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dc.rights.licenseAtribución-SinDerivadas 4.0 Internacional
dc.contributor.advisorFajardo-Rodríguez, Hugo
dc.contributor.authorFarfán-Fontalvo, Marian
dc.contributor.authorPeña-Narváez, Odín
dc.date.accessioned2022-03-11T19:28:17Z
dc.date.available2022-03-11T19:28:17Z
dc.date.issued2021
dc.identifier.urihttps://repositorio.unal.edu.co/handle/unal/81195
dc.descriptionilustraciones, graficas
dc.description.abstractIntroducción: Diferentes asociaciones se han establecido , entre las comunidades que viven cerca a los aeropuertos y diversos afecciones en el sistema auditivo, cardiovascular, nervioso; sin contar la relación con el estrés, los trastornos del sueño, y el normal desarrollo en las relaciones sociales. El objetivo de esta revisión es sintetizar la evidencia y determinar el efecto del ruido en términos de hipoacusia neurosensorial, hipertensión arterial, calidad de vida y del sueño, y sensación de molestia al ruido generado por la actividad operacional aérea en las comunidades residentes cercanas a los aeropuertos. Métodos: Se realizó una revisión de literatura en dos etapas, desde febrero a diciembre de 2021, la selección de literatura se realizó en los motores de búsqueda de PubMed, Science Direct, Medline, PsycInfo y Scopus. Dos revisores diferentes realizaron el proceso de selección, y extracción de los datos, así como el análisis de riesgo de sesgo a través de la herramienta STROBE (The Strengthening the Reporting of Observational studies in Epidemiology). Se realizó un calculo cuantitativo en razón de momios y su intervalo de confianza para los resultados de 4 de 5 variables evaluadas. Resultados y discusión: Para el análisis cuantitativo se encontraron cuarenta y siete estudios que cumplieron con los criterios de inclusión. Para la calidad de sueño se encontraron 15 estudios, con un OR general de 1.06 (IC 1.05-1.07). 11 estudios relacionados a la molestia al ruido se encontraron, con un hallazgo de OR general de OR 1.13 (IC 1.12-1.14). 4 estudios relacionados con la calidad de vida fueron seleccionados, arrojando una razón de OR 1.26 (IC 1.15-1.39), y 17 estudios relacionados con la hipertensión arterial se incluyeron, con una razón de momios general de OR 1.13 (IC 1.09-1.17). Los análisis confirmaron el efecto estadísticamente significativo de cada variable . La heterogeneidad se debió principalmente a los diferentes contextos de estudio, la duración de los períodos de seguimiento y la diversidad de las variables evaluadas. Los hallazgos contribuyen a la evidencia general que sugiere que la exposición al ruido de la actividad operacional aérea puede asociarse a diversas condiciones deletéreas para los individuos expuestos. (Texto tomado de la fuente)
dc.description.abstractIntroduction: Different associations have been established between communities living near airports and various disorders in the auditory, cardiovascular, and nervous systems; without mentioning the relationship with mental stress, sleep disorders, and the normal engagement in social relationships. The aim of this review is to synthesize the evidence and determine the effect of noise in terms of sensorineural hearing loss, arterial hypertension, quality of life and sleep, and sensation of annoyance, with the aircraft noise and operational aviation activity in the resident communities near the airports. Methods: A literature review was carried out in two stages, from February to December 2021, the literature selection was made in the PubMed, Science Direct, Medline, PsycInfo and Scopus search engines. Two different reviewers performed the selection and data extraction process, as well as the risk of bias analysis using the STROBE tool (The Strengthening the Reporting of Observational Studies in Epidemiology). A quantitative calculation was made in terms of odds and its confidence interval for the results of 4 of 5 variables evaluated. Results and discussion: For the quantitative analysis, forty-seven studies were found that met the inclusion criteria. For sleep quality, 15 studies were found, with a general OR 1.06 (CI 1.05-1.07). 