pygmtsar

Publications that Cite PyGMTSAR

PyGMTSAR Publications [Aug 2025]

Have you published a paper or released a publicly accessible project that explicitly cites PyGMTSAR? I welcome peer-reviewed articles, conference papers, theses, preprints, and industry case studies.

Celik, F., Sanli, F.B., Celik, K., & Celik, A. (2025). Kurtun Dam oscillate characterization with landslide possible effect detection using InSAR observations. Natural Hazards, 121(14), 16747–16763. https://doi.org/10.1007/s11069-025-07447-1 https://link.springer.com/content/pdf/10.1007/s11069-025-07447-1.pdf [Direct PDF]

Dewan, A., Jain, H., Hossain, M.A., Adnan, M.S.G., et al. (2025). Estimating vertical land motion-adjusted sea level rise in a data-sparse and vulnerable coastal region. Geomatics, Natural Hazards and Risk, 16(1). https://doi.org/10.1080/19475705.2025.2545375 https://www.tandfonline.com/doi/full/10.1080/19475705.2025.2545375 [Full text (HTML)]

Hussain, S., Pan, B., Hussain, W., Ali, M., Sajjad, M.M., Afzal, Z., & Tariq, A. (2025). Analyzing coseismic displacement of the M7.7 Myanmar earthquake on March 28, 2025, using Sentinel-1 InSAR data. Structures, 80, 109718. https://doi.org/10.1016/j.istruc.2025.109718 https://www.researchgate.net/publication/393698762_Analyzing_coseismic_displacement_of_the_M_77_Myanmar_earthquake_on_march_28_2025_using_Sentinel-1_InSAR_data [Author PDF]

Tung, S., Shirzaei, M., et al. (2025). Redistributed Seismicity at the Coso Geothermal Field Investigated Through Stress Changes from Fluid Production and Migration. Proceedings of the 50th Stanford Geothermal Workshop. https://pangea.stanford.edu/ERE/db/GeoConf/papers/SGW/2025/Tung.pdf [Direct PDF]

Brar, A. (2024). Urban Subsidence Monitoring in Mexico City Using SBAS and PS-InSAR: Analysing Ground Deformation with Sentinel-1 SAR Data (Master’s Major Research Project, Toronto Metropolitan University). https://remneetbrar.com/Project%20Documents/MRP%20Final%20Copy.pdf [Direct PDF]

Jacobs, B., et al. (2025). Safeguarding Cultural Heritage: Integrative Analysis of Gravitational Mass Movements at the Mortuary Temple of Hatshepsut, Luxor, Egypt. EGUsphere preprint. https://doi.org/10.5194/egusphere-2025-2007 https://egusphere.copernicus.org/preprints/2025/egusphere-2025-2007/egusphere-2025-2007.pdf [Direct PDF]

Alfayyadh, M.R.N. (2024). Pemanfaatan Citra Sentinel-1 Berbasis Python untuk Kajian Deformasi Permukaan Akibat Gempa Bumi di Cianjur, Jawa Barat (Undergraduate thesis). Universitas Pendidikan Indonesia. https://repository.upi.edu/115771/ [Full text (repository)]

International Symposium on Geoinformatics for Spatial-Infrastructure Development in Earth & Allied Sciences (GIS-IDEAS 2024). (2024). E-Proceedings. University of Phayao, Chiang Rai, Thailand, 11–13 Dec 2024. https://gis-ideas.org/2024/GIS_IDEAS_e_proceedings.pdf [Direct PDF] • “Processing and analysing multi-source, multi-resolution geospatial data on cloud platforms for some environmental and disaster applications. Landslide monitoring in Van Yen, Yen Bai, Vietnam by PyGMTSAR on Google Colab” (pp. 140–146). • “Investigating land subsidence by processing multi-temporal SAR time series on Google Colab: case study in Ca Mau City, Vietnam” (pp. 69-78).

PyGMTSAR Publications Update [Aug 2026]

Bhattacharya, S., & Kumar, S. (2025). Spatio-Temporal analysis of the Volcanic Eruption Zone using SAR Interferometric Technique. ISPRS Annals of the Photogrammetry, Remote Sensing and Spatial Information Sciences, X-5/W2-2025, 59–64. https://doi.org/10.5194/isprs-annals-X-5-W2-2025-59-2025 https://isprs-annals.copernicus.org/articles/X-5-W2-2025/59/2025/isprs-annals-X-5-W2-2025-59-2025.pdf [Direct PDF]

Gedik, Y., Özcan, O., Özmen, M., et al. (2025). Assessment of building damage from the 2020 Sivrice earthquake using a satellite based rapid seismic screening method. Scientific Reports, 15(1), 37277. https://doi.org/10.1038/s41598-025-21320-y https://www.nature.com/articles/s41598-025-21320-y.pdf [Direct PDF]

Ha, T., Tran, V., Pham, Q., Luong, N., et al. (2025). Integrating SBAS-InSAR and Artificial Intelligence for Land Subsidence Monitoring in Ca Mau, Vietnam. Inżynieria Mineralna, 1(2). https://doi.org/10.29227/im-2025-02-10 https://inz-min.online/index.php/im/article/download/1321/2499 [Direct PDF]

Hrysiewicz, A., & Holohan, E. (2026). EZ-InSAR-3: An open-source environment for interferometric synthetic aperture radar data processing in Python. Earth Science Informatics, 19(6). https://doi.org/10.1007/s12145-026-02115-9 https://link.springer.com/content/pdf/10.1007/s12145-026-02115-9.pdf [Direct PDF]

Kumar, A., Malviya, A., & Singh, G. (2026). Multi-sensor-based rock glacier detection over Sikkim Himalaya. iScience, 29(6), 115983. https://doi.org/10.1016/j.isci.2026.115983 https://europepmc.org/articles/PMC13267576 [Full text (HTML)]

Mitra, S., Maurya, V. K., & Dwivedi, R. (2024). Interferometric Analysis of Ground Deformation and Seismic Activity Associated with 2017 Ischia Earthquake. 2024 IEEE India Geoscience and Remote Sensing Symposium (InGARSS), 1–4. https://doi.org/10.1109/InGARSS61818.2024.10984195 https://ieeexplore.ieee.org/document/10984195 [Abstract (full text paywalled)]

Ranaldi, L., Belloni, V., Nascetti, A., & Crespi, M. (2026). A novel approach for water level changes with SAR amplitude data: first results using Sentinel-1 imagery on Trasimeno Lake, Italy. EGU General Assembly 2026, Vienna, Austria, 3–8 May 2026, EGU26-21316. https://doi.org/10.5194/egusphere-egu26-21316 https://meetingorganizer.copernicus.org/EGU26/EGU26-21316.html [Full abstract]

Sanan, M. (2026). Earth Observation for Tracking Surface Dynamics (Master’s dissertation, MSc in Geospatial Technologies, NOVA Information Management School, Universidade Nova de Lisboa / Universitat Jaume I / Universität Münster). https://run.unl.pt/bitstreams/f8755ffb-c97e-43e5-a5a9-1ee6f4beb6a4/download [Direct PDF]