바이오및뇌공학과 뇌인지 공학 프로그램

세미나

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Abstract:

A better understanding neural population function would be an important advance in systems neuroscience. Neurons encode many parameters simultaneously, but the fidelity of encoding at the level of individual neurons is weak.  However, because encoding is redundant and consistent across the population, extraction methods based on multiple neurons are capable of generating a faithful representation of intended movement.  The realization that useful information is embedded in the population has spawned the current success of brain-controlled interfaces.  Since multiple movement parameters are encoded simultaneously in the same population of neurons, we have been gradually increasing the degrees of freedom (DOF) that a subject can control through the interface.  Our early work showed that 3-dimensions could be controlled in a virtual reality task.  We then demonstrated control of an anthropomorphic physical device with 4 DOF in a self-feeding task.  Currently, monkeys in our laboratory are using this interface to control a very realistic, prosthetic arm with a wrist and hand to grasp objects in different locations and orientations.  Our recent data show that we can extract 10-DOF to add hand shape and dexterity to our control set.  This technology has now been extended has been extended to a paralyzed patient who cannot move any part of her body below her neck.  Based on our laboratory work and using a high-performance “modular prosthetic limb” she has been able to control 10 degrees-of-freedom simultaneously.  The control of this artificial limb is intuitive and the movements are coordinated and graceful, closely resembling natural arm and hand movement.  This subject has been able to perform tasks of daily living--  reaching to, grasping and manipulating objects, as well as performing spontaneous acts such as self-feeding.  Current work is progressing toward making this technology more robust and extending the control with tactile feedback to sensory cortex.



List of Articles
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65 2020 가을학기 뇌인지공학프로그램 정기세미나 안내 Notice for the regular seminar file admin 2020.09.01 3035
64 뇌인지공학프로그램 정기세미나 취소 안내 (연사: Joshua Johansen 박사/RIKEN Center) [6월 3일(수) 취소] admin 2020.05.22 5170
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62 뇌인지공학프로그램 정기세미나 안내 (연사: 엄지원 교수/DGIST) [4월 29일(수) 오후4:30]-Webinar 진행 file admin 2020.04.23 7587
61 뇌인지공학프로그램 정기세미나 안내 (연사: 김학진 교수/고려대학교) [4월 1일(수) 오후4:30]-Webinar 진행 file admin 2020.03.25 6344
60 2020 봄학기 뇌인지공학프로그램 정기세미나 안내 Notice for the regular seminar file admin 2020.03.20 5938
59 뇌인지공학프로그램 정기세미나 안내 (연사: 이대열 교수/Johns Hopkins University) [11월 13일(수) 오후4:30] file admin 2019.11.06 6741
58 뇌인지공학프로그램 정기세미나 안내 (연사: 심원목 교수/성균관대학교) [11월 6일(수) 오후4:30] file admin 2019.10.31 6933
57 뇌인지공학프로그램 정기세미나 안내 (연사: Professor Gabriel Kreiman /Harvard Medical School) [2019.10.30(수) 오후4:30] file admin 2019.10.16 9990
56 뇌인지공학프로그램 정기세미나 안내 (연사: 조일주 단장/KIST 뇌과학연구소 바이오마이크로시스템 연구단) [2019.10.02(수) 오후4:30] file admin 2019.09.30 7340
55 뇌인지공학프로그램 특별세미나 안내 (연사: 박영균 박사/Massachusetts Institute of Technology) [4월 23일(화) 오후 1:30] file admin 2019.04.11 9369
54 뇌인지공학프로그램 정기세미나 안내 (연사: 안우영 교수/서울대학교) [3월 20일(수) 오후 4:30] file admin 2019.03.12 9197
53 뇌인지공학프로그램 정기세미나 안내 (연사: Lisa K. Son 교수/Barnard College) [3월 13일(수) 오후 4:30] file admin 2019.03.05 12389
52 2019 봄학기 뇌인지공학프로그램 정기세미나 안내 Notice for the regular seminar file admin 2019.02.21 12107
51 현대자동차 지영조 부사장 강연 안내 - 2018.11.26(월) 16:00 / 양분순빌딩(E16-1) 207호 file admin 2018.11.20 9325
50 뇌인지공학프로그램 정기세미나 안내 (연사: Ludovico Minati 교수/ IIR) [11월 21일(수) 오후 4:30] file admin 2018.11.15 9825
49 뇌인지공학프로그램 정기세미나 안내 (연사: Hiroyuki Nakahara 교수/ RIKEN) [10월 24일(수) 오후 4:30] file admin 2018.10.15 9728
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