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Hedgerows Have a Barrier Effect and Channel Pollinator Movement in the Agricultural Landscape

, L., Baumel, A., Roche, P., & Tatoni, T. (2009). Fine-scale response to landscape structure in Primula vulgaris Huds.: does hedgerow network connectedness ensure connectivity through gene flow? Population Ecology, 51(1), 209-219. Corbett, A., & Rosenheim, J. A. (1996). Quantifying Movement of a Minute Parasitoid, Anagrus epos (Hymenoptera: Mymaridae), Using Fluorescent Dust Marking and Recapture. Biological Control, 6(1), 35-44. Cranmer, L., McCollin, D., & Ollerton, J. (2012). Landscape structure influences pollinator movements and

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Classification of Land Use Changes (Model Area: Nitra Town)

. & Chrastina P. (2008). Land-use changes of the low land agricultural landscape on the example of the Nove Sady village (in Slovak). Geoinformation, 4, 16−35. Bugar, G., Petrovič, F., Boltižiar, M., Hreško, J. & Vereš J. (2006). Interpretation of changes in secondary landscape structure in relation to biodiversity (in Slovak). In Krajina Nitry a jej okolia (pp. 56−61). Uvodna etapa vyskumu.Nitra: UKF. Cebecauerova, M. (2007). Analysis and assessment of changes of landscape structure (case study of selected part lowland Borska nižina and the

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Estimation of the Effect of Changes in Forest Associations on Runoff Processes in Basins: Case Study in the Hron and Topľa River Basins

. – Melo, M. – Šťastný, P. – Tomlain, J. (2002) Klimatické oblasti (Climatic regions). In: Zaťko, M. (ed.), Atlas krajiny Slovenskej republiky, IV. Prvotná krajinná štruktúra (Primary landscape structure). MŽP SR a SAŽP, p. 95. Lapin M. – Bašták I. – Gera M. – Hrvoľ J. – Kremler M. – Melo M. (2012) New climate change scenarios for Slovakia based on global and regional general circulation models. Acta Meteorologica Universitatis Comenianae, vol. 37, pp. 25-73. Lin, K. – Guo, S. – Zhang, W. and Liu, P. (2007) A new baseflow separation method based on

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Application of landscape metrics in the evaluation of geodiversity

Mississippi’, Am. Midi. NaL, vol. 155, pp. 352–362. Cushman, SA, McGarigal, K & Neel, MC 2008, ‘Parsimony in landscape metrics: Strength, universality, and consistency’, Ecological Indicators, vol. 8, no. 5, pp. 691–703. DiBari, JN 2007, ‘Evaluation of five landscape-level metrics for measuring the effects of urbanization on landscape structure: the case of Tucson, Arizona, USA’, Landscape and Urban Planning, vol. 79, pp. 308–313. Elkie, PC, Rempel, RS & Carr, AP 1999, ‘Patch Analyst User

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Assessing Landscape Sensitivity Based on Fragmentation Caused by the Artificial Barriers in Hungary

., Horváth, F., Botta-Dukát, Z. 2008. The natural capacity index of Hungary. Acta Botanica Hungarica 50, 161-177. Csorba, P. 2005. Hazai tájak ökológiai szempontú szerkezetének vizsgálata (Investigation of the ecological structure of Hungarian landscapes. (in Hungarian) http://geography.hu/mfk2006/pdf/Csorba%20P%E9ter.pdf (last available: 2013.02.04.) Csorba, P. 2007. Tájszerkezet-kutatások és tájmetriai mérések Magyarországon (Landscape structure studies and landscape metric measurements in Hungary). Academic Doctoral Thesis, Debrecen

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Quantitative Assessment of Landscape Load Caused by Mining Activity

tájterhelés bemutatása térinformatikai módszerekkel. In Lóki, J., ed., Az elmélet és gyakorlat találkozása a térinformatikában III (pp. 405-413). Debreceni Egyetemi Kiadó. [11] Tamás, L., Csüllög, G. & Horváth, G. (2013). Ipari tájak degradációs folyamatainak problémái. In Konkoly-Gyuró, É., Tirászi, Á. & Nagy, G. M., eds., Tájtudomány - tájtervezés (pp. 108-114). Sopron: Nyugat-magyarországi Egyetem. [12] Tlapáková, L., Stejskalová, D., Karásek, P. & Podhrázká, J. (2013). Landscape metrics as a tool for evaluation landscape structure - Case

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Changes Of A Rural Landscape In Czech Areas Of Different Types

., Syrbee, R., Tischendorff, L. & Walz, U. (2015). Understanding and quantifying landscape structure – A review on relevant process characteristics, data models and landscape metrics. Ecological Modelling 295, 31-41. DOI: 10.1016/j.ecolmodel.2014.08.018. [25] Lindenmayer, D. B., & Fischer, J. (2013): Habitat fragmentation and landscape change: an ecological and conservation synthesis . Washington (D.C.): Island Press. [26] Lipský, Z. (1995). The changing face of the Czech rural landscape. Landscape and Urban Planning 31(1-3), 39-45. DOI: 10

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Structural Versus Functional Habitat Connectivity Measures to Explain Bird Diversity in Fragmented Orchards

. Aula-Verlag, Wiesbaden. Goodwin, B. J. (2003). Is landscape connectivity a dependent or independent variable? Landscape Ecology , 18: 687-699. Goodwin, B. J., Fahrig, L. (2002). How does landscape structure influence landscape connectivity. Oikos , 99: 552-570. Greegan, H. P., Osborne, P. E. (2005). Gap-crossing decisions of woodland songbirds in Scottland: an experimental approach. Journal of Applied Ecology , 42: 678-687. Haas, C. A. (1995). Dispersal and use

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The Species Composition on Agricultural Terraces in NW Part of Slovakia

súČasnej reality. Životné Prostredie, 38(2), 86-89. Kubát, K., Hrouda, L., Chrtek, J. jun, Kaplan, Z., Kirschner, J. & Štěpánek J. (Eds.) (2002). KlíČ ke květeně České repub-liky. Praha: Academia. KubeŠ, J. & MiČková K. (2003). Development of horizontal landscape structure in the PohoŘsko region (the Czech-Austrian frontier) between 1938-2000. Ekológia (Bratislava), 22(3), 269-283. Lobotka, V. (1955). Terasové polia na Slovensku. Poěnohospodárstvo, 2(6), 539-549. Machová, I. & Klazar R. (2005). Věková struktura dŘevin na agrárních valech. SeveroČeskou

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Pollinator richness and abundance in Northeast Estonia: bumblebees, butterflies and day-flying moths

. 2001-2002. Estonian Red List of Threatened Species. [WWW document]. - URL http://elurikkus.ut.ee Cozzi, G., Müller, C. B., Krauss, J. 2008. How do local habitat management and landscape structure at different spatial scales affect fritillary butterfly distribution on fragmented wetlands? - Landscape Ecology, 23, 269-283. European Commission. Habitats Directive (92/43/EEC) European Commission (1992/1995). Council Directive 92/43/EEC of 21 May 1992 on the conservation of natural habitats and of wild fauna and flora

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