Lagerlund T D, Sharbrough F W, Busacker N E, Cicora K M
Section of Electroencephalography, Mayo Clinic, Rochester, MN 55905, USA.
Electroencephalogr Clin Neurophysiol. 1995 Sep;95(3):178-88. doi: 10.1016/0013-4694(95)00025-t.
Interchannel coherence is a measure of spatial extent of and timing relationships among cerebral electroencephalogram (EEG) generators. Interchannel coherence of referentially recorded potentials includes components due to volume conduction and reference site activity. The laplacian of the potential is reference independent and decreases the contribution of volume conduction. Interchannel coherences of the laplacian should, therefore, be less than those of referentially recorded potentials. However, methods used to compute the laplacian involve forming linear combinations of multiple recorded potentials, which may inflate interchannel coherences. WE compared 3 methods of computing the laplacian: (1) modified Hjorth (4 equidistant neighbors to each electrode), (2) Taylor's series (4 nonequidistant neighbors), and (3) spherical harmonic expansion (SHE). Average interchannel coherence introduced by computing the laplacian was less for nearest-neighbor methods (0.0207 +/- 0.0766) but still acceptable for the SHE method (0.0337 +/- 0.0865). Average interchannel coherence for simulated EEG (random data plus a common 10 Hz signal) was less for laplacian than for referential data because of removal of the common referential signal. Interchannel coherences of background EEG and partial seizure activity were less with the laplacian (any method) than with referential recordings. Laplacians calculated from the SHE do not demonstrate excessively large interchannel coherences, as have been reported for laplacians from spherical splines.
通道间相干性是衡量大脑脑电图(EEG)发生器的空间范围和时间关系的指标。参考记录电位的通道间相干性包括由于容积传导和参考点活动引起的成分。电位的拉普拉斯算子与参考无关,并减少了容积传导的贡献。因此,拉普拉斯算子的通道间相干性应小于参考记录电位的通道间相干性。然而,用于计算拉普拉斯算子的方法涉及形成多个记录电位的线性组合,这可能会夸大通道间相干性。我们比较了3种计算拉普拉斯算子的方法:(1)改良的约尔特方法(每个电极有4个等距邻点),(2)泰勒级数(4个非等距邻点),以及(3)球谐展开(SHE)。对于最近邻方法,计算拉普拉斯算子引入的平均通道间相干性较小(0.0207±0.0766),但对于SHE方法仍然可以接受(0.0337±0.0865)。由于去除了共同的参考信号,模拟EEG(随机数据加一个共同的10Hz信号)的拉普拉斯算子的平均通道间相干性低于参考数据。背景EEG和部分癫痫发作活动的通道间相干性在使用拉普拉斯算子(任何方法)时低于参考记录。从SHE计算得到的拉普拉斯算子没有表现出过大的通道间相干性,而球形样条的拉普拉斯算子曾有过此类报道。