Register      Login
Crop and Pasture Science Crop and Pasture Science Society
Plant sciences, sustainable farming systems and food quality

Articles citing this paper

Use of the APSIM wheat model to predict yield, drainage, and NO3- leaching for a deep sand

S. Asseng, G. C. Anderson, F. X. Dunin, I. R. P. Fillery, P. J. Dolling and B. A. Keating
49(3) pp.363 - 378


107 articles found in Crossref database.

Determination of the effect of precipitation distribution on yield of wheat and pea in dryland using APSIM
LI Guang, HUANG Gao-Bao
Chinese Journal of Eco-Agriculture. 2010 18(2). p.342
Crop Modeling and Decision Support (2009)
Asseng S., Ludwig F., Milroy S., Travasso M. I.
Quantifying the interactive impacts of global dimming and warming on wheat yield and water use in China
Yang Xiaoya, Asseng Senthold, Wong Mike Ting Fook, Yu Qiang, Li Jun, Liu Enmin
Agricultural and Forest Meteorology. 2013 182-183 p.342
Prediction and parameter uncertainty for winter wheat phenology models depend on model and parameterization method differences
Kawakita Satoshi, Takahashi Hidehiro, Moriya Kazuyuki
Agricultural and Forest Meteorology. 2020 290 p.107998
Response of wheat growth, grain yield and water use to elevated CO2 under a Free‐Air CO2 Enrichment (FACE) experiment and modelling in a semi‐arid environment
O'Leary Garry J., Christy Brendan, Nuttall James, Huth Neil, Cammarano Davide, Stöckle Claudio, Basso Bruno, Shcherbak Iurii, Fitzgerald Glenn, Luo Qunying, Farre‐Codina Immaculada, Palta Jairo, Asseng Senthold
Global Change Biology. 2015 21(7). p.2670
Consequences of rainfall during summer - autumn fallow on available soil water and subsequent drainage in annual-based cropping systems
Dolling P. J., Fillery I. R. P., Ward P. R., Asseng S., Robertson M. J.
Australian Journal of Agricultural Research. 2006 57(3). p.281
Impacts of recent climate change on wheat production systems in Western Australia
Ludwig Fulco, Milroy Stephen P., Asseng Senthold
Climatic Change. 2009 92(3-4). p.495
Do spring cover crops rob water and so reduce wheat yields in the northern grain zone of eastern Australia?
Whish J. P. M., Price L., Castor P. A.
Crop and Pasture Science. 2009 60(6). p.517
Optimising sowing date of durum wheat in a variable Mediterranean environment
Bassu Simona, Asseng Senthold, Motzo Rosella, Giunta Francesco
Field Crops Research. 2009 111(1-2). p.109
Maize system impacts of cover crop management decisions: A simulation analysis of rye biomass response to planting populations in Iowa, U.S.A.
Marcillo Guillermo S., Carlson Sarah, Filbert Meghan, Kaspar Thomas, Plastina Alejandro, Miguez Fernando E.
Agricultural Systems. 2019 176 p.102651
Systems analysis of wheat production on low water-holding soils in a Mediterranean-type environment
Asseng S., Milroy S.P., Poole M.L.
Field Crops Research. 2008 105(1-2). p.97
A simulation analysis that predicts the influence of physiological traits on the potential yield of wheat
Asseng S, Turner Neil C, Ray J.D, Keating B.A
European Journal of Agronomy. 2002 17(2). p.123
Tailoring wheat management to ENSO phases for increased wheat production in Paraguay
Ramirez-Rodrigues Melissa A., Asseng Senthold, Fraisse Clyde, Stefanova Lydia, Eisenkolbi Alicia
Climate Risk Management. 2014 3 p.24
Selecting crop models for decision making in wheat insurance
Castañeda-Vera A., Leffelaar P.A., Álvaro-Fuentes J., Cantero-Martínez C., Mínguez M.I.
European Journal of Agronomy. 2015 68 p.97
Impact of subsoil constraints on wheat yield and gross margin on fine-textured soils of the southern Victorian Mallee
Rodriguez D., Nuttall J., Sadras V. O., van Rees H., Armstrong R.
Australian Journal of Agricultural Research. 2006 57(3). p.355
Water excess under simulated lucerne - wheat phased systems in Western Australia
Dolling P. J., Asseng S., Robertson M. J., Ewing M. A.
