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首页> 外文期刊>Experimental Physiology >Autonomic Neuroscience: Cross-sample entropy statistic as a measure of complexity and regularity of renal sympathetic nerve activity in the rat.
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Autonomic Neuroscience: Cross-sample entropy statistic as a measure of complexity and regularity of renal sympathetic nerve activity in the rat.

机译:自主神经科学:交叉样本熵统计数据可衡量大鼠肾交感神经活动的复杂性和规律性。

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摘要

In this study, we employed both power spectral analysis and cross-sample entropy measurement to assess the relationship between two time series, arterial blood pressure (ABP) and renal sympathetic nerve activity (RSNA), during a mild haemorrhage in anaesthetized Wistar rats. Removal of 1 ml of venous blood decreased BP (by 7.1 +/- 0.7 mmHg) and increased RSNA (by 25.9 +/- 2.4%). During these changes, the power in the RSNA signal at heart rate frequency was reduced but coherence between the spectra at heart rate frequency in RSNA and ABP remained unchanged. Cross-sample entropy was significantly increased (by 10%) by haemorrhage, revealing that there was greater asynchrony between ABP and the RSNA time series. Intrathecal administration of the glutamate receptor antagonist kynurenic acid (2 mm) almost halved (P < 0.01) the reflex increase in RSNA. Also during kynurenic acid block, haemorrhage failed to change total power, power at heart rate frequency, coherence at heart rate frequency, or the cross-sample entropy measurements. We conclude that the increase in asynchrony between ABP and RSNA during the reflex increase in RSNA was a consequence of an increase in synaptic input to the spinal renal neurones. The data show that the cross-sample entropy calculations can characterize the non-linearities of neural mechanisms underlying cardiovascular control and have a potential to reveal how some aspects of homeostatic regulation of kidney function is achieved by the autonomic nervous system.
机译:在这项研究中,我们采用了功率谱分析和交叉样本熵测量,以评估麻醉的Wistar大鼠在轻度出血期间两个时间序列之间的关系,即动脉血压(ABP)和肾交感神经活动(RSNA)。除去1 ml静脉血可降低BP(降低7.1 +/- 0.7 mmHg)和增加RSNA(降低25.9 +/- 2.4%)。在这些变化期间,心率频率下的RSNA信号的功率降低,但RSNA和ABP中心率频率下的频谱之间的相干性保持不变。出血导致交叉样本熵显着增加(增加了10%),表明ABP与RSNA时间序列之间存在更大的异步性。鞘内注射谷氨酸受体拮抗剂强尿酸(2 mm)几乎使RSNA的反射增加减半(P <0.01)。同样在犬尿酸阻滞期间,出血未能改变总功率,心率频率下的功率,心率频率下的相干性或交叉样本熵测量。我们得出结论,在RSNA反射增加期间,ABP和RSNA之间的异步性增加是脊髓神经元突触输入增加的结果。数据表明,交叉样本熵计算可以表征心血管控制背后的神经机制的非线性,并有潜力揭示如何通过自主神经系统实现肾脏功能稳态调节的某些方面。

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