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DTSTART:20230312T030000
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DTSTAMP:20230204T230337Z
UID:069F8F80-E31F-4428-B6C5-4EA60A205FC7
DTSTART;TZID=America/Los_Angeles:20221129T173000
DTEND;TZID=America/Los_Angeles:20221129T183000
DESCRIPTION:The University of Southern California Joint Student Chapter of 
 the IEEE (GRSS\, APS\, and SSCS) invites you to the following talk in our 
 2021-2022 seminar series:\n\nHistory and Future of Implantable Antennas\, 
 presented by Prof. Cynthia Furse from the University of Utah\, on Tuesday\
 , Nov 29\, 2022\, 5:30-6:30 pm PST.\n\nAbstract: Implantable antennas have
  been used for communication with medical implants for decades. Since then
 \, wireless medical telemetry systems and their associated implantable ant
 ennas have expanded rapidly. Implantable medical devices now touch virtual
 ly every major function in the human body. Cardiac pacemakers and defibril
 lators\, neural recording and stimulation devices\, cochlear and retinal i
 mplants are just a few of the many implantable medical devices available t
 oday. Wireless telemetry for these devices is necessary to monitor battery
  level and device health\, upload reprogramming for device function\, and 
 download data for patient monitoring. Emerging medical telemetry devices h
 ave led to recent advances in the design of small\, biocompatible antennas
  that can be implanted in the human body. This paper will track the types 
 of antennas seen in the past\, the technologies that enabled these changes
 \, and prospects for future implantable antennas for medical applications.
 \n\nLos Angeles\, California\, United States
LOCATION:Los Angeles\, California\, United States
ORGANIZER:rustom@usc.edu
SEQUENCE:8
SUMMARY:USC IEEE GRSS-APS-SSCS Chapter Seminar Series - Prof. Cynthia Furse
  - Tuesday\, Nov. 29\, 2022 at 5:30pm (Online)
URL;VALUE=URI:https://events.vtools.ieee.org/m/333138
X-ALT-DESC:Description: &lt;br /&gt;&lt;p&gt;The University of Southern California Join
 t Student Chapter of the IEEE (GRSS\, APS\, and SSCS) invites you to the f
 ollowing talk in our 2021-2022 seminar series:&lt;/p&gt;\n&lt;p&gt;&lt;strong&gt;History and
  Future of Implantable Antennas&lt;/strong&gt;\, presented by &lt;strong&gt;Prof. Cynt
 hia Furse&lt;/strong&gt;&amp;nbsp\;from the&amp;nbsp\;&lt;strong&gt;University of Utah&lt;/strong
 &gt;\, on&amp;nbsp\;&lt;strong&gt;Tuesday\, Nov 29\, 2022\, 5:30-6:30 pm PST&lt;/strong&gt;.&lt;
 /p&gt;\n&lt;p&gt;&lt;strong&gt;Abstract:&lt;/strong&gt; &lt;span data-slate-fragment=&quot;JTdCJTIyb2Jq
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 VEJTdE&quot;&gt;Implantable antennas have been used for communication with medical
  implants for decades. Since then\, wireless medical telemetry systems and
  their associated implantable antennas have expanded rapidly. Implantable 
 medical devices now touch virtually every major function in the human body
 . Cardiac pacemakers and defibrillators\, neural recording and stimulation
  devices\, cochlear and retinal implants are just a few of the many implan
 table medical devices available today. Wireless telemetry for these device
 s is necessary to monitor battery level and device health\, upload reprogr
 amming for device function\, and download data for patient monitoring. Eme
 rging medical telemetry devices have led to recent advances in the design 
 of small\, biocompatible antennas that can be implanted in the human body.
  This paper will track the types of antennas seen in the past\, the techno
 logies that enabled these changes\, and prospects for future implantable a
 ntennas for medical applications.&lt;/span&gt;&lt;/p&gt;
END:VEVENT
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