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197 peer-reviewed articles • 16,832 peer-reviewed citations • Sorted by year • Download PDF (PDF by citations)
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1Tracing recent large herbivore influence on soil carbon in permafrost and seasonally frozen Arctic ground using lipid biomarkers: a pilot study
Arctic Science, 2025, 11, 1-15
3.70Citations (PDF)
2Advancing the Arctic Methane Permafrost Challenge (AMPAC) With Future Satellite Missions4.76Citations (PDF)
3Rapid Changes in Retrogressive Thaw Slump Dynamics in the Russian High Arctic Based on Very High‐Resolution Remote Sensing4.119Citations (PDF)
4Rising Arctic seas and thawing permafrost: uncovering the carbon cycle impact in a thermokarst lagoon system in the outer Mackenzie Delta, Canada
Biogeosciences, 2025, 22, 2069-2086
3.12Citations (PDF)
5Annual and sub-seasonal dynamics of a rapidly eroding permafrost coastline along the Beaufort Sea in northern Alaska
Scientific Reports, 2025, 15,
3.44Citations (PDF)
6Organic carbon, mercury, and sediment characteristics along a land–shore transect in Arctic Alaska
Biogeosciences, 2025, 22, 2871-2887
3.13Citations (PDF)
7Leveraging multi-decadal, multi-modal high-resolution optical imagery towards automated Arctic coastal erosion monitoring with deep learning
Geomorphology, 2025, 487, 109914
3.12Citations (PDF)
8Using Texture‐Based Image Segmentation and Machine Learning With High‐Resolution Satellite Imagery to Assess Permafrost Degradation Landforms in the Russian High Arctic0.01Citations (PDF)
9DARTS: Multi-year database of AI-detected retrogressive thaw slumps in the circum-arctic permafrost region
Scientific Data, 2025, 12,
5.711Citations (PDF)
10Review article: Retrogressive thaw slump theory and terminology
2024, ,
1Citations (PDF)
11A Third of Organic Carbon Is Mineral Bound in Permafrost Sediments Exposed by the World's Largest Thaw Slump, Batagay, Siberia2.94Citations (PDF)
12Atmosphere circulation patterns synchronize pan-Arctic glacier melt and permafrost thaw6.810Citations (PDF)
13Upland Yedoma taliks are an unpredicted source of atmospheric methane13.721Citations (PDF)
14Multisource Synthesized Inventory of CRitical Infrastructure and HUman-Impacted Areas in AlaSka (SIRIUS)
Earth System Science Data, 2024, 16, 3719-3753
9.02Citations (PDF)
15PixelDINO: Semi-Supervised Semantic Segmentation for Detecting Permafrost Disturbances in the Arctic6.49Citations (PDF)
16Topography Controls Variability in Circumpolar Permafrost Thaw Pond Expansion2.88Citations (PDF)
17Methane flux from Beringian coastal wetlands for the past 20,000 years
Quaternary Science Reviews, 2024, 344, 108976
3.12Citations (PDF)
18Methane emissions from proglacial lakes: A synthesis study directed toward Lake Agassiz
Quaternary Science Reviews, 2024, 344, 108975
3.14Citations (PDF)
19Review article: Retrogressive thaw slump characteristics and terminology
Cryosphere, 2024, 18, 4787-4810
3.155Citations (PDF)
20Pan‐Arctic Assessment of Coastal Settlements and Infrastructure Vulnerable to Coastal Erosion, Sea‐Level Rise, and Permafrost Thaw
Earth's Future, 2024, 12,
7.224Citations (PDF)
21An Update on Eukaryotic Viruses Revived from Ancient Permafrost
Viruses, 2023, 15, 564
3.256Citations (PDF)
22Microbial methane cycling in sediments of Arctic thermokarst lagoons
Global Change Biology, 2023, 29, 2714-2731
11.131Citations (PDF)
23Thawing permafrost poses environmental threat to thousands of sites with legacy industrial contamination13.781Citations (PDF)
24Subsea permafrost organic carbon stocks are large and of dominantly low reactivity
Scientific Reports, 2023, 13,
3.423Citations (PDF)
25Integrating local environmental observations and remote sensing to better understand the life cycle of a thermokarst lake in Arctic Alaska1.812Citations (PDF)
