity (SNA) with renal and cardiac SNAs.

机译:压力反射增强了肌肉交感神经活动(SNA)与肾脏和心脏SNA的相关性和连贯性。

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Despite accumulating data of muscle sympathetic nerve activity (SNA) measured by human microneurography, whether neural discharges of muscle SNA correlates and coheres with those of other SNAs controlling visceral organs remains unclear. Further, how the baroreflex control of SNA affects the relations between these SNAs remains unknown. In urethane and alpha-chloralose anesthetized, vagotomized, and aortic-denervated rabbits, we recorded muscle SNA from the tibial nerve using microneurography and simultaneously recorded renal and cardiac SNAs. After isolating the carotid sinuses, we produced a baroreflex closed-loop condition by matching the isolated intracarotid sinus pressure (CSP) with systemic arterial pressure (CLOSE). We also fixed CSP at operating pressure (FIX) or altered CSP widely (WIDE: operating pressure +/- 40 mmHg). Under these conditions, we calculated time-domain and frequency-domain measures of the correlation between muscle SNA and renal or cardiac SNAs. At CLOSE, muscle SNA resampledat 1 Hz correlated with both renal (r(2) = 0.71 +/- 0.04, delay = 0.10 +/- 0.004 s) and cardiac SNAs (r(2) = 0.58 +/- 0.03, delay = 0.13 +/- 0.004 s) at optimal delays. Moreover,muscle SNA at CLOSE strongly cohered with renal and cardiac SNAs(coherence >0.8) at the autospectral peak frequencies, and weakly (0.4-0.5) at the remaining frequencies. Increasing the magnitude of CSP change from FIX to CLOSE and further to WIDE resulted in corresponding increases in correlation and coherence functions at nonpeak frequencies, and the coherence functions at peak frequencies remained high (>0.8). In conclusion, muscle SNA correlates and coheres approximately with renal and cardiac SNAs under closed-loop baroreflex conditions. The arterial baroreflex is capable of potently homogenizing neural discharges of these SNAs by modulating SNA at the nonpeak frequencies of SNA autospectra.
机译:尽管积累了通过人类微神经造影术测量的肌肉交感神经活动(SNA)的数据,但尚不清楚肌肉SNA的神经放电是否与控制内脏器官的其他SNA的神经放电相关和共处。此外,尚不清楚SNA的压力反射控制如何影响这些SNA之间的关系。在氨基甲酸乙酯和α-氯草胺麻醉,迷走神经切断和主动脉去神经的兔子中,我们使用微神经​​造影术记录了胫神经的肌肉SNA,同时记录了肾脏和心脏SNA。隔离颈动脉窦后,我们通过将孤立的颈动脉窦内压力(CSP)与全身动脉压(CLOSE)相匹配,产生了压力反射闭环状态。我们还将CSP固定在工作压力(FIX)上,或将CSP进行了广泛更改(宽:工作压力+/- 40 mmHg)。在这些条件下,我们计算了肌肉SNA与肾脏或心脏SNA之间相关性的时域和频域度量。在CLOSE时,肌肉SNA以1 Hz重新采样,与肾脏(r(2)= 0.71 +/- 0.04,延迟= 0.10 +/- 0.004 s)和心脏SNA(r(2)= 0.58 +/- 0.03,延迟= 0.13 +/- 0.004 s)的最佳延迟。此外,CLOSE处的肌肉SNA在自频谱峰值频率处与肾脏和心脏SNAs强相关(相干性> 0.8),而在其余频率处弱相关(0.4-0.5)。 CSP从FIX到CLOSE的变化幅度增大,再到WIDE的变化幅度增大,导致非峰值频率处的相关和相干函数相应增加,并且峰值频率处的相干函数保持较高(> 0.8)。总之,在闭环压力反射条件下,肌肉SNA与肾脏和心脏SNA大致相关并紧密结合。通过在SNA自谱的非峰值频率上调制SNA,动脉压力反射能够有效地使这些SNA的神经放电均匀化。

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