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首页> 外文期刊>Journal of Neuroscience Methods >Spatial spectral analysis of human electrocorticograms including the alpha and gamma bands.
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Spatial spectral analysis of human electrocorticograms including the alpha and gamma bands.

机译:人类脑电图的空间频谱分析,包括alpha和gamma波段。

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Spatial spectral analysis is essential for deriving spatial patterns from simultaneous recordings of electrocorticograms (ECoG), in order to determine the optimal interval between electrodes in arrays, and to design spatial filters, particularly for extraction of information about the dynamics of human gamma activity. ECoG were recorded from up to 64 electrodes 0.5 mm apart in a linear array 3.2 cm long, which was placed on the exposed superior temporal gyrus or motor cortex of volunteers undergoing diagnostic surgery. Visual displays of multiple traces revealed broad spectrum oscillations in episodic bursts having a common aperiodic wave form with recurring patterns of spatial amplitude modulation (AM patterns) on selected portions of the array. The one-dimensional spatial spectrum of the human ECoG was calculated at successive time samples and averaged over periods of up to 20 s. Log power decreased monotonically with increasing log spatial frequency in cycles/mm (c/mm) to the noise level approximately 2 log units below maximal power at minimal frequency (0.039+/-0.002 c/mm). The inflection point at 0.40+/-0.05 c/mm specified an optimal value for a low pass spatial filter to remove noise, and an optimal interelectrode spacing of 1.25 mm to avoid undersampling and aliasing. An 8 x 8 array with that spacing would be 10 x 10 mm.
机译:空间光谱分析对于从同步皮质电图(ECoG)记录中导出空间图案,确定阵列中电极之间的最佳间隔以及设计空间滤波器(尤其是提取有关人类伽马活动动态的信息)至关重要。从3.2厘米长的线性阵列中,最多间隔0.5毫米的64个电极记录ECoG,将其放置在接受诊断手术的志愿者暴露的颞上回或运动皮层上。多个迹线的视觉显示揭示了具有共同非周期性波形的偶发突发中的广谱振荡,在阵列的选定部分上具有重复的空间幅度调制模式(AM模式)。人类ECoG的一维空间光谱是在连续的时间样本中计算得出的,并且在长达20 s的时间内进行平均。对数功率随对数空间频率以周期/ mm(c / mm)的增加而单调降低,直至噪声水平比最小频率下的最大功率(0.039 +/- 0.002 c / mm)低约2个对数单位。 0.40 +/- 0.05 c / mm的拐点为低通空间滤波器指定了最佳值以消除噪声,为避免欠采样和混叠,电极间的最佳间距为1.25 mm。间距为8 x 8的阵列将为10 x 10 mm。

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