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  5. Mid-Term Evaluation of Herbaceous Cover Restoration on Skid Trails Following Ground-Based Logging in Pure Oriental Beech (Fagus orientalis Lipsky) Stands of the Hyrcanian Forests, Northern Iran

Mid-Term Evaluation of Herbaceous Cover Restoration on Skid Trails Following Ground-Based Logging in Pure Oriental Beech (Fagus orientalis Lipsky) Stands of the Hyrcanian Forests, Northern Iran

Author(s)
Babaei-Ahmadabad, Ali
Jourgholami, Meghdad
Lo Monaco, Angela  
Venanzi, Rachele  
Picchio, Rodolfo  
Date Issued
July 1, 2025
Type
text::journal::journal article
Volume
14
Issue
7
DOI
10.3390/land14071387
ISSN
2073-445X
Journal
LAND  
Abstract
This study aimed to evaluate the effects of varying traffic intensities, the time since harvesting, and the interaction between these two factors on the restoration of herbaceous cover on skid trails in the Hyrcanian forests, Northern Iran. Three compartments were selected from two districts within the pure oriental beech (Fagus orientalis Lipsky) stands of Kheyrud Forest, where ground-based timber extraction had occurred 5, 10, and 15 years prior. In each compartment, three skid trails representing low, medium, and high traffic intensities were identified. Control plots were established 10 m away from the trails. A total of 54 systematically selected 1 m × 1 m sample plots were surveyed: 27 on skid trails (three traffic intensities × three time intervals × three replicates) and 27 control plots (matching the same variables). Within each quadrat, all herbaceous plants were counted, identified, and recorded. Our findings revealed that only traffic intensity had a clear significant impact on plant abundance. High traffic intensity led to a pronounced decline in herbaceous cover, with disturbed skid trails showing reduced species diversity or the complete disappearance of certain species in comparison to the control plots. Time since harvesting and its interaction with traffic intensity did not yield statistically significant effects. Disturbance led to a reduction in the quantities of certain species or even their disappearance on skid trails in comparison to the control plots. Given the pivotal role of machinery traffic intensity in determining mitigation strategies, there is a critical need for research on region-specific harvesting techniques and the development of adaptive management strategies that minimize ecological impacts by aligning practices with varying levels of traffic intensity.
Subjects

evenness

forest operation

grass coverage

recovery

species diversity

traffic intensity

Handle
https://dspace.unitus.it/handle/2067/68886
File(s)
Thumbnail Image
Name

land-14-01387.pdf

Size

1.71 MB

Format

Adobe PDF

Checksum (MD5)

e84b33199c1a61f68ca47e5ff881e13c

Metrics

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