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首页> 外文期刊>Scientific reports. >Utility of the Tympanic Membrane Pressure Waveform for Non-invasive Estimation of The Intracranial Pressure Waveform
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Utility of the Tympanic Membrane Pressure Waveform for Non-invasive Estimation of The Intracranial Pressure Waveform

机译:鼓膜压力波形在颅内压力波形无创估计中的应用

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Time domain analysis of the intracranial pressure (ICP) waveform provides important information about the intracranial pressure-volume reserve capacity. The aim here was to explore whether the tympanic membrane pressure (TMP) waveform can be used to non-invasively estimate the ICP waveform. Simultaneous invasive ICP and non-invasive TMP signals were measured in a total of 28 individuals who underwent invasive ICP measurements as a part of their clinical work up (surveillance after subarachnoid hemorrhage in 9 individuals and diagnostic for CSF circulation disorders in 19 individuals). For each individual, a transfer function estimate between the invasive ICP and non-invasive TMP signals was established in order to explore the potential of the method. To validate the results, ICP waveform parameters including the mean wave amplitude (MWA) were computed in the time domain for both the ICP estimates and the invasively measured ICP. The patient-specific non-invasive ICP signals predicted MWA rather satisfactorily in 4/28 individuals (14%). In these four patients the differences between original and estimated MWA were 1.0?mmHg in more than 50% of observations, and 0.5?mmHg in more than 20% of observations. The study further disclosed that the cochlear aqueduct worked as a physical lowpass filter.
机译:颅内压(ICP)波形的时域分析提供了有关颅内压容量储备能力的重要信息。此处的目的是探讨鼓膜压力(TMP)波形是否可用于无创估计ICP波形。在临床检查中,共有28例患者同时进行了有创ICP测量和无创TMP信号测量(9例蛛网膜下腔出血后监测和19例CSF循环障碍诊断)。对于每个人,都建立了有创ICP和无创TMP信号之间的传递函数估计,以探索该方法的潜力。为了验证结果,在时域中针对ICP估计值和有创测量的ICP计算了包括平均波幅(MWA)的ICP波形参数。患者特有的非侵入性ICP信号在4/28个人(14%)中可以令人满意地预测MWA。在这四名患者中,超过50%的观察结果的原始MWA与估计的MWA之间的差异为<1.0?mmHg,超过20%的观察结果为<0.5?mmHg。该研究进一步公开了耳蜗导水管作为物理低通滤波器。

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