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An arbitrary-spectrum spatial visual stimulator for vision research.

Katrin Franke | André Maia Chagas | Zhijian Zhao | Maxime Jy Zimmermann | Philipp Bartel | Yongrong Qiu | Klaudia P Szatko | Tom Baden | Thomas Euler
eLife | 2019

Visual neuroscientists require accurate control of visual stimulation. However, few stimulator solutions simultaneously offer high spatio-temporal resolution and free control over the spectra of the light sources, because they rely on off-the-shelf technology developed for human trichromatic vision. Importantly, consumer displays fail to drive UV-shifted short wavelength-sensitive photoreceptors, which strongly contribute to visual behaviour in many animals, including mice, zebrafish and fruit flies. Moreover, many non-mammalian species feature more than three spectral photoreceptor types. Here, we present a flexible, spatial visual stimulator with up to six arbitrary spectrum chromatic channels. It combines a standard digital light processing engine with open source hard- and software that can be easily adapted to the experimentalist's needs. We demonstrate the capability of this general visual stimulator experimentally in the in vitro mouse retinal whole-mount and the in vivo zebrafish. With this work, we intend to start a community effort of sharing and developing a common stimulator design for vision research.

Pubmed ID: 31545172

Research resources used in this publication

None found

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Antibodies used in this publication

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Associated grants

  • Agency: Biotechnology and Biological Sciences Research Council, United Kingdom
    Id: BB/R014817/1
  • Agency: Leverhulme Trust, International
    Id: PLP-2017-005
  • Agency: European Commission, International
    Id: ERC-StG 'NeuroVisEco' 677687
  • Agency: Horizon 2020 Framework Programme, International
    Id: Marie Skłodowska-Curie grant agreement No 674901
  • Agency: Bundesministerium für Bildung und Forschung, International
    Id: FKZ: 01GQ1002
  • Agency: Max-Planck-Gesellschaft, International
    Id: M.FE.A.KYBE0004
  • Agency: Deutsche Forschungsgemeinschaft, International
    Id: Projektnummer 276693517 - SFB 1233
  • Agency: Medical Research Council, United Kingdom
    Id: MC_PC_15071

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This is a list of tools and resources that we have found mentioned in this publication.


IPython (tool)

RRID:SCR_001658

A web-based interactive computational environment where you can combine code execution, text, mathematics, plots and rich media into a single document. It offers a comprehensive library on top of which more sophisticated systems can be built. The project provides an enhanced interactive environment that includes support for data visualization and facilities for distributed and parallel computation.

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QDSpy (tool)

RRID:SCR_016985

Software Python tool for scripting and presenting stimuli for visual neuroscience.

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