Trajectories associated to regional and extra-regional pollen transport in the southeast of Buenos Aires province, Mar del Plata (Argentina)

Long range transport of airborne pollen has been seldom studied in South America. Backward trajectories of Celtis and Nothofagus pollen grains trapped over a meteorological station outside Mar del Plata City were calculated in one-hour steps using the regional hybrid model developed by the NOAA (HYS...

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Autor principal: Gassmann, M.I
Otros Autores: Pérez, C.F
Formato: Capítulo de libro
Lenguaje:Inglés
Publicado: 2006
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030 |a IJBMA 
100 1 |a Gassmann, M.I. 
245 1 0 |a Trajectories associated to regional and extra-regional pollen transport in the southeast of Buenos Aires province, Mar del Plata (Argentina) 
260 |c 2006 
270 1 0 |m Gassmann, M.I.; Departamento de Ciencias de la Atmósfera Y Los Océanos, Facultad de Ciencias Exactas Y Naturales, Cdad. Universitaria, C1428EHA Buenos Aires, Argentina; email: gassmann@at.fcen.uba.ar 
506 |2 openaire  |e Política editorial 
504 |a Arya, S.P., (1999) Air Pollution Meteorology and Dispersion, , Oxford University Press, New York 
504 |a Bianchi, M.M., (1994) El Muestreo Aerobiológico en Mar del Plata. Aportes de Una Nueva Metodología Al Análisis de Polen. Su Aplicación en El Diagnóstico de la Polinosis, , Monografía N° 10. Academia Nacional de Ciencias, Buenos Aires 
504 |a Bianchi, M.M., Olabuenaga, S.E., Dzendoletas, M.A., Crivelli, E.S., El registro polínico atmosférico de San Carlos de Bariloche: Setiembre 2001-setiembre 2002 (2004) Rev Mus Argentino Cien Nat, 6, pp. 1-7 
504 |a Bortenschlager, S., Pollenanalyse des Gletschereises-Grundlegende Fragen der Pollenanalyse überhaupt (1969) Textbook of Pollen Analysis, , Faegri K, Iversen J (eds) Wiley, Chichester 
504 |a Cabezudo, B., Recio, M., Sánchez-Laulhé, J.M., Trigo, M.M., Toro, F.J., Polvorinos, F., Atmospheric transportation of marihuana pollen from North Africa to the southwest of Europe (1997) Atmos Environ, 31, pp. 3323-3328 
504 |a Cabrera, A.L., (1976) Enciclopedia Argentina de Agricultura Y Jardinería, , Regiones Fitogeográficas Argentinas. Editorial ACME T II, Buenos Aires 
504 |a Draxler, R.R., Trajectory optimization for balloon flight planning (1996) Weather Forecast, 11, pp. 111-114 
504 |a Draxler, R.R., Hess, G.D., Description of the Hysplit_4 modelling system (1997) NOAA Technical Memorandum ERL ARL-224, p. 24. , December 
504 |a Draxler, R.R., Hess, G.D., An overview of the Hysplit_4 modelling system for trajectories, dispersion and deposition (1998) Aust Meteorol Mag, 47, pp. 295-308 
504 |a Gassmann, M.I., Pérez, C.F., Gardiol, J.M., Sea-Land Breeze in a Coastal City and its Effect in the Pollen Transport (2002) Int J Biometeorol, 46, pp. 118-125 
504 |a Hafsten, U., Pleistocene development of vegetation and climate in Tristan da Cunha and Gough Island (1960) Textbook of Pollen Analysis, , Faegri K, Iversen J (eds) Wiley, Chichester 
504 |a Hirst, J.M., An automatic volumetric spore trap (1952) Ann Appl Biol, 39, pp. 257-265 
504 |a Hirst, J.M., Hurst, G.W., Long-distance spore transport (1967) Airborne Microbes, pp. 307-344. , Gregory PH, Monteith JL (eds) Cambridge University Press, Cambridge 
504 |a Hjelmroos, M., Evidence of long-distance transport of Betula pollen (1991) Grana, 30, pp. 215-228 
