1 우충식, "항공 라이다 자료를 이용한 토석류 발생지역의 지형복원기법 개발" 한국지리정보학회 14 (14): 174-187, 2011
2 최두영, "한국 토석류의 이동거리 특성" 대한토목학회 32 (32): 193-201, 2012
3 Ohlmacher, G.C., "Using multiple logistic regression and GIS technology to predict landslide hazard in northeast Kansas, USA" 69 (69): 331-343, 2003
4 Jaboyedoff, M, "Use of LiDAR in landslide investigations: a review" 61 (61): 5-28, 2012
5 Clark, M. L., "Smallfootprint LiDAR estimation of sub-canopy elevation and tree height in a tropical rain forest landscape" 91 (91): 68-89, 2004
6 Miles, S.B., "Rigorous landslide hazard zonation using newmark's method and stocahstic ground motion simulation" 18 (18): 305-323, 1999
7 고석민, "GIS를 이용한 강원지역 토석류 특성분석" 한국측량학회 31 (31): 57-67, 2013
8 Conoscenti, C., "GIS analysis to assess landslide susceptibility in a fluvial basin of NW Sicily" 94 (94): 325-339, 2008
9 Chandler J., "Effective application of automated digital photogrammetry for geomorphological research" 24 (24): 51-63, 1999
10 Tsutsui, K., "Detection and volume estimation of large-scale landslides based on elevation-change analysis using DEMs extracted from high-resolution satellite stereo imagery" 45 (45): 1681-1696, 2007
1 우충식, "항공 라이다 자료를 이용한 토석류 발생지역의 지형복원기법 개발" 한국지리정보학회 14 (14): 174-187, 2011
2 최두영, "한국 토석류의 이동거리 특성" 대한토목학회 32 (32): 193-201, 2012
3 Ohlmacher, G.C., "Using multiple logistic regression and GIS technology to predict landslide hazard in northeast Kansas, USA" 69 (69): 331-343, 2003
4 Jaboyedoff, M, "Use of LiDAR in landslide investigations: a review" 61 (61): 5-28, 2012
5 Clark, M. L., "Smallfootprint LiDAR estimation of sub-canopy elevation and tree height in a tropical rain forest landscape" 91 (91): 68-89, 2004
6 Miles, S.B., "Rigorous landslide hazard zonation using newmark's method and stocahstic ground motion simulation" 18 (18): 305-323, 1999
7 고석민, "GIS를 이용한 강원지역 토석류 특성분석" 한국측량학회 31 (31): 57-67, 2013
8 Conoscenti, C., "GIS analysis to assess landslide susceptibility in a fluvial basin of NW Sicily" 94 (94): 325-339, 2008
9 Chandler J., "Effective application of automated digital photogrammetry for geomorphological research" 24 (24): 51-63, 1999
10 Tsutsui, K., "Detection and volume estimation of large-scale landslides based on elevation-change analysis using DEMs extracted from high-resolution satellite stereo imagery" 45 (45): 1681-1696, 2007
11 Kim, G. H., "Debris flow assessment in Umyeon Mountain using LiDAR DEM, 2012 Conference on Geo-Spatial Information" 133-134, 2012
12 Yune, C. Y., "Debris Flow in Metropolitan Area - 2011 Seoul Debris Flow" 10 (10): 199-206, 2013
13 Bremer, M., "Combining airborne and terrestrial laser scanning for quantifying erosion and deposition by a debris flow events" 138 : 49-60, 2012
14 Bull, J. M., "Assessing debris flows using LiDAR differencing: 18 May 2005 Matata event" 124 (124): 75-84, 2010
15 Hooper, D. M., "Application of high-resolution, interferometric DEMs to geomorphic studies of fault scarps, Fish Lake Valley, Nevada - California, USA" 84 (84): 255-267, 2003
16 Nandi, A., "A GIS-based landslide susceptibility evaluation using bivariate and multivariate statistical analyses" 110 (110): 11-20, 2009
17 Du, J.C., "3D laser scanning and GPS technology for landslide earthwork volume estimation" 16 (16): 657-663, 2007