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Understanding 3D structural complexity of individual Scots pine trees with different management history.


ABSTRACT: Tree functional traits together with processes such as forest regeneration, growth, and mortality affect forest and tree structure. Forest management inherently impacts these processes. Moreover, forest structure, biodiversity, resilience, and carbon uptake can be sustained and enhanced with forest management activities. To assess structural complexity of individual trees, comprehensive and quantitative measures are needed, and they are often lacking for current forest management practices. Here, we utilized 3D information from individual Scots pine (Pinus sylvestris L.) trees obtained with terrestrial laser scanning to, first, assess effects of forest management on structural complexity of individual trees and, second, understand relationship between several tree attributes and structural complexity. We studied structural complexity of individual trees represented by a single scale-independent metric called "box dimension." This study aimed at identifying drivers affecting structural complexity of individual Scots pine trees in boreal forest conditions. The results showed that thinning increased structural complexity of individual Scots pine trees. Furthermore, we found a relationship between structural complexity and stem and crown size and shape as well as tree growth. Thus, it can be concluded that forest management affected structural complexity of individual Scots pine trees in managed boreal forests, and stem, crown, and growth attributes were identified as drivers of it.

SUBMITTER: Saarinen N 

PROVIDER: S-EPMC7981231 | biostudies-literature | 2021 Mar

REPOSITORIES: biostudies-literature

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Understanding 3D structural complexity of individual Scots pine trees with different management history.

Saarinen Ninni N   Calders Kim K   Kankare Ville V   Yrttimaa Tuomas T   Junttila Samuli S   Luoma Ville V   Huuskonen Saija S   Hynynen Jari J   Verbeeck Hans H  

Ecology and evolution 20210131 6


Tree functional traits together with processes such as forest regeneration, growth, and mortality affect forest and tree structure. Forest management inherently impacts these processes. Moreover, forest structure, biodiversity, resilience, and carbon uptake can be sustained and enhanced with forest management activities. To assess structural complexity of individual trees, comprehensive and quantitative measures are needed, and they are often lacking for current forest management practices. Here  ...[more]

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