11 studies related to noise annoyance were found, with an overall OR finding of OR 1.13 (CI 1.12-1.14). 4 studies related to quality of life were selected, yielding an OR ratio of 1.26 (CI 1.15-1.39), and 17 studies related to arterial hypertension were included, with an overall odds ratio of OR 1.13 (CI 1.09-1.17). . The analyzes confirmed the statistically significant effect of each variable. The heterogeneity is mainly due to the different study contexts, the duration of the follow-up periods and the diversity of the variables evaluated. The findings contribute to the overall evidence suggesting that noise exposure from airborne operational activity may be associated with a variety of conditions eliminated for exposed individuals. Keywords: noise, aircraft, cardiovascular, sleep, annoyance
dc.format.extent60 páginas
dc.format.mimetypeapplication/pdf
dc.publisherUniversidad Nacional de Colombia
dc.rights.urihttp://creativecommons.org/licenses/by-nd/4.0/
dc.subject.ddc610 - Medicina y salud::616 - Enfermedades
dc.subject.ddc610 - Medicina y salud::614 - Medicina Forense; incidencia de lesiones, heridas, enfermedades; medicina preventiva pública
dc.subject.otherPérdida Auditiva Sensorineural
dc.subject.otherPérdida Auditiva Provocada por Ruido
dc.subject.otherHearing Loss, Noise-Induced
dc.subject.otherEfectos del Ruido
dc.subject.otherNoise Effects
dc.titleEfectos del ruido generado por aeronaves en la hipoacusia neurosensorial, factores de riesgo cardiovascular, la calidad de vida, y del sueño de las comunidades residentes en cercanías a los aeropuertos: revisión sistemática
dc.typeTrabajo de grado - Especialidad Médica
dc.type.driverinfo:eu-repo/semantics/masterThesis
dc.type.versioninfo:eu-repo/semantics/acceptedVersion
dc.publisher.programBogotá - Medicina - Especialidad en Medicina Aeroespacial
dc.description.degreelevelEspecialidades Médicas
dc.description.degreenameEspecialista en Medicina Aeroespacial
dc.identifier.instnameUniversidad Nacional de Colombia
dc.identifier.reponameRepositorio Institucional Universidad Nacional de Colombia
dc.identifier.repourlhttps://repositorio.unal.edu.co/
dc.publisher.departmentDepartamento de Medicina Interna
dc.publisher.facultyFacultad de Medicina
dc.publisher.placeBogotá, Colombia
dc.publisher.branchUniversidad Nacional de Colombia - Sede Bogotá
dc.relation.indexedRedCol
dc.relation.indexedLaReferencia
dc.relation.referencesJarosińska D, Héroux M, Wilkhu P, Creswick J, Verbeek J, Wothge J, et al. Development of the WHO Environmental Noise Guidelines for the European Region: An Introduction. Int J Environ Res Public Health. 2018;15(4).
dc.relation.referencesSwift H. A Review of the Literature Related to Potential Health Effects of Aircraft Noise. 2010.
dc.relation.referencesvan Kamp I, Davies H. Noise and health in vulnerable groups: a review. Noise Health. 2013;15(64):153-9.
dc.relation.referencesOrganization WH. ENVIRONMENTAL NOISE GUIDELINES for the European Region EXECUTIVE SUMMARY. 2018
dc.relation.referencesBARRERA-ARISTIZÁBAL S. EL RUIDO AERONÁUTICO: REALIDAD QUE ENFRENTA EL AEROPUERTO INTERNACIONAL EL DORADO Y SUS COMUNIDADES ALEDAÑAS UNIVERSIDAD MILITAR NUEVA GRANADA 2014.
dc.relation.referencesAeropuerto el Dorado, retos y oportunidades. In: Bogota AMd, editor. 2018.
dc.relation.referencesŚliwińska-Kowalska M, Zaborowski K. WHO Environmental Noise Guidelines for the European Region: A Systematic Review on Environmental Noise and Permanent Hearing Loss and Tinnitus. Int J Environ Res Public Health. 2017;14(10).
