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Seeing like a cephalopod: colour vision with a monochrome event camera

  • Western Sydney University

Research output: Chapter in Book / Conference PaperConference Paperpeer-review

2 Citations (Scopus)

Abstract

Cephalopods exhibit unique colour discrimination capabilities despite having one type of photoreceptor, relying instead on chromatic aberration induced by their ocular optics and pupil shapes to perceive spectral information. We took inspiration from this biological mechanism to design a spectral imaging system that combines a ball lens with an event-based camera. Our approach relies on a motorised system that shifts the focal position, mirroring the adaptive lens motion in cephalopods. This approach has enabled us to achieve wavelength-dependent focusing across the visible light and near-infrared spectrum, making the event a spectral sensor. We characterise chromatic aberration effects, using both event-based and conventional frame-based sensors, validating the effectiveness of bio-inspired spectral discrimination both in simulation and in a real setup as well as assessing the spectral discrimination performance. Our proposed approach provides a robust spectral sensing capability without conventional colour filters or computational demosaicing. This approach opens new pathways toward new spectral sensing systems inspired by nature's evolutionary solutions. Code and analysis are available at: https://samiarja.

Original languageEnglish
Title of host publicationProceedings of the 2025 IEEE/CVF Conference on Computer Vision and Pattern Recognition Workshops (CVPRW 2025), 11-15 June 2025, Nashville, US
Place of PublicationU.S.
PublisherIEEE
Pages4984-4993
Number of pages10
ISBN (Electronic)9798331599942
DOIs
Publication statusPublished - 2025
EventIEEE Computer Society Conference on Computer Vision and Pattern Recognition - Nashville, United States
Duration: 11 Jun 202512 Jun 2025

Conference

ConferenceIEEE Computer Society Conference on Computer Vision and Pattern Recognition
Abbreviated titleCVPRW
Country/TerritoryUnited States
CityNashville
Period11/06/2512/06/25

Keywords

  • cephalopod vision
  • colour vision
  • neuromorphic vision
  • optic

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