www.zotero.org
Open in
urlscan Pro
52.7.58.71
Public Scan
URL:
https://www.zotero.org/groups/2913367/alan_db/items/ZUVV3M9Z/item-list
Submission: On August 31 via api from US — Scanned from DE
Submission: On August 31 via api from US — Scanned from DE
Form analysis
0 forms found in the DOMText Content
* * Groups * Documentation * Forums * Get Involved * Log In ZOTERO SITE NAVIGATION * * Groups * Documentation * Forums * Get Involved * Log In * Upgrade Storage Title, Creator, YearTitle, Creator, Year + Full-Text Content Upgrade Storage WEB LIBRARY GROUP LIBRARIES * ALAN_DB * Animals * Ecology * Human health * Lighting * Planning * Plants * Remote sensing * Review * Skyglow * *Acclimatization * *Acropora * *Adaptation * *Adolescent Behavior/drug effects * *Aged * *Altitude * *Animal Migration * *Antarctica * *Anthozoa * *Artifacts * *Astronomy * *Attention * *Automobile Driving * *Automobile Driving/psychology * *Automobiles * *Behavior * *Biodiversity * *Biological Clocks * *Bmi * *Body Temperature * *Body Temperature Regulation * *Body Weight * *brain development * *chicken * *Chiroptera * *Chronobiology Disorders * *Chronotherapy * *Circadian * *Circadian Clocks * *Circadian Rhythm * *Circadian Rhythm/drug effects * *Circadian Rhythm/genetics * *Circadian Rhythm/physiology * *circadian rhythms * *Cities * *Cold Climate * *Cold Temperature * *Color * *Commentary * *Computer Terminals * *Computers * *Conservation of Energy Resources * *Conservation of Natural Resources * *Crime * *Cues * *Dark Adaptation * *Darkness * *Disease Models * *Disease/genetics * *Economics * *economics * *Ecosystem * *Electroencephalography * *Energy Metabolism * *Environment * *Environment Design * *Environmental Monitoring * *Environmental Pollutants * *Environmental Pollution * *Epidemiologic Methods * *epidemiology * *Extraterrestrial Environment * *Eye Protective Devices/adverse effects * *Eyeglasses * *Fear * *Feeding Behavior * *fetus * *Fishes * *Flight * *Galaxies * *gametogenic cycle ex situ * *Gene Expression Regulation * *Genetic Variation * *Genetics * *Geographic Information Systems * *Health * *Health Policy * *Immunity * *insolation * *instrumentation * *Lens Implantation * *Lenses * *Light * *Light Signal Transduction * *light-at-night * *Light/adverse effects * *Lighting * *Lighting/adverse effects * *lunar cycle * *Magnetics * *maternal * *Melatonin * *Men's Health * *Midwifery * *Minisatellite Repeats * *Models * *Moon * *Mortality * *Neoplasms/etiology * *Neovascularization 0 tag selectedDeselect All ✓Show Automatic BibLaTeXBibliographic Ontology RDFBibTeXCitation Style Language data formatCOinSMODSNetscape Bookmark File FormatRefer/BibIXRISText Encoding Initiative (TEI)Unqualified Dublin Core RDFWikipedia Citation TemplatesZotero RDF ✓Creator✓DateItem TypeYearPublisherPublication TitleDate AddedDate ModifiedExtraAdded By✓Attachment More Restore Column Order Title Creator Date ”Astronomical Tourism”: The Astronomy and Dark Sky Program at Bryce Canyon National Park Collison and Poe 2013 ”Chrono-functional milk”: The difference between melatonin concentrations in night-milk versus day-milk under different night illumination conditions Asher et al. 2015 ”Dark Sky Parks” as measure to support nature tourism in large protection areas - case study in the Nature Park ”Nossentiner/Schwinzer Heide” Labuda et al. 2015 ”Detection of factors influencing circadian rhythms on Intensive Care inpatients and hospitalization: Protocol for an observational study” Padilla-Martinez et al. 2020 ”You Know the Pyrenees by Day - Come See Them by Night...” Reflections on in visu Artialisation of Nocturnal Skyscapes in the Pyrenees Charlier 2018 0038 Sleeping with Low Levels of Artificial Light at Night Increases Systemic Inflammation in Humans Mindel et al. 2019 012 Overnight light exposure acutely increases heart rate during sleep and decreases insulin sensitivity the following day Grimaldi et al. 