26Past permafrost dynamics can inform future permafrost carbon-climate feedbacks6.838Citations (PDF)
27Panarctic lakes exerted a small positive feedback on early Holocene warming due to deglacial release of methane6.89Citations (PDF)
28Carbon dioxide release from retrogressive thaw slumps in Siberia4.912Citations (PDF)
29Remote sensing annual dynamics of rapid permafrost thaw disturbances with LandTrendr11.1129Citations (PDF)
30Lake and drained lake basin systems in lowland permafrost regions56.2112Citations (PDF)
31Origin and Pathways of Dissolved Organic Carbon in a Small Catchment in the Lena River Delta1.68Citations (PDF)
32Heavy and Light Mineral Association of Late Quaternary Permafrost Deposits in Northeastern Siberia1.66Citations (PDF)
33Metagenomic survey of the microbiome of ancient Siberian permafrost and modern Kamchatkan cryosols
MicroLife, 2022, 3,
2.929Citations (PDF)
34Organic matter characteristics of a rapidly eroding permafrost cliff in NE Siberia (Lena Delta, Laptev Sea region)
Biogeosciences, 2022, 19, 2079-2094
3.112Citations (PDF)
35Expanding beaver pond distribution in Arctic Alaska, 1949 to 2019
Scientific Reports, 2022, 12,
3.428Citations (PDF)
36High-resolution bathymetry models for the Lena Delta and Kolyma Gulf coastal zones
Earth System Science Data, 2022, 14, 2279-2301
9.06Citations (PDF)
37Thermokarst processes increase the supply of stabilizing surfaces and elements (Fe, Mn, Al, and Ca) for mineral–organic carbon interactions2.919Citations (PDF)
38Large herbivores on permafrost— a pilot study of grazing impacts on permafrost soil carbon storage in northeastern Siberia3.113Citations (PDF)
39Molecular biomarkers in Batagay megaslump permafrost deposits reveal clear differences in organic matter preservation between glacial and interglacial periods
Cryosphere, 2022, 16, 3601-3617
3.113Citations (PDF)
40Brief communication: Unravelling the composition and microstructure of a permafrost core using X-ray computed tomography
Cryosphere, 2022, 16, 3507-3515
3.113Citations (PDF)
41A globally relevant stock of soil nitrogen in the Yedoma permafrost domain13.750Citations (PDF)
42Exploring the capabilities of electrical resistivity tomography to study subsea permafrost
Cryosphere, 2022, 16, 4423-4445
3.19Citations (PDF)
43The Potential of UAV Imagery for the Detection of Rapid Permafrost Degradation: Assessing the Impacts on Critical Arctic Infrastructure
Remote Sensing, 2022, 14, 6107
3.713Citations (PDF)
44Thermo‐erosional valleys in Siberian ice‐rich permafrost2.932Citations (PDF)
45Decadal-scale hotspot methane ebullition within lakes following abrupt permafrost thaw4.942Citations (PDF)
46Spatiotemporal patterns of northern lake formation since the Last Glacial Maximum
Quaternary Science Reviews, 2021, 253, 106773
3.145Citations (PDF)
47Greenhouse gas production and lipid biomarker distribution in Yedoma and Alas thermokarst lake sediments in Eastern Siberia
Global Change Biology, 2021, 27, 2822-2839
11.138Citations (PDF)
48Methane pathways in winter ice of a thermokarst lake–lagoon–coastal water transect in north Siberia
Cryosphere, 2021, 15, 1607-1625
3.110Citations (PDF)
49The role of wetland expansion and successional processes in methane emissions from northern wetlands during the Holocene
Quaternary Science Reviews, 2021, 257, 106864
3.132Citations (PDF)
50Remote Sensing-Based Statistical Approach for Defining Drained Lake Basins in a Continuous Permafrost Region, North Slope of Alaska
Remote Sensing, 2021, 13, 2539
3.716Citations (PDF)
51First pan-Arctic assessment of dissolved organic carbon in lakes of the permafrost region
Biogeosciences, 2021, 18, 3917-3936
3.123Citations (PDF)
52Onshore Thermokarst Primes Subsea Permafrost Degradation4.119Citations (PDF)
53Iron Redistribution Upon Thermokarst Processes in the Yedoma Domain1.620Citations (PDF)
54Thermokarst Lagoons: A Core-Based Assessment of Depositional Characteristics and an Estimate of Carbon Pools on the Bykovsky Peninsula1.621Citations (PDF)
