Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Forest Biodiversity Monitoring Based on Remotely Sensed Spectral Diversity—A Review

View through CrossRef
Forests are essential for global environmental well-being because of their rich provision of ecosystem services and regulating factors. Global forests are under increasing pressure from climate change, resource extraction, and anthropologically-driven disturbances. The results are dramatic losses of habitats accompanied with the reduction of species diversity. There is the urgent need for forest biodiversity monitoring comprising analysis on α, β, and γ scale to identify hotspots of biodiversity. Remote sensing enables large-scale monitoring at multiple spatial and temporal resolutions. Concepts of remotely sensed spectral diversity have been identified as promising methodologies for the consistent and multi-temporal analysis of forest biodiversity. This review provides a first time focus on the three spectral diversity concepts “vegetation indices”, “spectral information content”, and “spectral species” for forest biodiversity monitoring based on airborne and spaceborne remote sensing. In addition, the reviewed articles are analyzed regarding the spatiotemporal distribution, remote sensing sensors, temporal scales and thematic foci. We identify multispectral sensors as primary data source which underlines the focus on optical diversity as a proxy for forest biodiversity. Moreover, there is a general conceptual focus on the analysis of spectral information content. In recent years, the spectral species concept has raised attention and has been applied to Sentinel-2 and MODIS data for the analysis from local spectral species to global spectral communities. Novel remote sensing processing capacities and the provision of complementary remote sensing data sets offer great potentials for large-scale biodiversity monitoring in the future.
Title: Forest Biodiversity Monitoring Based on Remotely Sensed Spectral Diversity—A Review
Description:
Forests are essential for global environmental well-being because of their rich provision of ecosystem services and regulating factors.
Global forests are under increasing pressure from climate change, resource extraction, and anthropologically-driven disturbances.
The results are dramatic losses of habitats accompanied with the reduction of species diversity.
There is the urgent need for forest biodiversity monitoring comprising analysis on α, β, and γ scale to identify hotspots of biodiversity.
Remote sensing enables large-scale monitoring at multiple spatial and temporal resolutions.
Concepts of remotely sensed spectral diversity have been identified as promising methodologies for the consistent and multi-temporal analysis of forest biodiversity.
This review provides a first time focus on the three spectral diversity concepts “vegetation indices”, “spectral information content”, and “spectral species” for forest biodiversity monitoring based on airborne and spaceborne remote sensing.
In addition, the reviewed articles are analyzed regarding the spatiotemporal distribution, remote sensing sensors, temporal scales and thematic foci.
We identify multispectral sensors as primary data source which underlines the focus on optical diversity as a proxy for forest biodiversity.
Moreover, there is a general conceptual focus on the analysis of spectral information content.
In recent years, the spectral species concept has raised attention and has been applied to Sentinel-2 and MODIS data for the analysis from local spectral species to global spectral communities.
Novel remote sensing processing capacities and the provision of complementary remote sensing data sets offer great potentials for large-scale biodiversity monitoring in the future.

Related Results

Biodiversity potential and scientific basis for conservation in the Song Hinh - Tay Hoa area, Dak Lak province, Vietnam
Biodiversity potential and scientific basis for conservation in the Song Hinh - Tay Hoa area, Dak Lak province, Vietnam
The Song Hinh - Tay Hoa area harbors exceptional ecological and biodiversity values. Two characteristic forest ecosystems are represented: lowland and mid-montane evergreen tropica...
Application of Random Forest Algorithm and Multi-Temporal Satellite Data for Forest Types Classification in Chiang Mai Province
Application of Random Forest Algorithm and Multi-Temporal Satellite Data for Forest Types Classification in Chiang Mai Province
Background and Objectives: Chiang Mai Province is strategically important as a major watershed area for the Ping River basin ecosystem and boasts one of the highest biodiversity le...
Evaluating the Science to Inform the Physical Activity Guidelines for Americans Midcourse Report
Evaluating the Science to Inform the Physical Activity Guidelines for Americans Midcourse Report
Abstract The Physical Activity Guidelines for Americans (Guidelines) advises older adults to be as active as possible. Yet, despite the well documented benefits of physical activi...
Factors influencing and patterns of forest utilization in communities around the Huay Tak Teak Biosphere Reserve, Lampang Province
Factors influencing and patterns of forest utilization in communities around the Huay Tak Teak Biosphere Reserve, Lampang Province
Background and Objectives: To establish the land regulation, it is necessary to know basic information of the surrounding community’s land use and to be aware of basic forest laws....
Diversity of Plant community in Satun Geopark
Diversity of Plant community in Satun Geopark
Background and Objectives: The diversity of species and plant communities varies among the areas. Understanding of species and their habitats is vital on conservation and sustainab...
Forest Plant Diversity Assessment Based on Remote Sensing: A Systematic Literature Review
Forest Plant Diversity Assessment Based on Remote Sensing: A Systematic Literature Review
Abstract This document presents a systematic literature review on the assessment of forest plant diversity using remote sensing techniques. Forest plant diversity plays a c...
Forest Structure and Potential of Carbon Storage at Khao Nam Sab, Kasetsart University, Sri Racha Campus, Chonburi Province
Forest Structure and Potential of Carbon Storage at Khao Nam Sab, Kasetsart University, Sri Racha Campus, Chonburi Province
Background and Objectives: Tropical Forest ecosystems are globally significant for their roles in biodiversity conservation, climate regulation, and carbon sequestration. In Thaila...

Back to Top