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BEGIN:VEVENT

CATEGORIES:Engineering
CATEGORIES:Lectures/Conferences
CATEGORIES:Other
CATEGORIES:Utilities
CATEGORIES:Lecture/Talk
CATEGORIES:Panel/Seminar/Colloquium
CATEGORIES:Academic Calendar Dates
CATEGORIES:Research
CATEGORIES:Technology
CATEGORIES:Main
CONTACT;X-BEDEWORK-UID=00f1fcdb-0f068baf-010f-068baf83-00000004:None
CREATED:20260901T122028Z
DESCRIPTION:A central challenge in brain science is the relation between t
 he structure and the function of the nervous system. Modern approaches to
  this problem get inspiration from the efforts of Cajal\, more than 100 y
 ears\, ago to map neural connections\, but his work was insufficient in m
 any ways. Now\, with the advent of complete high-resolution descriptions 
 of brain structure in which all the brain's synaptic wiring can in princi
 ple be mapped (connectomics)\, new technical and interpretive problems ar
 ise. Currently\, whole brain connectomics is just getting underway and ma
 ny bioengineering and computational challenges will need to be met before
  entire mammalian brains are mapped at the level of synapses. Perhaps the
  most significant of these challenges is how we extract understanding fro
 m the unprecedented complexity and size of the datasets coming our way.  
      \n\nJeff W. Lichtman M.D.\, Ph.D. is Jeremy R Knowles Professor of M
 olecular and Cellular Biology\,  Ramon y Cajal Professor of Arts and Scie
 nces\, and John Harvard Professor in the Faculty of Arts and Sciences at 
 Harvard University. He was an undergraduate at Bowdoin College and receiv
 ed and MD and Ph.D. (with Dale Purves) at Washington University in St. Lo
 uis in 1980.  After a postdoc in the Neurobiology Department at Harvard M
 edical School\, he returned to St. Louis where he stayed before joining t
 he Molecular and Cellular Biology Department at Harvard in 2004. From his
  graduate work onwards\, he has developed approaches to map neural connec
 tions at the synapse level. Lichtman's research interest revolves around 
 the question of how mammalian brain circuits are physically altered by ex
 periences\, especially in early life.  He has focused on the dramatic re-
 wiring of neural connections that takes place in early postnatal developm
 ent when animals are doing most of their learning. This work has required
  development of techniques such as "Brainbow" transgenic mice to visualiz
 e neural connections and monitor how they are altered over time.  Recentl
 y his efforts have focused on developing new electron microscopy methods 
 to map the entire wiring diagram of the developing and adult brain.  This
  "connectomics" approach has as one of its aims uncovering the ways infor
 mation is stored in neural networks. Current efforts include generation o
 f the first synapse-level full vertebrate connectome (in a fish) and deve
 loping approaches for the whole mouse brain connectome.
DURATION:PT2H
DTSTAMP:20260901T122028Z
DTSTART;TZID=America/New_York:20260917T150000
LAST-MODIFIED:20260901T122028Z
LOCATION;X-BEDEWORK-UID=8a00eca5-9af98aae-019c-203177d8-00002ebc:Wilkinson
  021
STATUS:CONFIRMED
SUMMARY:Distinguished Seminar Series with Jeff Lichtman
UID:CAL-8a002cbd-9fb2e569-01a0-5ce9ea1c-00004088demobedework@mysite.edu
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X-BEDEWORK-ALIAS;X-BEDEWORK-PARAM-DISPLAYNAME=Academic Calendar Dates:/use
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X-BEDEWORK-SPEAKER:Jeff Lichtman
X-BEDEWORK-SUBMITTEDBY:cm671 for Biomedical Engineering (BME) (agrp_PrattS
 chool_BME)
X-BEDEWORK-STUDENT-CONTACT;X-BEDEWORK-PARAM-EMAIL=junjie.yao@duke.edu:Dr. 
 Junjie Yao
END:VEVENT
BEGIN:VEVENT

