In: Wagner W., Székely, B. (eds.): ISPRS TC VII Symposium - 100 Years ISPRS, Vienna, Austria, July 5-7, 2010, IAPRS, Voi. XXXVIII, Part 7B
491
Balteanu, D., 1997. Romania. In: C. Embleton & C. Embleton-
Hamann (eds.), Geomorphological hazards of Europe, Elsevier,
Amsterdam, pp. 409-427.
Balteanu, D., Chendes, V., Sima, M., Enciu, P., 2010. A
country level spatial assessment of landslide susceptibility in
Romania, Geomorphology (in press)
http://www.sciencedirect.com/science?_ob=ArticleURL&_udi :: =
B6V93-4YK7HW8-l&_user (accessed, 22 may 2010).
Borghuis, A.M., Chang, K., Lee H.Y., 2007. Comparison
between automated and manual mapping of typhoon-triggered
landslides from SPOT- 5 I imagery, International Journal of
Remote Sensing, 28, pp. 1843-1856.
Brardinoni, F., Slaymaker, O., Hassan, M., 2003. Landslide
inventory in a rugged forested watershed: a comparison between
air-photo and field survey data, Geomorphology, 54, pp. 179-
196.
Chitu, Z., Sandric, I., Mihai B., Savulescu, I., 2009. Evaluate
Landslide Susceptibility using Statistical Multivariate Methods:
A case-study in the Prahova Subcarpathians, Romania, In:
Malet, J.-P., Remaitre, A., Borgaard, T. (Eds.), Landslide
Processes:From Geological Mapping to Dynamic Modelling,
Editions du CERG, Strasbourg, pp. 265-270
Cruden, D. and Vames, D. (1996) Landslide types and
processes, Transportation Research Board, Washington, 36-75
pp.
Dragut, L., Blascke, T. , 2006. Automated classification of
landform elements using object-based image analysis,
Geomorphology 81, pp. 330-344
ENVI EX,
http://www.ittvis.com/ProductServices/ENVI/ENVIEX.aspx
(accessed, 1 July 2010)
Hutchinson, M.F. 1989. A new procedure for gridding elevation
and stream line data with automatic removal of spurious pits.
Journal of Hydrology 106: 211-232
Ielenicz, M.,Patru, I. G., Mihai, B, 1999. Some geomorphic
types of landslides in Romania, Transactions. Japanese
Geomorphological Union., 20(3), pp. 287-296.
Ielenicz, M., Ghincea-Clius, M., Patru, I.G., 2005. Subcarpatii
Romaniei. Editura Universitara, Bucuresti, pp. 3-10
Mantovani, F., Soeters, R., van Westen, C.J., 1996. Remote
sensing techniques for landslide studies and hazard zonation in
Europe, Geomorphology, 15, pp. 213-225.
Mc.Dermid, G.J., Franklin, S.E., 1994. Spectral, spatial and
geomorphometric variables for the remote sensing of slope
processes, Remote sensing of environment, 49, pp. 57-71.
Mihai, B., Sandric, I., Savulescu, I., Chitu, Z., 2010. Detailed
Mapping of Landslide Susceptibility for Urban Planning
Purposes in Carpathian and Subcarpathian Towns of Romania,
In: Lecture Notes on Geoinformatics and Cartography,
Springer Verlag, Berlin-Heidelberg, pp. 417-427.
Moine, M., Puissant, A., Malet, J-P., 2009. Detection of
landslides from aerial and satellite images with a semi
automatic method. Application to Barcelonnette basin (Alpes-
de-Haute-Provence, France). In: Malet, J.-P., Remaitre, A.,
Borgaard, T. (Eds.), Landslide Processes.From Geological
Mapping to Dynamic Modelling, Editions du CERG,
Strasbourg, pp. 63-68.
Nichol, J., Wong, M.S., 2005. Satellite remote sensing for
detailed landslide inventories using change detection and image
fusion, International Journal of Remote Sensing, 26, pp. 1913-
1926.
Radoane, M., Radoane, N., 2007. Geomorfologie aplicata,
Editura Universitatii din Suceava, pp.210-220
Robinson, D. J., Redding, N. J., and Crisp, D. J. (2002).
Implementation of a fast algorithm for segmenting SAR
imagery, Scientific and Technical Report, 01 January 2002.
Australia: Defense Science and Technology Organization
Sandric, I., 2008. Sistem informational geografie temporal
pentru analiza hazardelor naturale. O abordare Bayesiana cu
propagare a erorilor, Unplished PhD thesis, Bucharest,
Romania
Sandric, I. and Chitu, Z., 2009. Landslide inventory for the
administrative area of Breaza, Curvature Subcarpathians,
Romania, Journal of Maps, v 2009, pp. 75-86
http://www.joumalofrnaps.com/crossrefMap.php?mid=l 051
(accessed, 22 May 2010).
Surdeanu, V. , 1998. Geografìa terenurilor degradate. I.
Alunecari de teren, Editura Presa Universitara Clujeana, pp.l-
274.
Tapas, R. M., Kerle, N., Jetten, V., van Westen, C.J., Vinod-
Kumar, K., 2010. Characterising spectral, spatial and
morphometric properties of landslides for semi-authomatic
detection using object-oriented methods, Geomorphology, 116,
pp. 24-36.
van Asselen, C.J., Seijmonsbergen, A. C., 2006. Expert-driven
semi-automated geomorphological mapping for a mountainous
area using a laser DTM, Geomorphology, 78, pp. 309-320.
van Westen, C.J. Lulie Getahun, F., 2003. Analyzing the
evolution of the Tessina landslide using aerial photographs and
digital elevation models, Geomorphology, 54, pp. 77-89
Xiaoying, 2009. Segmentation-based image processing system,
US Patent 20,090,123,070, filed Nov. 14, 2007 and issued May
14, 2009, http://www.faqs.org/patents/app/20090123070
(accessed, 1 July 2010)