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In this work, object oriented metric IF-C focuses on the improved information flow complexity estimation method, which is used to evaluate the data flows in object oriented source code and decrease the effort of maintainability and reusability.
Spike visible on EEG only are explained by the better sensitivity of EEG to deeper and radially oriented source.
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One of the main differences between magnetoencephalography (MEG) and electroencephalography (EEG) is thought to be that MEG is mainly sensitive to tangentially oriented sources, whereas EEG can detect sources of all orientations (Baillet et al. 2001; Cohen and Cuffin 1991; Hämäläinen et al. 1993).
An important difference between magnetoencephalography (MEG) and electroencephalography (EEG) is that MEG is insensitive to radially oriented sources.
More likely, however, the SNR for these spikes is higher in MEG than in EEG because of selective cancellation of background brain noise from tangentially oriented sources, such that in EEG the spikes are obscured by radially oriented background sources (Ahlfors et al. 2010).
This raises an important question whether what are the best positions of EEG electrodes such that EEG's information about the deeper and radially oriented sources can be effectively added to the MEG information in fusion.
Clinical data includes information which can be obtained from all types of medical records or medically oriented sources such as outcome measurements reported in patient charts, discharge reports, diagnostic reports.
The two similar distributions in each case are likely to be mainly due to tangentially oriented sources, which generated similar signal patters rotated by 90° with respect to each other, whereas a radial source generates a signal pattern that is qualitatively different from that from the tangential sources.
Spikes visible on MEG only are explained by the sensitivity of MEG to mainly tangentially oriented sources and less influence of the skull resistivity leading to better SNR of MEG signal for sources in superficial, neocortical areas (Goldenholz et al. 2009; Huiskamp et al. 2010; Kakisaka et al. 2013).
For instance, one reason why we did not observe rsMEG variability mediating the effects of age on RSFA might be due to MEG's relative insensitivity to signals from radially oriented sources, and from deep cortical and subcortical regions (Ahlfors et al., 2010; Cohen and Cuffin, 1991).
There were several methodological differences that may be relevant to the different findings e.g., the compartments in the Skaggs and McNaughton (1998) study were a little larger than ours (58 × 61 cm vs. 30 × 40 cm) and they were lit by a (potentially orienting) point source whereas our environment was diffusely lit.
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