visual
visual

세미나

  • HOME
  • >
  • 소식
  • >
  • 세미나
날짜 2022-01-18 14:00 
연사  
장소 KI bldg. 5th fl. Room B501 & Zoom 

[Seminar]

18 Jan 2022, Tue, 2pm-3pm, KI bldg. 5th fl. Room B501

Zoom: https://kaist.zoom.us/j/89586032430

회의 ID: 895 860 324 30

 

Data-driven interrogation of biological dynamics:
from subcellular interactions to neuronal networks in vivo

 

 

YoungJu Jo

PhD Candidate in Applied Physics, Deisseroth Laboratory, Stanford University

 

 

Biological systems are nonlinear dynamical systems consisting of heterogeneous entities. Understanding the logic of the complex spatiotemporal dynamics in such systems, robustly implementing specific biological functions, may require new approaches beyond the traditional hypothesis-driven experimental designs. Here we present a data-driven approach, enabled by high-throughput experimental and computational technologies, across multiple scales. We first discuss a computational imaging technique for simultaneously visualizing multiple aspects of subcellular dynamics [1, 2], its potential combination with molecular optogenetics to study the cell signaling networks, and the remaining challenges in these systems. Then we turn to neuronal networks in behaving animals where high-dimensional neural population activity could be reliably measured and perturbed over extended time. Synergizing with recent technical advances, we propose and experimentally demonstrate a unified deep learning framework to identify the underlying neural dynamical systems, reverse-engineer the neural computation implemented by the dynamics, and design spatiotemporally patterned optogenetic stimulation for naturalistic manipulation of animal behavior [3]. Application of this framework to the mouse habenular circuitry reveals cell-type-specific reward history coding implemented by line attractor dynamics [4].

 

References:

1. Jo*, Park* et al. Science Advances 3(8), e1700606, 2017.

2. Jo*, Cho*, Park* et al. Nature Cell Biology 23, 1329–1337, 2021.

3. Jo et al. in preparation.

4. Sylwestrak*, Vesuna*, Jo* et al. in revision.

 

문의: 박용근 교수 (내선:2514)

 

 

번호 날짜 연사 제목
공지 2025-02-24 16:00    2025년 봄학기 콜로키움 안내
공지 2025-02-27 16:00    2025년 봄 물리학과 특별세미나 (광학/응집물리 분야)
453 2018-05-17 13:30    Quantum Spin Liquid in Kitaev Materials file
452 2018-05-29 16:00    Investigation on metal nanostructure/semiconductor junction and its applications file
451 2018-05-31 16:00    Dynamic control of optical properties with gated-graphene metamaterials file
450 2018-06-01 11:00    Topological phases in low-dimensional quantum materials file
449 2018-06-14 10:00    Phonons and polariton-like particles in trapped ions for quantum computation and quantum simulation file
448 2018-06-18 10:00    Rydberg electromagnetically induced transparency and microwave-to-optical conversion using Rydberg atoms file
447 2018-06-22 10:00    Success in Research Career file
446 2018-06-22 16:00    Tuning functional properties of BiFeO3 films using strain and growth chemistry file
445 2018-07-02 15:00    High Precision Magnetic Field Measurement for the Muon g-2 Experiment file
444 2018-07-09 14:00    The principles of collective learning file
443 2018-07-12 17:00    The MilliQan Experiment: Search for Milli-Charged Particles at the LHC
442 2018-07-13 14:00    Loop Induced Single Top Partner Production and Decay at the LHC
441 2018-07-26 14:00    Inflation in String Theory and Backreaction file
440 2018-07-27 13:30    Magnetic reversal of artificial spin ice file
439 2018-07-27 15:00    Muon g-2 in the 2HDM and MSSM: comprehensive numerical analysis and absolute maxima file
438 2018-08-01 11:00    Future of AI: Is the brain a computer? file
437 2018-09-04 14:30    Ultrafast time- and angle-resolved photoemission spectroscopy (tr-ARPES) with extreme ultraviolet laser pulses file
436 2018-09-05 16:00    Shining a light on fractional excitations file
435 2018-09-07 15:00    Recent developments in density functional theory: From new functionals to the nature of the chemical bond file
434 2018-09-20 16:00    Toward Cancer Treatment Using Terahertz Radiation: Demethylation of Cancer DNA file