-
2
-
-
0000392003
-
Relation of Agronomic and Multispectral Reflectance Characteristics of Spring Wheat Canopies
-
Ahlrichs, J., and M. E., Bauer. 1983. “Relation of Agronomic and Multispectral Reflectance Characteristics of Spring Wheat Canopies.” Agronomy Journal 75: 987–993. doi:10.2134/agronj1983.00021962007500060029x.
-
(1983)
Agronomy Journal
, vol.75
, pp. 987-993
-
-
Ahlrichs, J.1
Bauer, M.E.2
-
3
-
-
84962106213
-
Spectral Reflectance Models for Characterizing Winter Wheat Genotypes
-
Ajayi, S., S., Reddy, P., Gowda, Q., Xue, J. C., Rudd, G., Pradhan, S., Liu, B. A., Stewart, C., Biradar, and K., Jessup. 2016. “Spectral Reflectance Models for Characterizing Winter Wheat Genotypes.” Journal of Crop Improvement 30: 176–195. doi:10.1080/15427528.2016.1138421.
-
(2016)
Journal of Crop Improvement
, vol.30
, pp. 176-195
-
-
Ajayi, S.1
Reddy, S.2
Gowda, P.3
Xue, Q.4
Rudd, J.C.5
Pradhan, G.6
Liu, S.7
Stewart, B.A.8
Biradar, C.9
Jessup, K.10
-
4
-
-
0036769427
-
Seedling Development and Biomass as Affected by Seed Size and Morphology in Durum Wheat
-
Aparicio, N., D., Villegas, J., Araus, R., Blanco, and C., Royo. 2002b. “Seedling Development and Biomass as Affected by Seed Size and Morphology in Durum Wheat.” The Journal of Agricultural Science 139: 143. doi:10.1017/S0021859602002411.
-
(2002)
The Journal of Agricultural Science
, vol.139
, pp. 143
-
-
Aparicio, N.1
Villegas, D.2
Araus, J.3
Blanco, R.4
Royo, C.5
-
5
-
-
0036712345
-
Relationship between Growth Traits and Spectral Vegetation Indices in Durum Wheat
-
Aparicio, N., D., Villegas, J., Araus, J., Casadesus, and C., Royo. 2002a. “Relationship between Growth Traits and Spectral Vegetation Indices in Durum Wheat.” Crop Science 42: 1547–1555. doi:10.2135/cropsci2002.1547.
-
(2002)
Crop Science
, vol.42
, pp. 1547-1555
-
-
Aparicio, N.1
Villegas, D.2
Araus, J.3
Casadesus, J.4
Royo, C.5
-
6
-
-
0034026627
-
Spectral Vegetation Indices as Nondestructive Tools for Determining Durum Wheat Yield
-
Aparicio, N., D., Villegas, J., Casadesus, J. L., Araus, and C., Royo. 2000. “Spectral Vegetation Indices as Nondestructive Tools for Determining Durum Wheat Yield.” Agronomy Journal 92: 83–91. doi:10.2134/agronj2000.92183x.
-
(2000)
Agronomy Journal
, vol.92
, pp. 83-91
-
-
Aparicio, N.1
Villegas, D.2
Casadesus, J.3
Araus, J.L.4
Royo, C.5
-
7
-
-
0005799630
-
Recent Tools for the Screening of Physiological Traits Determining Yield
-
DF: CIMMYT, and
-
Araus, J., J., Casadesus, and J., Bort. 2001. “Recent Tools for the Screening of Physiological Traits Determining Yield.” Application of Physiology in Wheat Breeding Mexico, 59–77. DF: CIMMYT.
-
(2001)
Application of Physiology in Wheat Breeding Mexico
, pp. 59-77
-
-
Araus, J.1
Casadesus, J.2
Bort, J.3
-
8
-
-
0036599442
-
Plant Breeding and Drought in C3 Cereals: What Should We Breed For?
-
Araus, J., G., Slafer, M., Reynolds, and C., Royo. 2002. “Plant Breeding and Drought in C3 Cereals: What Should We Breed For?” Annals of Botany 89: 925–940.
