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Identifying architectural characteristics that determine tree structural complexity

机译:确定确定树结构复杂性的架构特征

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Key messageWe found structural complexity can best be predicted from a combination of measures that relate to the horizontal and vertical, as well as the internal branching pattern of the trees (range of branch angles).AbstractForest structure is related to several ecosystem services and functions provided by forests. To support a management for structural complexity, which is considered to have beneficial effects on most forest functions and services, it is crucial to understand how tree and stand structural complexity are created. We used fractal analysis to describe the structural complexity of trees and investigated how it depends on a tree architectural properties using a combination of measures that relate to vertical, horizontal and internal branching characteristics. Across a large range of tree sizes, we found that the structural complexity can best be predicted from a combination of conventional measures that relate to the horizontal and vertical extent as well as to the internal branching pattern of the trees (R-2=0.73). Our findings also indicate that large trees tend to possess a greater structural complexity than small trees, which is not due to their size per se but due to a more complex architecture.
机译:密钥消息我们发现结构复杂性可以最佳地预测与水平和垂直的措施的组合,以及树木的内部分支图案(分支角度的范围).Abstractorest结构与提供的若干生态系统服务和功能有关由森林。为了支持结构性复杂性的管理,被认为对大多数森林职能和服务具有有益影响,了解树木和立场结构复杂性是至关重要的。我们使用分形分析来描述树木的结构性复杂性,并研究了如何使用与垂直,水平和内部分支特征的措施的组合相结合取决于树形架构性质。在大量的树尺寸上,我们发现可以最好地从与水平和垂直范围内的传统措施的组合以及树木的内部分支图案(R-2 = 0.73)的组合来预测结构复杂性。 。我们的研究结果表明,大树往往具有比小树更大的结构复杂性,这不是由于它们的尺寸本身,而是由于更复杂的架构。

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