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Effect of biometeorological variables on the onset of phenophases derived from MODIS data and visual observations


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Ahas, R., Jaagus, J., Aasa, A., 2000: The phenological calendar of Estonia and its correlation with mean air temperature. International Journal of Biometeorology 44:159-166. Search in Google Scholar

Badeck, F. W., Bondeau, A., Böttcher, K., Doktor, D., Lucht, W., Schaber, J. et al., S., 2004: Responses of spring phenology to climate change. New Phytologist 162:295-309. Search in Google Scholar

Bagar, R., Klimánek, M., Klimánková, D., 2001: Fenologie je klíčem k poznání přídody. Ochrana prírody 56:85-89. Search in Google Scholar

Barna, M., Schieber, B., Cicák, A., 2009: Effect of post-cutting changes in site conditions on morphology and phenology of naturally regenerated beech seedlings (Fagus sylvatica L.). Polish Journal of Ecology 57:461-472. Search in Google Scholar

Baumgartner, A., Liebscher, H. J., 1990: Allgemaine hydrologie. Berlin, Stuttgart: Gebrüder Bornträger, 660 pp. Search in Google Scholar

Beck, P. S. A., Atzberger, C., Høgda, K. A., Johansen, B., Skidmore, A. K., 2006: Improved monitoring of vegetation dynamics at very high latitudes: A new method using MODIS NDVI. Remote Sensing of Environment 100:321-334. Search in Google Scholar

Brandýsová, V., Bucha, T., 2012: Vplyv prízemnej vegetácie a podrastu na priebeh fenologickej krivky bukových porastov odvodenej z údajov MODIS. Lesnícky časopis - Forestry Journal 58:231-242. Search in Google Scholar

Brandýsová, V., 2013: Využitie vegetačných indexov na sledovanie zmien fenologických prejavov bukových porastov. Dizertačná práca. Zvolen, Technická univerzita vo Zvolene, 130 pp. Search in Google Scholar

Braslavská, O., Kamenský, L., 1996: Fenologické pozorovanie lesných rastlín: metodický predpis. Bratislava: SHMÚ, 22 pp. Search in Google Scholar

Braslavská, O., 2000: Monitoring zmeny klímy v rastlinných ekosystémoch prostredníctvom fenologických pozorovaní. Životné prostredie 34:81-83. Search in Google Scholar

Bucha, T., 1999: Classification of tree species composition in Slovakia from satellite images as a part of monitoring forest ecosystems biodiversity. Acta Instituti Forestalis Zvolen 9:65-84. Search in Google Scholar

Bucha, T., Koreň, M., 2009: Kontinuálne sledovanie odozvy lesných ekosystémov na meniace sa podmienky prírodného prostredia pomocou údajov DPZ - tvorba údajovej bázy. In: Bucha, T., Pavlendová, H. (eds.): Diaľkový prieskum Zeme - lesy v meniacich sa prírodných podmienkach. Zvolen, NLC-LVÚ, p. 35-50. Search in Google Scholar

Bucha, T., Priwitzer, T., Koreň, M., 2011: Modelovanie fenologického vývoja lesných porastov pomocou vegetačného indexu NDVI odvodeného zo satelitných snímok MODIS. Lesnícky časopis - Forestry Journal 57:187-196. Search in Google Scholar

Caffarra, A., Donnelly, A., 2011: The ecological significance of phenology in four different tree species: effect of light and temperature on bud burst. International Journal of Biometeorology 55:711-721. Search in Google Scholar

Čufar, K., Luis, M. D., Saz, M. A., Črepinšek, Z., Kajfež-Bogataj, L., 2012: Temporal shifts in leaf phenology of beech (Fagussylvatica) depend on elevation. Trees 26:1091-1100. Search in Google Scholar

Defila, C., Clot, B., 2001: Phytophenological trends in Switzerland. International Journal of Biometeorology 45:203-207. Search in Google Scholar

Estrella, N., Menzel, A., 2006: Response of leaf colouring in four deciduous tree species to climate and weather in Germany. Climate Research 32:253-267. Search in Google Scholar

Falusi, M., Calamassi, R., 1990: Bud dormancy in beech (Fagussylvatica L.). Effect of chilling and photoperiod on dormancy release of beech seedlings. Tree Physiology 6:429-438. Search in Google Scholar

Felts, E. S., Sonnentag, O., Ryu, Y., Macfarlane, C., Hufens, K., Keenan, T. F. et al., 2011: Is digital photography a viable method for measuring leaf index for phenological research in closed forest ecosystems? American Geophysical Union, Fall Meeting 2011. Available at: adsabs.harvard.edu/abs/2011/ AGUFM.B13AO537F [cit. 25. februára 2013]. Search in Google Scholar

Fisher, J. I., Mustard, J. F., 2007: Cross-scalar satellite phenology from ground, Landsat and MODIS data. Remote Sensing of Environment 109:261-273. Search in Google Scholar

