van Putten Michel J A M
Institute of Technical Medicine, Faculty of Science and Technology, Biomedical Signals and Systems Group, Faculty of Electrical Engineering, Mathematics and Computer Science, University of Twente, Enschede, The Netherlands.
Clin Neurophysiol. 2007 Nov;118(11):2362-7. doi: 10.1016/j.clinph.2007.07.019. Epub 2007 Sep 20.
Recently, the extended brain symmetry index (BSI) was introduced to assist the visual interpretation of the EEG, in particular to quantify both the spatial (left-right) and the temporal spectral characteristics. The BSI has found application in monitoring during carotid endarterectomy, acute stroke and focal seizure detection. Here, we present additional relevant characteristics and a slightly modified version of this index, simulating its behavior as may occur in various clinical conditions, with an emphasis on the detection of cerebral ischaemia.
The behavior of the revised and standard sBSI and tBSI is illustrated using random noise signals to simulate various changes in the EEG. The indices are evaluated as a function of spatial and temporal changes, and as a function of the number of channels.
The r-sBSI and the r-tBSI are normalized in the range [0-1] with sensitivities of about 0.05 for a 10% difference in signal amplitude, either spatial or temporal. The baseline value of the sBSI shows a modest dependence on the number of channels used.
The revised BSI has an improved sensitivity (about two times) to detect interhemispheric asymmetry and diffuse changes. The modified expression of the tBSI is more compact and allows a more intuitive understanding than previously proposed.
qEEG assists in a more objective interpretation of the EEG, and is relevant in neuromonitoring.
最近,扩展脑对称指数(BSI)被引入以辅助脑电图(EEG)的视觉解读,特别是用于量化空间(左右)和时间频谱特征。BSI已应用于颈动脉内膜切除术期间的监测、急性中风和局灶性癫痫检测。在此,我们展示该指数的其他相关特征以及一个略有修改的版本,模拟其在各种临床情况下可能出现的行为,重点是脑缺血的检测。
使用随机噪声信号说明修订后的标准空间BSI(sBSI)和时间BSI(tBSI)的行为,以模拟EEG中的各种变化。根据空间和时间变化以及通道数量对这些指数进行评估。
r - sBSI和r - tBSI在[0 - 1]范围内归一化,对于信号幅度10%的差异(无论是空间还是时间上),灵敏度约为0.05。sBSI的基线值对所使用的通道数量有适度依赖性。
修订后的BSI在检测半球间不对称和弥漫性变化方面具有更高的灵敏度(约两倍)。tBSI的修改表达式更紧凑,比先前提出的更易于直观理解。
定量脑电图(qEEG)有助于对EEG进行更客观的解读,并且在神经监测中具有相关性。