College of Field Engineering, Army Engineering University of PLA, Nanjing Jiangsu, 210007, PR China.
School of Biological Sciences & Medical Engineering, Southeast University, Nanjing Jiangsu, 210096, PR China.
Neuropsychologia. 2024 Nov 5;204:109002. doi: 10.1016/j.neuropsychologia.2024.109002. Epub 2024 Sep 16.
This study investigates the relationship between various target exposure signs and brain activation patterns by analyzing the EEG signals of 35 subjects observing four types of targets: well-camouflaged, with large color differences, with shadows, and of large size. Through ERP analysis and source localization, we have established that different exposure signs elicit distinct brain activation patterns. The ERP analysis revealed a strong correlation between the latency of the P300 component and the visibility of the exposure signs. Furthermore, our source localization findings indicate that exposure signs alter the current density distribution within the cortex, with shadows causing significantly higher activation in the frontal lobe compared to other conditions. The study also uncovered a pronounced right-brain laterality in subjects during target identification. By employing an LSTM neural network, we successfully differentiated EEG signals triggered by various exposure signs, achieving a classification accuracy of up to 96.4%. These results not only suggest that analyzing the P300 latency and cortical current distribution can differentiate the degree of visibility of target exposure signs, but also demonstrate the potential of using EEG characteristics to identify key exposure signs in camouflaged targets. This provides crucial insights for developing auxiliary camouflage strategies.
本研究通过分析 35 名被试观察四种目标(伪装良好、颜色差异大、有阴影和尺寸大)的 EEG 信号,探究了各种目标暴露特征与大脑激活模式之间的关系。通过 ERP 分析和源定位,我们确定了不同的暴露特征会引起不同的大脑激活模式。ERP 分析显示 P300 成分的潜伏期与暴露特征的可见度之间存在很强的相关性。此外,我们的源定位结果表明,暴露特征改变了皮层内的电流密度分布,与其他条件相比,阴影会导致额叶的激活显著增加。研究还揭示了被试在目标识别过程中明显的右脑偏侧化。通过使用 LSTM 神经网络,我们成功地区分了由各种暴露特征触发的 EEG 信号,分类准确率高达 96.4%。这些结果不仅表明分析 P300 潜伏期和皮层电流分布可以区分目标暴露特征的可见度,还证明了使用 EEG 特征识别伪装目标中的关键暴露特征的潜力。这为开发辅助伪装策略提供了重要的见解。