Australian Journal of Agricultural Research. 2007 58(8). p.826
Modelling farming systems performance at catchment and regional scales to support natural resource management
Wang E., Cresswell H., Bryan B., Glover M., King D.
NJAS: Wageningen Journal of Life Sciences. 2009 57(1). p.101
Summer forage cropping as an effective way to control deep drainage in south-eastern Australia—A simulation study
Wang Enli, Cresswell Hamish, Yu Qiang, Verburg Kirsten
Agriculture, Ecosystems & Environment. 2008 125(1-4). p.127
Advances in precision agriculture in south-eastern Australia. V. Effect of seasonal conditions on wheat and barley yield response to applied nitrogen across management zones
Anwar M. R., O'Leary G. J., Rab M. A., Fisher P. D., Armstrong R. D.
Crop and Pasture Science. 2009 60(9). p.901
Modelling phenological and agronomic adaptation options for narrow-leafed lupins in the southern grainbelt of Western Australia
Chen Chao, Fletcher Andrew, Lawes Roger, Berger Jens, Robertson Michael
European Journal of Agronomy. 2017 89 p.140
Simulation of grain protein content with APSIM-Nwheat
Asseng S, Bar-Tal A, Bowden J.W, Keating B.A, Van Herwaarden A, Palta J.A, Huth N.I, Probert M.E
European Journal of Agronomy. 2002 16(1). p.25
Agricultural System Models in Field Research and Technology Transfer (2002)
McCown R, Keating B, Carberry P, Hochman Z, Hargreaves D
Handbook of Soil Acidity (2003)
Verburg Kirsten, Braschkat Jörg, Hochman Zvi, Moore Andrew, Helyar Keith, Probert Mervyn, Hargreaves John, Simpson Richard
Optimizing irrigation to reduce N leaching and maintain high crop productivity through the manipulation of soil water storage under summer monsoon climate
Lu Yang, Wang Enli, Zhao Zhigan, Liu Xiuwei, Tian Ailing, Zhang Xiying
Field Crops Research. 2021 265 p.108110
Simulated wheat growth affected by rising temperature, increased water deficit and elevated atmospheric CO2
Asseng S, Jamieson P.D, Kimball B, Pinter P, Sayre K, Bowden J.W, Howden S.M
Field Crops Research. 2004 85(2-3). p.85
Effects of Climate Change and Variability on Agricultural Production Systems (2002)
Howden S. Mark
Modeling Wheat and Maize Productivity as Affected by Climate Variation and Irrigation Supply in North China Plain
Chen Chao, Wang Enli, Yu Qiang
Agronomy Journal. 2010 102(3). p.1037
Predicting the Protein Content of Grain in Winter Wheat with Meteorological and Genotypic Factors
Pan Jie, Zhu Yan, Cao Weixing, Dai Tingbo, Jiang Dang
Plant Production Science. 2006 9(3). p.323
Water use efficiency and crop water balance of rainfed wheat in a semi-arid environment: sensitivity of future changes to projected climate changes and soil type
Yang Yanmin, Liu De Li, Anwar Muhuddin Rajin, O’Leary Garry, Macadam Ian, Yang Yonghui
Theoretical and Applied Climatology. 2016 123(3-4). p.565
Short- and Long-Term Effects of Lime and Gypsum Applications on Acid Soils in a Water-Limited Environment: 3. Soil Solution Chemistry
Anderson Geoffrey C., Pathan Shahab, Hall David J. M., Sharma Rajesh, Easton James
Agronomy. 2021 11(5). p.826
Accurate crop yield predictions from modelling tree-crop interactions in gliricidia-maize agroforestry
Smethurst Philip J., Huth Neil I., Masikati Patricia, Sileshi Gudeta W., Akinnifesi Festus K., Wilson Julia, Sinclair Fergus
Agricultural Systems. 2017 155 p.70
The impact of temperature variability on wheat yields
ASSENG SENTHOLD, FOSTER IAN, TURNER NEIL C.
Global Change Biology. 2011 17(2). p.997
Systems analysis of wheat production on low water-holding soils in a Mediterranean-type environment
Milroy S.P., Asseng S., Poole M.L.