-
(2002)
Annals of Botany
, vol.89
, pp. 925-940
-
-
Araus, J.1
Slafer, G.2
Reynolds, M.3
Royo, C.4
-
9
-
-
33644970528
-
Spectral Reflectance Indices as a Potential Indirect Selection Criteria for Wheat Yield under Irrigation
-
Babar, M., M., Reynolds, M., Van Ginkel, A., Klatt, W., Raun, and M., Stone. 2006. “Spectral Reflectance Indices as a Potential Indirect Selection Criteria for Wheat Yield under Irrigation.” Crop Science 46: 578–588. doi:10.2135/cropsci2005.0059.
-
(2006)
Crop Science
, vol.46
, pp. 578-588
-
-
Babar, M.1
Reynolds, M.2
Van Ginkel, M.3
Klatt, A.4
Raun, W.5
Stone, M.6
-
10
-
-
0029751225
-
Retrieving Leaf Area Index of Boreal Conifer Forests Using Landsat TM Images
-
Chen, J. M., and J., Cihlar. 1996. “Retrieving Leaf Area Index of Boreal Conifer Forests Using Landsat TM Images.” Remote Sensing of Environment 55: 153–162. doi:10.1016/0034-4257(95)00195-6.
-
(1996)
Remote Sensing of Environment
, vol.55
, pp. 153-162
-
-
Chen, J.M.1
Cihlar, J.2
-
11
-
-
0030429663
-
NDWI—A Normalized Difference Water Index for Remote Sensing of Vegetation Liquid Water from Space
-
Gao, B.-C., 1996. “NDWI—A Normalized Difference Water Index for Remote Sensing of Vegetation Liquid Water from Space.” Remote Sensing of Environment 58: 257–266. doi:10.1016/S0034-4257(96)00067-3.
-
(1996)
Remote Sensing of Environment
, vol.58
, pp. 257-266
-
-
Gao, B.-C.1
-
12
-
-
74349114329
-
Spectral Water Indices for Assessing Yield in Elite Bread Wheat Genotypes under Well-Irrigated, Water-Stressed, and High-Temperature Conditions
-
Gutierrez, M., M. P., Reynolds, W. R., Raun, M. L., Stone, and A. R., Klatt. 2010. “Spectral Water Indices for Assessing Yield in Elite Bread Wheat Genotypes under Well-Irrigated, Water-Stressed, and High-Temperature Conditions.” Crop Science 50: 197–214. doi:10.2135/cropsci2009.07.0381.
-
(2010)
Crop Science
, vol.50
, pp. 197-214
-
-
Gutierrez, M.1
Reynolds, M.P.2
Raun, W.R.3
Stone, M.L.4
Klatt, A.R.5
-
13
-
-
11244296119
-
Association between Canopy Reflectance Indices and Yield and Physiological Traits in Bread Wheat under Drought and Well-Irrigated Conditions
-
Gutiérrez-Rodríguez, M., M. P., Reynolds, J. A., Escalante-Estrada, and M. T., Rodríguez-González. 2004. “Association between Canopy Reflectance Indices and Yield and Physiological Traits in Bread Wheat under Drought and Well-Irrigated Conditions.” Crop and Pasture Science 55: 1139–1147. doi:10.1071/AR04214.
-
(2004)
Crop and Pasture Science
, vol.55
, pp. 1139-1147
-
-
Gutiérrez-Rodríguez, M.1
Reynolds, M.P.2
Escalante-Estrada, J.A.3
Rodríguez-González, M.T.4
-
14
-
-
0029294199
-
Evapotranspiration of Irrigated Winter Wheat: Southern High Plains
-
Howell, T. A., J. L., Steiner, A. D., Schneider, and S. R., Evett. 1995. “Evapotranspiration of Irrigated Winter Wheat: Southern High Plains.” Transactions of the American Society of Agricultural Engineers 38: 745–759. doi:10.13031/2013.27888.