dc.relation.referencesKuo CY, Hung CL, Chen HC, Shih CP, Lu RH, Chen CW, et al. The Immediate and Long-Term Impact of Military Aircraft Noise on Hearing: A Cross-Sectional Comparison of Fighter Pilots and Ground Staff. Int J Environ Res Public Health. 2021;18(6).
dc.relation.referencesLondoño J, Restrepo HV, Fernando Quinchía,Rigoberto. Efectos auditivos del ruido producido por el tráfico aéreo del aeropuerto internacional El Dorado en las poblaciones de Engativá y FontibónAutores/as. Rev Fac Nac Salud Pública. 2009;22(2).
dc.relation.referencesFranks JR. HEARING MEASUREMENT. Rev Fac Nac Salud Pública. World Health Organization publications: Division of Applied Research and Technology National Institute for Occupational Safety and Health; 1998.
dc.relation.referencesOuis D. ANNOYANCE FROM ROAD TRAFFIC NOISE: A REVIEW. Journal of Environmental Psychology. 2002;21(1):101-20.
dc.relation.referencesGriefahn B, Bröde P, marks A, Basner M. Autonomic Arousals Related to Traffic Noise during Sleep. Sleep. 2008;31(4).
dc.relation.referencesMüller U, Elmenhorst E-M, Franco M, Julia Q, Mathias B, Sarah M, et al, The NORAH-Sleep Study: Effects of the Night Flight Ban at Frankfurt Airport. Inter-Noise and Noise-Con Congress; 2016; Hamburg, Germany.
dc.relation.referencesAcosta G, Guzmán-Flórez A, Katherine D. Calidad del sueño asociado al ruido causado por la operación del Aeropuerto El Dorado en adultos de la localidad de Fontibón, Bogotá 2016. https://repository.udca.edu.co/handle/11158/741: Universidad de Ciencias Aplicadas (UDCA); 2016.
dc.relation.referencesZhang K, Jiang F, Luo H, Liu F. Occupational noise exposure and the prevalence of dyslipidemia in a cross-sectional study. BMC Public Health. 2021;21(1):1258
dc.relation.referencesFloud S, Blangiardo M, Clark C. Exposure to aircraft and road traffic noise and associations with heart disease and stroke in six European countries: a cross-sectional study. Environ Health 2013;89(12).
dc.relation.referencesJarup L, Babisch W, Houthuijs D, Pershagen G, Katsouyanni K, Cadum E, et al. Hypertension and exposure to noise near airports: the HYENA study. Environ Health Perspect. 2008;116(3):329-33.
dc.relation.referencesNassur AM, Lefèvre M, Laumon B, Léger D, Evrard AS. Aircraft Noise Exposure and Subjective Sleep Quality: The Results of the DEBATS Study in France. Behav Sleep Med. 2019;17(4):502-13.
dc.relation.referencesMünzel T, Kröller-Schön S, Oelze M, Gori T, Schmidt FP, Steven S, et al. Adverse Cardiovascular Effects of Traffic Noise with a Focus on Nighttime Noise and the New WHO Noise Guidelines. Annu Rev Public Health. 2020;41:309-28.
dc.relation.referencesBroyan JL, Jr., Borrego MA, Bahr JF. International Space Station USOS Crew Quarters Development NASA Technical Reports Server; 2008. Contract No.: 08ICES-0222.
dc.relation.referencesBaudin C, Lefèvre M, Champelovier P, Lambert J, Laumon B, Evrard AS. Aircraft Noise and Psychological Ill-Health: The Results of a Cross-Sectional Study in France. Int J Environ Res Public Health. 2018;15(8).
dc.relation.referencesGuski R, Schreckenberg D, Schuemer R. WHO Environmental Noise Guidelines for the European Region: A Systematic Review on Environmental Noise and Annoyance. Int J Environ Res Public Health. 2017;14(12).
dc.relation.referencesRadosz J. Effects of Tonal Noise on Workers' Annoyance and Performance. Noise Health. 2021;23(111):117-27.
dc.relation.referencesMcNeill MM. Critical Care Performance in a Simulated Military Aircraft Cabin Environment. Crit Care Nurse. 2018;38(2):18-29.
