[1] Amemiya, T., 1974, Multivariate regression and simultaneous equation models when the dependent variables are truncated normal, Econometrica 42, 999-1012.
[10] Campbell, H.F., 1976, Estimating the marginal productivity of agricultural pesticides: the case of tree-fruit farms in the okanagan valley, Canadian Journal of Agricultural Economics 24, 23-30.
[11] Carrasco-Tauber, C. and L.J. Moffitt, 1992, Damage control econometrics: functional specification and pesticide productivity, American Journal of Agricultural Economics 74, 158-162.
- [12] Carpentier, A., 2010, Economie de la production agricole et régulation de lutilisation des pesticides une synthèse critique de la littérature, Colloque SFER: La réduction des pesticides agricoles - enjeux, modalités et conséquences, ENS Lettres et Sciences humaines, Lyon.
Paper not yet in RePEc: Add citation now
[13] Carpentier, A. and R. Weaver, 1997, Damage control productivity: Why econometrics matters, American Journal of Agricultural Economics 79, 47-61.
- [14] Carpentier (Coord.), A., J.-M. Barbier (Coord.), P. Bontemps, A. Lacroix, R. Laplana, S. Lemarié and N. Turpin, 2005, Aspects économiques de la régulation des pollutions par les pesticides, Collective Scientific Expert Report, CEMAGREF-INRA.
Paper not yet in RePEc: Add citation now
[15] Chambers, R.G. and Lichtenberg, E., 1994, Simple econometrics of pesticide productivity, American Journal of Agricultural Economics, 76, 407-417.
[16] Chambers, R.G., Karagiannis, G. and V. Tzouvelekas, 2010, Another look at pesticide productivity and pest damage, American Journal of Agricultural Economics 92, 1401-1419.
[17] Deaton, A. and J. Muellbauer, 1980, An almost ideal demand system, American Economic Review 70, 312-326.
- [18] Desdois, D., J.-P. Butault and Y. Surry, 2010, Lestimation quantile des coûts de production agricole: vers une évaluation de limpact économique dune réduction des pesticides en grandes cultures. Colloque SFER : La réduction des pesticides agricoles - enjeux, modalités et conséquences, ENS Lettres et Sciences humaines, Lyon.
Paper not yet in RePEc: Add citation now
[19] Dong, D., B.W. Gould and H.M. Kaiser, 2004, Food demand in Mexico: an application of the Amemiya-Tobin approach to the estimation of a censored food system, American Journal of Agricultural Economics 86, 1094-1107.
[2] Amemiya, T., 1984, Tobit models: A survey, Journal of Econometrics 24, 3-61.
[20] Fernandez-Cornejo, J., 1992, Short-and long-run demand and substitution of agricultural inputs, North-Eastern Journal of Agricultural and Resource Economics 21, 36-49.
[21] Fernandez-Cornejo, J., S. Jans and M. Smith, 1998, Issues in the economics of pesticide use in agri-culture: A review of the empirical evidence, Review of Agricultural Economics 20, 462-488.
[22] Fox, G. and Weersink, A., 1995, Damage control and increasing returns, American Journal of Agricultural Economics77, 33-39.
[23] Green, R. and J.M. Alston, 1990, Elasticities in AIDS models, American Journal of Agricultural Economics 72, 442-445.
- [24] Harris, T.R. and J.S. Shonkwiler, 1997, Interdependence of retail businesses, Growth and Change 27, 520-533.
Paper not yet in RePEc: Add citation now
[25] Headley, J.C., 1968, Estimating the productivity of agricultural pesticides, American Journal of Agricultural Economics 50, 13-23.
[26] Heien, D. and C.R. Wessells, 1990, Demand systems estimation with microdata: A censored regression approach, Journal of Business & Economic Statistics 8, 365-371.
[27] Hutasuhut, M., H.S. Chang, G. Griffith, C. ODonnell and H. Doran, 2001, The demand for beef in Indonesia: implications for Australian agribusiness, Working Paper Series in Agricultural and Resource Economics, University of New England.
[28] Lansink, A. and J. Peerlings, 1996, Modelling the new EU cereals and oilseeds regime in the netherlands, European Review of Agricultural Economics 23, 161-178.
[29] Lansink, A. and E. Silva, 2004, Non-parametric production analysis of pesticides use in the netherlands, Journal of productivity analysis 21, 49-65.
[3] Arndt, C., 1999, Demand for herbicide in corn: An entropy approach using micro-level data, Journal of Agricultural and Resource Economics 24, 204-221.
- [30] Lee, L.-F., 1978, Simultaneous equations models with discrete and censored dependent variables, in Structural Analysis of Discrete Data With Econometric Applications, P. Manski and D. McFadden, eds., MIT Press, MA, 346-364.
Paper not yet in RePEc: Add citation now
[31] Lichtenberg, E. and D. Zilberman, 1986, The econometrics of damage control: Why specification matters, American Journal of Agricultural Economics 68, 261-273.
[32] Lim, H., C.R. Shumway and T.J. Honeycutt, 1993, Disaggregated output supply and pesticide policy, Review of Agricultural Economics 15, 233-254.
