<div dir="ltr">Dear Steven,<div><br></div><div>Unfortunately I agree with the reviewer. The choice of parameter for your ERSP is not optimal.</div><div><br></div><div>You can find 2013 EEGLAB workshop materials (pdf) online.</div><div><a href="http://sccn.ucsd.edu/wiki/EEGLAB_2013_UCSD">http://sccn.ucsd.edu/wiki/EEGLAB_2013_UCSD</a><br></div><div>Check out the ones by Tim Mullen for theory and Makoto Miyakoshi for practical understanding of the EEGLAB parameters for newtimef.</div><div><br></div><div>Makoto</div></div><div class="gmail_extra"><br><div class="gmail_quote">On Sat, May 2, 2015 at 3:24 PM, Steven Pillen <span dir="ltr"><<a href="mailto:stevendpillen@gmail.com" target="_blank">stevendpillen@gmail.com</a>></span> wrote:<br><blockquote class="gmail_quote" style="margin:0 0 0 .8ex;border-left:1px #ccc solid;padding-left:1ex"><div dir="ltr"><div><div>Hello, EEGLAB-List.<br><br><span dir="ltr">Here are some ERSP graphs
included in a manuscript we submitted to a publication:<br><br><a href="http://i.imgur.com/KkvAGPA.png" target="_blank">http://i.imgur.com/KkvAGPA.png</a><br><a href="http://i.imgur.com/iLHeKY9.png" target="_blank">http://i.imgur.com/iLHeKY9.png</a><br><br>One of the peer
reviewers said that the graph showed "frequency smear", and we are not
entirely sure what that means. Is what you see in these images unusual?
If there is frequency smearing, what is it, and what can we do to
correct or account for it?</span><br><br></div>Thank you,<br></div>Steven Pillen<br></div>
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