504 |a Hjelmroos, M., Franzén, L.G., Implications of recent long-distance pollen transport events for the interpretation of fossil pollen records in Fennoscandia (1994) Rev Palaeobot Palynol, 82, pp. 175-189 
504 |a (1997) HYSPLIT_4 (Hybrid Single-Particle Lagrangian Integrated Trajectory Model), , http://www.arl.noaa.gov/ready/hysplit4.html, NOAA Air Resources Laboratory Silver Spring, MD, USA 
504 |a Johansen, S., Airborne Pollen and spores on the Arctic Island of Jan Mayen (1991) Grana, 30, pp. 373-379 
504 |a Johansen, S., Hafsten, U., Airborne pollen and spore registrations at Ny-Alesund, Svalbard, summer 1986 (1988) Polar Res, 6, pp. 11-17 
504 |a Käpylä, M., Penttinen, A., An evaluation of the microscopical counting methods of the tape in Hirst-Burkard pollen and spore trap (1981) Grana, 20, pp. 131-141 
504 |a Kawashima, S., Takahashi, Y., Modelling and simulation of mesoscale dispersion processes for airborne cedar pollen (1995) Grana, 34, pp. 142-150 
504 |a Lanner, R., Needed: A new approach to the study of pollen dispersal (1966) Textbook of Pollen Analysis, pp. 27-28. , Faegri, K and Iversen J. (eds) Wiley, Chichester 
504 |a Latorre, F., Comparison between phonological and aerobiological patterns of some arboreal species of Mar del Plata (Argentina) (1997) Aerobiologia, 13, pp. 49-59 
504 |a Latorre, F., Pérez, C.F., One year of airborne pollen sampling in Mar del Plata (Argentina) (1997) Grana, 36, pp. 49-53 
504 |a Linskens, H.F., Bargagli, R., Cresti, M., Focardi, S., Entrampment of long-distance transported pollen prains by various moss species in coastal Victoria Land, Antarctica (1993) Polar Biol, 13, pp. 81-87 
504 |a Lovelock, J.E., Maggs, R.J., Wade, R.J., Halogenated hydrocarbons in and over Atlantic (1973) Nature, 241, pp. 194-196 
504 |a Machta, L., Global scale dispersion by the atmosphere (1958) Proceedings of Second United Nations Conference on the Peaceful Uses of Atomic Energy, 18. , Geneva 
504 |a McAndrews, J.H., Pollen analysis of the 1973 ice core from Devon Island glacier, Canada (1984) Textbook of Pollen Analysis, , Faegri K, Iversen J (eds) Wiley, Chichester 
504 |a Nitiu, D.S., Annual, daily and intradiurnal variation of Celtis pollen in the city of la Plata, Argentina (2003) Aerobiologia, 19, pp. 71-78 
504 |a Paez, M.M., Schäbitz, F., Stutz, S., Modern pollen-vegetation and isopoll maps in southern Argentina (2001) J Biogeogr, 28, pp. 997-1021 
504 |a Palma, B., Riveros, M., Barlow, P., Pollen flow in three species of Nothofagus in the south of Chile (1996) Acta Hort. (ISHS), 416, pp. 73-80. , http://www.actahort.org/books/416/416_8.htm 
504 |a Parodi, L., Distribución geográfica de los talares de la Pcia. de Buenos Aires (1940) Darwiniana, 4, pp. 33-56 
504 |a Pendergast, M.M., Meteorological fundamentals (1984) Atmospheric Science and Power Production, pp. 33-79. , Randerson D (ed) U.S. Department of Energy, Technical Information Center, Oak Ridge, TN 
504 |a Pérez, C.F., Paez, M.M., Seasonal airborne pollen pattern in Mar del Plata city, Argentina (1998) Aerobiologia, 14, pp. 383-389 
504 |a Pérez, C.F., (2000) Caracterización de la Nube Polínica Y Determinantes Meteorológicos de la Dispersión del Sistema Urbano-rural de Mar del Plata, , PhD Thesis. University of Mar del Plata 
504 |a Pérez, C.F., Gardiol, J.M., Paez, M.M., Difusión atmosférica de polen en el sistema urbano-rural de la ciudad de Mar del Plata (Argentina), en los tres últimos meses del año 1995 (2001) Polen, 11, pp. 87-98 
