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A New Method for Brain Death Diagnosis Based on Phase Synchronization Analysis With EEG

机译:基于脑电相位同步分析的脑死亡诊断新方法

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Although brain death has been accepted by most countries, how to diagnose brain death quickly and accurately is still a very challenging task. Electroencephalography (EEG) is considered to be one of the most effective methods for clinically diagnosing the brain state. In the present study, we investigated if it is possible to find a robust neuro-marker to help doctors diagnose brain death from the perspective of brain information interaction. With 6-channel EEG data collected from prefrontal lobe of 30 patients (deep coma: 13, brain death 17), PLV was used to measure the phase synchronization and quantify the interaction between brain regions. Firstly, we found that there exists significant difference in brain synchronization between brain death patients and deep coma patients. Then, an interesting phenomenon was observed. In all the three low frequency bands (delta, theta, alpha), synchronization between the left hemisphere and the right hemisphere (IHPS) is significantly stronger than that only in left (LHPS) or right hemisphere (RHPS) for deep coma patients. However, this phenomenon has not been found in high frequency bands (beta and gamma) and for brain death patients. More importantly, it was verified for almost every patient (only 1 exception). This phenomenon might provide a robust neuro-marker for brain death diagnosis. Finally, we tried to distinguish between brain death and brain coma by monitoring brain synchronization in real time. The results also show the effectiveness and accuracy of our method. The method proposed in this paper can not only provide doctors with more stable and effective information, but also hope to develop a new visualization tool to assist brain death diagnosis.
机译:尽管脑死亡已被大多数国家接受,但是如何快速,准确地诊断脑死亡仍然是一项非常艰巨的任务。脑电图(EEG)被认为是临床诊断脑部状态的最有效方法之一。在本研究中,我们调查了是否有可能找到一种健壮的神经标记物,以从大脑信息交互的角度帮助医生诊断脑死亡。通过从30例前额叶收集的6通道EEG数据(深昏迷:13,脑死亡17),PLV用于测量相位同步并量化大脑区域之间的相互作用。首先,我们发现脑死亡患者和深度昏迷患者的大脑同步性存在显着差异。然后,观察到一个有趣的现象。在所有三个低频段(δ,θ,α)中,深昏迷患者的左半球和右半球(IHPS)之间的同步明显强于仅左(LHPS)或右半球(RHPS)。但是,尚未在高频段(β和γ)以及脑死亡患者中发现这种现象。更重要的是,几乎所有患者都进行了验证(只有1个例外)。这种现象可能为脑死亡诊断提供强有力的神经标记。最后,我们试图通过实时监控大脑同步来区分脑死亡和昏迷。结果还显示了我们方法的有效性和准确性。本文提出的方法不仅可以为医生提供更加稳定和有效的信息,而且还希望开发一种新的可视化工具来辅助脑死亡的诊断。

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