Brown Merritt W, Porter Brenda E, Dlugos Dennis J, Keating Jeff, Gardner Andrew B, Storm Phillip B, Marsh Eric D
Division of Child Neurology, Children's Hospital of Philadelphia, and Department of Neurology and Bioengineering, University of Pennsylvania, Philadelphia, PA 19104, USA.
Clin Neurophysiol. 2007 Aug;118(8):1744-52. doi: 10.1016/j.clinph.2007.04.017. Epub 2007 Jun 1.
Interictal spikes in intracranial EEG (iEEG) may correlate with epileptogenic cortex, but review of interictal iEEG is labor intensive. Accurate automated spike detectors are necessary for understanding the role of spikes in epileptogenesis.
The sensitivity, accuracy and reproducibility of three automated iEEG spike detectors were compared against two human EEG readers using iEEG segments from eight patients. A consensus set of detections was generated for detector calibration. Spike verification was calculated after both human EEG readers independently reviewed all detections.
Humans and two of the three automated detectors demonstrated comparable accuracy. In four patients, automated spike detection sensitivity was >70% and accuracy was >50%. In the remaining four patients, EEG background morphology resulted in poorer performance. Blinded human verification accuracy was 76.7+/-6.6% for computer-detected spikes, and 84.5+/-4.1% for human-detected spikes.
Automated iEEG spike detectors perform comparably to humans, but sensitivity and accuracy are patient dependent. Humans verified the majority of computer-detected spikes.
In some patients automated detectors may be used for mapping spike occurrences in epileptic networks. This may reveal associations between spike distribution, seizure onset, and pathology.
颅内脑电图(iEEG)的发作间期棘波可能与致痫皮层相关,但对发作间期iEEG的审查工作强度大。准确的自动棘波检测器对于理解棘波在癫痫发生中的作用至关重要。
使用来自8名患者的iEEG片段,将三种自动iEEG棘波检测器的灵敏度、准确性和可重复性与两名人类脑电图阅读者进行比较。生成一组用于检测器校准的共识检测结果。在两名人类脑电图阅读者独立审查所有检测结果后计算棘波验证率。
人类和三种自动检测器中的两种表现出相当的准确性。在4名患者中,自动棘波检测灵敏度>70%,准确性>50%。在其余4名患者中,脑电图背景形态导致性能较差。计算机检测到的棘波的盲法人类验证准确率为76.7±6.6%,人类检测到的棘波的准确率为84.5±4.1%。
自动iEEG棘波检测器的表现与人类相当,但灵敏度和准确性取决于患者。人类验证了大多数计算机检测到的棘波。
在某些患者中,自动检测器可用于绘制癫痫网络中棘波的出现情况。这可能揭示棘波分布、癫痫发作起始和病理学之间的关联。