-
(1995)
Transactions of the American Society of Agricultural Engineers
, vol.38
, pp. 745-759
-
-
Howell, T.A.1
Steiner, J.L.2
Schneider, A.D.3
Evett, S.R.4
-
15
-
-
0036846393
-
Overview of the Radiometric and Biophysical Performance of the MODIS Vegetation Indices
-
Huete, A., K., Didan, T., Miura, E. P., Rodriguez, X., Gao, and L. G., Ferreira. 2002. “Overview of the Radiometric and Biophysical Performance of the MODIS Vegetation Indices.” Remote Sensing of Environment 83: 195–213. doi:10.1016/S0034-4257(02)00096-2.
-
(2002)
Remote Sensing of Environment
, vol.83
, pp. 195-213
-
-
Huete, A.1
Didan, K.2
Miura, T.3
Rodriguez, E.P.4
Gao, X.5
Ferreira, L.G.6
-
16
-
-
0030294895
-
The Role of Physiological Understanding in Plant Breeding; from a Breeding Perspective
-
Jackson, P., M., Robertson, M., Cooper, and G., Hammer. 1996. “The Role of Physiological Understanding in Plant Breeding; from a Breeding Perspective.” Field Crops Research 49: 11–37. doi:10.1016/S0378-4290(96)01012-X.
-
(1996)
Field Crops Research
, vol.49
, pp. 11-37
-
-
Jackson, P.1
Robertson, M.2
Cooper, M.3
Hammer, G.4
-
17
-
-
4444342117
-
Vegetation Water Content Mapping Using Landsat Data Derived Normalized Difference Water Index for Corn and Soybeans
-
Jackson, T. J., D., Chen, M., Cosh, F., Li, M., Anderson, C., Walthall, P., Doriaswamy, and E. R., Hunt. 2004. “Vegetation Water Content Mapping Using Landsat Data Derived Normalized Difference Water Index for Corn and Soybeans.” Remote Sensing of Environment 92: 475–482. doi:10.1016/j.rse.2003.10.021.
-
(2004)
Remote Sensing of Environment
, vol.92
, pp. 475-482
-
-
Jackson, T.J.1
Chen, D.2
Cosh, M.3
Li, F.4
Anderson, M.5
Walthall, C.6
Doriaswamy, P.7
Hunt, E.R.8
-
18
-
-
50849142217
-
Development of a Two-Band Enhanced Vegetation Index without a Blue Band
-
Jiang, Z., A. R., Huete, K., Didan, and T., Miura. 2008. “Development of a Two-Band Enhanced Vegetation Index without a Blue Band.” Remote Sensing of Environment 112: 3833–3845. doi:10.1016/j.rse.2008.06.006.
-
(2008)
Remote Sensing of Environment
, vol.112
, pp. 3833-3845
-
-
Jiang, Z.1
Huete, A.R.2
Didan, K.3
Miura, T.4
-
19
-
-
0032036204
-
Comparisons among Vegetation Indices and Bandwise Regression in a Highly Disturbed, Heterogeneous Landscape: Mount St. Helens, Washington
-
Lawrence, R. L., and W. J., Ripple. 1998. “Comparisons among Vegetation Indices and Bandwise Regression in a Highly Disturbed, Heterogeneous Landscape: Mount St. Helens, Washington.” Remote Sensing of Environment 64: 91–102. doi:10.1016/S0034-4257(97)00171-5.
-
(1998)
Remote Sensing of Environment
, vol.64
, pp. 91-102
-
-
Lawrence, R.L.1
Ripple, W.J.2
-
20
-
-
41449098457
-
Estimating Ground Cover of Field Crops Using Medium-Resolution Multispectral Satellite Imagery
-
Maas, S. J., and N., Rajan. 2008. “Estimating Ground Cover of Field Crops Using Medium-Resolution Multispectral Satellite Imagery.” Agronomy Journal 100: 320–327. doi:10.2134/agronj2007.0140.