dc.relation.referencesPage MJ, McKenzie JE, Bossuyt PM, Boutron I, Hoffmann TC, Mulrow CD, et al. The PRISMA 2020 statement: an updated guideline for reporting systematic reviews. BMJ. 2021;372:n71.
dc.relation.referencesJeong Kim S, Kug Chai S, Won Lee K, Park Ja-B, Min K-B, Gwon Kil H, et al. Exposure–Response Relationship Between Aircraft Noise and Sleep Quality: A Community-based Cross-sectional Study. Osong Public Health and Research Perspectives. 2012;5(2).
dc.relation.referencesHolt JB, Zhang X, Sizov N, Croft JB. Airport noise and self-reported sleep insufficiency, United States, 2008 and 2009. Prev Chronic Dis. 2015;12:E49.
dc.relation.referencesBrink M, Lercher P, Eisenmann A. Influence of slope of rise and event order of aircraft noise events on high resolution actimetry parameters. Somnologie. 2008;12(6):118-28
dc.relation.referencesFidell S, Pearsons K, Tabachnick B, Howe R, Silvati L, Barber DS. Field study of noise‐induced sleep disturbance. The Journal of the Acoustical Society of America. 1995;98(2).
dc.relation.referencesFranssen EA, van Wiechen CM, Nagelkerke NJ, Lebret E. Aircraft noise around a large international airport and its impact on general health and medication use. Occup Environ Med. 2004;61(5):405-13.
dc.relation.referencesFloud S, Vigna-Taglianti F, Hansell A, Blangiardo M, Houthuijs D, Breugelmans O, et al. Medication use in relation to noise from aircraft and road traffic in six European countries: results of the HYENA study. Occup Environ Med. 2011;68(7):518-24.
dc.relation.referencesRocha S, Smith MG, Witte M, Basner M. Survey Results of a Pilot Sleep Study Near Atlanta International Airport. Int J Environ Res Public Health. 2019;16(22).
dc.relation.referencesSchreckenberg D, Meis M, Kahl C, Peschel C, Eikmann T. Aircraft noise and quality of life around Frankfurt Airport. Int J Environ Res Public Health. 2010;7(9):3382-405.
dc.relation.referencesNguyen TL, Trieu BL, Hiraguri Y, Morinaga M, Morihara T, Yano T. Effects of Changes in Acoustic and Non-Acoustic Factors on Public Health and Reactions: Follow-Up Surveys in the Vicinity of the Hanoi Noi Bai International Airport. Int J Environ Res Public Health. 2020;17(7).
dc.relation.referencesNguyen TL, Morinaga M, Yokoshima S, Yano T, Sato T, Yamada I. Community response to a step change in the aircraft noise exposure around Hanoi Noi Bai International Airport. J Acoust Soc Am. 2018;143(5):2901.
dc.relation.referencesBasner M, Samel A, Isermann U. Aircraft noise effects on sleep: application of the results of a large polysomnographic field study. J Acoust Soc Am. 2006;119(5 Pt 1):2772-84.
dc.relation.referencesKwak KM, Ju YS, Kwon YJ, Chung YK, Kim BK, Kim H, et al. The effect of aircraft noise on sleep disturbance among the residents near a civilian airport: a cross-sectional study. Ann Occup Environ Med. 2016;28(1):38.
dc.relation.referencesHorne J-A, Pankhurst F-L, Reyner L-A, Hume K, Diamond D. A Field Study of Sleep Disturbance: Effects of Aircraft Noise and Other Factors on 5,742 Nights of Actimetrically Monitored Sleep in a Large Subject Sample. Sleep. 1994;17(2):146-59.
dc.relation.referencesElmenhorst EM, Pennig S, Rolny V, Quehl J, Mueller U, Maaß H, et al. Examining nocturnal railway noise and aircraft noise in the field: sleep, psychomotor performance, and annoyance. Sci Total Environ. 2012;424:48-56.
