LucasRJ, FreedmanMS, MunozM, Garcia-FernandezJM, FosterRG.1999. Regulation of the mammalian pineal by non-rod, non-cone, ocular photoreceptors. Science284: 505–507.
4.
BrownRL, RobinsonPR.2001. Melanopsin–shedding light on the elusive circadian photopigment. Chronobiol. Int. 21: 189–204.
5.
SmithVC, PokornyJ, GamlinPD, PackerOS, PetersonBB, DaceyDM.2003. Functional architecture of the photoreceptive ganglion cell in primate retina: Spectral sensitivity and dynamics of the intrinsic response. Invest. Ophthalmol. Vis. Sci.44: E-Abstract 5185.
6.
PetersonBB, LiaoH, DaceyDM, YauK, GamlinPD, RobinsonFR, MarshakDW.2003. Functional architecture of the photoreceptive ganglion cell in primate retina: Morphology, mosaic organization and central targets of melanopsin immunostained cells. Invest. Ophthalmol. Vis. Sci.44: E-Abstract 5182.
7.
CooperHM, Dkhissi-BenyahyaO, RieuxC, HutR, De VanssayW.2003. A new cone in human retina. Invest. Ophthalmol. Vis. Sci.44: EAbstract 2857.
8.
ReaMS (ed.). 2000. IESNA Lighting Handbook (9th ed.),New York, NY: Illuminating Engineering Society of North America.
BelenkyMA, SmeraskiCA, ProvencioI, SollarsPJ, PickardGE.2003. Melanopsin retinal ganglion cells receive bipolar and amacrine cell synapses. J. Comp. Neurol.460: 380–393.
11.
DaceyDM, GamlinPD, SmithVC, PokornyJ, PackerOS, LiaoH, PetersonBB, RobinsonFR, YauK.2003. Functional architecture of the photoreceptive ganglion cell in primate retina: Intrinsic photosensitivity, S-cone spectral opponency and irradiance coding. Invest Ophthalmol. Vis. Sci.44: E-Abstract 3231.
12.
BermanSM, JewettDJ, BinghamLR, NahassRM, PerryF, FeinG.1987. Pupillary size differences under incandescent and high pressure sodium lamps. J. Ilium. Eng. Soc.16: 3–20.
13.
GamlinPD, SmithVC, DaceyDM, PokornyJ, McDougalDH.2004. melanopsin-containing retinal ganglion cells drive the pupillary light reflex in the primate, invest. Ophthalmol. Vis. Sci.45: E-Abstract 2262.
14.
LucasRJ, DouglasRH, FosterRG.2001. Characterization of an ocular photopigment capable of driving pupillary constriction in mice. Nat Neurosci.4: 621–626.
15.
BulloughJD, FuZ, Van DerlofskeJ.2002. Discomfort and disability glare from halogen and HID headlamp systems. In Advanced Lighting Technology for Vehicles, SP-1668 (pp. 1–5). Warrendale, PA: Society of Automotive Engineers.
16.
FlannaganMJ.1999. Subjective and Objective Aspects of Headlamp Glare: Effects of Size and Spectral Power Distribution, UMTRI-99-36. Ann Arbor, Ml: University of Michigan.
17.
StringhamJM, FuldK, WenzelAJ.2003. Action spectrum for photophobia. J. Opt Soc. Am. A 20: 1852–1858.
18.
FlannaganMJ, SivakM, EnsingM, SimmonsCJ.1989. Effect of Wavelength on Discomfort Glare from Monochromatic Sources, UMTRI-89-30. Ann Arbor, Ml: University of Michigan.
19.
HattarS, KumarM.TungJ, ParkA, TongP.BersonDM, YauK-W.2004. Diverse brain targets of melanopsin- expressing retinal ganglion cells. Invest. Ophthalmol. Vis. Sci.45: E-Abstract 660.