visual
visual

세미나

  • HOME
  • >
  • 소식
  • >
  • 세미나
날짜 2024-10-02 12:00 
연사 YoungJu Jo (Stanford University) 
장소 E6-2, #3441 

10월 2일(수) 오후 4시에 Stanford 대학 조영주 박사 (KAIST 물리학과 학부, Stanford 대학 생물학 석사, 응용물리 박사, 현 Stanford 대학 박사후 연구원)를 모시고 세미나를 진행하고자 합니다.

관심있는 분들의 많은 참여 바랍니다. 

 

[Seminar]

2024/10/2, Wed, 4PM-5PM

Physics Department, 3441

 

Data-driven discovery of neural computations

through brain-wide and cell-type-specific dynamical systems

 

 

YoungJu Jo, Ph.D.

 

Postdoctoral Scholar in Bioengineering, Deisseroth Laboratory, Stanford University

 

The brain is a nonlinear dynamical system performing diverse computations essential for behavior and cognition. A mechanistic understanding of neural population dynamics implementing specific computations may require measuring, modeling, and controlling neural activity in behaving animals in a principled manner. Here we propose and experimentally demonstrate a data-driven discovery framework through the closed-loop integration of large-scale neurophysiology and interpretable dynamical systems modeling. This approach enabled the unexpected discovery of cell-type-specific habenular line attractor dynamics implementing reward history integration. Building on this finding, a brain-wide spiking activity map in memory-guided decision-making was constructed, elucidating dynamical structures implementing bidirectional value update. To achieve precise optogenetic control over these identified neural computations, a multifunctional family of new channelrhodopsins was engineered, guided by atomic-resolution protein structures, and their cellular-resolution control was demonstrated in vivo using multiphoton holographic illumination. These converging advances enabled the targeted modulation of neural integration in silico by shaping optogenetic control in both space and time through data-constrained dynamical systems. Together, this work paves the way for data-driven systems neuroscience for reading and writing complex information in the brain.

 

 

 

 

번호 날짜 연사 제목
공지 2025-09-01 12:00    2025년 가을학기 콜로키움
공지 2025-09-05 11:00    2025년 가을학기 물리학과 특별세미나 (광학/응집물리 분야)
556 2022-05-09 16:00    Searching for new electronic properties in correlated material flatland
555 2022-05-23 16:00    Novel electronic transport in topological van der Waals magnets
554 2011-09-03 16:00    Physics Colloquium : 2011 Fall file
553 2022-10-13 16:00    (광학분야 세미나) Ultrafast Optics for Ultra-Precision Metrology and Realization of Flexible/Stretchable Laser-Induced-Graphene Electronics
552 2020-11-12 16:00    2020 가을학기 광학분야 특별세미나
551 2022-10-07 11:00    [Update 세미나 영상] (응집물리 세미나) Competing orders in a vanadium-based kagome metal monolayer file
550 2022-10-28 11:00    [Update 세미나영상] (응집물리 세미나) Machine-Learning-Guided Prediction models and Materials discovery for high Tc cuprates file
549 2017-10-10 16:00    Discovery of New 2D Materials with Diverse Physical Properties
548 2025-11-21 15:00  김병윤 교수 (KAIST 전 창업원장)  Physics for Future Innovation Seminar Series file
547 2023-04-06 16:00    (광학분야 세미나)Nanophotonics-based approaches to explore Berry physics
546 2022-11-17 16:00    (광학분야 세미나) Ultrastructural and Spectroscopic Studies by Super-Resolution Fluorescence Microscopy
545 2022-09-22 16:00    (광학분야 세미나) Quasi-particle-like optical vortices in magnetic materials
544 2022-02-28 16:00    Spin-based training of optical microscopes
543 2022-12-09 11:00    [Update 세미나영상](응집물리 세미나) Single-shot measurements of strongly-correlated artificial molecular levels in semiconductor quantum dots file
542 2025-02-27 16:00  김도헌 교수(서울대)  Toward reliably coherent spin qubits in silicon file
541 2025-10-17 11:00  김나연 박사 (KIMS)  Multimodal Atomic Imaging of Light Elements Enabled by Electron Ptychography file
540 2025-03-27 16:00  김건우 교수 (중앙대)  Quantum dynamics in synthetic spaces file
539 2023-03-24 11:00    (응집물리 세미나)Floquet simulators of topological surface states in isolation
538 2023-05-18 16:00    (광학분야 세미나)Dielectric metasurfaces for optimized optical system and spatial light modulators
537 2022-05-10 16:00    (광학분야 특별세미나)Testing quantum thermodynamics using quantum optics