-
(2008)
Agronomy Journal
, vol.100
, pp. 320-327
-
-
Maas, S.J.1
Rajan, N.2
-
21
-
-
80051868302
-
Applicability of Green-Red Vegetation Index for Remote Sensing of Vegetation Phenology
-
Motohka, T., K. N., Nasahara, H., Oguma, and S., Tsuchida. 2010. “Applicability of Green-Red Vegetation Index for Remote Sensing of Vegetation Phenology.” Remote Sensing 2: 2369–2387. doi:10.3390/rs2102369.
-
(2010)
Remote Sensing
, vol.2
, pp. 2369-2387
-
-
Motohka, T.1
Nasahara, K.N.2
Oguma, H.3
Tsuchida, S.4
-
22
-
-
0028254189
-
Water-Yield Relationship for Irrigated and Dryland Wheat in the US Southern Plains
-
Musick, J. T., O. R., Jones, B. A., Stewart, and D. A., Dusek. 1994. “Water-Yield Relationship for Irrigated and Dryland Wheat in the US Southern Plains.” Agronomy Journal 86: 980–986. doi:10.2134/agronj1994.00021962008600060010x.
-
(1994)
Agronomy Journal
, vol.86
, pp. 980-986
-
-
Musick, J.T.1
Jones, O.R.2
Stewart, B.A.3
Dusek, D.A.4
-
23
-
-
84860898638
-
In Situ Examination of the Relationship between Various Vegetation Indices and Canopy Phenology in an Evergreen Coniferous Forest, Japan
-
Nagai, S., T. M., Saitoh, H., Kobayashi, M., Ishihara, R., Suzuki, T., Motohka, K. N., Nasahara, and H., Muraoka. 2012. “In Situ Examination of the Relationship between Various Vegetation Indices and Canopy Phenology in an Evergreen Coniferous Forest, Japan.” International Journal of Remote Sensing 33: 6202–6214. doi:10.1080/01431161.2012.682660.
-
(2012)
International Journal of Remote Sensing
, vol.33
, pp. 6202-6214
-
-
Nagai, S.1
Saitoh, T.M.2
Kobayashi, H.3
Ishihara, M.4
Suzuki, R.5
Motohka, T.6
Nasahara, K.N.7
Muraoka, H.8
-
24
-
-
84555216818
-
Thermal Imagery and Spectral Reflectance Based System to Monitor Crop Condition
-
Texas Tech University, Lubbock, Texas
-
Nayak, S. S., 2005. “Thermal Imagery and Spectral Reflectance Based System to Monitor Crop Condition.” MS Thesis, Texas Tech University, Lubbock, Texas.
-
(2005)
MS Thesis
-
-
Nayak, S.S.1
-
25
-
-
0036156499
-
Use of Spectral Radiance to Estimate in-Season Biomass and Grain Yield in Nitrogen-and Water-Stressed Corn
-
Osborne, S., J. S., Schepers, D., Francis, and M. R., Schlemmer. 2002. “Use of Spectral Radiance to Estimate in-Season Biomass and Grain Yield in Nitrogen-and Water-Stressed Corn.” Crop Science 42: 165–171.
-
(2002)
Crop Science
, vol.42
, pp. 165-171
-
-
Osborne, S.1
Schepers, J.S.2
Francis, D.3
Schlemmer, M.R.4
-
26
-
-
34547563192
-
Potential Use of Spectral Reflectance Indices as a Selection Tool for Grain Yield in Winter Wheat under Great Plains Conditions
-
Prasad, B., B. F., Carver, M. L., Stone, M., Babar, W. R., Raun, and A. R., Klatt. 2007. “Potential Use of Spectral Reflectance Indices as a Selection Tool for Grain Yield in Winter Wheat under Great Plains Conditions.” Crop Science 47: 1426–1440. doi:10.2135/cropsci2006.07.0492.
-
(2007)
Crop Science
, vol.47
, pp. 1426-1440
-
-
Prasad, B.1
Carver, B.F.2
Stone, M.L.3
Babar, M.4
Raun, W.R.5
Klatt, A.R.6
-
27
-
-
0033374560
-
Physiological and Genetic Changes of Irrigated Wheat in the Post–Green Revolution Period and Approaches for Meeting Projected Global Demand
-
Reynolds, M., S., Rajaram, and K., Sayre. 1999. “Physiological and Genetic Changes of Irrigated Wheat in the Post–Green Revolution Period and Approaches for Meeting Projected Global Demand.” Crop Science 39: 1611–1621. doi:10.2135/cropsci1999.3961611x.
