<div dir="ltr"><div class="gmail_default" style="color:rgb(51,51,153)">Greetings,  </div><div class="gmail_default" style="color:rgb(51,51,153)">I think EGI has a 3D handheld scanner solution for their nets, (email <a href="mailto:support@egi.com">support@egi.com</a> or <a href="mailto:sales@egi.com">sales@egi.com</a>).</div><div class="gmail_default" style="color:rgb(51,51,153)">Zebris works well enough, many labs use it, and can be used with any system I believe. Each system should have specs on localization precision.<br></div><div class="gmail_default" style="color:rgb(51,51,153)">See the krios, polhemus, and other gadgets below. Some are standalone scanners from which data would have to be pulled out, some are for specific eeg systems and are fine-tuned for those systems.</div><div class="gmail_default" style="color:rgb(51,51,153)">The move over last 5 years is towards handheld 3d scanners for 3d channel localization (and of course, down the road, participant head modeling, and onsite 3d eeg net printing for custom fits).</div><div class="gmail_default" style="color:rgb(51,51,153)"><br></div><div class="gmail_default"><font color="#333399"><a href="http://www.ndigital.com/msci/products/krios/">http://www.ndigital.com/msci/products/krios/</a></font><br></div><div class="gmail_default"><div class="gmail_default"><span style="color:rgb(51,51,153)"><a href="http://polhemus.com/motion-tracking/all-trackers/fastrak">http://polhemus.com/motion-tracking/all-trackers/fastrak</a></span><br></div></div><div class="gmail_default"><span style="color:rgb(51,51,153)"><a href="http://www.brainproducts.com/productdetails.php?id=60">http://www.brainproducts.com/productdetails.php?id=60</a></span><span style="color:rgb(51,51,153)"><br></span></div><div class="gmail_default"><font color="#333399"><a href="http://www.cortechsolutions.com/Products/EL/EL-FP/EL-FP-PT">http://www.cortechsolutions.com/Products/EL/EL-FP/EL-FP-PT</a><br></font></div><div class="gmail_default"><div class="gmail_default"><font color="#333399"><a href="http://www.faro.com/products/3d-documentation/handheld-3d-freestyle-3d/features">http://www.faro.com/products/3d-documentation/handheld-3d-freestyle-3d/features</a><br></font></div><div class="gmail_default"><font color="#333399"><a href="http://www.3dsystems.com/shop/sense">http://www.3dsystems.com/shop/sense</a></font></div></div><div class="gmail_default"><br></div><div class="gmail_default" style="color:rgb(51,51,153)"><br></div><div class="gmail_default" style="color:rgb(51,51,153)"><h3 class="gmail-gs_rt" style="margin:0px 100px 0px 0px;padding:0px;border:0px;font-weight:normal;font-size:17px;line-height:19px;color:rgb(34,34,34);font-family:arial,sans-serif"><a href="http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4403350/" style="color:rgb(102,0,153);text-decoration:none">Using a motion capture system for spatial localization of <b>EEG electrodes</b></a></h3><div class="gmail-gs_a" style="margin:0px;padding:0px;border:0px;color:rgb(0,102,33);font-family:arial,sans-serif;font-size:13px;line-height:16.12px">PMR Reis, M Lochmann - Frontiers in neuroscience, 2015 - <a href="http://ncbi.nlm.nih.gov">ncbi.nlm.nih.gov</a></div><div class="gmail-gs_a" style="margin:0px;padding:0px;border:0px;color:rgb(0,102,33);font-family:arial,sans-serif;font-size:13px;line-height:16.12px"><br></div><div class="gmail-gs_a" style="margin:0px;padding:0px;border:0px;color:rgb(0,102,33);font-family:arial,sans-serif;font-size:13px;line-height:16.12px"><h3 class="gmail-gs_rt" style="margin:0px 100px 0px 0px;padding:0px;border:0px;font-weight:normal;font-size:17px;line-height:19px;color:rgb(34,34,34);font-family:arial,sans-serif"><a href="http://proceedings.spiedigitallibrary.org/proceeding.aspx?articleid=1691555" style="color:rgb(102,0,153);text-decoration:none">Improved <b>EEG </b>source <b>localization </b>employing <b>3D </b>sensing by Flying Triangulation</a></h3><div class="gmail-gs_a" style="margin:0px;padding:0px;border:0px;font-family:arial,sans-serif;line-height:16.12px"><a href="https://scholar.google.com/citations?user=P1DrR1wAAAAJ&hl=en&oi=sra" style="color:rgb(0,102,33);white-space:nowrap">S Ettl</a>, S Rampp… - SPIE Optical …, 2013 - <a href="http://proceedings.spiedigitallibrary.org">proceedings.spiedigitallibrary.org</a></div></div><div class="gmail-gs_a" style="margin:0px;padding:0px;border:0px;color:rgb(0,102,33);font-family:arial,sans-serif;font-size:13px;line-height:16.12px"><br></div><div class="gmail-gs_a" style="margin:0px;padding:0px;border:0px;color:rgb(0,102,33);font-family:arial,sans-serif;font-size:13px;line-height:16.12px"><br></div><div class="gmail-gs_a" style="margin:0px;padding:0px;border:0px;color:rgb(0,102,33);font-family:arial,sans-serif;font-size:13px;line-height:16.12px"><br></div><div class="gmail-gs_a" style="margin:0px;padding:0px;border:0px;color:rgb(0,102,33);font-family:arial,sans-serif;font-size:13px;line-height:16.12px"><br></div></div></div><div class="gmail_extra"><br><div class="gmail_quote">On Mon, Aug 29, 2016 at 10:53 AM, Markus Gschwind <span dir="ltr"><<a href="mailto:markus.gschwind@gmail.com" target="_blank">markus.gschwind@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">Dear EEGers,<div><br></div><div>We would like to get in contact with people having experience with electrode positioning systems,which can be used in a reasonable amount of time (especially with patients), and on high-density caps (we use EGI 256 channels).</div><div><br></div><div>We came across the Zebris system</div><div><a href="http://www.zebris.de/english/medizin/medizin-elektroden-positionierung.php" target="_blank">http://www.zebris.de/english/<wbr>medizin/medizin-elektroden-<wbr>positionierung.php</a><br></div><div><br></div><div>Is there anyone who has experience with this?</div><div><br></div><div>Thank you in advance,</div><div>Best,</div><div>Markus</div><div><br></div><div><br></div><br></div>
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