Field Crops Research. 2008 107(3). p.211
The value of seasonal forecasts for irrigated, supplementary irrigated, and rainfed wheat cropping systems in northwest Mexico
Ramírez-Rodrigues Melissa A., Alderman Phillip D., Stefanova Lydia, Cossani C. Mariano, Flores Dagoberto, Asseng Senthold
Agricultural Systems. 2016 147 p.76
Scale and Complexity in Plant Systems Research (2007)
Asseng S., Turner N.C.
Diverse Responses of Winter Wheat Yield and Water Use to Climate Change and Variability on the Semiarid Loess Plateau in China
He Liang, Cleverly James, Chen Chao, Yang Xiaoya, Li Jun, Liu Wenzhao, Yu Qiang
Agronomy Journal. 2014 106(4). p.1169
Can Egypt become self-sufficient in wheat?
Asseng Senthold, Kheir Ahmed M S, Kassie Belay T, Hoogenboom Gerrit, Abdelaal Aly I N, Haman Dorota Z, Ruane Alex C
Environmental Research Letters. 2018 13(9). p.094012
Impact of future climate change on wheat production in relation to plant-available water capacity in a semiaridenvironment
Yang Yanmin, Liu De Li, Anwar Muhuddin Rajin, Zuo Heping, Yang Yonghui
Theoretical and Applied Climatology. 2014 115(3-4). p.391
How well do we need to estimate plant-available water capacity to simulate water-limited yield potential?
Wu Renye, Lawes Roger, Oliver Yvette, Fletcher Andrew, Chen Chao
Agricultural Water Management. 2019 212 p.441
Climate change impact on Mexico wheat production
Hernandez-Ochoa Ixchel M., Asseng Senthold, Kassie Belay T., Xiong Wei, Robertson Ricky, Luz Pequeno Diego Notelo, Sonder Kai, Reynolds Matthew, Babar Md Ali, Molero Milan Anabel, Hoogenboom Gerrit
Agricultural and Forest Meteorology. 2018 263 p.373
Maize potential yields and yield gaps in the changing climate of northeast China
Liu Zhijuan, Yang Xiaoguang, Hubbard Kenneth G., Lin Xiaomao
Global Change Biology. 2012 18(11). p.3441
Mitigating N2O emissions from cropping systems after conversion from pasture − a modelling approach
Mielenz Henrike, Thorburn Peter J., Harris Robert H., Grace Peter R., Officer Sally J.
European Journal of Agronomy. 2017 82 p.254
Handbook of Soil Acidity (2003)
Diggle Art, Bowden Bill, Fisher James
Adapting dryland agriculture to climate change: Farming implications and research and development needs in Western Australia
Asseng Senthold, Pannell David J.
Climatic Change. 2013 118(2). p.167
Crop rotation options for dryland agriculture: An assessment of grain yield response in cool-season grain legumes and canola to variation in rainfall totals
Houshmandfar Alireza, Ota Noboru, Siddique Kadambot H.M, Tausz Michael
Agricultural and Forest Meteorology. 2019 275 p.277
A methodology for up-scaling irrigation losses
Paydar Zahra, Gaydon Donald, Chen Yun
Irrigation Science. 2009 27(5). p.347
Crop Physiology (2009)
Asseng Senthold, Cao Weixing, Zhang Weijian, Ludwig Fulco
Evaluating the Impact of a Trait for Increased Specific Leaf Area on Wheat Yields Using a Crop Simulation Model
Asseng Senthold, Turner Neil C., Botwright Tina, Condon Anthony G.
Agronomy Journal. 2003 95(1). p.10
Has climate change opened new opportunities for wheat cropping in Argentina?
Asseng Senthold, Travasso Maria I., Ludwig Fulco, Magrin Graciela O.
Climatic Change. 2013 117(1-2). p.181
Nitrous oxide emissions from grain production systems across a wide range of environmental conditions in eastern Australia
Mielenz Henrike, Thorburn Peter J., Harris Robert H., Officer Sally J., Li Guangdi, Schwenke Graeme D., Grace Peter R.