55A Quantitative Graph-Based Approach to Monitoring Ice-Wedge Trough Dynamics in Polygonal Permafrost Landscapes
Remote Sensing, 2021, 13, 3098
3.724Citations (PDF)
56Geochemistry and Weathering Indices of Yedoma and Alas Deposits beneath Thermokarst Lakes in Central Yakutia1.613Citations (PDF)
57Mineral Element Stocks in the Yedoma Domain: A Novel Method Applied to Ice-Rich Permafrost Regions1.619Citations (PDF)
58Geomorphological and Climatic Drivers of Thermokarst Lake Area Increase Trend (1999–2018) in the Kolyma Lowland Yedoma Region, North-Eastern Siberia
Remote Sensing, 2021, 13, 178
3.763Citations (PDF)
59Landsat-based lake distribution and changes in western Alaska permafrost regions between the 1970s and 2010s4.930Citations (PDF)
60Developing and Testing a Deep Learning Approach for Mapping Retrogressive Thaw Slumps
Remote Sensing, 2021, 13, 4294
3.767Citations (PDF)
61Circum-Arctic Map of the Yedoma Permafrost Domain1.6111Citations (PDF)
62Expanding infrastructure and growing anthropogenic impacts along Arctic coasts4.959Citations (PDF)
63The Boreal–Arctic Wetland and Lake Dataset (BAWLD)
Earth System Science Data, 2021, 13, 5127-5149
9.090Citations (PDF)
64Degrading permafrost river catchments and their impact on Arctic Ocean nearshore processes
Ambio, 2021, 51, 439-455
3.955Citations (PDF)
65Mercury in Sediment Core Samples From Deep Siberian Ice-Rich Permafrost1.612Citations (PDF)
66Thawing Yedoma permafrost is a neglected nitrous oxide source13.763Citations (PDF)
67A synthesis of methane dynamics in thermokarst lake environments
Earth-Science Reviews, 2020, 210, 103365
8.658Citations (PDF)
68Thermokarst Lake to Lagoon Transitions in Eastern Siberia: Do Submerged Taliks Refreeze?2.825Citations (PDF)
69n-Alkane Characteristics of Thawed Permafrost Deposits Below a Thermokarst Lake on Bykovsky Peninsula, Northeastern Siberia3.119Citations (PDF)
70Rapid Fluvio-Thermal Erosion of a Yedoma Permafrost Cliff in the Lena River Delta1.657Citations (PDF)
71Mosaicking Landsat and Sentinel-2 Data to Enhance LandTrendr Time Series Analysis in Northern High Latitude Permafrost Regions
Remote Sensing, 2020, 12, 2471
3.723Citations (PDF)
72Remote sensing northern lake methane ebullition
Nature Climate Change, 2020, 10, 511-517
17.665Citations (PDF)
73Increase in beaver dams controls surface water and thermokarst dynamics in an Arctic tundra region, Baldwin Peninsula, northwestern Alaska4.934Citations (PDF)
74Identifying historical and future potential lake drainage events on the western Arctic coastal plain of Alaska2.941Citations (PDF)
75Carbon release through abrupt permafrost thaw
Nature Geoscience, 2020, 13, 138-143
11.3742Citations (PDF)
76High potential for loss of permafrost landforms in a changing climate4.948Citations (PDF)
77Organic carbon characteristics in ice-rich permafrost in alas and Yedoma deposits, central Yakutia, Siberia
Biogeosciences, 2020, 17, 3797-3814
3.123Citations (PDF)
78The genesis of Yedoma Ice Complex permafrost – grain-size endmember modeling analysis from Siberia and Alaska2.235Citations (PDF)
79The catastrophic thermokarst lake drainage events of 2018 in northwestern Alaska: fast-forward into the future
Cryosphere, 2020, 14, 4279-4297
3.185Citations (PDF)
80Ice roads through lake-rich Arctic watersheds: Integrating climate uncertainty and freshwater habitat responses into adaptive management1.829Citations (PDF)
81Century-scale time since permafrost thaw affects temperature sensitivity of net methane production in thermokarst-lake and talik sediments8.324Citations (PDF)
82Comparing Spectral Characteristics of Landsat-8 and Sentinel-2 Same-Day Data for Arctic-Boreal Regions
Remote Sensing, 2019, 11, 1730
3.733Citations (PDF)
83An Object-Based Classification Method to Detect Methane Ebullition Bubbles in Early Winter Lake Ice