-
(1999)
Crop Science
, vol.39
, pp. 1611-1621
-
-
Reynolds, M.1
Rajaram, S.2
Sayre, K.3
-
28
-
-
0345476960
-
Defining Selection Criteria to Improve Yield under Drought
-
Springer, CSIRO, Canberra, Australia
-
Richards, R., 1996. “Defining Selection Criteria to Improve Yield under Drought.” Drought Tolerance in Higher Plants: Genetical, Physiological and Molecular Biological Analysis, 79–88. Springer, CSIRO, Canberra, Australia.
-
(1996)
Drought Tolerance in Higher Plants: Genetical, Physiological and Molecular Biological Analysis
, pp. 79-88
-
-
Richards, R.1
-
31
-
-
0344256440
-
Usefulness of Spectral Reflectance Indices as Durum Wheat Yield Predictors under Contrasting Mediterranean Conditions
-
Royo, C., N., Aparicio, D., Villegas, J., Casadesus, P., Monneveux, and J., Araus. 2003. “Usefulness of Spectral Reflectance Indices as Durum Wheat Yield Predictors under Contrasting Mediterranean Conditions.” International Journal of Remote Sensing 24: 4403–4419. doi:10.1080/0143116031000150059.
-
(2003)
International Journal of Remote Sensing
, vol.24
, pp. 4403-4419
-
-
Royo, C.1
Aparicio, N.2
Villegas, D.3
Casadesus, J.4
Monneveux, P.5
Araus, J.6
-
32
-
-
85009157940
-
Elements of an Integrated Phenotyping System for Monitoring Crop Status at Canopy Level
-
Rundquist, D., A., Gitelson, B., Leavitt, A., Zygielbaum, R., Perk, and G., Keydan. 2014. “Elements of an Integrated Phenotyping System for Monitoring Crop Status at Canopy Level.” Agronomy 41: 108–123. doi:10.3390/agronomy4010108.
-
(2014)
Agronomy
, vol.41
, pp. 108-123
-
-
Rundquist, D.1
Gitelson, A.2
Leavitt, B.3
Zygielbaum, A.4
Perk, R.5
Keydan, G.6
-
33
-
-
84994235616
-
Canopy Temperature and Vegetation Indices from High-Throughput Phenotyping Improve Accuracy of Pedigree and Genomic Selection for Grain Yield in Wheat
-
–, 8;6(9):2799-808
-
Rutkoski, J., J., Poland, S., Mondal, E., Autrique, L. G., Párez, J., Crossa, and R., Singh. 2016. “Canopy Temperature and Vegetation Indices from High-Throughput Phenotyping Improve Accuracy of Pedigree and Genomic Selection for Grain Yield in Wheat.” G3: Genes, Genomes, Genetics g3–116, 8;6(9):2799-808. doi: 10.1534/g3.116.032888.
-
(2016)
G3: Genes, Genomes, Genetics
, pp. g3-g116
-
-
Rutkoski, J.1
Poland, J.2
Mondal, S.3
Autrique, E.4
Párez, L.G.5
Crossa, J.6
Singh, R.7
-
34
-
-
85046380085
-
Unmanned Aerial Systems-Based Remote Sensing for Monitoring Sorghum Growth and Development
-
Shafian, S., N., Rajan, R., Schnell, M., Bagavathiannan, J., Valasek, Y., Shi, and J., Olsenholler. 2018. “Unmanned Aerial Systems-Based Remote Sensing for Monitoring Sorghum Growth and Development.” PloS one 13: e0196605. doi:10.1371/journal.pone.0196605.