Soil Research. 2016 54(5). p.659
Evaluation of nitrogen bank, a soil nitrogen management strategy for sustainably closing wheat yield gaps
Meier Elizabeth A., Hunt James R., Hochman Zvi
Field Crops Research. 2021 261 p.108017
Crop phenotype prediction using biclustering to explain genotype-by-environment interactions
Pham Hieu, Reisner John, Swift Ashley, Olafsson Sigurdur, Vardeman Stephen
Frontiers in Plant Science. 2022 13
Modelling the sensitivity of wheat growth and water balance to climate change in Southeast Australia
Wang Jing, Wang Enli, Luo Qunying, Kirby Mac
Climatic Change. 2009 96(1-2). p.79
Quantifying ecosystem services trade-offs from agricultural practices
Kragt Marit E., Robertson Michael J.
Ecological Economics. 2014 102 p.147
Environmental and economic evaluation of N fertilizer rates in a maize crop in Italy: A spatial and temporal analysis using crop models
Basso Bruno, Sartori Luigi, Cammarano Davide, Fiorentino Costanza, Grace Peter R., Fountas Spyros, Sorensen Claus A.
Biosystems Engineering. 2012 113(2). p.103
Calibration and Validation of AQUACROP and APSIM Models to Optimize Wheat Yield and Water Saving in Arid Regions
Kheir Ahmed M. S., Alkharabsheh Hiba M., Seleiman Mahmoud F., Al-Saif Adel M., Ammar Khalil A., Attia Ahmed, Zoghdan Medhat G., Shabana Mahmoud M. A., Aboelsoud Hesham, Schillaci Calogero
Land. 2021 10(12). p.1375
Comparing estimates of climate change impacts from process-based and statistical crop models
Lobell David B, Asseng Senthold
Environmental Research Letters. 2017 12(1). p.015001
Emergy evaluation of three cropping systems in southwestern Australia
Lefroy Edward, Rydberg Torbjörn
Ecological Modelling. 2003 161(3). p.195
Climate change impacts on wheat production in a Mediterranean environment in Western Australia
Ludwig Fulco, Asseng Senthold
Agricultural Systems. 2006 90(1-3). p.159
Crop Physiology (2009)
Palta Jairo, Watt Michelle
Multi-genes programing and local scale regression for analyzing rice yield response to climate factors using observed and downscaled data in Sahel
Kima Aimé Sévérin, Traore Seydou, Wang Yu-Min, Chung Wen-Guey
Agricultural Water Management. 2014 146 p.149
Trade-off between wheat yield and drainage under current and climate change conditions in northeast Germany
Wessolek Gerd, Asseng Senthold
European Journal of Agronomy. 2006 24(4). p.333
Simulating wheat growth response to potassium availability under field conditions with sandy soils. I. Model development
Scanlan Craig A., Huth Neil I., Bell Richard W.
Field Crops Research. 2015 178 p.109
Subsoil Constraints for Crop Production (2022)
Scanlan Craig A., Holmes Karen W., Bell Richard Willian
Performance and application of the APSIM Nwheat model in the Netherlands
Asseng S, van Keulen H, Stol W
European Journal of Agronomy. 2000 12(1). p.37
Sensitivity of productivity and deep drainage of wheat cropping systems in a Mediterranean environment to changes in CO2, temperature and precipitation
van Ittersum M.K., Howden S.M., Asseng S.
Agriculture, Ecosystems & Environment. 2003 97(1-3). p.255
The State of the Art in Modeling Waterlogging Impacts on Plants: What Do We Know and What Do We Need to Know
Liu Ke, Harrison Matthew Tom, Shabala Sergey, Meinke Holger, Ahmed Ibrahim, Zhang Yunbo, Tian Xiaohai, Zhou Meixue
Earth's Future. 2020 8(12).
