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VERSION:2.0
PRODID:IEEE vTools.Events//EN
CALSCALE:GREGORIAN
BEGIN:VEVENT
DTSTAMP:20211222T114648Z
UID:011B78EE-2337-4439-8A1E-FE437047E880
DTSTART;TZID=Etc/GMT-3:20210827T080000
DTEND;TZID=Etc/GMT-3:20210827T090000
DESCRIPTION:In this presentation\, we will focus on different aspects of ba
 ckscattering-based wireless communication and power transfer to small biom
 edical implants. We will present different antenna topologies for data and
  power transfer through tissue\, in vitro and in vivo studies on implantab
 le intracranial pressure (ICP) sensors and give insight and analysis on wi
 reless link reliability in tissue environment. We will also present radio 
 frequency identification (RFID) -based implant platform and communication 
 method. Moreover\, we will focus on differences and challenges of in vivo 
 environment compared to laboratory phantoms and tissue models. In our stud
 ies\, different types of implantable antennas have been tested to investig
 ate reliability\, accuracy and sensitivity of the brain implants: a hybrid
  near field-far field system with a piezoresistive sensor for ICP monitori
 ng\, a UHF band spilt-ring resonator system and LC tank based miniature im
 plantable antenna. This presentation will explain these implant antennas a
 nd wireless power transfer in tissue environment present in human head.\n\
 nCo-sponsored by: SBC05141B - Federal Univ Of Campina Grande\, AP03\n\nVir
 tual: https://events.vtools.ieee.org/m/280178
LOCATION:Virtual: https://events.vtools.ieee.org/m/280178
ORGANIZER:alexandreserres@dee.ufcg.edu.br
SEQUENCE:1
SUMMARY:IEEE APS CHAPTER LECTURE - Prof. Leena Ukkonen - Backscattering-bas
 ed wireless communication and power transfer to small biomedical implants
URL;VALUE=URI:https://events.vtools.ieee.org/m/280178
X-ALT-DESC:Description: &lt;br /&gt;&lt;p&gt;In this presentation\, we will focus on di
 fferent aspects of backscattering-based wireless communication and power t
 ransfer to small biomedical implants. We will present different antenna to
 pologies for data and power transfer through tissue\, in vitro and in vivo
  studies on implantable intracranial pressure (ICP) sensors and give insig
 ht and analysis on wireless link reliability in tissue environment. We wil
 l also present radio frequency identification (RFID) -based implant platfo
 rm and communication method. Moreover\, we will focus on differences and c
 hallenges of in vivo environment compared to laboratory phantoms and tissu
 e models. In our studies\, different types of implantable antennas have be
 en tested to investigate reliability\, accuracy and sensitivity of the bra
 in implants: a hybrid near field-far field system with a piezoresistive se
 nsor for ICP monitoring\, a UHF band spilt-ring resonator system and LC ta
 nk based miniature implantable antenna. This presentation will explain the
 se implant antennas and wireless power transfer in tissue environment pres
 ent in human head.&amp;nbsp\;&lt;/p&gt;
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