Alam M.S., Hoque N., 1998. Channel pattern and sedimentation style in the Meghna river, Bangladesh: An example of a large-scale anastomosing fluvial system. Journal of remote sensing and environment 2.
Azuma R., Sekiguchi H., Ono T., 2007. Studies of High-resolution Morphodynamics with Special Reference to River Bank Erosion vol. 50(C). Annuals of Disaster Prevention Research Institute. Kyoto University, Japan.
CEGIS [Center for Environmental and Geographic Information Services], 2003. Ganges River: Morphological Evolution and Predictions. Prepared for Water Resources Planning Organization (WARPO). Dhaka.
CEGIS [Center for Environmental and Geographic Information Services], 2005. Prediction for Bank Erosion and Morphological Changes of the Jamuna and Padma River. Dhaka.
CEGIS [Center for Environmental and Geographic Information Services], 2010. Long-term Erosion Process of the Padma River. Prepared for Jamuna-Meghna River Erosion Mitigation Project. Bangladesh Water Development Board. Dhaka.
Dewan A., Corner R., Saleem A., Rahman M.M., Haider M.R., Rahman M.M., Sarker M.H., 2016. Assessing channel changes of the Ganges–Padma River system in Bangladesh using Landsat and hydrological data. Geomorphology 276: 257–279. DOI 10.1016/j.geomorph.2016.10.0170169-555X.
EGIS [Environmental and GIS Support], 2000. Riverine Chars in Bangladesh: Environmental Dynamics and Management Issues. The University Press Limited, Dhaka.
Haque C.E., 1985. Impact of River Bank Erosion in Kazipur: An Application of Landsat Imagery. Workshop of the Impact of River Bank Erosion and Flood Hazards in Bangladesh, Dhaka.
Hassan S., Akhtaruzzaman A.F.M., 2010. Environmental Change Detection of the Padma river in the North-Western part of Bangladesh using Multi-date Landsat Data. Proc. of International Conference on Environmental Aspects of Bangladesh (ICEAB10), Japan.
Hassan M.S., Mahmud-ul-Islam S., 2016. Quantification of River Bank Erosion and Bar Deposition in Chowhali Upazila, Sirajganj District of Bangladesh: A Remote Sensing Study. Journal of Geoscience and Environment Protection 4(1): 50–57. DOI 10.4236/gep.2016.41006.
Hossain M.M., Baki A.B.M., Ahmad S.S., 2008. The Flood Problem and Mitigation Methods in Bangladesh. 4th International Symposium on Flood Defense: Managing Flood Risk, Reliability and Vulnerability. Toronto, Ontario, Canada.
Hossain M.A., Gan T.Y., Baki A.B.M., 2013. Assessing morphological changes of the Ganges River using satellite images. Quaternary International 304:142–155. DOI 10.1016/j.quaint.2013.03.028.
Islam M.T., 2009. Bank Erosion and Movement of River Channel: A Study of Padma and Jamuna Rivers in Bangladesh Using Remote Sensing and GIS. Division of Geoinformatics, Royal Institute of Technology, Stockholm, Sweden.
Kammu M., Lu X.X., Rasphone A., Sarkkula J., Koponen J., 2008. Riverbank changes along the Mekong River: remote sensing detection in the Vientiane-Nong Khai area. Quaternary International 186: 100–112.
Khan N.I., Islam A., 2003. Quantification of erosion patterns in the Brahmaputra–Jamuna River using geographical information system and remote sensing techniques. Hydrological Processes 17(5): 959–966. DOI 10.1002/hyp.1173.
Mahmud I.H., Pal P.K., Rahman A., Yunus, A., 2018. A Study on Seasonal Variation of Hydrodynamic Parameters of Padma River. Journal of Modern Science and Technology 5(1): 1–10.
Mclean D.G., Vasquez J.A., Oberhagemann K., 2012. Padma River morphodynamics near Padma Bridge. In: E. David, T.P. Reisner (eds), Aquananotechnology: Global prospects River Flow: 741–747.
Nath B., Naznin S.N., Paul A., 2013. Trends Analysis of River Bank Erosion at Chandpur, Bangladesh: A Remote Sensing and GIS Approach. International Journal of Geomatics and Geosciences 3(3): 454–463.
NPDM [National Plan for Disaster Management], 2006. National Plan for Disaster Management. Ministry of Food and Disaster Management, Government of the People’s Republic of Bangladesh, Draft National Plan v.6.
Rahman M.M., Islam M.N., 2017. Comparison of Right and Left Bank Erosion Pattern of the Padma River Part III. Journal of Geology and Geophysics 6(6). DOI 10.4172/2381-8719.1000315.
Sarifuzzaman M.N.E.A., Siddique M.A., Rahman M.A., Ahmed E., Alam A.M.S., 2010. Study of arsenic mobilization through the sediments of the Padma-Jamuna Belt. In: J. Jean, J. Bundschuh, P. Bhattacharya (eds), Arsenic in Geosphere and Human Diseases; Arsenic 2010. Paper presented at the Proceedings of the Third International Congress on Arsenic in the Environment (As-2010). London, CRC Press: 114–115.
Sarker M. H., 2004. Impact of upstream human interventions on the morphology of the Ganges–Gorai system. In: M.M.Q. Mirza (ed.) The Ganges Water Diversion: Environmental Effects and Implications. Kluwer Academic Publishers, Dordrecht, The Netherlands: 49–80.