1. [1] ALLEN, T. M. - BARTHUS, R. J.: Design and Performance of 6.3 m High, Block-Faced Geogrid Wall Designed Using K-Stiffness Method. Journal of Geotechnical and Geoenvironmental Engineering, Vol. 140, Iss. 2, 2014, p. 12, https://doi.org/10.1061/(ASCE)GT.1943-5606.0001013.10.1061/(ASCE)GT.1943-5606.0001013
2. [2] DOLINAJOVA, K. - SNAHNICAN, J.: Geogrid and Double Twist Steel Mesh Reinforced Soil Walls Subjected to High Loads in a Seismic Area. Proceedings of the 12th Slovak Geotechnical Conference: 55 Years of Geotechnical Engineering in Slovakia, 1st-2nd June, 2015, Bratislava, Slovakia, 2015, pp. 79–87.
3. [3] SCOTLAND, I. - DIXON, N. - FROST, M. - WACKROW, R. - FOWMES, G. - HORGAN, G.: Measuring Deformation Performance of Geogrid Reinforced Structures Using a Terrestrial Laser Scanner. Proceedings of 10th International Conference of Geosynthetics, September 2014, Berlin, Germany, 2014, p. 8, https://www.researchgate.net/publication/286860094_Measuring_deformation_performance_of_geogrid_reinforced_structures_using_a_terrestrial_laser_scanner.
4. [4] SILBER-HASSLACHER, T. - SNAHNICAN, J.: Active and Passive Facing Systems for Reinforced Soil Structures. 13th Geosynthetics Annual Conference 2019, 7-8. February, 2019, Zilina, Slovakia, 2019, p. 9, http://www.geosoul.sk/wp-content/uploads/2019/02/GEOSYNTETIKA2019_ACTIVE-AND-PASSIVE-FACING-SYSTEMS-FOR-REINFORCED-SOIL-STRUCTURES.pdf.
5. [5] BUSSERT, F. - CAVANAUGH, J.: Recent Research and Future Implications of the Actual Behaviour of Geogrids in Reinforced Soil. Proceedings of Earth Retention Conference 3, August 2010, Washington, USA, 2010, pp. 460–477, https://doi.org/10.1061/41128(384)46.10.1061/41128(384)46