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PRODID:IEEE vTools.Events//EN
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TZID:Europe/Dublin
BEGIN:DAYLIGHT
DTSTART:20240331T020000
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DTSTART:20231029T010000
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BEGIN:VEVENT
DTSTAMP:20240102T153213Z
UID:22C60C97-0533-47EF-83F2-227A09616C4A
DTSTART;TZID=Europe/Dublin:20231204T160000
DTEND;TZID=Europe/Dublin:20231204T180000
DESCRIPTION:Advanced manufacturing technologies originally developed for CM
 OS image sensors have catapulted single photon avalanche diode arrays into
  the mainstream of imaging leading to volume products in the 3D time of fl
 ight imaging and automotive LIDAR. Medical and scientific applications hav
 e been slower to emerge but are poised to leverage the wide spectral range
 \, high detection efficiency\, low dark noise\, picosecond resolution and 
 dense digital integration provided by these technology platforms. This tal
 k will highlight CMOS SPAD solutions to a number of medical and scientific
  applications including Positron Emission Tomography (PET)\, fluorescence 
 lifetime imaging for microscopy and cancer margin endoscopy\, optical neur
 al interfaces and Raman spectroscopy. The circuit architectures will be re
 viewed illustrating the symbiosis with 3D time of flight technology. The p
 rospects for future advances exploiting recent 3D stacked process trends w
 ill be examined.\n\nCo-sponsored by: Tyndall National Institute\n\nSpeaker
 (s): Dr.Robert Henderson\, \n\nRoom: B.0.17\, Bldg: BLOCK B\, Tyndall Nati
 onal Institute\, Lee Maltings Complex Dyke Parade\, CORK\, Cork\, Ireland\
 , Virtual: https://events.vtools.ieee.org/m/384581
LOCATION:Room: B.0.17\, Bldg: BLOCK B\, Tyndall National Institute\, Lee Ma
 ltings Complex Dyke Parade\, CORK\, Cork\, Ireland\, Virtual: https://even
 ts.vtools.ieee.org/m/384581
ORGANIZER:sfacchin88@gmail.com
SEQUENCE:18
SUMMARY:Biomedical and Scientific Imaging with CMOS SPAD Sensors 
URL;VALUE=URI:https://events.vtools.ieee.org/m/384581
X-ALT-DESC:Description: &lt;br /&gt;&lt;p&gt;Advanced manufacturing technologies origin
 ally developed for CMOS image sensors have catapulted single photon avalan
 che diode arrays into the mainstream of imaging leading to volume products
  in the 3D time of flight imaging and automotive LIDAR. Medical and scient
 ific applications have been slower to emerge but are poised to leverage th
 e wide spectral range\, high detection efficiency\, low dark noise\, picos
 econd resolution and dense digital integration provided by these technolog
 y platforms. This talk will highlight CMOS SPAD solutions to a number of m
 edical and scientific applications including Positron Emission Tomography 
 (PET)\, fluorescence lifetime imaging for microscopy and cancer margin end
 oscopy\, optical neural interfaces and Raman spectroscopy. The circuit arc
 hitectures will be reviewed illustrating the symbiosis with 3D time of fli
 ght technology. The prospects for future advances exploiting recent 3D sta
 cked process trends will be examined.&lt;/p&gt;
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