International audienceHigh-alpine geomorphosites are poorly understood and developed, mostly because of the heavy constraints of high mountain areas. Meanwhile, they are geoheritage areas that are often extremely vulnerable to global warming: glaciers and permafrost areas are currently affected by major changes due to increasing air temperature. To deal with the high spatial variability of landforms and processes, research on alpine geomorphosites often needs the use of advanced methods of high-resolution topography, among which terrestrial laser scanning plays an increasingly crucial role. Carried out on some tenth of high-elevation sites across the Alps since the beginning of the 2000s, this method is particularly interesting for the reco...
In the last decade, a range of new remote-sensing techniques has led to a dramatic increase in terra...
Highly accurate 3D micro topographic mapping in mountain research demands for light equipment and lo...
Airborne LIDAR technology has led to a dramatic increase in terrain information. LiDAR-derived high-...
International audienceHigh-alpine geomorphosites are poorly understood and developed, mostly because...
International audienceGeomorphosites in high alpine areas show limited development of their geoherit...
Permafrost phenomena like active rock glaciers are increasingly mapped and monitored with close rang...
Alpine valleys are experiencing rapidly changing physical, biological and geochemical processes as g...
International audienceRock mass movements are dominant in the morphodynamics of high Alpine rock slo...
High-alpine areas are subject to rapid topographic changes, mainly caused by natural processes like ...
Global climate change affects mountain regions such as the European Alps. Consequently, glacier exte...
International audienceThe most common landforms associated with the creep of Alpine permafrost are t...
Detailed geomorphological information has proven beneficial for the spatial recognition and delineat...
In the last decade, a range of new remote-sensing techniques has led to a dramatic increase in terra...
Highly accurate 3D micro topographic mapping in mountain research demands for light equipment and lo...
Airborne LIDAR technology has led to a dramatic increase in terrain information. LiDAR-derived high-...
International audienceHigh-alpine geomorphosites are poorly understood and developed, mostly because...
International audienceGeomorphosites in high alpine areas show limited development of their geoherit...
Permafrost phenomena like active rock glaciers are increasingly mapped and monitored with close rang...
Alpine valleys are experiencing rapidly changing physical, biological and geochemical processes as g...
International audienceRock mass movements are dominant in the morphodynamics of high Alpine rock slo...
High-alpine areas are subject to rapid topographic changes, mainly caused by natural processes like ...
Global climate change affects mountain regions such as the European Alps. Consequently, glacier exte...
International audienceThe most common landforms associated with the creep of Alpine permafrost are t...
Detailed geomorphological information has proven beneficial for the spatial recognition and delineat...
In the last decade, a range of new remote-sensing techniques has led to a dramatic increase in terra...
Highly accurate 3D micro topographic mapping in mountain research demands for light equipment and lo...
Airborne LIDAR technology has led to a dramatic increase in terrain information. LiDAR-derived high-...