Remote Sensing, 2019, 11, 822
3.711Citations (PDF)
84Organic Carbon and Nitrogen Stocks Along a Thermokarst Lake Sequence in Arctic Alaska2.931Citations (PDF)
85Heat and Salt Flow in Subsea Permafrost Modeled with CryoGRID22.841Citations (PDF)
86Size Distributions of Arctic Waterbodies Reveal Consistent Relations in Their Statistical Moments in Space and Time1.636Citations (PDF)
87Widespread global peatland establishment and persistence over the last 130,000 y7.5139Citations (PDF)
88Permafrost is warming at a global scale13.71,614Citations (PDF)
89Tundra landform and vegetation productivity trend maps for the Arctic Coastal Plain of northern Alaska
Scientific Data, 2018, 5,
5.735Citations (PDF)
90Variability in Rates of Coastal Change Along the Yukon Coast, 1951 to 20152.874Citations (PDF)
91Reduced arctic tundra productivity linked with landform and climate change interactions3.4127Citations (PDF)
92Alaskan marine transgressions record out-of-phase Arctic Ocean glaciation during the last interglacial
Geology, 2018, 46, 783-786
4.019Citations (PDF)
93A decade of remotely sensed observations highlight complex processes linked to coastal permafrost bluff erosion in the Arctic4.9107Citations (PDF)
94Organic matter characteristics in yedoma and thermokarst deposits on Baldwin Peninsula, west Alaska
Biogeosciences, 2018, 15, 6033-6048
3.139Citations (PDF)
95Remote sensing quantifies widespread abundance of permafrost region disturbances across the Arctic and Subarctic13.7274Citations (PDF)
96Transient Electromagnetic Surveys for the Determination of Talik Depth and Geometry Beneath Thermokarst Lakes3.725Citations (PDF)
97Sedimentary and geochemical characteristics of two small permafrost-dominated Arctic river deltas in northern Alaska
Arktos, 2018, 4, 1-18
4.05Citations (PDF)
98Sediment characteristics of a thermokarst lagoon in the northeastern Siberian Arctic (Ivashkina Lagoon, Bykovsky Peninsula)
Arktos, 2018, 4, 1-16
4.018Citations (PDF)
99Tundra be dammed: Beaver colonization of the Arctic
Global Change Biology, 2018, 24, 4478-4488
11.1106Citations (PDF)
100Sub-seasonal thaw slump mass wasting is not consistently energy limited at the landscape scale
Cryosphere, 2018, 12, 549-564
3.149Citations (PDF)
101Carbon and nitrogen pools in thermokarst-affected permafrost landscapes in Arctic Siberia
Biogeosciences, 2018, 15, 953-971
3.146Citations (PDF)
102Sentinel-1 InSAR Measurements of Elevation Changes over Yedoma Uplands on Sobo-Sise Island, Lena Delta
Remote Sensing, 2018, 10, 1152
3.740Citations (PDF)
103Monitoring Inter- and Intra-Seasonal Dynamics of Rapidly Degrading Ice-Rich Permafrost Riverbanks in the Lena Delta with TerraSAR-X Time Series
Remote Sensing, 2018, 10, 51
3.732Citations (PDF)
10421st-century modeled permafrost carbon emissions accelerated by abrupt thaw beneath lakes13.7243Citations (PDF)
105Remote Sensing Leads to Better Understanding of Polar Regions
Eos, 2018, 99,
0.13Citations (PDF)
106Coastal erosion and mass wasting along the Canadian Beaufort Sea based on annual airborne LiDAR elevation data
Geomorphology, 2017, 293, 331-346
3.185Citations (PDF)
107Diatom records and tephra mineralogy in pingo deposits of Seward Peninsula, Alaska2.518Citations (PDF)
108Deep Yedoma permafrost: A synthesis of depositional characteristics and carbon vulnerability
Earth-Science Reviews, 2017, 172, 75-86
8.6322Citations (PDF)
109Landsat-Based Trend Analysis of Lake Dynamics across Northern Permafrost Regions
Remote Sensing, 2017, 9, 640
3.7145Citations (PDF)
110PeRL: a circum-Arctic Permafrost Region Pond and Lake database
Earth System Science Data, 2017, 9, 317-348
9.085Citations (PDF)
111Detection and spatiotemporal analysis of methane ebullition on thermokarst lake ice using high-resolution optical aerial imagery
Biogeosciences, 2016, 13, 27-44
3.130Citations (PDF)
112Presence of rapidly degrading permafrost plateaus in south-central Alaska
