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Intracranial pressure monitoring: application of spectral analysis to the classification of B-waves

机译:颅内压力监测:光谱分析在B波分类中的应用

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During intensive care monitoring of patients with head-injury both arterial blood pressure (ABP) and intracranial pressure (ICP) monitoring is accomplished with a bedside physiologic monitor. The ICP recording may contain low frequencyoscillations termed B-wave. The purpose of this paper is to describe a technique to classify the spectral characteristics of B-waves in the ICP recording. A linear modulation model of arterial pressure modulated by ventilator induced pleural pressurechanges was devised to describe the spectral characteristics of ICP and ABP laboratory and clinical recordings that did not contain B-waves. ICP recordings that contained B-waves were classified according to whether or not their spectral characteristicswere sub-harmonically related to the ventilation frequency. It is suggested that patient-ventilator interaction cause low-frequency oscillations that are sub-harmonically related to the ventilator-frequency. In contrast, the presence of low frequencyspectra not related to the ventilation-frequency or evident as side bands at cardiac frequencies likely indicates the occurrence of oscillations of the cerebral vasculature associated with loss of autoregulation of cerebral blood flow.
机译:在损伤患者的密集护理监测期间,通过床头生理显示器完成动脉血压(ABP)和颅内压(ICP)监测。 ICP录制可以包含低频率的B波。本文的目的是描述一种对ICP记录中B波的光谱特性进行分类的技术。设计了呼吸机诱导胸腔压力型调制动脉压的线性调制模型,描述了ICP和ABP实验室的光谱特性,以及不含B波的临床记录。含有B波的ICP录制根据它们的光谱特性是否与通风频率与通风频率分类。建议患者呼吸机相互作用导致与呼吸机频率与副谐波相关的低频振荡。相反,与心脏频率的通风频率或明显无关的低频段斑点的存在可能表明脑脉管系统的振荡振荡与脑血流动自损伤相关的脑血管系统的发生。

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