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Monitoring Intracranial Pressure Using Non-Invasive Brain Stethoscope

机译:使用非侵入性脑听诊器监测颅内压

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Monitoring intracranial pressure (ICP) is vital for patients with elevated, or potentially elevated ICP. This pressure can be monitored using invasive procedures such as lumbar puncture manometry or various methods of direct measurement in or upon the brain, each with attendant complication risks. Measurement of naturally occurring tympanic membrane pulse (TMp) may provide an alternative non-invasive method of monitoring ICP, which would help the risks of invasive methodologies. This paper discusses a piezo based sensor (which we term the “brain stethoscope”) designed and tested to acquire TMp signals. In addition, the TMp signals were acquired from five human subjects where ICP was expected to vary. ICP was increased in this experimental model using head down positioning on a tilt table. Results showed that tympanic membrane waveform changed in morphology and amplitude with increased ICP. The lead time between the TMp signal and a reference signal (Ear lobe blood flow pulse) was found to increase as ICP increased using this model. We conclude that measurement of TMp changes may provide a new non-invasive, low cost and easy to perform technique for monitoring patients at risk of elevated ICP.
机译:监测颅内压(ICP)对升高或潜在升高的ICP患者至关重要。可以使用腰椎穿刺测量或在大脑中或脑中的各种直接测量方法中或在大脑上进行各种方法来监测这种压力,每个侵入性刺穿测量器或脑中的各种方法都具有随函附上的并发症风险。天然存在的鼓膜脉冲(TMP)的测量可以提供替代的监测ICP的非侵入性方法,这将有助于侵入性方法的风险。本文讨论了基于压电的传感器(我们术语术语“脑听诊器”)设计和测试以获取TMP信号。此外,TMP信号从五个人受试者获取,其中ICP预期会有所不同。在该实验模型中使用头部向下定位在倾斜桌上的实验模型中增加了ICP。结果表明,随着ICP的增加,鼓膜波形改变了形态和幅度。由于ICP使用该模型增加,发现TMP信号和参考信号(耳瓣血流脉冲)之间的提前时间增加。我们得出结论,TMP变化的测量可以提供新的非侵入性,低成本,易于对ICP的风险监测患者进行监测。

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