CATEGORIES:Medicine
CATEGORIES:Engineering
CATEGORIES:Lectures/Conferences
CATEGORIES:Utilities
CATEGORIES:Lecture/Talk
CATEGORIES:Panel/Seminar/Colloquium
CATEGORIES:Research
CATEGORIES:Main
CONTACT;X-BEDEWORK-UID=8a002cc9-9de3f0d7-019e-1d25f707-00002b07:Muller\, G
 ina
CREATED:20260821T151624Z
DESCRIPTION:Drug discovery demands measurements that capture tumor heterog
 eneity\, yet conventional assays report only ensemble averages. Stimulate
 d Raman scattering (SRS) microscopy addresses this gap by directly probin
 g drug distribution and phenotypic state in single cells\, label-free and
  quantitatively. I will show how SRS enables longitudinal\, subcellular m
 easurement of drug uptake and efficacy in 2D cultures and 3D tumor sphero
 ids\, with machine learning applied to classify cell type and state from 
 the resulting SRS images for content-rich screening. \nTo further elevate
  SRS capabilities for this application\, I will present two orthogonal ad
 vances: a 4Pi-SRS interferometric scheme that improves axial resolution n
 early sevenfold\, and computational reconstruction methods that enhance s
 patial resolution and accelerate volumetric imaging. Together\, these too
 ls chart a route toward high-throughput\, high-content\, label-free drug 
 screening in physiologically relevant models.
DURATION:PT1H
DTSTAMP:20260821T151624Z
DTSTART;TZID=America/New_York:20260923T120000
LAST-MODIFIED:20260821T151624Z
LOCATION;X-BEDEWORK-UID=8a00eca5-9af98aae-019c-203177d8-00002ebc:Wilkinson
  021
STATUS:CONFIRMED
SUMMARY:FIP Seminar: Label-Free Chemical Imaging of Single-Cell Drug Respo
 nse: From Subcellular Quantification to Super-Resolution
UID:CAL-8a002cbd-9fb2e569-01a0-24e507ce-00003021demobedework@mysite.edu
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 r/Topics/Engineering
X-BEDEWORK-ALIAS;X-BEDEWORK-PARAM-DISPLAYNAME=Medicine:/user/public-user/T
 opics/Medicine
X-BEDEWORK-ALIAS;X-BEDEWORK-PARAM-DISPLAYNAME=Research:/user/public-user/T
 opics/Research
X-BEDEWORK-SPEAKER:Dan Fu\, Professor Associate Chair\, Master of Science 
 in Applied Chemical Science & Technology
X-BEDEWORK-DUKE-SERIES:FIP Seminar Series
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X-BEDEWORK-IMAGE-ALT-TEXT:Image of Dr. Dan Fu
X-BEDEWORK-SUBMITTEDBY:gmm63 for Fitzpatrick Institute for Photonics (FIP)
  (agrp_FitzpatrickInstitute)
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END:VEVENT
BEGIN:VEVENT

CATEGORIES:Artificial Intelligence
CATEGORIES:Other
CATEGORIES:Utilities
CATEGORIES:Training
CATEGORIES:Research
CATEGORIES:Technology
CATEGORIES:Main
CONTACT;X-BEDEWORK-UID=00f1fcdb-0f068baf-010f-068baf83-00000004:None
CREATED:20260825T175632Z
DESCRIPTION:DuQuantum is the first annual quantum computing hackathon at D
 uke. For 24 hours\, we invite quantum enthusiasts to tackle challenges de
 signed by industry leaders and gain experience with state-of-the-art quan
 tum tools. All undergrads\, Master's and PhD students are eligible.\n\nWh
 at to expect:\n- Beginner-friendly introductory challenges designed to he
 lp newcomers dip their toes into the world of quantum computing\,\n- Adva
 nced challenges tailored for graduate and advanced undergraduate students
 \,\n- Exclusive lectures given by faculty from Duke Quantum Center (DQC)\
 , sponsor fair\, and more!\n\nWhere: Duke University\nWhen: Saturday\, Oc
 tober 24 - Sunday\, October 25\nRegistration: https://duke.is/duquantum-a
 pplication-2026\nDeadline: September 23
DURATION:P2D
DTSTAMP:20260825T175858Z
DTSTART;TZID=America/New_York:20261024T090000
LAST-MODIFIED:20260825T175858Z
LOCATION;X-BEDEWORK-UID=8a00eca5-9af98aae-019c-203177d8-00002ebc:Wilkinson
  021
STATUS:CONFIRMED
SUMMARY:DuQuantum Hackathon
UID:CAL-8a002cbd-9fb2e569-01a0-3a111261-00004639demobedework@mysite.edu
URL:https://duke.is/duquantum-application-2026
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 y\,Computer Science\,Duke Quantum Center\,Electrical and Computer Enginee
 ring (ECE)\,Mathematics\,Physics\,Statistical Science
X-BEDEWORK-STUDENT-CONTACT;X-BEDEWORK-PARAM-EMAIL=siddharth.vijaymurugan@d
 uke.edu:Siddharth Vijaymurugan
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X-BEDEWORK-IMAGE-ALT-TEXT:DuQuantumLogo
X-BEDEWORK-SUBMITTEDBY:rd105 for Information Initiative at Duke (iiD) (agr
 p_InformationInitiativeatDuke)
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END:VEVENT
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