2021-05-01 11 Pressing Research Questions on How Light Pollution Affects Biodiversity Hölker et al. 2021 120 HZ Variations in Sky Brightness Over Vancouver, BC Crabtree et al. 1991 2015 International Year of Light and beyond Vozzi and Ramponi 2016 25 years of light-induced petrel groundings in Reunion Island: Retrospective analysis and predicted trends Chevillon et al. 2022-10-01 258 Blue Blockers’ Ability to Block Circadian-Active Light Emitted from a Tablet Bobadilla et al. 2021-05-01 40-year (1978-2017) human settlement changes in China reflected by impervious surfaces from satellite remote sensing Gong et al. 2019 A 24-hour lighting scheme to promote alertness and circadian entrainment in railroad dispatchers on rotating shifts: A field study Sahin and Figueiro 2021-11-02 A Bayesian Model for Estimating the Effects of Human Disturbance on Wildlife Habitats Based on Nighttime Light Data and INLA-SPDE Xi et al. 2021-08-26 A bird's song in relation to light Rawson 1932 A Blue-Enriched, Increased Intensity Light Intervention to Improve Alertness and Performance in Rotating Night Shift Workers in an Operational Setting Sletten et al. 2021-05-24 A Bright Future for the Night Sky Pike and Berry 1978 A Bright Idea for Measuring Economic Growth Henderson et al. 2011 A carbon footprint and energy consumption assessment methodology for UHI-affected lighting systems in built areas Rossi et al. 2016 A Case for a New Satellite Mission for Remote Sensing of Night Lights Barentine et al. 2021-01 A case study of light pollution in France Aksaker et al. 2020 A case-referent study: light at night and breast cancer risk in Georgia Bauer et al. 2013 A circadian rhythm-gated subcortical pathway for nighttime-light-induced depressive-like behaviors in mice An et al. 2020 A cluster-based method to map urban area from DMSP/OLS nightlights Zhou et al. 2014 A colourful clock van Diepen et al. 2015 A community standard for recording skyglow data Kyba and Lolkema 2012 A Comparative Study on Current Outdoor Lighting Policies in China and Korea: A Step toward a Sustainable Nighttime Environment Guanglei et al. 2019 A Comparative Study on the Characteristics of the Urbanization Processes Between China and India from 1992 to 2013 Using DMSP-OLS NTL Images Sun et al. 2021-12-01 A comparison between emergence and return activity in pipistrelle bats Pipistrellus pipistrellus and P. pygmaeus Petrželková et al. 2006 A comparison of nighttime satellite imagery and population density for the continental United States. Sutton et al. 1997 A composite optical system for a LED based headlamp low beam module Ge et al. 2013 A Comprehensive Monitoring and Assessment System for Multiple Fisheries Resources in the Northwest Pacific Based on Satellite Remote Sensing Technology Tian et al. 2022 A controversial history of pedestrian space lighting in Moscow. Khadzhin and Matovnikov 2021 A cross-sectional analysis of light at night, neighborhood sociodemographics and urinary 6-sulfatoxymelatonin concentrations: implications for the conduct of health studies Hurley et al. 2013 A Crusade on HSP Amber High Mast Yields Green with Plasma Smalling and Enright 2015 A data driven technique applying GIS, and remote sensing to rank locations for waste disposal site expansion Richter et al. 2019 A daytime measurement of the lunar contribution to the night sky brightness in LSST’s ugrizy bands–initial results Coughlin et al. 2016 A decision support system for assessment of street lighting tenders based on energy performance indicators and environmental criteria: Overview, methodology and case study Doulos et al. 2019 A Demonstration That the Claim That Brighter Lighting Reduces Crime Is Unfounded Marchant 2004 A direct influence of moonlight intensity on changes in melatonin production by cultured pineal glands of the golden rabbitfish, Siganus guttatus Takemura et al. 2006 A dynamic model for population mapping: a methodology