기본 정보
연구 분야
프로젝트
발행물
구성원
article|
hybrid
·인용수 5
·2025
Motion artifact–controlled micro–brain sensors between hair follicles for persistent augmented reality brain–computer interfaces
Hodam Kim, Hodam Kim, Ju Hyeon Kim, Yoon Jae Lee, Jimin Lee, Hyojeong Han, Hoon Yi, Hyeonseok Kim, Hyeonseok Kim, Hojoong Kim, Hojoong Kim, Tae Woog Kang, Tae Woog Kang, S. Chung, Seunghyeb Ban, Byeongjun Lee, Haran Lee, Chang‐Hwan Im, Seong Jin Cho, Jung Woo Sohn, Ki Jun Yu, Tae June Kang, Tae June Kang, Woon‐Hong Yeo
IF 9.1Proceedings of the National Academy of Sciences
초록

Modern brain-computer interfaces (BCI), utilizing electroencephalograms for bidirectional human-machine communication, face significant limitations from movement-vulnerable rigid sensors, inconsistent skin-electrode impedance, and bulky electronics, diminishing the system's continuous use and portability. Here, we introduce motion artifact-controlled micro-brain sensors between hair strands, enabling ultralow impedance density on skin contact for long-term usable, persistent BCI with augmented reality (AR). An array of low-profile microstructured electrodes with a highly conductive polymer is seamlessly inserted into the space between hair follicles, offering high-fidelity neural signal capture for up to 12 h while maintaining the lowest contact impedance density (0.03 kΩ·cm<sup>-2</sup>) among reported articles. Implemented wireless BCI, detecting steady-state visually evoked potentials, offers 96.4% accuracy in signal classification with a train-free algorithm even during the subject's excessive motions, including standing, walking, and running. A demonstration captures this system's capability, showing AR-based video calling with hands-free controls using brain signals, transforming digital communication. Collectively, this research highlights the pivotal role of integrated sensors and flexible electronics technology in advancing BCI's applications for interactive digital environments.

키워드
Brain–computer interfaceComputer scienceArtifact (error)USableSIGNAL (programming language)Software portabilityInterface (matter)ElectronicsArtificial intelligenceComputer vision
타입
article
IF / 인용수
9.1 / 5
게재 연도
2025