BEGIN:VCALENDAR
VERSION:2.0
PRODID:www.dresden-science-calendar.de
METHOD:PUBLISH
CALSCALE:GREGORIAN
X-MICROSOFT-CALSCALE:GREGORIAN
X-WR-TIMEZONE:Europe/Berlin
BEGIN:VTIMEZONE
TZID:Europe/Berlin
X-LIC-LOCATION:Europe/Berlin
BEGIN:DAYLIGHT
TZNAME:CEST
TZOFFSETFROM:+0100
TZOFFSETTO:+0200
DTSTART:19810329T030000
RRULE:FREQ=YEARLY;INTERVAL=1;BYMONTH=3;BYDAY=-1SU
END:DAYLIGHT
BEGIN:STANDARD
TZNAME:CET
TZOFFSETFROM:+0200
TZOFFSETTO:+0100
DTSTART:19961027T030000
RRULE:FREQ=YEARLY;INTERVAL=1;BYMONTH=10;BYDAY=-1SU
END:STANDARD
END:VTIMEZONE
BEGIN:VEVENT
UID:DSC-20476
DTSTART;TZID=Europe/Berlin:20240201T130000
SEQUENCE:1707201325
TRANSP:OPAQUE
DTEND;TZID=Europe/Berlin:20240201T150000
URL:https://www.dresden-science-calendar.de/calendar/de/detail/20476
LOCATION:TUD Materials Science - HAL\, Hallwachsstraße 301069 Dresden
SUMMARY:Qiu: Micro-/Nanorobots for Minimally-invasive Surgery
CLASS:PUBLIC
DESCRIPTION:Speaker: Tian Qiu\nInstitute of Speaker: German Cancer Research
  Center (DKFZ)\, TU Dresden\nTopics:\nMedizin\n Location:\n  Name: TUD Mat
 erials Science - HAL (HAL Bürogebäude - 115)\n  Street: Hallwachsstraße
  3\n  City: 01069 Dresden\n  Phone: \n  Fax: \nDescription: Micro-/nanorob
 ots hold tremendous potential for minimally-invasive medicine\, as they ca
 n navigate biological environments under wireless powering and control. To
  reach the target location in the body\, one major challenge is to penetra
 te dense soft tissues. In this talk\, I will discuss several ways for micr
 o-/nanorobots to penetrate the biological tissue barriers. In our previous
  work\, we have shown the first tissue-penetrating nanorobots that can mag
 netically propel through the vitreous of the eye and precisely target at t
 he optic disc of the retina\; and an optimized helical microrobot that is 
 able to drill through viscoelastic tissues in the liver and the brain. I w
 ill highlight some recent developments on the localization and sensing of 
 the microdevices\, and introduce a new kind of microrobots that can collab
 orate and move payloads that is ten times heavier than an individual robot
  on the slippery luminal surface of inner organs. The microrobots will lea
 d to many new opportunities for minimally-invasive surgical procedures.
DTSTAMP:20260710T170712Z
CREATED:20240120T064027Z
LAST-MODIFIED:20240206T063525Z
END:VEVENT
END:VCALENDAR