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Approaching brain injury after cardiac arrest: from bench to bedside

机译:在心脏骤停后接近脑损伤:从长凳到床边

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The neurological injury after resuscitation from cardiac arrest (CA) is a major cause of morbidity and mortality. The unavailability of primary brain directed measures of injury and effective therapy worsens the problem. We have embarked on better understanding the process of injury and recovery by developing an animal model in our laboratory. Using this model, we have discovered that the use of quantitative EEG (Q-EEG) analysis will allow us to titrate the brain injury, monitor the recovery process, study the electrophysiological and biochemical mechanisms of injury and recovery and detect the neuroprotective effect afforded by a drug that prevents neuronal death after injury. With ideas derived from the laboratory research, we have designed a study to test the applicability of QEEG analysis in human subjects resuscitated from cardiac arrest. Our preliminary analysis shows that our measure is able to track the neurological changes of these patients. With this very promising start of this QEEG based measure, we can utilize this technology to develop more rational and effective therapeutic strategies that will improve the neurological outcome in this patient population.
机译:从心脏骤停(CA)复苏后的神经损伤是发病率和死亡率的主要原因。原发性大脑定向伤害措施的不可用性和有效治疗的措施恶化了问题。我们已经开始更好地了解我们在我们实验室中的动物模型来造成伤害和恢复过程。使用该模型,我们发现使用定量脑电图(Q-EEG)分析将使我们允许我们滴定脑损伤,监测恢复过程,研究损伤的电生理学和生化机制,并检测所提供的神经保护作用一种损伤后防止神经元死亡的药物。通过源于实验室研究的想法,我们设计了一项研究,以测试从心脏骤停复苏的人类受试者中QEEG分析的适用性。我们的初步分析表明,我们的措施能够跟踪这些患者的神经系统变化。凭借这一QEEG的措施非常有希望的开始,我们可以利用这项技术来发展更合理和有效的治疗策略,将改善这种患者人群的神经结果。

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