| Reviews |
| Ya.I. Angudovich, V.N. Malinin Interannual variability of ocean levels in the North Atlantic and its impact on climate characteristics in the Barents Sea | 9-26 |
| A.I. Novikov, O.I. Sokolova, T.P. Novikova Development of the precision farming concept for winter wheat crops: from multispectral satellite data to hyperspectral standards | 27-48 |
| Satellite data processing: methods and techniques |
| R.V. Larionov, V.V. Khryashchev, A.L. Priorov Improved delineation of contiguous agricultural fields in remote sensing image segmentation | 51-62 |
| A.A. Romanov, A.A. Romanov Modified method for optimal interpolation of sea level anomalies in the Sea of Okhotsk based on satellite altimetry data | 63-69 |
| B.I. Belyaev, M.Yu. Belyaev, Yu.S. Davidovich, L.V. Katkovsky, S.V. Konev, V.М. Kuznetzov, G.S. Litvinovich, A.O. Martinov, L.A. Smolentseva Application of the VSS videospectral system for mapping vegetation types based on the results of space imagery | 70-88 |
| R.A. Sekrieru, K.S. Tsygulev, S.A. Orlov, S.I. Smagin, T.V. Kozhevnikova Detection of dredge tailings dumps in satellite imagery using computer vision and machine learning methods | 89-102 |
| D. Wu, M.V. Zimin, P.G. Ilyushina, A.A. Medvedev Comparative analysis of coherence of C-band radar data of Fucheng-1 and Sentinel-1A based on standard interferometry and sub-look image correlation | 103-118 |
| M.A. Shiryaev, E.A. Baldina Applicability of interferometric pairs based on the state of the surface and weather conditions: A case study of Uzon-Geyser volcanic-tectonic depression | 119-136 |
| A.E. Karamzina, E.Yu. Mordvin, A.A. Lagutin Forecast of the yield of spring grain crops for the south of Western Siberia based on fluorescent radiation flows | 137-151 |
| Developing information systems for remote monitoring: methods and technologies |
| E.I. Ponomarev, A.N. Zabrodin, K.Yu. Litvintsev Remote sensing data on the energy characteristics of Siberian fires in estimates of burned phytomass | 155-167 |
| Remote sensing in geology and geophysics |
| A.A. Zlatopolsky Formal description of the runoff profile based on statistical analysis of the digital terrain model. Part tow. The Fall Matrix | 171-181 |
| E.P. Timoshkina, I.P. Babayants, V.O. Mikhailov, S.A. Khairetdinov On potential for subsidence monitoring in Kuzbass territory using SAR interferometry | 182-191 |
| Remote sensing of vegetation and soils |
| P.A. Chernenko, V. Ivanov, M.A. Medvedeva Integration of optical and radar data to assess the vegetation cover condition under the influence of external factors: Post-pyrogenic disturbances | 195-205 |
| R.V. Kalinichenko, A.Yu. Romanovskaya, A.E. Bedenko Assessment of the effect of irrigation on maize productivity using remote sensing methods | 206-214 |
| F.V. Vinogradov, D.K. Alexeev, L.E. Dmitricheva Simulation of water erosion processes in high mountain terrains based on the RUSLE model | 215-226 |
| E.A. Terekhin Relationships between tree cover of small dry valleys and vegetation indices in the south of Central Russian Upland | 227-241 |
| S.S. Shinkarenko, S.A. Bartalev, A.V. Kashnitskii Application of satellite forest indices and global land cover data to regional shelterbelt mapping | 242-257 |
| A.M. Shpanev, D.V. Rusakov, V.V. Smuk, A.V. Khyutti Study of reflective properties of potato plants affected by late blight using ground-based hyperspectral measurements | 258-271 |
| V.A. Khamedov, E.I. Baranova Detection of fire-hazardous areas in forest logging zones based on Landsat and Sentinel satellite data | 272-281 |
| A.A. Struev, E.P. Mitrofanov, V.P. Yakushev, V.M. Bure, O.A. Mitrofanova Predicting wheat crops nutrient status using multispectral and hyperspectral remote sensing data, machine learning and spatial cross-validation | 282-292 |
| S.A. Khvostikov, S.A. Bartalev Comparative analysis of actual and potential forest fire areas in Russia using remote sensing data and modeling | 293-301 |
| Remote sensing of water objects, ocean and ice cover |
| G.S. Bordonskiy, V.A. Kazantsev, A.K. Kozlov Changes in thermal radiation of snow cover in the millimeter and infrared ranges under the influence of solar radiation | 305-313 |
| M.I. Mityagina Rhine River plume patterns in the coastal zone of the North Sea observed by satellite radars | 314-330 |
| E.D. Pavlyukevich, A.A. Derkacheva Validation of global flood hazard maps for Russian rivers using remote sensing data | 331-345 |
| V.V. Tikhonov, D.M. Ermakov, А.V. Kuzmin, T.A. Alekseeva, S.S. Serovetnikov, E.V. Afanasyeva, V.D. Kotelnikov, S.A. Vturin Emissivity of nilas and grey ice based on the results of emulated satellite microwave radiometric experiment of the LED-SMP-1/2024 expedition | 346-356 |
| Satellite data processing: methods and techniques |
| M.V. Vrublevsky, O.Yu. Lavrova Application of the SWOT mission in oil pollution monitoring tasks | 357-374 |
| Remote sensing of atmosphere and climate |
| O.V. Postylyakov, A.N. Borovski, D.R. Shamsutdinov, A.I. Chulichkov On comparison of NO2 profile estimation methods based on MAX-DOAS measurements | 377-389 |
| O.S. Sizov Dynamics of methane emissions from wetlands of Western Siberian Plain based on TROPOMI data for 2019–2025 | 390-405 |
| M.G. Dembelov, A.V. Lukhnev Ratio of atmospheric moisture content to surface air temperature in the coastal zone of the central part of Lake Baikal | 406-416 |
| А.V. Kuzmin, D.M. Ermakov, A.G. Golovko, R.D. Koniashov A study of the summer monsoon near the Hindustan Peninsula in the atmospheric precipitable water vapor field based on satellite microwave radiometer data: Part 2 | 417-431 |
| In brief |
| O.A. Girina, A.G. Manevich, I.M. Romanova, I.A. Uvarov, A.A. Sorokin, S.P. Korolev, L.S. Kramareva, A.S. Malysheva The explosive event of Mutnovsky volcano (Kamchatka) in July 2026 | 435-442 |
| K.A. Troshko, P.V. Denisov, Ie.A. Dunaieva, D.E. Plotnikov, V.A. Tolpin Development of agricultural crops in Russia in 2026 based on remote monitoring data | 443-450 |
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| Imprint page
| 451 |