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ORGANIZER;CN="Gupta, Sumeet Kumar":mailto:guptask@purdue.edu
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ATTENDEE;ROLE=REQ-PARTICIPANT;PARTSTAT=NEEDS-ACTION;RSVP=FALSE;CN="Gomez, Lu
 is Javier":mailto:ljgomez@purdue.edu
ATTACH:CID:0DC27CE10A909C4199688EB4DA11C4BC@namprd22.prod.outlook.com
DESCRIPTION;LANGUAGE=en-US:Computational Electromagnetics tools for improvi
 ng and studying TMS targeting\n\n\nProf. Luis Gomez\n\nPurdue University\n
 \nTuesday\, May 17\, 2022: 1 PM-2 PM\n\nZoom link: https://purdue-edu.zoom
 .us/j/3164232249\n\nAbstract\n\n     Transcranial magnetic stimulation (TM
 S) is a noninvasive technique used for neuroscience research and treatment
  of psychiatric and neurological disorders. During TMS\, a current-carryin
 g coil placed on the scalp induces an electric field that modulates target
 ed neuronal circuits. Computational simulations of the electric field (E-f
 ield) induced by TMS are increasingly used to gain a mechanistic understan
 ding of the effect of TMS on the brain and to inform its administration. H
 owever\, these computational frameworks neglect the many inherent continge
 ncies of the TMS setup. These inherent contingencies oftentimes result in 
 an E-field that is different from the one realized in practice.\n\n      T
 o ensure safe and effective use of computational simulation results\, we a
 re developing a new variation aware computational E-field solver that pred
 icts the expected value of the electric field\, as well as confidence inte
 rvals indicating potential variability in the actual E-field dose delivere
 d. Our framework leverages fast-methods enabling its use for determining p
 opulation level optimum coil placements for targeting the dorsolateral pre
 frontal cortex (DLPFC)  in depression treatments. For example\, the predic
 ted optimum coil placement across individuals corroborates recent studies 
 indicating that the clinically prescribed coil placement is suboptimal. Ou
 r framework also enables the computation of individualized optimum coil pl
 acements while considering limitations in the precision and accuracy of th
 e TMS coil positioning protocol and possible segmentation errors.\n\n     
 Finally\, I will briefly describe other ongoing efforts in my lab includin
 g designing and fabricating focal TMS coils\, and novel conductivity measu
 rement techniques.\n\n\nBio\n\nDr. Luis Gomez\, Ph.D. is an Assistant Prof
 essor of Electrical and Computer Engineering at Purdue University. Prior t
 o Purdue\, Dr. Gomez was a postdoctoral associate at the Department of Psy
 chiatry & Behavioral Sciences at Duke University Medical School. His resea
 rch interests are primarily in computational electromagnetism\, with a foc
 us on wave propagation in highly heterogenous materials\, volume integrati
 on equations\, electromagnetic imaging and optimization\, and uncertainty 
 quantification of brain stimulation modalities. Dr. Gomez received his Ph.
 D. in electrical engineering and his M.S. in electrical engineering and ap
 plied math from the University of Michigan.\n\n\nHost\nSumeet Kumar Gupta\
 , guptask@purdue.edu\, 765 494 3484\n\n\n_________________________________
 _______________________________________________\nMicrosoft Teams meeting\n
 Join on your computer or mobile app\nClick here to join the meeting<https:
 //teams.microsoft.com/l/meetup-join/19%3ameeting_YWI1OTQwNmYtNDkzOC00YzhmL
 WFiMDEtYWY4ODNkMTgwOWI3%40thread.v2/0?context=%7b%22Tid%22%3a%224130bd39-7
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 3a396bda1%22%7d>\nLearn More<https://aka.ms/JoinTeamsMeeting> | Meeting op
 tions<https://teams.microsoft.com/meetingOptions/?organizerId=c2039060-556
 1-407c-a7d1-fa73a396bda1&tenantId=4130bd39-7c53-419c-b1e5-8758d6d63f21&thr
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 _____________________________________\n
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SUMMARY;LANGUAGE=en-US:Webinar by Prof. Luis Gomez (Purdue) on "Computation
 al Electromagnetics tools for improving and studying TMS targeting"
DTSTART;TZID=Eastern Standard Time:20220517T130000
DTEND;TZID=Eastern Standard Time:20220517T140000
CLASS:PUBLIC
PRIORITY:5
DTSTAMP:20220513T153308Z
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