PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
March 13, 2026European Journal of Forest Research0 citationsOpen Access

A novel workflow for forest regeneration prediction

CWChris WudelRSRobert SchlichtNMNora Meyer

Key Points

  • To develop an innovative method for predicting the spatial distribution of regenerating trees in forests.
  • Introduced a point pattern reconstruction method for spatial data analysis.
  • Tested in two forest areas using terrestrial laser scanning.
  • Analyzed a small reference plot to establish correlations between tree attributes.
  • Extrapolated regeneration patterns from small plots to larger areas.
  • Successfully scaled regeneration structural properties from small reference plots to entire forest areas.
  • Bimodal diameter distribution of regenerated species matched across the larger areas.
  • Demonstrated cost-effectiveness and efficiency in predicting forest regeneration.

Abstract

Abstract Forest regeneration is crucial for forest adaptability to environmental changes and the maintenance of ecosystem services. However, assessing regeneration across different spatial scales remains a challenge. While modern remote sensing methods improve data collection, they still face technical challenges such as image interpretation, sensor calibration, and data processing. Detailed spatial recording of forest regeneration thus remains time-consuming and costly. This study introduces an innovative method based on point pattern reconstruction, which predicts the spatial distribution of regenerating trees cost-effectively over large areas. The method was tested in two 1-hectare forest areas: one in the Billenhagener Forest near Rostock and one in the Dippoldiswalder Heathland near Malter. In each area, a 0.09-hectare reference plot containing both the overstory and regeneration was analysed using terrestrial laser scanning. A reconstruction method was developed using spatial tree data and correlations between tree attributes to extrapolate the regeneration patterns to the entire area. Spatial analyses showed that the structural properties of regeneration were successfully scaled from the small reference plot to the full study site. The bimodal diameter distribution of regenerated tree species observed in the reference plot was also well reproduced throughout the area. The results confirm that the method presented enables an adequate reconstruction of regeneration based on overstory structure from a small sample plot. It provides an efficient, time- and labour-saving approach for assessing forest regeneration capacity. It has the potential to support sustainable forest management by offering scalable, data-driven insights into regeneration dynamics.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Wudel et al. (2026) studied this question.

synapsesocial.com/papers/69b3ac8102a1e69014cce33chttps://doi.org/10.1007/s10342-026-01886-6
Ask AI
Helpful
Bookmark
Share
View Full Paper