504 |a Pérez, C.F., Gardiol, J.M., Paez, M.M., Comparison of diurnal variation of airborne pollen in Mar del Plata (Argentina). 2. Arboreal pollen (2003) Grana, 42, pp. 161-167 
504 |a Pérez, C.F., Stutz, S., Pastorino, S., Latorre, F., Depositación polínica actual en el area de la laguna de mar Chiquita, Mar del Plata, Argentina (2003) XII Simposio Argentino de Paleobotánica Y Palinología, , Buenos Aires. Resúmenes 
504 |a Prentice, C., Pollen representation, source area, and basin size: Toward a unified theory of pollen analysis (1985) Quat Res, 23, pp. 76-86 
504 |a Raynor, G., Ogden, G., Hayes, J., Dispersion and deposition of corn pollen from experimental sources (1972) Agron J, 64, pp. 420-427 
504 |a Tampieri, F., Mandrioli, P., Puppi, G.L., Medium range transport of airborne pollen (1977) Agric Meteorol, 18, pp. 9-20 
520 3 |a Long range transport of airborne pollen has been seldom studied in South America. Backward trajectories of Celtis and Nothofagus pollen grains trapped over a meteorological station outside Mar del Plata City were calculated in one-hour steps using the regional hybrid model developed by the NOAA (HYSPLIT 4.5) and the data of the NCEP filed in the NOAA server. Results showed that the observed trajectories agree with the location of vegetation sources of the collected tree species. In the case of Celtis, the transport was associated to anticyclones located east of the city, generating winds with a N-NE component, which produce pollen cloud advection from the Celtis forests located some tens of kilometers to the N and NE of the city. The sources of Nothofagus pollen correspond to a narrow strip on the Andes slopes between 39° and 55°S, at least 1100 km to the SW of Mar del Plata. The transport was associated to eastward displacement of the troughs corresponding to the Westerlies circulation and the presence of an anticyclone system that brings back Nothofagus pollen towards Mar del Plata area. © ISB 2006.  |l eng 
536 |a Detalles de la financiación: Universidad de Buenos Aires, IX-286/04 
536 |a Detalles de la financiación: Acknowledgements The present study was made with the support of the University of Buenos Aires grant IX-286/04. We gratefully thank the Argentinean Servicio Meteorologico Nacional and the Mar del Plata University which provided the meteorological surface data for this study. 
593 |a Departamento de Ciencias de la Atmósfera Y Los Océanos, Facultad de Ciencias Exactas Y Naturales, Cdad. Universitaria, C1428EHA Buenos Aires, Argentina 
651 4 |a ARGENTINA 
651 4 |a ARGENTINA 
651 4 |a ARGENTINA 
690 1 0 |a CELTIS 
690 1 0 |a LONG RANGE TRANSPORT 
690 1 0 |a NOTHOFAGUS 
690 1 0 |a POLLEN 
690 1 0 |a TRAJECTORY 
690 1 0 |a ARTICLE 
690 1 0 |a BIOLOGICAL MODEL 
690 1 0 |a FAGACEAE 
690 1 0 |a GEOGRAPHY 
690 1 0 |a HUMAN 
690 1 0 |a METEOROLOGICAL PHENOMENA 
690 1 0 |a PHYSIOLOGY 
690 1 0 |a POLLEN 
690 1 0 |a PUBLIC HEALTH 
690 1 0 |a TIME 
690 1 0 |a TRANSPORT AT THE CELLULAR LEVEL 
690 1 0 |a ULMACEAE 
690 1 0 |a BIOLOGICAL TRANSPORT 
690 1 0 |a FAGACEAE 
690 1 0 |a GEOGRAPHY 
690 1 0 |a HUMANS 
690 1 0 |a METEOROLOGICAL CONCEPTS 
690 1 0 |a METEOROLOGICAL FACTORS 
690 1 0 |a MODELS, BIOLOGICAL 
690 1 0 |a POLLEN 
690 1 0 |a PUBLIC HEALTH 
690 1 0 |a TIME FACTORS 
690 1 0 |a ULMACEAE 
690 1 0 |a CELTIS 
690 1 0 |a NOTHOFAGUS 
700 1 |a Pérez, C.F. 
773 0 |d 2006  |g v. 50  |h pp. 280-291  |k n. 5  |p Int. J. Biometeorol.  |x 00207128  |w (AR-BaUEN)CENRE-317  |t International Journal of Biometeorology 
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