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脑血流图描记法:一种用于神经监测的非侵入性方法。

Rheoencephalography: A non-invasive method for neuromonitoring.

作者信息

Szabo Sandor, Totka Zsolt, Nagy-Bozsoky Jozsef, Pinter Istvan, Bagany Mihaly, Bodo Michael

机构信息

University of Szeged, Faculty of General Medicine, Department of Aviation and Space Medicine. Kecskemet, Hungary; Hungarian Defence Forces Medical Center, Aeromedical, Military Medical Screening and Healthcare Instituter; Kecskemet, Hungary.

John von Neumann University, Kecskemet, Hungary.

出版信息

J Electr Bioimpedance. 2024 Mar 13;15(1):10-25. doi: 10.2478/joeb-2024-0003. eCollection 2024 Jan.

Abstract

In neurocritical care, the gold standard method is intracranial pressure (ICP) monitoring for the patient's lifesaving. Since it is an invasive method, it is desirable to use an alternative, noninvasive technique. The computerized real-time invasive cerebral blood flow (CBF) autoregulation (AR) monitoring calculates the status of CBF AR, called the pressure reactivity index (PRx). Studies documented that the electrical impedance of the head (Rheoencephalography - REG) can detect the status of CBF AR (REGx) and ICP noninvasively. We aimed to test REG to reflect ICP and CBF AR. For nineteen healthy subjects we recorded bipolar bifrontal and bitemporal REG derivations and arm bioimpedance pulses with a 200 Hz sampling rate. The challenges were a 30-second breath-holding and head-down-tilt (HDT - Trendelenburg) position. Data were stored and processed offline. REG pulse wave morphology and REGx were calculated. The most relevant finding was the significant morphological change of the REG pulse waveform (2 peak increase) during the HDT position. Breath-holding caused REG amplitude increase, but it was not significant. REGx in male and female group averages have similar trends during HDT by indicating the active status of CBF AR. The morphological change of REG pulse wave during HDT position was identical to ICP waveform change during increased ICP, reflecting decreased intracranial compliance. A correlation study between ICP and REG was initiated in neurocritical care patients. The noninvasive REG monitoring would also be useful in space research as well as in military medicine during the transport of wounded service members as well as for fighter pilots to indicate the loss of CBF and consciousness.

摘要

在神经重症监护中,颅内压(ICP)监测是挽救患者生命的金标准方法。由于这是一种侵入性方法,因此希望使用替代的非侵入性技术。计算机化实时有创脑血流(CBF)自动调节(AR)监测可计算CBF AR的状态,即压力反应性指数(PRx)。研究表明,头部电阻抗(脑血流图 - REG)可以无创地检测CBF AR的状态(REGx)和ICP。我们旨在测试REG以反映ICP和CBF AR。对于19名健康受试者,我们以200 Hz的采样率记录了双极双额和双颞REG推导以及手臂生物阻抗脉冲。挑战包括30秒屏气和头低位倾斜(HDT - 特伦德伦伯卧位)姿势。数据进行离线存储和处理。计算REG脉搏波形态和REGx。最相关的发现是在HDT姿势期间REG脉搏波形发生了显著的形态变化(峰值增加2个)。屏气导致REG幅度增加,但不显著。HDT期间男性和女性组平均REGx呈现相似趋势,表明CBF AR处于活跃状态。HDT姿势期间REG脉搏波的形态变化与ICP升高期间的ICP波形变化相同,反映颅内顺应性降低。在神经重症监护患者中启动了ICP与REG之间的相关性研究。非侵入性REG监测在太空研究以及军事医学中,对于受伤军人的运输以及战斗机飞行员来说,在指示CBF和意识丧失方面也将是有用的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1db7/10936697/a1cac3c7d8b7/j_joeb-2024-0003_fig_001.jpg

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