Hecker Lukas, Tebartz van Elst Ludger, Kornmeier Jürgen
Department of Psychiatry and Psychotherapy, University of Freiburg Medical Center, Freiburg, Germany.
Department of Psychosomatic Medicine and Psychotherapy, University of Freiburg Medical Center, Freiburg, Germany.
Front Neurosci. 2023 May 15;17:1170862. doi: 10.3389/fnins.2023.1170862. eCollection 2023.
Magneto- and electroencephalography (M/EEG) are widespread techniques to measure neural activity at a high temporal resolution but low spatial resolution. Locating the neural sources underlying the M/EEG poses an inverse problem, which is ill-posed. We developed a new method based on Recursive Application of Multiple Signal Classification (MUSIC). Our proposed method is able to recover not only the locations but, in contrast to other inverse solutions, also the extent of active brain regions flexibly (FLEX-MUSIC). This is achieved by allowing it to search not only for single dipoles but also dipole clusters of increasing extent to find the best fit during each recursion. FLEX-MUSIC achieved the highest accuracy for both single dipole and extended sources compared to all other methods tested. Remarkably, FLEX-MUSIC was capable to accurately estimate the level of sparsity in the source space ( = 0.82), whereas all other approaches tested failed to do so ( ≤ 0.18). The average computation time of FLEX-MUSIC was considerably lower compared to a popular Bayesian approach and comparable to that of another recursive MUSIC approach and eLORETA. FLEX-MUSIC produces only few errors and was capable to reliably estimate the extent of sources. The accuracy and low computation time of FLEX-MUSIC renders it an improved technique to solve M/EEG inverse problems both in neuroscience research and potentially in pre-surgery diagnostic in epilepsy.
磁脑电图(M/EEG)是用于在高时间分辨率但低空间分辨率下测量神经活动的广泛技术。确定M/EEG背后的神经源会带来一个不适定的逆问题。我们开发了一种基于多重信号分类(MUSIC)递归应用的新方法。我们提出的方法不仅能够恢复位置,而且与其他逆解不同,还能够灵活地恢复活跃脑区的范围(FLEX-MUSIC)。这是通过允许它不仅搜索单个偶极子,还搜索范围不断扩大的偶极子簇,以便在每次递归中找到最佳拟合来实现的。与所有其他测试方法相比,FLEX-MUSIC在单偶极子和扩展源方面都达到了最高的准确性。值得注意的是,FLEX-MUSIC能够准确估计源空间中的稀疏程度( = 0.82),而所有其他测试方法都未能做到这一点( ≤ 0.18)。与一种流行的贝叶斯方法相比,FLEX-MUSIC的平均计算时间要低得多,并且与另一种递归MUSIC方法和eLORETA相当。FLEX-MUSIC产生的误差很少,并且能够可靠地估计源的范围。FLEX-MUSIC的准确性和低计算时间使其成为一种改进的技术,可用于解决神经科学研究以及癫痫术前诊断中的M/EEG逆问题。