-
(2018)
PloS one
, vol.13
-
-
Shafian, S.1
Rajan, N.2
Schnell, R.3
Bagavathiannan, M.4
Valasek, J.5
Shi, Y.6
Olsenholler, J.7
-
35
-
-
0141459267
-
Associations among Twenty Years of International Bread Wheat Yield Evaluation Environments
-
Trethowan, R., M., Van Ginkel, K., Ammar, J., Crossa, T., Payne, B., Cukadar, S., Rajaram, and E., Hernandez. 2003. “Associations among Twenty Years of International Bread Wheat Yield Evaluation Environments.” Crop Science 43: 1698–1711. doi:10.2135/cropsci2003.1698.
-
(2003)
Crop Science
, vol.43
, pp. 1698-1711
-
-
Trethowan, R.1
Van Ginkel, M.2
Ammar, K.3
Crossa, J.4
Payne, T.5
Cukadar, B.6
Rajaram, S.7
Hernandez, E.8
-
36
-
-
0003594684
-
-
Bulletin 1372; Texas Agricultural Experiment Station, College Station, TX, USA
-
Unger, P. W., and F. B., Pringle. 1981. Pullman Soils: Distribution, Importance, Variability, and Management. Bulletin 1372; Texas Agricultural Experiment Station, College Station, TX, USA.
-
(1981)
Pullman Soils: Distribution, Importance, Variability, and Management
-
-
Unger, P.W.1
Pringle, F.B.2
-
37
-
-
84894638009
-
The Generalized Difference Vegetation Index GDVI for Dryland Characterization
-
Wu, W., 2014. “The Generalized Difference Vegetation Index GDVI for Dryland Characterization.” Remote Sensing 6: 1211–1233. doi:10.3390/rs6021211.
-
(2014)
Remote Sensing
, vol.6
, pp. 1211-1233
-
-
Wu, W.1
-
38
-
-
33646270384
-
Hyperspectral Field Reflectance Measurements to Estimate Wheat Grain Yield and Plant Height
-
Xavier, A. C., B. F. T., Rudorff, M. A., Moreira, B. S., Alvarenga, J. G. D., Freitas, and M. V., Salomon. 2006. “Hyperspectral Field Reflectance Measurements to Estimate Wheat Grain Yield and Plant Height.” Scientia Agricola 63: 130–138. doi:10.1590/S0103-90162006000200004.
-
(2006)
Scientia Agricola
, vol.63
, pp. 130-138
-
-
Xavier, A.C.1
Rudorff, B.F.T.2
Moreira, M.A.3
Alvarenga, B.S.4
Freitas, J.G.D.5
Salomon, M.V.6
-
39
-
-
85017474323
-
-
Lundy University Centre for Sustainability Studies, Sweden., 978-3-319-24112-8
-
Yengoh, G. T., D., Dent, L., Olsson, A. E., Tengberg, and C. J., Tucker. 2014. The Use of the Normalized Difference Vegetation Index (NDVI) to Assess Land Degradation at Multiple Scales: A Review of the Current Status, Future Trends, and Practical Considerations. Lundy University Centre for Sustainability Studies, Sweden. ISBN 978-3-319-24112-8.
-
(2014)
The Use of the Normalized Difference Vegetation Index (NDVI) to Assess Land Degradation at Multiple Scales: A Review of the Current Status, Future Trends, and Practical Considerations
-
-
Yengoh, G.T.1
Dent, D.2
Olsson, L.3
Tengberg, A.E.4
Tucker, C.J.5
-
40
-
-
84943648297
-
Native Vegetation Classification Using Remote Sensing Techniques: A Case Study of Dairy Flat Regrowth Bush by Using the AUT Unmanned Aerial Vehicle
-
Auckland University of Technology, New Zealand
-
Zhang, Z., 2014. “Native Vegetation Classification Using Remote Sensing Techniques: A Case Study of Dairy Flat Regrowth Bush by Using the AUT Unmanned Aerial Vehicle.” MS Thesis, Auckland University of Technology, New Zealand. http://aut.researchgateway.ac.nz/handle/10292/8430
-
(2014)
MS Thesis
-
-
Zhang, Z.1
|