Improved prediction of farm nitrous oxide emission through an understanding of the interaction among climate extremes, soil nitrogen dynamics and irrigation water
Maraseni Tek, Kodur Shreevatsa
Journal of Environmental Management. 2019 248 p.109278
Effects of two contrasting agricultural land‐use practices on nitrogen leaching in a sandy soil of Middle Germany
Böhm Christian, Landgraf Dirk, Makeschin Franz
Journal of Plant Nutrition and Soil Science. 2009 172(3). p.408
Managing mixed wheat–sheep farms with a seasonal forecast
Asseng Senthold, Thomas Dean, McIntosh Peter, Alves Oscar, Khimashia Nirav
Agricultural Systems. 2012 113 p.50
Modeling Nitrate Leaching and Optimizing Water and Nitrogen Management under Irrigated Maize in Desert Oases in Northwestern China
Hu Kelin, Li Yong, Chen Weiping, Chen Deli, Wei Yongping, Edis Robert, Li Baoguo, Huang Yuanfang, Zhang Yuanpei
Journal of Environmental Quality. 2010 39(2). p.667
Adaptability of APSIM Maize Model in Northeast China
LIU Zhi-Juan, YANG Xiao-Guang, WANG Jing, LÜ Shuo, LI Ke-Nan, XUN Xin, WANG En-Li
ACTA AGRONOMICA SINICA. 2013 38(4). p.740
Modelling the effects of climate variability and water management on crop water productivity and water balance in the North China Plain
Chen Chao, Wang Enli, Yu Qiang
Agricultural Water Management. 2010 97(8). p.1175
Performance of the APSIM-wheat model in Western Australia
Asseng S, Keating B.A, Fillery I.R.P, Gregory P.J, Bowden J.W, Turner N.C, Palta J.A, Abrecht D.G
Field Crops Research. 1998 57(2). p.163
Sustainability of nutrient management in grain production systems of south-west Australia
Harries Martin, Flower Ken C., Scanlan Craig A.
Crop and Pasture Science. 2021 72(3). p.197
A flexible approach to managing variability in grain yield and nitrate leaching at within-field to farm scales
Wong M. T. F., Asseng S., Zhang H.
Precision Agriculture. 2006 7(6). p.405
Crop, soil and farm systems models – science, engineering or snake oil revisited
Keating Brian A.
Agricultural Systems. 2020 184 p.102903
Use of modelling to explore the water balance of dryland farming systems in the Murray-Darling Basin, Australia
Keating B.A, Gaydon D, Huth N.I, Probert M.E, Verburg K, Smith C.J, Bond W
European Journal of Agronomy. 2002 18(1-2). p.159
Effects of Changing Climate Extremes on Maize Grain Yield in Northeast China
Dong Meiqi, Zhao Jin, Li E, Liu Zhijuan, Guo Shibo, Zhang Zhentao, Cui Wenqian, Yang Xiaoguang
Agronomy. 2023 13(4). p.1050
Water use efficiency in Western Australian cropping systems
Harries Martin, Flower Ken C., Renton Michael, Anderson Geoffrey C., Sadras Victor
Crop & Pasture Science. 2022 73(10). p.1097
The potential value of seasonal forecasts of rainfall categories—Case studies from the wheatbelt in Western Australia's Mediterranean region
Moeller Carina, Smith Ian, Asseng Senthold, Ludwig Fulco, Telcik Nicola
Agricultural and Forest Meteorology. 2008 148(4). p.606
Optimal N fertiliser management based on a seasonal forecast
Asseng Senthold, McIntosh Peter C., Wang Guomin, Khimashia Nirav
European Journal of Agronomy. 2012 38 p.66
Encyclopedia of Agriculture and Food Systems (2014)
Asseng S., Zhu Y., Basso B., Wilson T., Cammarano D.
Fallow management in dryland agriculture: Explaining soil water accumulation using a pulse paradigm
Verburg Kirsten, Bond Warren J., Hunt James R.
Field Crops Research. 2012 130 p.68
Approaches to modular model development
Jones J.W., Keating B.A., Porter C.H.
Agricultural Systems. 2001 70(2-3). p.421
Modelling nitrous oxide emissions: comparing algorithms in six widely used agro-ecological models
Xing Hongtao, Smith Chris. J., Wang Enli, Macdonald Ben, Wårlind David, Grace Peter
Soil Research. 2023 61(6). p.523
An overview of APSIM, a model designed for farming systems simulation
Keating B.A, Carberry P.S, Hammer G.L, Probert M.E, Robertson M.J, Holzworth D, Huth N.I, Hargreaves J.N.G, Meinke H, Hochman Z, McLean G, Verburg K, Snow V, Dimes J.P, Silburn M, Wang E, Brown S, Bristow K.L, Asseng S, Chapman S, McCown R.L, Freebairn D.M, Smith C.J
European Journal of Agronomy. 2003 18(3-4). p.267
An evaluation of the tactical use of lucerne phase farming to reduce deep drainage
Verburg K., Bond W. J., Brennan L. E., Robertson M. J.
