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Update of the census would be a long and laborious process, but of high importance for sustainable development and spatial management of the region.
The integration of new types of data acquisition technologies, such as Li DAR and georeferenced terrestrial photographs, may improve the mapping efficiency and accuracy of secondary forest succession dynamics in diverse mountain environments.
Terrestrial photographs play an important role in landscape research  because of their ability to illustrate landscape changes [30,53,54,55,56].Several studies have integrated Li DAR data with other sources to increase the accuracy of vegetation mapping at various scales [48,49,50] and find the best case-specific solutions.Overall, many studies have demonstrated the outstanding capacity of Li DAR data to monitor various stages of forest succession.The recently developed AVALMAPPER software allows the creation of an orthoimage from a terrestrial (oblique) photograph using photogrammetric and computer vision rules and has been successfully applied in the manual vectorization of avalanche areas [62,63,64].
Bozzini [61,65] proposed the WSL Monoplotting Tool, which allows different features to be measured directly on a previously georeferenced terrestrial photograph.
The overall accuracy of the approach was assessed using georeferenced terrestrial photographs and was found to be 95.0%.