À propos de cet article

Citez

1. Adam E., Mutanga O. and Rugege D., 2010 - Multispectral and hyperspectral remote sensing for identification and mapping of wetland vegetation: a review, Wetlands Ecology and Management, 18, 281-296.10.1007/s11273-009-9169-zSearch in Google Scholar

2. Ayhan N. G., Seyrek K. and Sargın A. H., 2012 - Application of Geographic Information Systems in hydrology and water resources management, ISLEM Group of Companies, Ankara, Turkey.Search in Google Scholar

3. Bilaşco Ş., 2008 - Implementarea G.I.S. în modelarea viiturilor de versant, Casa Cărţii de Ştiinţă, Cluj-Napoca, România. (in Romanian)Search in Google Scholar

4. Curtean-Bănăduc A., Schneider-Binder E. and Bănăduc D., 2014 ‒ The importance of the riverine ligneous vegetation for the Danube Basin lotic ecosystems, in Cianfaglione K. (ed.), L’importanza degli Alberi e del Bosco. Cultura, scienza e coscienza del territorio, Edit. Temi, Trento, Italia, ISBN: 978-88-973772-63-9, I-II, 187-210.Search in Google Scholar

5. Dale V. H., 1997 - The relationship between land-use change and climate change, Ecological Applications, 7, 753-769.10.1890/1051-0761(1997)007[0753:TRBLUC]2.0.CO;2Search in Google Scholar

6. Dronova I., 2015 - Object-based image analysis in wetland research: a review, Remote Sensing, 7, 6380-6413.10.3390/rs70506380Search in Google Scholar

7. Frazier P. S. and Page K. J., 2000 - Water body detection and delineation with Landsat TM data, Photogrammetric Engineering and Remote Sensing, 66, 1461-1467.Search in Google Scholar

8. Gallant A., 2015 - The challenges of remote monitoring of wetlands, Remote Sensing, 7, 10938-10950.10.3390/rs70810938Search in Google Scholar

9. Grindean R., Tanţău I., Fărcaş S. and Panait A., 2014 - Middle to Late Holocene vegetation shifts in the NW Transylvanian lowlands (Romania), Studia Universitatis Babeş-Bolyai, Geologia, 59, 29-37.10.5038/1937-8602.59.1.2Search in Google Scholar

10. Guisan A., Weiss S. B. and Weiss A. D., 1999 - GLM versus CCA spatial modeling of plant species distribution, Plant Ecology, 143, 107-122.10.1023/A:1009841519580Search in Google Scholar

11. Hudak A. T., Evans J. S. and Stuart A. M., 2009 - LiDAR utility for natural resource managers, Remote Sensing, 1, 934-951.10.3390/rs1040934Search in Google Scholar

12. Jenness J., Brost B. and Beier P., 2010 - Land Facet Corridor Designer, available at: www.jannessent.com/downloads/LandFacetCorredor.zip, (accessed June 24, 2015).Search in Google Scholar

13. Jones K. B., Heggem D. T., Wade T. G., Neale A. C., Ebert D. W., Nash M. S., Mehaffey M. H., Hermann K. A., Selle A. R., Augustine S., Goodman I. A., Pedersen J., Bolgrien D., Viger J. M., Chiang D., Lin C. J., Zhong Y., Baker J. and Van Remortel R. D., 2000 - Assessing landscape conditions relative to water resources in the Western United States: A strategic approach, Environmental Monitoring and Assessment, 64, 227-245.10.1007/978-94-011-4343-1_19Search in Google Scholar

14. Karadağ A. A., 2013 - Use of watersheds boundaries in the landscape planning, in Özyavuz M. (ed.), Advances in Landscape Architecture, InTech.Search in Google Scholar

15. Klemas V., 2012 - Airborne remote sensing of coastal features and processes: an overview, Journal of Coastal Research, 29, 239-255.10.2112/JCOASTRES-D-12-00107.1Search in Google Scholar

16. Lyon J. G., 2003 - GIS for water resources and watershed management, Taylor and Francis, New York.10.4324/9780203217917Search in Google Scholar

17. Macedo D. R., Hughes R. M., Ligeiro R., Ferreira W. R., Castro M. A., Junqueira N. T., Oliveira D. R., Firmiano K. R., Kaufmann P. R., Pompeu P. S. and Callisto M., 2014 - The relative influence of catchment and site variables on fish and macroinvertebrate richness in cerrado biome streams, Landscape Ecology, 29, 1001-1016.10.1007/s10980-014-0036-9Search in Google Scholar

18. Maidment D. R., 2002 - Arc Hydro: GIS for water resources, ESRI Press, Redlands, USA.Search in Google Scholar

19. Mervade V., 2012 - Watershed and stream network delineation using ArcHydro Tools, University of Purdue, School of Civil Engineering, Printed Lecture Note, USA.Search in Google Scholar