Australian Journal of Agricultural Research. 2007 58(12). p.1142
Climate impact and adaptation to heat and drought stress of regional and global wheat production
Pequeno Diego N L, Hernández-Ochoa Ixchel M, Reynolds Matthew, Sonder Kai, MoleroMilan Anabel, Robertson Richard D, Lopes Marta S, Xiong Wei, Kropff Martin, Asseng Senthold
Environmental Research Letters. 2021 16(5). p.054070
Production risks and water use benefits of summer crop production on the south coast of Western Australia
Robertson M. J., Gaydon D., Hall D. J. M., Hills A., Penny S.
Australian Journal of Agricultural Research. 2005 56(6). p.597
Genotype × environment interactions for phenological adaptation in narrow-leafed lupin: A simulation study with a parameter optimized model
Chen Chao, Berger Jens, Fletcher Andrew, Lawes Roger, Robertson Michael
Field Crops Research. 2016 197 p.28
Potential benefits of early vigor and changes in phenology in wheat to adapt to warmer and drier climates
Ludwig Fulco, Asseng Senthold
Agricultural Systems. 2010 103(3). p.127
Towards groundwater neutral cropping systems in the Alluvial Fans of the North China Plain
van Oort P.A.J., Wang G., Vos J., Meinke H., Li B.G., Huang J.K., van der Werf W.
Agricultural Water Management. 2016 165 p.131
Benchmarking sunflower water productivity in semiarid environments
Grassini Patricio, Hall Antonio J., Mercau Jorge L.
Field Crops Research. 2009 110(3). p.251
Sustainable production of crops and pastures under drought in a Mediterranean environment
TURNER NEIL C
Annals of Applied Biology. 2004 144(2). p.139
(2009)
Ryan John, Ibrikci Hayriye, Sommer Rolf, McNeill Ann
Performance of a wheat yield prediction model and factors influencing the performance: A review and meta-analysis
Hao Shirui, Ryu Dongryeol, Western Andrew, Perry Eileen, Bogena Heye, Franssen Harrie Jan Hendricks
Agricultural Systems. 2021 194 p.103278
An exploratory evaluation of APSIM to simulate growth and yield processes for winter cereals in rotation systems in South Australia
Yunusa I. A. M., Bellotti W. D., Moore A. D., Probert M. E., Baldock J. A., Miyan S. M.
Australian Journal of Experimental Agriculture. 2004 44(8). p.787
Inverse meta-modelling to estimate soil available water capacity at high spatial resolution across a farm
Florin M. J., McBratney A. B., Whelan B. M., Minasny B.
Precision Agriculture. 2011 12(3). p.421
(2022)
Barton L., Hoyle F.C., Grace P.R., Schwenke G.D., Scanlan C.A., Armstrong R.D., Bell M.J.
Is there an optimal root architecture for nitrate capture in leaching environments?
DUNBABIN V., DIGGLE A., RENGEL Z.
Plant, Cell & Environment. 2003 26(6). p.835
Positive charge discovered across Western Australian wheatbelt soils challenges key soil and nitrogen management assumptions
Wong M. T. F., Wittwer K.
Soil Research. 2009 47(1). p.127
Modelling the impacts of climate change on wheat yield and field water balance over the Murray–Darling Basin in Australia
Wang Jing, Wang Enli, Liu De Li
Theoretical and Applied Climatology. 2011 104(3-4). p.285
Lucerne in crop rotations on the Riverine Plains. 3. Model evaluation and simulation analyses
Verburg K., Bond W. J., Hirth J. R., Ridley A. M.
Australian Journal of Agricultural Research. 2007 58(12). p.1129
Quantifying the value of historical climate knowledge and climate forecasts using agricultural systems modelling
Wang Enli, McIntosh Peter, Jiang Qiang, Xu Johnny
Climatic Change. 2009 96(1-2). p.45
Is a 10-day rainfall forecast of value in dry-land wheat cropping?
Asseng Senthold, McIntosh Peter C., Thomas Geoff, Ebert Elizabeth E., Khimashia Nirav
Agricultural and Forest Meteorology. 2016 216 p.170
Quality and potential utility of ENSO-based forecasts of spring rainfall and wheat yield in south-eastern Australia
Anwar M. R., Rodriguez D., Liu D. L., Power S., O'Leary G. J.
Australian Journal of Agricultural Research. 2008 59(2). p.112

Committee on Publication Ethics


Abstract Export Citation Get Permission