Cryosphere, 2016, 10, 2673-2692
3.146Citations (PDF)
113Coastal dynamics and submarine permafrost in shallow water of the central Laptev Sea, East Siberia
Cryosphere, 2016, 10, 1449-1462
3.145Citations (PDF)
114Evidence of multiple thermokarst lake generations from an 11 800‐year‐old permafrost core on the northern Seward Peninsula, Alaska
Boreas, 2016, 45, 584-603
2.329Citations (PDF)
115Threshold sensitivity of shallow Arctic lakes and sublake permafrost to changing winter climate
Geophysical Research Letters, 2016, 43, 6358-6365
4.179Citations (PDF)
116Simulating soil organic carbon in yedoma deposits during the Last Glacial Maximum in a land surface model
Geophysical Research Letters, 2016, 43, 5133-5142
4.125Citations (PDF)
117Rapid degradation of permafrost underneath waterbodies in tundra landscapes—Toward a representation of thermokarst in land surface models2.870Citations (PDF)
118Detection of landscape dynamics in the Arctic Lena Delta with temporally dense Landsat time-series stacks11.1101Citations (PDF)
119Spatial distribution of thermokarst terrain in Arctic Alaska
Geomorphology, 2016, 273, 116-133
3.193Citations (PDF)
120Remote Sensing of Landscape Change in Permafrost Regions2.9111Citations (PDF)
121Mid‐Wisconsin to Holocene Permafrost and Landscape Dynamics based on a Drained Lake Basin Core from the Northern Seward Peninsula, Northwest Alaska2.929Citations (PDF)
122Methane emissions proportional to permafrost carbon thawed in Arctic lakes since the 1950s
Nature Geoscience, 2016, 9, 679-682
11.3210Citations (PDF)
123Circumpolar distribution and carbon storage of thermokarst landscapes13.7508Citations (PDF)
124Impacts of shore expansion and catchment characteristics on lacustrine thermokarst records in permafrost lowlands, Alaska Arctic Coastal Plain
Arktos, 2016, 2,
4.020Citations (PDF)
125The evolution of a thermokarst-lake landscape: Late Quaternary permafrost degradation and stabilization in interior Alaska
Sedimentary Geology, 2016, 340, 3-14
2.544Citations (PDF)
126Facies analysis of yedoma thermokarst lakes on the northern Seward Peninsula, Alaska
Sedimentary Geology, 2016, 340, 25-37
2.545Citations (PDF)
127Pan-Arctic ice-wedge degradation in warming permafrost and its influence on tundra hydrology
Nature Geoscience, 2016, 9, 312-318
11.3679Citations (PDF)
128Recent Arctic tundra fire initiates widespread thermokarst development3.4182Citations (PDF)
129Observation-based modelling of permafrost carbon fluxes with accounting for deep carbon deposits and thermokarst activity
Biogeosciences, 2015, 12, 3469-3488
3.1134Citations (PDF)
130Thermokarst lake methanogenesis along a complete talik profile
Biogeosciences, 2015, 12, 4317-4331
3.159Citations (PDF)
131Distribution and biophysical processes of beaded streams in Arctic permafrost landscapes
Biogeosciences, 2015, 12, 29-47
3.128Citations (PDF)
132Active Layer Stratigraphy and Organic Layer Thickness at a Thermokarst Site in Arctic Alaska Identified Using Ground Penetrating Radar1.825Citations (PDF)
133Climate change and the permafrost carbon feedback
Nature, 2015, 520, 171-179
37.93,300Citations (PDF)
134A simplified, data-constrained approach to estimate the permafrost carbon–climate feedback2.5177Citations (PDF)
135Polygonal tundra geomorphological change in response to warming alters future CO2 and CH4 flux on the Barrow Peninsula
Global Change Biology, 2015, 21, 1634-1651
11.1124Citations (PDF)
136Estimated stocks of circumpolar permafrost carbon with quantified uncertainty ranges and identified data gaps
Biogeosciences, 2014, 11, 6573-6593
3.11,361Citations (PDF)
137Seasonal thaw settlement at drained thermokarst lake basins, Arctic Alaska
Cryosphere, 2014, 8, 815-826
3.156Citations (PDF)
138A shift of thermokarst lakes from carbon sources to sinks during the Holocene epoch
Nature, 2014, 511, 452-456
37.9286Citations (PDF)
