Intercomparison of satellite-derived vegetation phenology is scarce in remote locations because of the limited coverage area and low temporal resolution of field observations. By their reliable near-ground observations and high-frequency data collection, PhenoCams can be a robust tool for intercomparison of land surface phenology derived from satellites. This study aims to investigate the transition dates of black spruce (Picea mariana (Mill.) B.S.P.) phenology by comparing fortnightly the MODIS normalized difference vegetation index (NDVI) and the enhanced vegetation index (EVI) extracted using the Google Earth Engine (GEE) platform with the daily PhenoCam-based green chromatic coordinate (GCC) index. Data were collected from 2016 to 2019 ...
Satellite remote sensing is a widely accessible tool to investigate the spatiotemporal variations in...
Long-term observations of vegetation phenology can be used to monitor the response of terrestrial ec...
Plant phenology is a key indicator of the terrestrial biosphere's response to climate change, as wel...
Intercomparison of satellite-derived vegetation phenology is scarce in remote locations because of t...
Intercomparison of satellite-derived vegetation phenology is scarce in remote locations because of t...
Bud and leaf development are important phenological events and help in defining the growing period o...
The monitoring of forest phenology based on observations from near-surface sensors such as Unmanned ...
Satellite remote sensing of plant phenology provides an important indicator of climate change. Howev...
International audiencePhenology is a valuable diagnostic of ecosystem health, and has applications t...
Ground validation of satellite-based vegetation phenology has been challenging because ground phenol...
Green leaf phenology is known to be sensitive to climate variation. Phenology is also important beca...
Satellite remote sensing of plant phenology provides an important indicator of climate change. Howev...
Plant phenology regulates ecosystem services at local and global scales and is a sensitive indicator...
Long-term observations of vegetation phenology can be used to monitor the response of terrestrial ec...
Satellite remote sensing has the potential to contribute to plant phenology monitoring at spatial an...
Satellite remote sensing is a widely accessible tool to investigate the spatiotemporal variations in...
Long-term observations of vegetation phenology can be used to monitor the response of terrestrial ec...
Plant phenology is a key indicator of the terrestrial biosphere's response to climate change, as wel...
Intercomparison of satellite-derived vegetation phenology is scarce in remote locations because of t...
Intercomparison of satellite-derived vegetation phenology is scarce in remote locations because of t...
Bud and leaf development are important phenological events and help in defining the growing period o...
The monitoring of forest phenology based on observations from near-surface sensors such as Unmanned ...
Satellite remote sensing of plant phenology provides an important indicator of climate change. Howev...
International audiencePhenology is a valuable diagnostic of ecosystem health, and has applications t...
Ground validation of satellite-based vegetation phenology has been challenging because ground phenol...
Green leaf phenology is known to be sensitive to climate variation. Phenology is also important beca...
Satellite remote sensing of plant phenology provides an important indicator of climate change. Howev...
Plant phenology regulates ecosystem services at local and global scales and is a sensitive indicator...
Long-term observations of vegetation phenology can be used to monitor the response of terrestrial ec...
Satellite remote sensing has the potential to contribute to plant phenology monitoring at spatial an...
Satellite remote sensing is a widely accessible tool to investigate the spatiotemporal variations in...
Long-term observations of vegetation phenology can be used to monitor the response of terrestrial ec...
Plant phenology is a key indicator of the terrestrial biosphere's response to climate change, as wel...