Chránené územia Slovenska 97

114 CHUS 97/2021 Fórum názorov 2000, doi: 10.1016/S0378-1127(00)00422-9. [11] S. Shetron, J. Sturos, E. Padley, and C. Trettin, “Forest Soil Compaction: Effect of Multiple Passes and Loadings on Wheel Track Surface Soil Bulk Density,” North. J. Appl. For., vol. 5, pp. 120–123, Jun. 1988, doi: 10.1093/ njaf/5.2.120. [12] P. W. Adams, “Soil Compaction on Woodland Properties,” For. Prot., no. March, pp. 1–8, 1998. [13] B. Schäffer, M. Stauber, R. Müller, and R. Schulin, “Changes in the macro-pore structure of restored soil caused by compaction beneath heavy agricultural machinery: a morphometric study,” Eur. J. Soil Sci., vol. 58, no. 5, pp. 1062–1073, Oct. 2007, doi: https://doi. org/10.1111/j.1365-2389.2007.00886.x. [14] T. Orfánus, “SAV správa o výsledkoch overenia protipovodňovej a protieróznej účinnosti technických opatrení.pdf,” 2011. [15] C. Megahan, F., Walter; James, L., “Soil Science Society of America,” Soil Sci. Soc. Am. J., vol. 47, no. 6, pp. 1063–1067, 1983, doi: 10.2136/ sssaj1940.036159950004000c0132x. [16] J. J. Zemke, M. Enderling, A. Klein, and M. Skubski, “The influence of soil compaction on runoff formation. A case study focusing on skid trails at forested andosol sites,” Geosci., vol. 9, no. 5, 2019, doi: 10.3390/geosciences9050204. [17] A. Safari, A. Kavian, A. Parsakhoo, I. Saleh, and A. Jordán, “Impact of different parts of skid trails on runoff and soil erosion in the Hyrcanian forest (northern Iran),” Geoderma, vol. 263, pp. 161–167, 2016, doi: 10.1016/j. geoderma.2015.09.010. [18] J. L. La Marche and D. P. Lettenmaier, “Effects of forest roads on flood flows in the Deschutes River, Washington,” Earth Surf. Process. Landforms, vol. 26, no. 2, pp. 115–134, Feb. 2001, doi: https://doi.org/10.1002/1096- -9837(200102)26:2<115::AID-ESP166>3.0. CO;2-O. [19] M. A. Rab, “Recovery of soil physical properties from compaction and soil profile disturbance caused by logging of native forest in Victorian Central Highlands, Australia,” For. Ecol. Manage., vol. 191, no. 1–3, pp. 329–340, 2004, doi: 10.1016/j.foreco.2003.12.010. [20] M. Busse, J. Zhang, G. Fiddler, and D. Young, “Compaction and organic matter retention in mixed-conifer forests of California: 20-year effects on soil physical and chemical health,” For. Ecol. Manage., vol. 482, no. August 2020, p. 118851, 2021, doi: 10.1016/j.foreco.2020.118851. [21] H. Sohrabi et al., “Soil recovery assessment after timber harvesting based on the sustainable forest operation (SFO) perspective in iranian temperate forests,” Sustain., vol. 12, no. 7, 2020, doi: 10.3390/su12072874. [22] M. Jourgholami, S. Khajavi, and E. R. Labelle, “Mulching and water diversion structures on skid trails: Response of soil physical properties six years after harvesting,” Ecol. Eng., vol. 123, no. August, pp. 1–9, 2018, doi: 10.1016/j. ecoleng.2018.08.023. [23] A. Solgi, R. Naghdi, E. K. Zenner, V. Hemmati, F. K. Behjou, and A. Masumian, “Evaluating the Effectiveness of Mulching for Reducing Soil Erosion in Cut Slope and Fill Slope of Forest Roads in Hyrcanian Forests,” pp. 1–11, 2014. [24] C. H. Luce, “Effectiveness of Road Ripping in Restoring Infiltration Capacity of Forest Roads,” Restor. Ecol., vol. 5, no. 3, pp. 265–270, Sep. 1997, doi: https://doi.org/10.1046/j.1526-100X.1997.09731.x. Miroslav Kubín, Agentura ochrany přírody a krajiny České republiky, Regionální pracoviště Správa chráněné krajinné oblasti Beskydy, Nádražní 36, 756 61 Rožnov pod Radhoštěm, Katedra ekologie a životního prostředí, Přírodovědecká fakulta, Univerzita Palackého v Olomouci, Šlechtitelů 241/27, 783 71 Olomouc – Holice Ondřej Vala, Katedra fyzické geografie a geoekologie, Přírodovědecká fakulta, Ostravská univerzita v Ostravě, Chittussiho 10, 710 00 Ostrava – Slezská Ostrava Štefan Vaľo, OZ Voda je život, Južná trieda 74, 040 17 Košice

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