Fisher, J. I., Mustard, J. F., Vadeboncoeur, M. A., 2006: Green leaf phenology at Landsat resolution: Scaling from the field to the satellite. Remote Sensing of Environment 100:265-279. Search in Google Scholar

Ganguly, S., Friedl, M. A., Tan, B., Zhang, X., Verma, M., 2010: Land surface phenology from MODIS: Characterization of the Collection 5 global cover Dynamics product. Remote Sensing of Environment 114:1805-1816. Search in Google Scholar

Gao, X., Giorgi, F., 2008: Increased aridity in the Mediterranean region under greenhouse gas forcing estimated from high resolution simulations with a regional climate model, Global and Planetary Change 62:195-209. Search in Google Scholar

Gömöry, D., Kukla, J., Schieber, B., 2011: Taxanómia, fylogenéza a rozšírenie buka v Európe a na Slovensku. In: Barna, M, Kulfan, J., Bublinec, E. (eds.): Buk a bukové ekosystémy Slovenska. Bratislava, VEDA, p. 37-62. Search in Google Scholar

Guyon, D., Guillot, M., Vitasse, Y., Cardot, H., Hagolle, O., Delzon, S., Wigneron, J. P., 2011: Monitoring elevation variations in leaf phenology of deciduous broadleaf forests from SPOT/ VEGETATION time-series. Remote Sensing of Environment 115:615-627. Search in Google Scholar

Howe, G. T., Gardner, G., Hackett, W. P., Furnier, G. R., 1996: Phytochrome control of short-day-induced bud set in black cottonwood. Physiologia Plantarum 97:95-103. Search in Google Scholar

Chmielewski, F. M., Rötzer, T. 2001: Response of tree phenology to climate change across Europe. Agricultural and Forest Meteorology 108:101-112. Search in Google Scholar

Jönsson, A. M., Hellström, M., Bärring, L., Jönsson, P., 2010: Annual changes in MODIS vegetation indices of Swedish coniferous forests in relation to snow dynamics and tree phenology. Remote Sensing of Environment 114:2719-2730. Search in Google Scholar

Kang, S., Running, S. W., Lim, J. H., Zhao, M., Park, CH. R., Loehman, R., 2003: A regional phenology model for detecting onset of greenness in temperate mixed forests, Korea: an application of MODIS leaf area index. Remote Sensing of Enviroment 86:232-242. Search in Google Scholar

Kramer, K., 1994: Selecting a model to predict the onset of growth of Fagus sylvatica L. Journal of Aplied Ecology 31:172-181. Search in Google Scholar

Kramer, K., 1995: Phenotypic plasticity of the phenology of seven European tree species in relation to climatic warming. Plant, Cell & Environment 18:93-104. Search in Google Scholar

Kramer, K., 1996: Phenology and growth of European trees in relation to climate change. In: Lieth, H., Schwartz, M. D. (eds.): Phenology of seasonal climates I. Backhuys, The Netherlands, 39-50. Search in Google Scholar

Menzel, A., 2003: Plant phenological anomalies in Germany and their relation to air temperature and NAO. Climatic Change 57:243-263. Search in Google Scholar

Menzel, A., 2002: Phenology: its importance to the global change community. Climatic Change 54:379-385. Search in Google Scholar

Menzel, A., Estrella, N., Fabian, P., 2001: Spatial and temporal variability of the phenological seasons in Germany from 1951 to 1996. Global Change Biology 7:657-666. Search in Google Scholar

Menzel, A., Sparks, T. H., Estrella, N., Koch, E., Aasa, A., Ahas, R. et al., 2006: European phenological response to climate change matches the warming pattern. Global Change Biology 12:1969-1976. Search in Google Scholar

Minďáš, J., Páleník, V., Nejedlík, P. (eds.), 2011: Dôsledky klimatickej zmeny a možné adaptačné opatrenia v jednotlivých sektoroch - Záverečná správa. Zvolen, Bratislava, 253 p. Search in Google Scholar

Možný, M., Hájková, L., Stalmacher, M., Bareš, D., Novák, J., Trnka, M. et al., 2012: Monitoring phenology by use of digital photography. In: Kožnarová, V., Sulovská, S., Hájková, L. (eds.): Bioclimate 2012 - Bioclimatology of Ecosystems. Ústí nad Labem, 29. - 31. 8. 2012, 74-75. Available at: http://www.cbks.cz/ [cit. 20. februára 2013]. Search in Google Scholar

Nagai, S., Nasahara, K. N., Muraoka, H., Akiyama, T., Tsuchida, S., 2010: Field experiments to test the use of the normalized-difference vegetation index for phenology detection. Agricultural and Forest Meteorology 150:152-160. Search in Google Scholar

