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Spring phenology of oak stands in the Western Carpathians: validation of satellite metrics from MODIS using ground-based observations

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Barka, I., Bucha, T., Molnár, T., Móricz, T., Somogyi, Z., Koreň, M., 2019: Suitability of MODIS-based NDVI index for forest monitoring and its seasonal applications in Central Europe. Central European Forestry Journal, 65:206–217.10.2478/forj-2019-0020Search in Google Scholar

Beck, P. S. A, Atzberger, T. C., Hogda, 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, 100:321–334.10.1016/j.rse.2005.10.021Search in Google Scholar

Berra, E., Gaulton, R., 2021: Remote sensing of temperate and boreal forest phenology: Areview of progress, challenges and opportunities in the intercomparison of in-situ and satellite phenological metrics. Forest Ecology and Management, 480:118663.10.1016/j.foreco.2020.118663Search in Google Scholar

Braslavská, O., Kamenský, L., 1996: Fenologické pozorovania lesných drevín. Metodický predpis Slovenského hydrometeorologického ústavu. SHMÚ, 22 s.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. Zvolen, LVÚ Zvolen, Acta Instituti Forestalis Zvolen, Tomus 9:65–84.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, 57:187–196.10.2478/v10114-011-0008-9Search in Google Scholar

Bucha, T., Koreň, M., 2014: Fenológia dubových abukových porastov v období 2000–2014. In: Bucha, T. et al. (ed.): Satelity v službách lesa. Bratislava, SAP, p. 101–115.Search in Google Scholar

Bucha, T., Koreň, M., 2017: Phenology of the beech forests in western Carpathians from MODIS for 2000–2015. iForest - Biogeosciences and Forestry, 10:537–546.10.3832/ifor2062-010Search in Google Scholar

Fisher, J. I., Mustard J. F., 2007: Cross-scalar satellite phenology from ground, Landsat and MODIS data. Remote Sensing of Environment, 109:261–273.10.1016/j.rse.2007.01.004Search in Google Scholar

Gafenco (Pleşca), I. M., Pleşca, B. I., Apostol, E. N., Şofletea, N., 2022: Spring and Autumn Phenology in Sessile Oak (Quercus petraea) Near the Eastern Limit of Its Distribution Range. Forests, 13:1125.10.3390/f13071125Search in Google Scholar

Gray, R. E. J., Ewers, R. M., 2021: Monitoring Forest Phenology in a ChangingWorld. Forests, 12:297.10.3390/f12030297Search in Google Scholar

Heumann, B.W., Seaquist, J.W., Eklundh, L., Jönsson, P., 2007: AVHRR derived phenological change in the Sahel and Soudan, Africa, 1982–2005. Remote Sensing of Environment, 108:385–392.10.1016/j.rse.2006.11.025Search in Google Scholar

Hmimina, G., Dufrêne, E., Pontailler, J. Y., Delpierre, N., Aubinet, M., Caquet, B. et al., 2013: Evaluation of the potential of MODIS satellite data to predict vegetation phenology in different biomes: An investigation using ground-based NDVI measurements. Remote Sensing of Environment, 132:145–158.10.1016/j.rse.2013.01.010Search in Google Scholar

Kočický, D., Ivanič, B., 2011: Geomorfologické členenie Slovenska. Štátny geologický ústav Dionýza Štúra, Bratislava, Available at: https://www.geology.sk/new/sites/default/files/media/geois/PrehladneMapy/GM_mapa.pdfSearch in Google Scholar

Lukasová, V., Lang, M., Škvarenina, J., 2014: Seasonal changes in NDVI in relation to phenological phases, LAI and PAI of beech forests. Baltic Forestry, 20:248–262.Search in Google Scholar

Lukasová, V., Bucha, T., Škvareninová, J., Škvarenina, J., 2019: Validation and Application of European beech Phenological Metrics Derived from MODIS data along an Altitudinal Gradient. Forests, 10:60. doi:10.3390/f10010060Open DOISearch in Google Scholar

Miklós, L. 2002: Atlas krajiny Slovenskej republiky : Landscape atlas of the Slovak Republic (1. vyd.). Bratislava, Ministerstvo životného prostredia SR.Search in Google Scholar

Moravčík, M. et al., 2021: Report on the forest sector of the Slovak republic 2020 – Green report. Ministry of Agriculture and Rural Development of the Slovak Republic, Bratislava and National Forest Centre, Zvolen, 69 p.Search in Google Scholar

Norris, J. R., Walker, J. J., 2020: Solar and sensor geometry, not vegetation response, drive satellite NDVI phenology in widespread ecosystems of the western United States. Remote Sensing of Environment, 249: 12013.10.1016/j.rse.2020.112013Search in Google Scholar

Pavlendová, H., Snopková, Z., Priwitzer, T., Bucha, T., 2014: Using of long-term phenological observations of SHMI and NFC for validation of regional phenology model for European beech. In: Roznovsky, J., Litschmann, T. (eds.): Proceedings of the International Conference Mendel and Bioclimatology. Masaryk University (Brno, Czech Republic) 3–5 Sept 2014, p. 294–311. Available at: http://www.better-cities.eu/bulletin/wp-content/uploads/2014/09/mendel_ConferenceProceedingsMendel.pdfSearch in Google Scholar