dc.relation.referencesVon Elm E, et-al. The Strengthening the Reporting of Observational Studies in Epidemiology (STROBE) statement: guidelines for reporting observational studies. Lancet (London, England). 2007;370,9596 (1453-7.).
dc.relation.referencesOnakpoya I, O'Sullivan J, Thompson M, Heneghan C. The effect of wind turbine noise on sleep and quality of life: A systematic review and meta-analysis of observational studies. Environment International. 2015;82:1-9.
dc.relation.referencesJ-M F, et-al. STANDARDIZED GENERAL-PURPOSE NOISE REACTION QUESTIONS FOR COMMUNITY NOISE SURVEYS: RESEARCH AND A RECOMMENDATION. Journal of Sound and vibration. 2001;242(4).
dc.relation.referencesAcoustics — Assessment of noise annoyance by means of social and socio-acoustic surveys https://www.iso.org/obp/ui/#iso:std:iso:ts:15666:ed-1:v1:en2003
dc.relation.referencesRoswall N, Høgh V, Envold-Bidstrup P, Raaschou-Nielsen O, Ketzel M, Overvad K, et al. Residential exposure to traffic noise and health-related quality of life--a population-based study. PLoS One. 2015;10(3):e0120199.
dc.relation.referencesWothge J, Belke C, Möhler U, Guski R, Schreckenberg D. The Combined Effects of Aircraft and Road Traffic Noise and Aircraft and Railway Noise on Noise Annoyance-An Analysis in the Context of the Joint Research Initiative NORAH. Int J Environ Res Public Health. 2017;14(8).
dc.relation.referencesEriksson, Charlotta, Hilding, Agneta, Pyko, Andrei, et al. Long-Term Aircraft Noise Exposure and Body Mass Index, Waist Circumference, and Type 2 Diabetes: A Prospective Study. Environmental health perspectives. 2014;122(7).
dc.relation.referencesDimakopoulou c, et-al. Is aircraft noise exposure associated with cardiovascular disease and hypertension? Results from a cohort study in Athens, Greece. Occupational and environmental medicine. 2016;74(11).
dc.relation.referencesNassur A-M, et-al. Effects of Aircraft Noise Exposure on Heart Rate during Sleep in the Population Living Near Airports. Int J Environ Res Public Health. 2019;16(2).
dc.relation.referencesHaralabidis AS, Dimakopoulou K, Vigna-Taglianti F, Giampaolo M, Borgini A, Dudley ML, et al. Acute effects of night-time noise exposure on blood pressure in populations living near airports. Eur Heart J. 2008;29(5):658-64.
dc.relation.referencesRosenlund M, Berglind N, Pershagen G, Järup L, Bluhm G. Increased prevalence of hypertension in a population exposed to aircraft noise. Occup Environ Med. 2001;58(12):769-73.
dc.relation.referencesEriksson C, Bluhm G, Hilding A, Ostenson CG, Pershagen G. Aircraft noise and incidence of hypertension--gender specific effects. Environ Res. 2010;110(8):764-72.
dc.relation.referencesPyko A, Lind T, Mitkovskaya N, Ögren M, Östenson CG, Wallas A, et al. Transportation noise and incidence of hypertension. Int J Hyg Environ Health. 2018;221(8):1133-41.
dc.relation.referencesRhee MY, Kim HY, Roh SC, Kim HJ, Kwon HJ. The effects of chronic exposure to aircraft noise on the prevalence of hypertension. Hypertens Res. 2008;31(4):641-7.
dc.relation.referencesEriksson C, Rosenlund M, Pershagen G, Hilding A, Ostenson CG, Bluhm G. Aircraft noise and incidence of hypertension. Epidemiology. 2007;18(6):716-21.
dc.relation.referencesKim CS, Grady ST, Hart JE, Laden F, VoPham T, Nguyen DD, et al. Long-term aircraft noise exposure and risk of hypertension in the Nurses' Health Studies. Environ Res. 2022;207:112195.
