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首页> 外文期刊>BioMedical Engineering OnLine >To what extent is the bipolar rheoencephalographic signal contaminated by scalp blood flow? A clinical study to quantify its extra and non-extracranial components
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To what extent is the bipolar rheoencephalographic signal contaminated by scalp blood flow? A clinical study to quantify its extra and non-extracranial components

机译:双极流变脑电图信号在多大程度上受到头皮血流的污染?量化其多余和非多余成分的临床研究

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Background Impedance plethysmography applied to the head by using a pair of electrodes attached to the scalp surface is known as bipolar Rheoencephalography or REG I and was originally proposed to measure changes in cerebral blood volume related to the heartbeat. REG I was soon discarded in favor of other REG configurations, since most of the signal was shown to be heavily contaminated by the extracranial blood flow. The main goal of this study was to identify and compare the part of the REG I signal caused by scalp blood flow with that originating from non-extracranial sources. Methods A clinical study involving thirty-six healthy volunteers was designed for this purpose. REG I was first registered in each subject under normal conditions. A pneumatic cuff was then placed around the head and was inflated to arrest the scalp blood flow and a second REG I was recorded. Finally, a third REG I was taken immediately after cuff deflation. Results The REG I signal is attenuated, but not extinguished, during cuff inflation in a wide subject-dependent range ratio from 0.12 to 0.68 (0.37?±?0.15). The residual REG I signal has a waveform that is markedly different from that obtained before cuff inflation, which supports the hypothesis of the intracranial origin of the residual REG I signal. Additionally, an increase of 22% in REG I amplitude was observed when the head cuff was deflated. Conclusions Waveform differences between extra and non-extracranial components are significant and these differences could be used in a method to distinguish one from the other. However, a significant part of the REG I signal is caused by a non-extracranial source and, therefore, it should not be used as a footprint of the extracranial blood flow.
机译:背景技术通过使用连接到头皮表面的一对电极应用于头部的阻抗体积描记法被称为双极流变脑电图或REG I,最初被提议用于测量与心跳有关的脑血容量的变化。 REG I很快就被丢弃,转而支持其他REG配置,因为大多数信号显示已被颅外血流严重污染。这项研究的主要目的是识别和比较由头皮血流引起的REG I信号部分与非颅外血源引起的REG I信号部分。方法为此目的设计了一项涉及36名健康志愿者的临床研究。 REG I首先是在正常条件下在每个主题中注册的。然后,将气动袖带绕头部放置并充气以阻止头皮血流,并记录第二次REGI。最后,在袖带放气后立即进行第三次REGI。结果在套囊充气过程中,REG I信号在从受试者依存的较大范围内的比率范围为0.12至0.68(0.37?±?0.15)的范围内衰减,但并未消失。残余REG I信号的波形与袖带充气之前获得的波形明显不同,这支持了残余REG I信号的颅内起源的假说。另外,当头箍放气时,REG I振幅增加了22%。结论颅外和非颅外分量之间的波形差异非常明显,这些差异可用于区分两者。但是,REG I信号的很大一部分是由非颅外血源引起的,因此,不应将其用作颅外血流的足迹。

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