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Micro-Computerized System to Investigate the Neurocardiogenic Syncope

机译:微计算机系统研究神经性心绞痛

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Syncope is defined as a sudden, transient loss of consciousness and of postural tone Its underlying mechanism is a transient global cerebral hypoperfusion.The autonomic nervous system (ANS)of healthy individuals keeps the cerebral blood flow within a suitable range by modulating the heart rate through its sympathetic and parasympa-thetic branches. The sympathovagal balance can be analyzed by means of the spectral analysis of heart rate variability (HRV) There are also other factors that affect the HRV, such as the respiratory frequency.To diagnose the syncope, the Head-Up Tilt Table Test (HUTT)is carried out to induce the syncope symptoms. During the HUTT, ECG and arterial blood pressure of the patient are monitored using different commercial equipments. Nevertheless, treatment strategies are still based on an incomplete understanding of the physiological mechanisms.This work reports a dedicated system designed to sample physiological data (EGG, photopletyanography signal and respiratory waveform) during the HUTT. The developed system has an acquisition module to sample the data that are sent to a microcomputer. The patient data are shown on the microcomputer screen and stored into the hard disk. The data are simultaneously sampled to allow the investigation of the physiological mechanisms that bring the syncope about The hardware and software of the low cost developed system are described. Signals sampled from a volunteer are shown.
机译:晕厥被定义为突然的,短暂的意识和姿势性丧失,其潜在机制是短暂的整体性脑灌注不足。 健康个体的自主神经系统(ANS)通过通过其交感神经和副交感神经分支调节心率,将脑血流量保持在合适的范围内。可以通过心率变异性(HRV)的频谱分析来分析交感神经的平衡。还有其他一些因素会影响HRV,例如呼吸频率。 为了诊断晕厥,进行了抬头倾斜台测试(HUTT)来诱发晕厥症状。在HUTT期间,使用不同的商用设备监视患者的ECG和动脉血压。然而,治疗策略仍基于对生理机制的不完全了解。 这项工作报告了一个专用系统,该系统旨在在HUTT期间采样生理数据(EGG,光电描记图信号和呼吸波形)。开发的系统具有一个采集模块,以对发送到微型计算机的数据进行采样。患者数据显示在微机屏幕上,并存储在硬盘中。同时采样数据以研究引起晕厥的生理机制。描述了低成本开发系统的硬件和软件。显示了从志愿者那里采样的信号。

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