首页> 外文会议>European symposium on life sciences research in space >MUTUAL INFORMATION DETECTS A DECREASED INTERDEPENDENCE BETWEEN RR AND SAP IN ORTHOSTATIC INTOLERANCE AFTER MICROGRAVITY CONDITION
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MUTUAL INFORMATION DETECTS A DECREASED INTERDEPENDENCE BETWEEN RR AND SAP IN ORTHOSTATIC INTOLERANCE AFTER MICROGRAVITY CONDITION

机译:在微匍匐状态后,相互信息检测在原角不耐受的RR和SAP之间的相互依存性下降

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Orthostatic intolerance is the most serious symptom of cardiovascular deconditioning induced by microgravity. However, the exact mechanisms underlying these alterations have not been completely clarified. Several methods for studying the time series of systolic arterial pressure and RR interval have been proposed both in the time and in the frequency domain. However, these methods did not produce definitive results. In fact heart rate and arterial pressure show a complex pattern of global variability which is likely due to non linear feedback which involves the autonomic nervous system and to "stochastic" influences. Aim of this study was to evaluate the degree of interdependence between the mechanisms responsible for the variability of SAP and RR signals in subjects exposed to head down (HD). This quantification was achieved by using Mutual Information (MI).
机译:原位不耐受性是微匍匐诱导的心血管脱墨最严重的症状。但是,这些改变的确切机制尚未完全澄清。在频域和频域中都提出了研究时间序列的几种研究收缩动脉压和RR间隔。但是,这些方法没有产生明确的结果。实际上心率和动脉压力显示出具有由于非线性反馈而涉及自主神经系统的非线性反馈和“随机”影响的复杂的全局变异模式。本研究的目的是评估负责在暴露于头部(HD)的受试者中的SAP和RR信号变异的机制之间的相互依存程度。通过使用相互信息(MI)实现这种量化。

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