Piao, S., Fang, J., Zhou, L., Ciais, P., Zhu, B., 2006: Variations in satelite-derived phenology in China s temperate vegetations. Global Change Biology, 12:672–685.10.1111/j.1365-2486.2006.01123.xSearch in Google Scholar

Piao, S. L., Liu, Q., Chen, A. P., Janssens, I. A., Fu, Y. S., Dai, J. H. et al., 2019: Plant phenology and global climate change: Current progresses and challenges. Global Change Biology, 25:1922–1940.10.1111/gcb.1461930884039Search in Google Scholar

Preushler, T., 1999: Manual on methods and criteria for harmonized sampling, assessment, monitoring and analysis of the effects of air pollution on forest. Part IX, Phenological observation. UN-ECE, 35 p.Search in Google Scholar

Puchałka, R., Koprowski, M., Gričar, J., Przybylak, R., 2017: Does tree-ring formation follow leaf phenology in Pedunculate oak (Quercusrobur L.)? European Journal of Forest Research, 136:259–268.10.1007/s10342-017-1026-7Search in Google Scholar

Richardson, A. D., Keenan, T. F., Migliavacca, M., Ryu, Y., Sonnentag, O., Toomey, M., 2013: Climate change, phenology, and phenological control of vegetation feedbacks to the climate system. Agricultural and Forest Meteorology, 169:156–173.10.1016/j.agrformet.2012.09.012Search in Google Scholar

Schieber, B., Janík, R., Snopková, Z., 2009: Phenology of four broad-leaved forest trees in asubmountain beech forest. Journal of Forest Science, 55:15–22.10.17221/51/2008-JFSSearch in Google Scholar

Soudami, K., Maire, G. M., Dufrene, E., Francois, Ch., Delpierre, N., Ulrich, E. et al., 2008: Evaluation of the onset of green-up in temperate deciduos broadleaf forests derived from Moderate Resolution Imaging Spectroradiometer (MODIS) data. Remote Sensing of Environment, 122:2643–2655.10.1016/j.rse.2007.12.004Search in Google Scholar

Stöckli, R., Vidale, P. L., 2004: European plant phenology and climate as seen in a 20-year AVHRR land-surface parameter dataset. International Journal of Remote Sensing, 25:303–3330.10.1080/01431160310001618149Search in Google Scholar

Škvareninová, J., 2008: Vyhodnotenie nástupu jarných fenofáz duba letného (Quercus robur L.) v Zvolenskej kotline vo vzťahu k teplotným sumám. Meteorologický časopis, 11:15–20.Search in Google Scholar

Škvareninová, J., 2014: Phenological signs of pedunculate oak (Quercus robur L.) in Slovakia as a bioindicator of forest ecosystems, weather extremes and climate change. Zprávy lesnického výzkumu, 59:250–255.Search in Google Scholar

Štefančík, I., 1995: Fenológia v lesníctve: 1. Začiatok vegetačnej činnosti. Lesnícky časopis – Forestry Journal, 41:131–139.Search in Google Scholar

Šmelko, Š., 1991: Štatistické metódy v lesníctve. VŠLD Zvolen, skriptá, 276 s.Search in Google Scholar

Tholt, U., 2021: Modelovanie lesníckej fenológie s použitím vegetačných indexov spektrorádiometra MODIS. Diplomová práca. Zvolen, Lesnícka fakulta TU vo Zvolene.Search in Google Scholar

Townshend, J. R. G., Huang, S. N., Kalluri, V., Defries, R. S., Liang S., 2000: Beware of the per-pixel characterization of land cover. International Journal of Remote Sensing, 21:839–843.10.1080/014311600210641Search in Google Scholar

Wesołowski, T., Rowiński, P., 2008: Late leaf development in pedunculate oak (Quercus robur): An antiherbivore defence? Scandinavian Journal of Forest Research, 23:386–394.10.1080/02827580802419026Search in Google Scholar

Younes, N., Joyce, K. E., Maier, S. W., 2021: All models of satellite-derived phenology are wrong, but some are useful: A case study from northern Australia. International Journal of Applied Earth Observation and Geoinformation, 97:102285. Available at: https://doi.org/10.1016/j.jag.2020.10228510.1016/j.jag.2020.102285Search in Google Scholar

Zlatník, A., 1976: Přehled skupin typů geobiocénů původně lesních a křovinných ČSSR. Zpravodaj Geografického ústavu Československé akademie věd, Brno, 13:55–64.Search in Google Scholar

Zhang, X., Friedl, H. A., Schaaf, B. S., Strahler A. H., Hodges, J. C. F., Gao, F. et al., 2003: Monitoring vegetation phenology using MODIS. Remote Sensing of Environment, 84:471–475.10.1016/S0034-4257(02)00135-9Search in Google Scholar

SHMÚ, 2021: Bulletin – Meteorológia a klimatológia. Slovenský hydrometeorologický ústav, 27:66. Available at: https://www.shmu.sk/File/ExtraFiles/KMIS/publikacie/BMaK_0421.pdfSearch in Google Scholar

NFC Zvolen: Available at: http://gis.nlcsk.org/lgis/Search in Google Scholar

Bochníček, O., 2015: Available at: https://www.shmu.sk/sk/?page=2049&id=592Search in Google Scholar

eISSN:
2454-0358
Lingua:
Inglese
Frequenza di pubblicazione:
4 volte all'anno
Argomenti della rivista:
Life Sciences, Plant Science, Ecology, other