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Intracranial hypertension: condition monitoring, simulation and time domain analysis

机译:颅内高压:病情监测,模拟和时域分析

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This paper discusses developments in the measurement and simulation of intracranial pressure in humans and recent research carried out by the authors on techniques for the noninvasive measurement of intracranial pressure. A simulation of the dynamics of the human brain has been carried out based on a six compartment resistive, compliant model and serves as an indicator of time domain phase changes between intracranial blood pressure and blood velocity. This paper concentrates on the time domain experiments and analysis that were used in validating the simulation and developing a noninvasive approach to the measurement of intracranial pressure. The time domain analysis uses the cross-correlation of the blood flow velocity of the middle cerebral artery with blood pressure measurements and their varying phase shift with trauma characteristics to make predictions of intracranial pressure trends that lead to pathologically dangerous conditions. The development of software and associated graphical displays that could inform the nursing staff of trends in intracranial pressure is outlined.
机译:本文讨论了人类颅内压测量和模拟技术的发展,以及作者对颅内压无创测量技术的最新研究。基于六格电阻抗性顺应性模型对人脑动力学进行了仿真,并作为颅内血压和血流速度之间时域相位变化的指标。本文着重于时域实验和分析,这些实验和分析被用于验证仿真结果并开发出一种非侵入性的颅内压测量方法。时域分析利用大脑中动脉的血流速度与血压测量值及其相变与创伤特征的互相关性来预测颅内压趋势,从而导致病理危险。概述了可以通知护理人员颅内压趋势的软件和相关图形显示的开发。

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