Use of PhenoCam Measurements and Image Analysis to Inform the ALMANAC Process-based Simulation Model
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Gretchen R. Miller | Amartya Saha | Dawn M. Browning | James R. Kiniry | Jianzhong Su | Jacqueline Jacot | Amber S. Williams | Addison Coronel | Binayak Mohanty | Nuria Gomez-Casanovas | Jane M. F. Johnson | B. Mohanty | D. Browning | J. Kiniry | Jianzhong Su | G. Miller | A. Saha | N. Gomez‐Casanovas | J. Johnson | Jacqueline Jacot | Addison Coronel
[1] D. Hollinger,et al. Use of digital webcam images to track spring green-up in a deciduous broadleaf forest , 2007, Oecologia.
[2] Andrew D. Richardson,et al. Estimation of plant area index and phenological transition dates from digital repeat photography and radiometric approaches in a hardwood forest in the Northeastern United States , 2018 .
[3] Joel A. Granados,et al. Using phenocams to monitor our changing Earth: toward a global phenocam network , 2016 .
[4] Andrew E. Suyker,et al. An alternative method using digital cameras for continuous monitoring of crop status , 2012 .
[5] R. Q. Thomas,et al. PhenoCam Dataset v2.0: Vegetation Phenology from Digital Camera Imagery, 2000-2018 , 2019 .
[6] A. Gonsamo,et al. The match and mismatch between photosynthesis and land surface phenology of deciduous forests , 2015 .
[7] Wiebe Nijland,et al. Using excess greenness and green chromatic coordinate colour indices from aerial images to assess lodgepole pine vigour, mortality and disease occurrence , 2016 .
[8] Keirith A. Snyder,et al. Extracting Plant Phenology Metrics in a Great Basin Watershed: Methods and Considerations for Quantifying Phenophases in a Cold Desert , 2016, Sensors.
[9] William R. Raun,et al. Estimating vegetation coverage in wheat using digital images , 1999 .
[10] G. W. Evers,et al. Coastal Bermudagrass, Bahiagrass, and Native Range Simulation at Diverse Sites in Texas , 2007 .
[11] J. Kiniry,et al. Simulating the Productivity of Desert Woody Shrubs in Southwestern Texas , 2018 .
[12] David Morin,et al. Phenocams Bridge the Gap between Field and Satellite Observations in an Arid Grassland Ecosystem , 2017, Remote. Sens..
[13] A. Walter,et al. PhenoCams for Field Phenotyping: Using Very High Temporal Resolution Digital Repeated Photography to Investigate Interactions of Growth, Phenology, and Harvest Traits , 2020, Frontiers in Plant Science.
[14] Kevin W Eliceiri,et al. NIH Image to ImageJ: 25 years of image analysis , 2012, Nature Methods.
[15] John S. Iiames,et al. Comparison of EPIC-Simulated and MODIS-Derived Leaf Area Index (LAI) across Multiple Spatial Scales , 2020, Remote. Sens..
[16] M. Friedl,et al. Tracking forest phenology and seasonal physiology using digital repeat photography: a critical assessment. , 2014, Ecological applications : a publication of the Ecological Society of America.
[17] J. Herrick,et al. Plant Phenology: Taking the Pulse of Rangelands , 2019, Rangelands.
[18] K. Hufkens,et al. Seasonal patterns of foliar reflectance in relation to photosynthetic capacity and color index in two co-occurring tree species, Quercus rubra and Betula papyrifera , 2012 .
[19] Mark A. Friedl,et al. Digital repeat photography for phenological research in forest ecosystems , 2012 .
[20] J. Ott,et al. Monitoring land surface phenology in near real time by using PhenoMap , 2020 .
[21] Patel Janakkumar Baldevbhai. Color Image Segmentation for Medical Images using L*a*b* Color Space , 2012 .
[22] A. Richardson,et al. Productivity of North American grasslands is increased under future climate scenarios despite rising aridity , 2016 .
[23] N. Coops,et al. Monitoring plant condition and phenology using infrared sensitive consumer grade digital cameras , 2014 .