visual
visual

세미나

  • HOME
  • >
  • 소식
  • >
  • 세미나
날짜 2015-12-17 11:00 
일시 2015/12/17, 11:00AM 
장소 E4(KI Building), Matrix Hall (2nd fl.) 
연사 Dr. Jung-Hoon Park (Purdue University) 

Wavefront engineering for in-vivo Deep brain imaging

 

Dec. 17(Thu) 11:00 AM, KI B/D, Matrix Hall, 2nd fl.
Dr. Jung-Hoon Park , School of Electric and Computer Sciences, Purdue University,USA

 

The brain is a unique organ which still holds many challenges that must be overcome for deeper understanding. The relation between the structure and function of the brain is still a big mystery due to the diversity in cell type and functional connections. In this respect, optical imaging holds unique advantages with its molecular specificity and high spatiotemporal resolution which allows simultaneous observation of both structure and function of the brain. However, deep brain imaging requires the light to be delivered efficiently through multiple scattering caused by the thick tissue. In this talk, I will describe our recent developments in wavefront engineering that overcome this barrier and enable high resolution large volume deep brain imaging and through-skull imaging of live mice.

Jung Hoon Park is a postdoctoral researcher in the School of Electrical and Computer Engineering at Purdue University. He received his PhD in physics from KAIST and conducted research at Janelia Research Campus prior to moving to Purdue with Dr. Meng Cui. His research interests focuses on building novel optical systems to enable high resolution deep tissue imaging, especially the brain.

 

Contact: Prof.YongKeun Park, Physics Dept., (yk.park@kaist.ac.kr

번호 날짜 장소 제목
473 2016-04-08 13:30  E6-2. 1st fl. #1501  Theoretical Overview of Iron-based superconductors and its future
472 2016-04-08 16:00  E6-2. 5st fl. #1501  Spectroscopic studies of iron-based superconductors : what have we learned?
471 2016-04-12 16:00  E6-2. 1st fl. #1323  Confinement of Superconducting Vortices in Magnetic Force Microscopy
470 2016-04-18 15:30  KI빌딩(E4), 강의실 B501 (5F)  First Principles Approaches for Intermolecular Interactions: From Gas-Phase Dimers to Liquid Water and Molecular Crystal Polymorphism file
469 2016-04-19 14:00  #1323(E6-2. 1st fl.)  Nonlocal collisional electron transport in partially ionized plasma generation, structure, and stability
468 2016-04-26 16:00  #1323(1st Floor. E6-2)  Transport spectroscopy for electronic bands in carbon-based nanomaterials with weak-bond contacts
467 2016-04-28 15:00  #2501(E6-2. 2nd fl.)  Lattice/Spin/Charge Coupling in 5d Pyrochlore Cd2Os2O7
466 2016-05-11 16:00  E6-2. #1323(1st fl.)  The quest for novel high-temperature superconductors---Prospects and progress in iridates
465 2016-05-13 13:30  E6. #1501(1st fl.)  Aperiodic crystals in low dimensions
464 2016-05-13 16:00  E6. #1501(1st fl.)  Graphene analogue in (111)- BaBiO3 bilayer heterostructures for topological electronics
463 2016-05-16 16:00  #1323(E6-2, 1st Fl.)  Tuning microwave cavities with biased nonlinear dielectrics for axion searches
462 2016-05-17 11:00  창의학습관(E11), 406호  The CERN Resonant WISP Search: Development, Results and Lesson-Learned
461 2016-05-19 15:00  May 19, 2016 (Thur.) 3PM,  The CERN Resonant WISP Search: Development, Results and Lesson-Learned
460 2016-05-19 16:00  #1323(E6-2, 1st fl.)  Nonlinear/quantum optical effect in silicon nano-photonics
459 2016-05-24 16:00  E6-2. #1323(1st fl.)  Electronic and magnetic properties of 2D transition-metal thiophosphates and tunability of magnetic order with carrier density
458 2016-05-31 16:00  #1323(E6-2, 1st fl.)  Understanding 3D tokamak physics towards advanced control of toroidal plasma
457 2016-06-01 10:30  BK21 Conference Room (#1318, E6-2)  Welcome to Nature Photonics
456 2016-06-01 16:00  #1323(E6-2 1st fl.)  Laboratory experiments relevant to mesospheric clouds, Saturn’s rings & astrophysical jets
455 2016-06-14 15:00  #1323 (E6-2 1st fl.)  No-Insulation High Temperature Superconductor Magnet Technology for Compact, Reliable, and Low-Cost High Field DC Magnets
454 2016-06-14 16:00  Seminar Room (#2502, 2nd fl.)  Photonic quantum network based on multimode squeezed vacuums and single-photon subtraction