不同大小和位置的脑电源发出的癫痫尖峰在头皮脑电图中的可探测性:使用老年人真实头部模型的模拟研究。

Clinical EEG and neuroscience Pub Date : 2025-07-01 Epub Date: 2025-02-27 DOI:10.1177/15500594251323625
Makoto Takenaka, Mark E Pflieger, Tomokatsu Hori, Yudai Iwama, Jumpei Matsumoto, Tsuyoshi Setogawa, Atsushi Shirasawa, Hiroshi Nishimaru, Hisao Nishijo
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引用次数: 0

摘要

背景。癫痫在老年人中很常见,他们的大脑形态和颅骨电特征与年轻人不同。本文采用信噪比(SNR)的多变量定义,通过前向模拟78个皮质感兴趣区(roi)在背景噪声存在下产生的超同步峰,探讨了老年人头皮脑电图测量中癫痫峰的可检测性。方法。在18、35和70个标准10-20个电极位置使用三种参考方法测量模拟电位:无限远参考(INF)、共同平均参考(CAR)和平均乳突参考(M1M2)。利用6例老年受试者的核磁共振成像(mri),构建年龄调整颅骨电导的有限元模型。结果。癫痫峰值的信噪比随着脑电源区大小的增加而增加,尽管海马等大脑内侧和深部区域的信噪比较低,这与临床发现一致。70通道数据集的信噪比大于18通道和35通道数据集,尤其是靠近头部表面的roi。此外,CAR和M1M2参考文献的信噪比低于理想的INF参考文献。此外,我们发现具有年龄调整颅骨电导率的标准FEM头部具有可比较的结果。结论。研究结果为评估老年疑似癫痫患者的头皮脑电图数据提供了新的思路,并提示年龄调整颅骨电导率是老年人正演模型的重要因素,在没有mri的情况下,可以使用标准的FEM头部与年龄调整颅骨电导率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Detectability in Scalp EEGs of Epileptic Spikes Emitted from Brain Electrical Sources of Different Sizes and Locations: A Simulation Study Using Realistic Head Models of Elderly Adults.

Background. Epilepsy is prevalent in the elderly, whose brain morphologies and skull electrical characteristics differ from those of younger adults. Here, using a multivariate definition of signal-to-noise ratio (SNR), we explored the detectability of epileptic spikes in scalp EEG measurements in elderly by forward simulations of hypersynchronous spikes generated at 78 cortical regions of interest (ROIs) in the presence of background noise. Methods. Simulated electric potentials were measured at 18, 35, and 70 standard 10-20 electrode positions using three reference methods: infinity reference (INF), common average reference (CAR), and average mastoid reference (M1M2). MRIs of six elderly subjects were used to construct finite element method (FEM) models with age-adjusted skull conductivities. Results. SNRs of epileptic spikes increased with increasing sizes of the brain electrical source areas, although medial and deep brain regions such as the hippocampus showed lower SNRs, consistent with clinical findings. The SNRs were greater in the 70-channel dataset than in the 18-channel and 35-channel datasets, especially for ROIs located closer to the head surface. In addition, the SNRs were lower for the CAR and M1M2 references than for the ideal INF reference. Moreover, we found comparable results in the standard FEM heads with age-adjusted skull conductivities. Conclusions. The results provide insights for evaluating scalp EEG data in elderly patients with suspected epilepsy, and suggest that age-adjusted skull conductivity is an important factor for forward models in elderly adults, and that the standard FEM head with age-adjusted skull conductivity can be used when MRIs are not available.

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