20. Moffett K. B. and Gorelick S. M., 2013 - Distinguishing wetland vegetation and channel features with object-based image segmentation, International Journal of Remote Sensing, 34, 1332-1354.10.1080/01431161.2012.718463Search in Google Scholar

21. Mouton A., 2005 - Generating stream maps using LiDAR derived Digital Elevation Models and 10 m USGS DEM, Master of Science Thesis, University of Washington, Forest Resources Department, Washington, USA.Search in Google Scholar

22. O’Keefe T. C., Elliott S. R. and Naiman R. J., 2012 - Introduction to Watershed Ecology, Printed Lecture Note, University of Washington, USA.Search in Google Scholar

23. Opreanu C. H. and Lăzărescu V. A., 2012 - Seeing the Unseen. Landscape archaeology on the northern frontier of the Roman Empire at Porolissvm (Romania), Ephemeris Napocensis, 22, 356-366.Search in Google Scholar

24. Opreanu C. H., Lăzărescu V. A. and Ştefan D., 2013 - Noi Cercetări la Porolissum, Analele Banatului Arheologie-Istorie, XXI, 83-106. (in Romanian)Search in Google Scholar

25. Opreanu C. H., Lăzărescu V. A., Roman A., Ursu T. M. and Fărcaş S., 2014 - New light on a Roman Hill-Fort: LIDAR survey in the forested landscape from Porolissvm, Ephemeris Napocensis, XXIV/2014, 71-86.Search in Google Scholar

26. Patience N. and Klemas V. V., 1993 - Wetland functional health assessment using Remote Sensing and other techniques: literature search, NOAA Technical Memorandum NMFSSEFSC, 319.Search in Google Scholar

27. Roman A., Ursu T. M., Lăzărescu V. A., Opreanu C. H. and Fărcaş S., 2015 - Visualization models of ALS-derived DTM promote the recovery of unknown archaeological remains buried beneath the forests of Transylvania, Manuscript.Search in Google Scholar

28. Roman A., Ursu T. M., Fărcaş S., Lăzărescu V. A. and Opreanu C. H., 2014 - Perspectives: Remotely Sensing the Buried Past of Present Vegetation, in Pfeifer N. and Zlinszky A., (eds), Remote Sensing and GIS for Habitat Quality Monitoring, 108-112, Vienna University of Technology, Vienna, Austria.Search in Google Scholar

29. Selman P., 2006 - Planning at the Landscape Scale, Rutledge Publisher, New York, USA.10.4324/9780203696903Search in Google Scholar

30. Silva T. S. F., Costa M. P. F., Melack J. M. and Novo E. M. L. M., 2008 - Remote sensing of aquatic vegetation: Theory and applications, Environmental Monitoring and Assessment, 140, 131-145.10.1007/s10661-007-9855-317593532Search in Google Scholar

31. Sofia G., Fontana G. D. and Tarolli P., 2014 - High-resolution topography and anthropogenic feature extraction: testing geomorphometric parameters in floodplains, Hydrological Process, 28, 2046-2061.10.1002/hyp.9727Search in Google Scholar

32. Tarolli P., 2014 - High-resolution topography for understanding Earth surface processes: opportunities and challenges, Geomorphology, 216, 295-312.10.1016/j.geomorph.2014.03.008Search in Google Scholar

33. Uzun O. and Gultekin P., 2011 - Process analysis in landscape planning, the example of Sakarya/Kocaali, Turkey, Scientific Research and Essays, 6, 313-331.Search in Google Scholar

34. Weiss A., 2001 ‒ Topographic Position and Landforms Analysis, ESRI User Conference, poster presentation, San Diego, USA.Search in Google Scholar

35. Weishampel J. F., Hightower J. N., Chase A. F., Chase D. Z. and Patrick R. A., 2011 - Detection and morphologic analysis of potential below-canopy cave openings in the karst landscape around the Maya polity of Caracol using airborne LiDAR, Journal of Cave and Karst Studies, 73, 187-196.10.4311/2010EX0179R1Search in Google Scholar

36. Wilson T., Sleeter B., Sleeter R. and Soulard C., 2014 - Land-use threats and protected areas: a scenario-based, landscape level approach, Land, 3, 362-389.10.3390/land3020362Search in Google Scholar

37. ***, 1956 - Harta topografică a României, foaia: L-34-35-A-d, scara 1:25,000, R. S. România, Direcţia Topografică Militară, MApN Bucureşti, România. (in Romanian)Search in Google Scholar

38. ***, 1992 - Atlasul cadastrului apelor din România, I și II, AQUAPROIECT, IGFCOT, Bucureşti, România. (in Romanian)Search in Google Scholar

39. ***, 2001 - ESRI. ArcGIS Desktop: Release 10, Environmental Systems Research Institute, Redlands, USA.Search in Google Scholar

40. *** geo-spatial.org, http://earth.unibuc.ro/download/romania-seturi-vectoriale. Search in Google Scholar

eISSN:
2344-3219
Langue:
Anglais
Périodicité:
2 fois par an
Sujets de la revue:
Life Sciences, Ecology