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Spectral Analysis of Blood Pressure and Heart Rate Variability during Hemorrhage after Losartan Administration into the Lateral Ventricle

机译:氯沙坦注入侧脑室出血后血压和心率变异性的频谱分析。

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This study was aimed to elucidate the effect of intracerebroventricular losartan administration on arterial pressure regulation during hemorrhage in rats by power spectral analysis of blood pressure and heart rate variability. Nineteen male Sprague-Dawley rats weighing 240-300g were divided into losartan-administered(n=10) and control(n=9) groups. Hemorrhage was induced with a withdrawal pump from the femoral artery at 3ml/kg/min for 5min. Arterial presure was measured with a pressure transducer connected to the contralateral femoral artery for 5min before, during and after hemorrhage. The blood pressure signal digitized at 500 Hz through a data acquisition system was analyzed with fast Fourier transform algorithm to yield power spectra of systolic(SP) and diastolic(DP) blood pressure and instantaneous heart rate(HR). Powers of very low frequency (VLF, 0.02-0.26 Hz), low frequency(LF, 0.26-0.75 Hz) and high frequency(HF, 0.75-5.00 Hz) band were obtained. Basal systolic and diastolic blood pressure was 149±9 and 99±2mmHg, respectively, and was not changed by hemorrhage in control rats. Basal blood pressure in losartan group was 143±9 and 97±6mmHg and was significantly lowered to 116±13 and 77±9mmHg, respectively. HR was significantly increased during and after hemorrhage in both groups. Total power of SP variability in losartan group was 13.9±3.2mmHg2 before hemorrhage and was significantly increased to 66.6±25.3mmHg2 during hemorrhage. VLF, LF and HF powers of SP variability were 7.3±2.0, 3.8±1.1 and 2.8±0.7mmHg2, respectively, in losartan group and 5.5±1.4, 3.7±1.5 and 2.8±0.8mmHg2 in control rats. VLF and HF powers of SP were increased to 33.0±15.2 and 20.3±6.4mmHg2 in losartan group, and VLF power was increased to 7.9±1.5mmHg2 in control group. VLF power of DP variability increased from 3.3±0.9 before hemorrhage to 5.9±1.0mmHg2 during hemorrhage in control group. Powers of DP variability in losartan group and those of HR variability in both groups were not changed by hemorrhage. The above results suggested that losartan aggravated the arterial pressure fall during hemorrhage by impairing the sympathetic nerve activation by central angiotensin II.
机译:本研究旨在通过功率谱分析血压和心率变异性来阐明脑室内氯沙坦对大鼠出血过程中动脉压调节的影响。将十九只体重为240-300g的雄性Sprague-Dawley大鼠分为氯沙坦组(n = 10)和对照组(n = 9)。用撤离泵从股动脉以3ml / kg / min的速度诱导出血5分钟。在出血前,出血中和出血后,用连接到对侧股动脉的压力传感器测量动脉压5分钟。通过快速傅立叶变换算法分析通过数据采集系统在500 Hz处数字化的血压信号,以得出收缩压(SP)和舒张压(DP)的功率谱以及瞬时心率(HR)。获得了非常低频(VLF,0.02-0.26 Hz),低频(LF,0.26-0.75 Hz)和高频(HF,0.75-5.00 Hz)频段的功率。对照组大鼠的基础收缩压和舒张压分别为149±9和99±2mmHg,并且没有因出血而改变。氯沙坦组的基础血压为143±9和97±6mmHg,分别显着降低至116±13和77±9mmHg。两组在出血期间和出血后,HR均显着升高。氯沙坦组SP的总变异力在出血前为13.9±3.2mmHg 2 ,并在出血期间显着增加至66.6±25.3mmHg 2 。氯沙坦组的SP变异的VLF,LF和HF功率分别为7.3±2.0、3.8±1.1和2.8±0.7mmHg 2 ,而5.5±1.4、3.7±1.5和2.8±0.8mmHg < sup> 2 在对照组中。氯沙坦组SP的VLF和HF功率增加到33.0±15.2和20.3±6.4mmHg 2 ,对照组的VLF功率增加到7.9±1.5mmHg 2 。对照组的DP变异的VLF功效从出血前的3.3±0.9升至出血期间的5.9±1.0mmHg 2 。氯沙坦组的DP变异力和两组的HR变异力均未因出血而改变。上述结果表明,氯沙坦通过损害中枢血管紧张素II的交感神经激活,加剧了出血期间的动脉压下降。

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