dc.relation.referencesPearson T, Campbell MJ, Maheswaran R. Acute effects of aircraft noise on cardiovascular admissions - an interrupted time-series analysis of a six-day closure of London Heathrow Airport caused by volcanic ash. Spat Spatiotemporal Epidemiol. 2016;18:38-43.
dc.relation.referencesRojek M, Rajzer MW, Wojciechowska W, Drożdż T, Skalski P, Pizoń T, et al. Relationship among long-term aircraft noise exposure, blood pressure profile, and arterial stiffness. J Hypertens. 2019;37(7):1350-8.
dc.relation.referencesSchmidt F-P, et-al. Effect of nighttime aircraft noise exposure on endothelial function and stress hormone release in healthy adults. European Heart Journal 2013;34(45).
dc.relation.referencesBasner M, McGuire S. WHO Environmental Noise Guidelines for the European Region: A Systematic Review on Environmental Noise and Effects on Sleep. Int J Environ Res Public Health. 2018;15(3).
dc.relation.referencesBasner M, Griefahn B, van den Berg M. Aircraft noise effects on sleep: Mechanisms, mitigation and research needs. Noise Health. 2010;12(47):95-109.
dc.relation.referencesBasner M, Samel A. Nocturnal aircraft noise effect. Noise Health. 2004;6(22).
dc.relation.referencesPasschier-Vermer W, et-al. sleep disturbance and aircraft noise, exposure-effect relationship. https://www2.vlieghinder.nl/knipsels_pmach/pdfs/0110xx_TNO_Sleep_disturbance_and_aircraft_noise_exposure_effect_rapport3.pdf: Division Public Health Wassenaarseweg; 2002.
dc.relation.referencesMichaud DS, Feder K, Keith SE, Voicescu SA, Marro L, Than J, et al. Effects of Wind Turbine Noise on Self-Reported and Objective Measures of Sleep. Sleep. 2016;39(1):97-109.
dc.relation.referencesBaudin C, LefÈvre M, Champelovier P, Lambert J, Laumon B, Evrard AS. Self-rated health status in relation to aircraft noise exposure, noise annoyance or noise sensitivity: the results of a cross-sectional study in France. BMC Public Health. 2021;21(1):116.
dc.relation.referencesEvrard AS, Lefèvre M, Champelovier P, Lambert J, Laumon B. Does aircraft noise exposure increase the risk of hypertension in the population living near airports in France? Occup Environ Med. 2017;74(2):123-9.
dc.rights.accessrightsinfo:eu-repo/semantics/openAccess
dc.subject.proposalRuido
dc.subject.proposalSueño
dc.subject.proposalHipoacusia
dc.subject.proposalCalidad
dc.subject.proposalVida
dc.subject.proposalMolestia
dc.subject.proposalAeropuerto
dc.subject.proposalAviones
dc.subject.proposalAeronaves
dc.subject.proposalNoise
dc.subject.proposalAircraft
dc.subject.proposalCardiovascular
dc.subject.proposalSleep
dc.subject.proposalAnnoyance
dc.title.translatedEffects of aircraft noise on neurosensorial hearing loss, cardiovascular risk factors, quality of life, and quality of sleep, in resident communities near airports: a systematic review
dc.type.coarhttp://purl.org/coar/resource_type/c_bdcc
dc.type.coarversionhttp://purl.org/coar/version/c_ab4af688f83e57aa
dc.type.contentText
dc.type.redcolhttp://purl.org/redcol/resource_type/TM
oaire.accessrightshttp://purl.org/coar/access_right/c_abf2
dcterms.audience.professionaldevelopmentEstudiantes
dcterms.audience.professionaldevelopmentGrupos comunitarios
dcterms.audience.professionaldevelopmentInvestigadores
dcterms.audience.professionaldevelopmentPadres y familias
dcterms.audience.professionaldevelopmentPúblico general


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Atribución-SinDerivadas 4.0 InternacionalEsta obra está bajo licencia internacional Creative Commons Reconocimiento-NoComercial 4.0.Este documento ha sido depositado por parte de el(los) autor(es) bajo la siguiente constancia de depósito