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Gray CJ, Shaw DR, Bruce LM (2009) Utility of hyperspectral reflectance for differentiating soybean (Glycine max) and six weed species. Weed Technol 23:108–119. https://doi.org/10.1614/
WT-07-117.1
Hamada Y, Stow DA, Coulter LL et al (2007) Detecting tamarisk species (Tamarix spp.) in riparian
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Hantson W, Kooistra L, Slim PA (2012) Mapping invasive woody species in coastal dunes in the
Netherlands: a remote sensing approach using LIDAR and high-resolution aerial photographs.
Appl Veg Sci 15:536–547. https://doi.org/10.1111/j.1654-109X.2012.01194.x
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org/10.1111/j.1472-4642.2011.00761.x
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https://doi.org/10.1016/j.rse.2015.05.023
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expansion on a declining turbidity trend in the Sacramento-San Joaquin River Delta. Estuar
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landurbplan.2011.01.011
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(Switzerland) 9:4869–4889. https://doi.org/10.3390/s90604869
Huang CY, Geiger EL (2008) Climate anomalies provide opportunities for large-scale mapping
of non-native plant abundance in desert grasslands. Divers Distrib 14:875–884. https://doi.
org/10.1111/j.1472-4642.2008.00500.x
Hudak AT, Wessman CA (1998) Textural analysis of historical aerial photography to characterize woody plant encroachment in South African Savanna. Remote Sens Environ 66:317–330.
https://doi.org/10.1016/S0034-4257(98)00078-9
Hui C, Richardson DM, Visser V (2017) Ranking of invasive spread through urban green areas in
the world’s 100 most populous cities. Biol Invasions 19:3527–3539. https://doi.org/10.1007/
s10530-017-1584-0
Hulme PE (2009) Trade, transport and trouble: managing invasive species pathways in an era of
globalization. J Appl Ecol 46:10–18. https://doi.org/10.1111/j.1365-2664.2008.01600.x
E. A. Bolch et al.
Gordon DR (1998) Effects of invasive, non-indigenous plant species on ecosystem processes: lessons from Florida. Ecol Appl 8:975. https://doi.org/10.2307/2640955
Grace J, José JS, Meir P et al (2006) Productivity and carbon fluxes of tropical savannas. J Biogeogr
33:387–400. https://doi.org/10.1111/j.1365-2699.2005.01448.x
Gray CJ, Shaw DR, Bruce LM (2009) Utility of hyperspectral reflectance for differentiating soybean (Glycine max) and six weed species. Weed Technol 23:108–119. https://doi.org/10.1614/
WT-07-117.1
Hamada Y, Stow DA, Coulter LL et al (2007) Detecting tamarisk species (Tamarix spp.) in riparian
habitats of southern California using high spatial resolution hyperspectral imagery. Remote
Sens Environ 109:237–248. https://doi.org/10.1016/j.rse.2007.01.003
Hantson W, Kooistra L, Slim PA (2012) Mapping invasive woody species in coastal dunes in the
Netherlands: a remote sensing approach using LIDAR and high-resolution aerial photographs.
Appl Veg Sci 15:536–547. https://doi.org/10.1111/j.1654-109X.2012.01194.x
He KS, Rocchini D, Neteler M, Nagendra H (2011) Benefits of hyperspectral remote
sensing for tracking plant invasions. Divers Distrib 17:381–392. https://doi.
org/10.1111/j.1472-4642.2011.00761.x
He KS, Bradley BA, Cord AF et al (2015) Will remote sensing shape the next generation of species
distribution models? Remote Sens Ecol Conserv 1:4–18. https://doi.org/10.1002/rse2.7
Hellmann JJ, Byers JE, Bierwagen BG, Dukes JS (2008) Five potential consequences
of climate change for invasive species. Conserv Biol 22:534–543. https://doi.
org/10.1111/j.1523-1739.2008.00951.x
Hestir EL, Khanna S, Andrew ME et al (2008) Identification of invasive vegetation using hyperspectral remote sensing in the California Delta ecosystem. Remote Sens Environ 112:4034–
4047. https://doi.org/10.1016/j.rse.2008.01.022
Hestir EL, Greenberg JA, Ustin SL (2012) Classification trees for aquatic vegetation community
prediction from imaging spectroscopy. IEEE J Sel Top Appl Earth Obs Remote Sens 5:1572–
1584. https://doi.org/10.1109/jstars.2012.2200878
Hestir EL, Brando VE, Bresciani M et al (2015) Measuring freshwater aquatic ecosystems: the
need for a hyperspectral global mapping satellite mission. Remote Sens Environ 167:181–195.
https://doi.org/10.1016/j.rse.2015.05.023
Hestir EL, Schoellhamer DH, Greenberg J et al (2016) The effect of submerged aquatic vegetation
expansion on a declining turbidity trend in the Sacramento-San Joaquin River Delta. Estuar
Coasts 39:1100–1112. https://doi.org/10.1007/s12237-015-0055-z
Hostetler M, Allen W, Meurk C (2011) Conserving urban biodiversity? Creating green infrastructure is only the first step. Landsc Urban Plan 100:369–371. https://doi.org/10.1016/j.
landurbplan.2011.01.011
Hoyos LE, Gavier-Pizarro GI, Kuemmerle T et al (2010) Invasion of glossy privet (Ligustrum
lucidum) and native forest loss in the Sierras Chicas of Córdoba, Argentina. Biol Invasions
12:3261–3275. https://doi.org/10.1007/s10530-010-9720-0
Hu S, Niu Z, Chen Y et al (2017) Global wetlands: potential distribution, wetland loss, and status.
Sci Total Environ 586:319–327. https://doi.org/10.1016/j.scitotenv.2017.02.001
Huang CY, Asner GP (2009) Applications of remote sensing to alien invasive plant studies. Sensors
(Switzerland) 9:4869–4889. https://doi.org/10.3390/s90604869
Huang CY, Geiger EL (2008) Climate anomalies provide opportunities for large-scale mapping
of non-native plant abundance in desert grasslands. Divers Distrib 14:875–884. https://doi.
org/10.1111/j.1472-4642.2008.00500.x
Hudak AT, Wessman CA (1998) Textural analysis of historical aerial photography to characterize woody plant encroachment in South African Savanna. Remote Sens Environ 66:317–330.
https://doi.org/10.1016/S0034-4257(98)00078-9
Hui C, Richardson DM, Visser V (2017) Ranking of invasive spread through urban green areas in
the world’s 100 most populous cities. Biol Invasions 19:3527–3539. https://doi.org/10.1007/
s10530-017-1584-0
Hulme PE (2009) Trade, transport and trouble: managing invasive species pathways in an era of
globalization. J Appl Ecol 46:10–18. https://doi.org/10.1111/j.1365-2664.2008.01600.x
E. A. Bolch et al.
