Perez Juan J, Guijarro Enrique, Sancho Jerónimo, Navarre Arantxa
Center for Res. & Innovation on Bioeng., Univ. Politecnica de Valencia, Valencial, Spain.
Conf Proc IEEE Eng Med Biol Soc. 2006;2006:6064-7. doi: 10.1109/IEMBS.2006.260544.
The well-known inherent artifact on the rheoencephalogram (REG) caused by the pulsatility of the scalp blood flow left the REG out of the clinical practice. In fact, depending on the selected electrode arrangement, the measurement of the brain impedance changes time-locked with the heartbeat can be completely buried on that of the scalp. In this work, a novel mathematical method based on the physiological differences between the brain and scalp perfusions is proposed to extract the intracranial information from REG. This method is experimentally applied to REG signals recorded at five electrode positions and results are compared with those derived from our previous theoretical works. Intracranial components extracted from the REG signals are consistent with the stated hypothesis and reproduce the unexpected results obtained with our theoretical models. Although further studies would be needed, the evidences found in this work suggest that the method proposed in this work extracts the intracranial information from the REG signal.
由于头皮血流搏动导致的脑电阻抗图(REG)上众所周知的固有伪影,使得REG在临床实践中未得到应用。实际上,根据所选的电极布置,与心跳时间锁定的脑阻抗测量可能会完全被头皮阻抗测量所掩盖。在这项工作中,提出了一种基于脑灌注和头皮灌注生理差异的新型数学方法,用于从REG中提取颅内信息。该方法通过实验应用于在五个电极位置记录的REG信号,并将结果与我们之前理论研究得出的结果进行比较。从REG信号中提取的颅内成分与所述假设一致,并重现了我们理论模型获得的意外结果。尽管还需要进一步研究,但这项工作中发现的证据表明,这项工作中提出的方法可以从REG信号中提取颅内信息。