Narasimhan, R., Stow, D., 2010: Daily MODIS products for analyzing early season vegetation dynamics across the North Slope of Alaska. Remote Sensing of Environment 114:1251-1262. Search in Google Scholar

Nielsen, CH. N., Jorgensen, F. V., 2003: Phenology and diameter increment in seedlings of European beech (Fagus sylvatica L.) as affected by different soil water content: variation between and within provenances. Forest Ecology and Management 174: 233-249. Search in Google Scholar

Novák, V., 1995: Vyparovanie vody v prírode a metódy jeho určovania. Bratislava, VEDA, 260 p. Search in Google Scholar

Pálešová, I., 2012: Vplyv meteorologických podmienok a vodnej bilancie na fenologické fázy vybraných drevín. Dizertačná práca. Zvolen: Technická univerzita vo Zvolene, 129 p. Search in Google Scholar

Piao, S. L., Fang, J., Zhou, L., Ciais, P., Zhu, B., 2006: Variations in satellite-derived phenology in China’s temperate vegetation. Global Change Biology 12:672-685. Search in Google Scholar

Rötzer, T., Chmielewski, F. M., 2001: Phenological maps of Europe. Climate Research 18:249-257. Search in Google Scholar

Schieber, B., Janík, R., Snopková, Z., 2009: Phenology of four broad-leaved forest trees in a submountain beech forest. Journal of Forest Science 55:15-22. Search in Google Scholar

Soudani, K., Hmimina, G., Delpierre, N., Pontailler, J.-Y., Aubinet, M., Bonal, D. et al., 2012: Ground-based Network of NDVI measurements for tracking temporal dynamics of canopy structure and vegetation phenology in different biomes. Remote Sensing of Environment 123:234−245. Search in Google Scholar

Sparks, T. H., Menzel, A., 2002: Observed changes in seasons: an overview. International Journal of Climatology 22:1715-1725. Search in Google Scholar

Sparks, T. H., Jeffree, E. P., Jeffree, C. E., 2000: An examination of the relationship between flowering times and temperature at the national scale using long-term phenological records from the UK. International Journal of Forestry 44:82-87. Search in Google Scholar

Střelcová, K., Priwitzer, T., Minďáš, J., 2008: Phenological phases and transpiration of European beech in the mountine mixed forest. Meteorologický časopis 11:21-29. Search in Google Scholar

Škvarenina, J., Krížová, E., Tomlain, J., 2004: Impact of the climate change on the water balance of altitudinal vegetation stages in Slovakia. Ekológia 23:13-29. Search in Google Scholar

Škvarenina, J., Tomlain, J., Krížová, E., 2002: Klimatická vodní bilance vegetačních stupňů na Slovensku. Meteorologické zprávy 55:103-109. Search in Google Scholar

Škvarenina, J., Tomlain, J., Hrvoľ, J., Škvareninová, J., 2009: Occurrence of Dry and Wet Periods in Altitudinal Vegetation Stages of West Carpathians in Slovakia: Time-Series Analysis 1951-2005. Springer Science +Business Media B.V. 2009:97-106. Search in Google Scholar

Vermote, E. F., Kotchenova, S. Y. and Ray, J. P., 2011: MODIS Surface Reflectance User’s Guide. Available at: http://modis-sr. ltdri.org/products/MOD09_UserGuide_v1_3.pdf (last date accessed: September the 27., 2013). Search in Google Scholar

Vitasse, Y., Delzon, S., Dufrene, E., Pontiller, J. Y., Louvet, J. M., Kremer, A. et al., 2009a: Leaf phenology sensitivity to temperature in European trees: Do within-species populations exhibit similar responses? Agricultural and Forest Meteorology 149:735-744. Search in Google Scholar

Vitasse, Z., Porté, A. J., Kremer, A., Michalet, R., Delzon, S., 2009b: Responses of canopy duration to temperature changes in four temperate tree species: relative contributions of spring and autumn leaf phenology. Oecologia 161:187-198. Search in Google Scholar

Way, D. A., 2011: Tree phenology responses to warming: spring forward, fall back? Tree Physiology 31:469-471. Weier, J. & Herring, D., 2011: Measuring vegetation (NDVI & EVI). Accessible on the Internet: http://earthobservatory.nasa.gov/Features/MeasuringVegetation/measuring_vegetation_1.php [cit. 22 March 2013]. Search in Google Scholar

Wolfe, R. E., Nishihama, M., Fleig, A. J., Kuyper, J. A., Roy, D. P., Storey, J. C.et al., 2002: Achieving sub-pixel geolocation accuracy in support of MODIS land science. Remote Sensing of Environment 83:31-49. Zhang, X., Friedl, M. A., Schaaf, C. B., Strahler, A. H., Hodges, J. C. F., Gao, F. et al., 2003: Monitoring vegetation phenology using MODIS. Remote Sensing of Environment 84:471-475. Search in Google Scholar

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