Event-Driven Neuromorphic Gaze Decoding via e-Skin Electrooculography

  • Jeong, Siwoo
  • Ko, Hyun Woo
  • Kang, Ji-Hoon
  • Ko, Jonghyeon
  • Sim, Inbo
  • 외 19명
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초록

Wearable eye-tracking technologies remain constrained by bulky optics, high power consumption, and reliance on external computation. We present a hardware-software codesigned electrooculography (EOG) interface that integrates ultrathin conformal e-skin sensors with resistive random-access memory (RRAM) crossbar, used to implement synaptic vector-matrix multiplication within a neuromorphic processing pipeline for real-time gaze decoding. Conformal e-skin sensors provide stable and continuous acquisition of both vertical and horizontal oculomotor signals, which are transformed into attention-guided spike features for classification by a lightweight spiking neural network (SNN). Implemented on an RRAM array with quantized weights after noise-aware training, the system achieves robust inference while substantially lowering latency and energy demand. The proposed framework is designed for local edge-level computation, thereby preserving user privacy and eliminating the need for cloud-based inference. By eliminating head-mounted optics, this glassless architecture enables unobtrusive and energy-efficient wearable interfaces. These results establish flexible bioelectronics with neuromorphic processors to advance immersive computing, assistive interfaces, and mobile health monitoring.

키워드

electrooculographyelectronic skinspikingneural networkresistive random-access memoryattention mechanismneuromorphic computingextendedrealitySPIKING NEURAL-NETWORKSELECTRODES
제목
Event-Driven Neuromorphic Gaze Decoding via e-Skin Electrooculography
저자
Jeong, SiwooKo, Hyun WooKang, Ji-HoonKo, JonghyeonSim, InboXu, ZhihaoJeong, HyeonuKim, Seung-IlChoi, YunseokJo, SuyeonShim, Jae WonSeo, Paul HongsuckChae, Min SeongKim, YeniRehman, AbdulYeon, HanwoolPark, Bo-InSuh, Young-WooLee, HwaKim, JeehwanLee, KyusangBae, Sang-HoonPark, Min-ChulMun, Sungchul
DOI
10.1021/acsnano.5c19720
발행일
2026-04
유형
Article
저널명
ACS Nano
20
16
페이지
12236 ~ 12249