integrating a Monte Carlo simulation with vegetation-adjusted night-time light images Song et al. 2015 A dynamic scaling algorithm for the optimized digital display of VIIRS Day/Night Band imagery Seaman and Miller 2015 A feasible framework to downscale NPP-VIIRS nighttime light imagery using multi-source spatial variables and geographically weighted regression Ye et al. 2021-12-15 ”DETECTION OF FACTORS INFLUENCING CIRCADIAN RHYTHMS ON INTENSIVE CARE INPATIENTS AND HOSPITALIZATION: PROTOCOL FOR AN OBSERVATIONAL STUDY” * Info * Notes * Tags * Attachments * Related Edit ”DETECTION OF FACTORS INFLUENCING CIRCADIAN RHYTHMS ON INTENSIVE CARE INPATIENTS AND HOSPITALIZATION: PROTOCOL FOR AN OBSERVATIONAL STUDY” 1. Item Type Journal Article 2. Title ”Detection of factors influencing circadian rhythms on Intensive Care inpatients and hospitalization: Protocol for an observational study” 3. Author Padilla-Martinez J.M. 4. Author Abad-Corpa E. 5. Author Gea-Sanchez M. 6. Author Casado-Ramirez E. 7. Author Rol-de Lama M.A. 8. Author Madrid-Perez J.A. 9. Author Moreno-Casbas M.T. 10. Publication Journal of Advanced Nursing 11. Volume in press 12. Issue 13. Pages in press 14. Date 2020 15. Series 16. Series Title 17. Series Text 18. Journal Abbr 19. Language English 20. DOI 10.1111/jan.14569 21. ISSN 0309-2402 22. Short Title 23. URL http://www.ncbi.nlm.nih.gov/pubmed/32996642 24. Accessed 25. Archive 26. Loc. in Archive 27. Library Catalog 28. Call Number 29. Rights 30. Extra Place: Biomedical Research Center for Fragility and Healthy Aging (CIBERFES), Madrid, Spain Type: Journal Article PMID:32996642 31. Date Added 4/27/2021, 5:36:01 PM 32. Date Modified 4/27/2021, 5:36:01 PM 33. Added By skyglowberlin ABSTRACT AIMS: Identify the prevalence of circadian health disorders in ICU and hospitalized patients. Stablish the relationship of the circadian system with light, temperature, noise and nursing activities. BACKGROUND: Commonly, self-assessment through subjective questionnaires is used for research about sleep quality. However, more reliable and valid measures should be applied objectively to find out the real prevalence of the problem. There is a negative relationship between circadian rhythms and hospitalization. In this study, we will analyse sleep patterns and hospital environments to implement measures to improve the quality of care related to sleep. DESIGN: Descriptive observational study. It is estimated that 975 patients from 13 hospitals need to be recruited from ICU and hospitalization units. The sample should meet the following criteria: Patients over 18 admitted to ICU and medical units, length of stay between 96-148 hr, with no visual, hearing or moderate-severe cognitive impairment. Variables: Sleep variables are collected with an electronic device (named Kronowise(R) and Kronobed(R)), circadian and infrared light exposure, environmental noise, temperature, unit structural characteristics, nursing care (from 0 to 6 a.m.) and, characteristics of hospitalization period. The study, registered on Clinical Trials, initiated in December 2019 and it will continue up to December 2022. DISCUSSION: Using objective and subjective measures of sleep and circadian rhythms, this study will shed light on the factors that negatively affect the hospitalized patients' sleep quality and circadian health. The ultimate goal is to design hospital guidelines to minimize the adverse effects on the dependent variables studied. Arguably, these guidelines will contribute to reducing the risk of these alterations and it will also serve to improve the nursing activities. CONCLUSION: We expect to obtain adequate results for the creation of a protocol to improve the circadian health, quality of care and health outcomes related to sleep in patients. TAGS 10 tags * care * circadian rhythm * hospitalization * Human health * light * noise * nursing * nursing activities * protocol * sleep quality RELATED