139Quantifying Wedge-Ice Volumes in Yedoma and Thermokarst Basin Deposits2.984Citations (PDF)
140Expert assessment of vulnerability of permafrost carbon to climate change
Climatic Change, 2013, 119, 359-374
3.7283Citations (PDF)
141Detecting unfrozen sediments below thermokarst lakes with surface nuclear magnetic resonance
Geophysical Research Letters, 2013, 40, 535-540
4.152Citations (PDF)
142Characterisation of the Permafrost Carbon Pool2.951Citations (PDF)
143Classification of freshwater ice conditions on the Alaskan Arctic Coastal Plain using ground penetrating radar and TerraSAR-X satellite data2.529Citations (PDF)
144Quantification of upland thermokarst features with high resolution remote sensing4.938Citations (PDF)
145The deep permafrost carbon pool of the Yedoma region in Siberia and Alaska
Geophysical Research Letters, 2013, 40, 6165-6170
4.1214Citations (PDF)
146Characterization of L-band synthetic aperture radar (SAR) backscatter from floating and grounded thermokarst lake ice in Arctic Alaska
Cryosphere, 2013, 7, 1741-1752
3.131Citations (PDF)
147Quantifying landscape change in an arctic coastal lowland using repeat airborne LiDAR4.963Citations (PDF)
148Synthetic aperture radar (SAR) backscatter response from methane ebullition bubbles trapped by thermokarst lake ice2.139Citations (PDF)
149Recent lake ice‐out phenology within and among lake districts of Alaska, U.S.A
Limnology and Oceanography, 2013, 58, 2013-2028
3.770Citations (PDF)
150Identification of unrecognized tundra fire events on the north slope of Alaska2.971Citations (PDF)
151Impacts of disturbance on the terrestrial carbon budget of North America2.963Citations (PDF)
152Short- and long-term thermo-erosion of ice-rich permafrost coasts in the Laptev Sea region
Biogeosciences, 2013, 10, 4297-4318
3.1199Citations (PDF)
153Organic carbon and total nitrogen stocks in soils of the Lena River Delta
Biogeosciences, 2013, 10, 3507-3524
3.194Citations (PDF)
154A new data set for estimating organic carbon storage to 3 m depth in soils of the northern circumpolar permafrost region
Earth System Science Data, 2013, 5, 393-402
9.0184Citations (PDF)
155Ground penetrating radar detection of subsnow slush on ice-covered lakes in interior Alaska
Cryosphere, 2012, 6, 1435-1443
3.119Citations (PDF)
156Field information links permafrost carbon to physical vulnerabilities of thawing4.1300Citations (PDF)
157Geologic methane seeps along boundaries of Arctic permafrost thaw and melting glaciers
Nature Geoscience, 2012, 5, 419-426
11.3260Citations (PDF)
158Late Quaternary environmental and landscape dynamics revealed by a pingo sequence on the northern Seward Peninsula, Alaska3.139Citations (PDF)
159Assessment of pingo distribution and morphometry using an IfSAR derived digital surface model, western Arctic Coastal Plain, Northern Alaska
Geomorphology, 2012, 138, 1-14
3.143Citations (PDF)
160Drainage Network Structure and Hydrologic Behavior of Three Lake-Rich Watersheds on the Arctic Coastal Plain, Alaska1.845Citations (PDF)
161Peat accumulation in drained thermokarst lake basins in continuous, ice‐rich permafrost, northern Seward Peninsula, Alaska3.5104Citations (PDF)
162Using the deuterium isotope composition of permafrost meltwater to constrain thermokarst lake contributions to atmospheric CH4 during the last deglaciation3.570Citations (PDF)
163Characterizing Post-Drainage Succession in Thermokarst Lake Basins on the Seward Peninsula, Alaska with TerraSAR-X Backscatter and Landsat-based NDVI Data
Remote Sensing, 2012, 4, 3741-3765
3.737Citations (PDF)
164Rapid movement of frozen debris-lobes: implications for permafrost degradation and slope instability in the south-central Brooks Range, Alaska3.752Citations (PDF)
165Vulnerability of high-latitude soil organic carbon in North America to disturbance3.5389Citations (PDF)
