Lighting Research & Technology · 2016 · 57 citations · 36 references
EngineeringMammalian EyeSensory SystemsIllumination ModelingOptical ManipulationComputational ImagingUnified FrameworkHuman HealthLight RegulationOphthalmologyPhysiological OpticColor ConstancyPhotoreceptor CellBiomedical ImagingPhotometry (Optics)Unified Framework OnlineNeuroscienceMedicineRetinal BiologyNon-visual Spectral Effectiveness
The discovery of a novel non-rod, non-cone photoreceptor in the mammalian eye that mediates a range of ‘non-visual’ responses to light has required reexamination of how lighting needs for human health are characterised and evaluated. Existing literature provides useful information about how to quantify non-visual spectral sensitivities to light but the optimal approach is far from decided. As more is learned about the underlying biology, new approaches will continue to be published. What is currently lacking is a flexible framework to describe the non-visual spectral effectiveness of light using a common language. Without a unified description of quantities and units, much of the value of scientific publications can be lost. In this paper, we review the existing approaches by categorising the proposed quantities depending on their application. Based on this review, a unified framework is provided for use in evaluating and reporting the spectral effectiveness of light for human health. The unified framework will provide greater flexibility to model the non-visual responses to light and is adaptable to a wide range of lighting solutions of interest to researchers, designers and developers. A new visualisation tool, the SpeKtro dashboard, is available to explore the unified framework online at spektro.epfl.ch.
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Phototransduction by Retinal Ganglion Cells That Set the Circadian Clock
David M. Berson, Felice A. Dunn, Motoharu Takao · Science · 2002 · 3.5K citations
A Novel Human Opsin in the Inner Retina
Ignacio Provencio, Ignacio R. Rodríguez, Guisen Jiang et al. · Journal of Neuroscience · 2000 · 1.3K citations · Full text
Mammalian Inner Retina, Ganglion Cell, Photoreceptor Cell +13