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 Conference Papers (Available on Advance Programs)  (Sort by: Date Descending)
 Results 1 - 5 of 5  /   
Committee Date Time Place Paper Title / Authors Abstract Paper #
EST 2022-01-27
13:40
Online Online Modeling collagen fibers in human finger anatomical model towards realistic electromagnetic analysis
Essam Rashed, Akimasa Hirata (NITech) EST2021-65
Electromagnetic simulation and analysis studies usually conducted using anatomical human and animal models that is prove... [more] EST2021-65
pp.42-46
EST 2021-01-21
11:15
Online Online Performance Evaluation of EEG Source Localization Based on Lead Field Matrix
Takayoshi Moridera, Essam Rashed, Akimasa Hirata (NITech) EST2020-57
In recent years, effective utilization of biosignals has been progressing in medical science and industrial applications... [more] EST2020-57
pp.22-27
EST 2021-01-22
11:00
Online Online Computation of the Local SAR and Temperature Rise in Anatomically-based Hand Model due to Contact Current
Taiki Murakawa, Yinliang Diao, Essam Rashed (NITech), Yoshitsugu Kamimura (Utsunomiya Univ.), Akimasa Hirata (NITech) EST2020-69
Contact current occurs when the human body contacts with an object at a different electric potential. A electrostimulati... [more] EST2020-69
pp.85-90
EMT, MW, OPE, EST, MWP, THz, IEE-EMT [detail] 2020-07-16
13:50
Online Online Numerical Investigation of Induced Field in Anatomically-based Hand Model for Contact Current at Intermediate Frequencies
Taiki Murakawa, Yinliang Diao, Essam Rashed, Yoshihiro Tanaka (NITech), Shin Kitamura, Shintaro Uehara, Yohei Otaka (Fujita Health Univ.), Akimasa Hirata (NITech) EMT2020-11 MW2020-20 OPE2020-6 EST2020-11 MWP2020-11
Contact current occurs when the human body comes into contact with an object at a different electric potential, and biol... [more] EMT2020-11 MW2020-20 OPE2020-6 EST2020-11 MWP2020-11
pp.27-32
EST 2019-05-17
11:20
Aichi Nagoya Inst. Tech. Personalized head models from MRI using convolutional neural networks
Essam Rashed, Jose Gomez-Tames, Akimasa Hirata (NITech) EST2019-3
Transcranial magnetic stimulation (TMS) is a non-invasive clinical technique used for treatment of several neurological ... [more] EST2019-3
pp.9-12
 Results 1 - 5 of 5  /   
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