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Author Bennie, J.; Davies, T.W.; Inger, R.; Gaston, K.J.; Chisholm, R. url  doi
openurl 
  Title Mapping artificial lightscapes for ecological studies Type Journal Article
  Year 2014 Publication Methods in Ecology and Evolution Abbreviated Journal Methods Ecol Evol  
  Volume 5 Issue 6 Pages 534-540  
  Keywords light pollution; urban ecology; landscape ecology; diurnal; nocturnal; night; light  
  Abstract Artificial illumination of the night is increasing globally. There is growing evidence of a range of ecological impacts of artificial light and awareness of light pollution as a significant environmental issue. In urban and suburban areas, complex spatial patterns of light sources, structures and vegetation create a highly heterogeneous night-time light environment for plants and animals.

We developed a method for modelling the night-time light environment at a high spatial resolution in a small urban area for ecological studies. We used the position and height of street lights, and digital terrain and surface models, to predict the direct light intensity at different wavelengths at different heights above the ground surface.

Validation against field measurements of night-time light showed that modelled light intensities in the visible and ultraviolet portions of the spectrum were accurate.

We show how this model can be used to map biologically relevant lightscapes across an urban landscape. We also illustrate the utility of the model using night-time light maps as resistance surfaces in the software package circuitscape to predict potential movement of model nocturnal species between habitat patches and to identify key corridors and barriers to movement and dispersal.

Understanding the ecological effects of artificial light requires knowledge of the light environment experienced by organisms throughout the diurnal and annual cycles, during periods of activity and rest and during different life stages. Our approach to high-resolution mapping of artificial lightscapes can be adapted to the sensitivity to light of different species and to other urban, suburban, rural and industrial landscapes.
 
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  ISSN 2041210X ISBN Medium  
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  Call Number IDA @ john @ Serial 171  
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Author Frank, K.D. url  openurl
  Title Imapct of outdoor lighting on moths: an assessment Type Journal Article
  Year 1988 Publication J Lepid Soc Abbreviated Journal  
  Volume 42 Issue 2 Pages 63-93  
  Keywords Animals; conservation; evolution; Hight; urban ecology; light pollution  
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  Notes Approved no  
  Call Number LoNNe @ christopher.kyba @ Serial 419  
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Author Kleinteich, A.; Schneider, J.M. url  doi
openurl 
  Title Developmental strategies in an invasive spider: constraints and plasticity Type Journal Article
  Year 2011 Publication Ecological Entomology Abbreviated Journal  
  Volume 36 Issue 1 Pages 82-93  
  Keywords Animals, arthropod development; bridge spider; dyar; growth patterns; invasive species; larinioides sclopetarius; life-history; plasticity; s rule; urban ecology  
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  Series Volume Series Issue Edition  
  ISSN 0307-6946 ISBN Medium  
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  Notes Approved no  
  Call Number LoNNe @ kagoburian @ Serial 674  
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Author Ouyang, J.Q.; Davies, S.; Dominoni, D. url  doi
openurl 
  Title Hormonally mediated effects of artificial light at night on behavior and fitness: linking endocrine mechanisms with function Type Journal Article
  Year 2018 Publication The Journal of Experimental Biology Abbreviated Journal J Exp Biol  
  Volume 221 Issue Pt 6 Pages  
  Keywords Human Health; Alan; Glucocorticoid; Hormones; Light pollution; Melatonin; Metabolism; Sleep; Stress; Thyroid; Urban ecology  
  Abstract Alternation between day and night is a predictable environmental fluctuation that organisms use to time their activities. Since the invention of artificial lighting, this predictability has been disrupted and continues to change in a unidirectional fashion with increasing urbanization. As hormones mediate individual responses to changing environments, endocrine systems might be one of the first systems affected, as well as being the first line of defense to ameliorate any negative health impacts. In this Review, we first highlight how light can influence endocrine function in vertebrates. We then focus on four endocrine axes that might be affected by artificial light at night (ALAN): pineal, reproductive, adrenal and thyroid. Throughout, we highlight key findings, rather than performing an exhaustive review, in order to emphasize knowledge gaps that are hindering progress on proposing impactful and concrete plans to ameliorate the negative effects of ALAN. We discuss these findings with respect to impacts on human and animal health, with a focus on the consequences of anthropogenic modification of the night-time environment for non-human organisms. Lastly, we stress the need for the integration of field and lab experiments as well as the need for long-term integrative eco-physiological studies in the rapidly expanding field of light pollution.  
  Address Institute of Biodiversity, Animal Health and Comparative Medicine, University of Glasgow, Glasgow G12 8QQ, UK;  
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  Language English Summary Language Original Title  
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  Series Volume Series Issue Edition  
  ISSN 0022-0949 ISBN Medium  
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  Notes PMID:29545373 Approved no  
  Call Number IDA @ john @ Serial 1817  
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Author Rosenberg, Y.; Doniger, T.; Levy, O. url  doi
openurl 
  Title Sustainability of coral reefs are affected by ecological light pollution in the Gulf of Aqaba/Eilat Type Journal Article
  Year 2019 Publication Communications Biology Abbreviated Journal Commun Biol  
  Volume 2 Issue Pages 289  
  Keywords Animals; Ecology; Molecular ecology; Urban ecology  
  Abstract As human populations grow and lighting technologies improve, artificial light gradually alters natural cycles of light and dark that have been consistent over long periods of geological and evolutionary time. While considerable ecological implications of artificial light have been identified in both terrestrial and aquatic habitats, knowledge about the physiological and molecular effects of light pollution is vague. To determine if ecological light pollution (ELP) impacts coral biological processes, we characterized the transcriptome of the coral Acropora eurystoma under two different light regimes: control conditions and treatment with light at night. Here we show that corals exposed to ELP have approximately 25 times more differentially expressed genes that regulate cell cycle, cell proliferation, cell growth, protein synthesis and display changes in photo physiology. The finding of this work confirms that ELP acts as a chronic disturbance that may impact the future of coral reefs.  
  Address Mina and Everard Goodman Faculty of Life Sciences, Bar-Ilan University, Ramat Gan, 52900 Israel.0000 0004 1937 0503grid.22098.31  
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  Language English Summary Language Original Title  
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  ISSN 2399-3642 ISBN Medium  
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  Notes PMID:31396569; PMCID:PMC6683144 Approved no  
  Call Number GFZ @ kyba @ Serial 2608  
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