166Modern thermokarst lake dynamics in the continuous permafrost zone, northern Seward Peninsula, Alaska3.5292Citations (PDF)
167Late Quaternary paleoenvironmental records from the western Lena Delta, Arctic Siberia2.558Citations (PDF)
168Sedimentary characteristics and origin of the Late Pleistocene Ice Complex on north-east Siberian Arctic coastal lowlands and islands – A review
Quaternary International, 2011, 241, 3-25
1.5202Citations (PDF)
169Fossil organic matter characteristics in permafrost deposits of the northeast Siberian Arctic3.5158Citations (PDF)
170Expansion rate and geometry of floating vegetation mats on the margins of thermokarst lakes, northern Seward Peninsula, Alaska, USA2.723Citations (PDF)
171Hydrogeomorphic processes of thermokarst lakes with grounded‐ice and floating‐ice regimes on the Arctic coastal plain, Alaska
Hydrological Processes, 2011, 25, 2422-2438
2.6122Citations (PDF)
172Spatial distribution of pingos in northern Asia
Cryosphere, 2011, 5, 13-33
3.153Citations (PDF)
173Spatial analyses of thermokarst lakes and basins in Yedoma landscapes of the Lena Delta
Cryosphere, 2011, 5, 849-867
3.1134Citations (PDF)
174Holocene land-cover changes on the Tibetan Plateau
Holocene, 2010, 20, 91-104
1.770Citations (PDF)
175Why Permafrost Is Thawing, Not Melting
Eos, 2010, 91, 87-87
0.12Citations (PDF)
176The mystery of Bunge Land (New Siberian Archipelago): implications for its formation based on palaeoenvironmental records, geomorphology, and remote sensing
Quaternary Science Reviews, 2010, 29, 3598-3614
3.118Citations (PDF)
177Sikuliqiruq: ice dynamics of the Meade River – Arctic Alaska, from freezeup to breakup from time-series ground imagery
Polar Geography, 2010, 33, 115-137
1.22Citations (PDF)
178Weichselian and Holocene palaeoenvironmental history of the Bol'shoy Lyakhovsky Island, New Siberian Archipelago, Arctic Siberia
Boreas, 2009, 38, 72-110
2.3103Citations (PDF)
179Land cover classification of tundra environments in the Arctic Lena Delta based on Landsat 7 ETM+ data and its application for upscaling of methane emissions
Remote Sensing of Environment, 2009, 113, 380-391
11.1134Citations (PDF)
180Spectral characterization of periglacial surfaces and geomorphological units in the Arctic Lena Delta using field spectrometry and remote sensing
Remote Sensing of Environment, 2009, 113, 1220-1235
11.152Citations (PDF)
181Erosional history of Cape Halkett and contemporary monitoring of bluff retreat, Beaufort Sea coast, Alaska
Polar Geography, 2009, 32, 129-142
1.229Citations (PDF)
182Arctic thermokarst lakes and the carbon cycle
PAGES News, 2009, 17, 16-18
0.33Citations (PDF)
183Continental climate in the East Siberian Arctic during the last interglacial: Implications from palaeobotanical records
Global and Planetary Change, 2008, 60, 535-562
3.755Citations (PDF)
184Deposition and degradation of a volatile-rich layer in Utopia Planitia and implications for climate history on Mars3.5127Citations (PDF)
185Geological and geomorphological evolution of a sedimentary periglacial landscape in Northeast Siberia during the Late Quaternary
Geomorphology, 2007, 86, 25-51
3.1106Citations (PDF)
186Application of Landsat-7 satellite data and a DEM for the quantification of thermokarst-affected terrain types in the periglacial Lena?Anabar coastal lowland
Polar Research, 2006, 25, 51-67
0.646Citations (PDF)
187The use of CORONA images in remote sensing of periglacial geomorphology: an illustration from the NE Siberian coast2.9102Citations (PDF)
188Late Saalian and Eemian palaeoenvironmental history of the Bol'shoy Lyakhovsky Island (Laptev Sea region, Arctic Siberia)
Boreas, 2004, 33, 319-348
2.319Citations (PDF)
189Late Quaternary History of the Accumulation Plain North of the Chekanovsky Ridge (Lena Delta, Russia): A Multidisciplinary Approach
Polar Geography, 2003, 27, 277-319
1.299Citations (PDF)
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