- [33] Meissle, M., P. Mouron, T. Musa, F. Bigler, X. Pons, V.P Vasileiadis, S. Otto, D. Antichi, J. Kiss, Z. Pálinkás, Z. Dorner, Z., R.V.D. Weide, J. Groten, E. Czembor, J. Adamczyk, J.-B. Thibord, B. Melander, G.C. Nielsen, R.T. Poulsen, O. Zimmermann, A. Verschwele and E. Oldenburg, 2009, Pests, pesticide use and alternative options in european maize production: current status and future prospects, Journal of Applied Entomology 134, 357-375.
Paper not yet in RePEc: Add citation now
[34] Miranowski, J., 1980, Estimating the relationship between pest management and energy prices, and the implications for environmental damage, American Journal of Agricultural Economics 62, 9951000.
[35] Moschini, G., 1995, Units of measurement and the stone index in demand system estimation, American Journal of Agricultural Economics 77, 63-68.
[36] Norwood, F. B. and M.C. Marra, 2003, Pesticide productivity : Of bugs and biases, Journal of Agricultural and Resource Economics 28, 596-610.
[37] Perali, F. and J.-P. Chavas, 2000, Estimation of censored demand equations from large cross-section data, American Journal of Agricultural Economics 82, 1022-1037.
- [38] Pingault, N., E. Pleyber, C. Champeaux, L. Guichard and B. Omon, 2009, Produits phytosanitaires et protection intégrée des cultures: lindicateur de fréquence de traitement (IFT), Notes et études socio-économiques 32, 61-94.
Paper not yet in RePEc: Add citation now
- [39] Pudney S., 1989, Modeling Individual Choice, Basil Blackwell, New York.
Paper not yet in RePEc: Add citation now
- [4] Bayramoglu, B. and R. Chakir, 2010, Indirect effects of french biofuel policies on pesticide demand: an econometric analysis, Colloque SFER : La réduction des pesticides agricoles - enjeux, modalités et conséquences, ENS Lettres et Sciences humaines, Lyon.
Paper not yet in RePEc: Add citation now
- [40] Rolland, B., F. Oury, C. Bouchard and C. Loyce, 2006, Vers une évolution de la création vari étale pour répondre aux besoins de lagriculture durable? lexemple du blé tendre. Dossier de lEnvironnement de lINRA, 30.
Paper not yet in RePEc: Add citation now
[41] Sexton, S., Z. Lei and D. Zilberman, 2007, The economics of pesticides and pest control, International Review of Environmental and Resource Economics 1, 271-326.
[42] Shonkwiler, J.S. and S.T. Yen, 1999, Two-step estimation of a censored system of equations, American Journal of Agricultural Economics 81, 972-982.
[43] Stewart, H. and S.T. Yen, 2004, Changing household characteristics and the away-from-home food market: a censored equation system approach, Food Policy 29, 643-658.
[44] Su, S.-J. and S.T. Yen, 2000, A censored system of cigarette and alcohol consumption, Applied Economics 32, 729-737.
[45] Taljaard, P., Z. Alemu and H. van Schalkwyk, 2004, The demand for meat in South Africa: an almost ideal estimation, Agrekon 43, 430-443.
[46] Tauchmann, H., 2005, Efficiency of two-step estimators for censored systems of equations: Shonkwiler and Yen reconsidered, Applied Economics 37, 367-374.
[47] Yen, S.T., 2005, A multivariate sample-selection model: estimating cigarette and alcohol demands with zero observations, American Journal of Agricultural Economics 87, 453-466.
[48] Yen, S.T., C. Fang and S.-J. Su, 2004, Household food demand in urban China: a censored system approach, Journal of Comparative Economics 32, 564-585.
[49] Yen, S.T., K. Kan and S.-J. Su, 2002, Household demand for fats and oils: two-step estimation of a censored demand system, Applied Economics 14, 1799-1806.
[5] Blanciforti, L. and R. Green, 1983, An almost ideal demand system incorporating habits: An analysis of expenditures on food and aggregate commodity groups, Review of Economics and Statistics 65, 511-515.
[50] Yen, S.T., B. Lin and D. Smallwood, 2003, Quasi- and simulated-likelihood approaches to censored demand systems: Food consumption by food stamp recipients in the United States, American Journal of Agricultural Economics 85, 458-478.
[51] Yen, S.T. and B.-H. Lin, 2002, Beverage consumption among US children and adolescents: fullinformation and quasi maximum-likelihood estimation of a censored system, European Review of Agricultural Economics 29, 85-103.
[52] Yen, S.T. and B.-H. Lin, 2006, A sample selection approach to censored demand systems, American Journal of Agricultural Economics 88, 742-749.
- [53] Zellner, A., 1962, An efficient method of estimating seemingly unrelated regressions and tests for aggregation bias, Journal of the American Statistical Association 57, 348-368.
Paper not yet in RePEc: Add citation now
[54] Zilberman, D. and K. Millock, 1997, Financial incentives and pesticide use, Food Policy 22, 133144.
[6] Blundell R. and C. Meghir, 1987, Bivariate alternatives to the Tobit model, Journal of Econometrics 34, 179-200.
[7] Blundell, R., Pashardes,S. and G. Weber, 1993, What do we learn about consumer demand patterns from micro data ?, American Economic Review, 83, 570-597.
[8] Browning, M. and P.A. Chiappori, 1998, Efficient intra-household allocations: A general characterization and empirical tests, Econometrica, 66,1241-1278.
[9] Browning, M. and C. Meghir, 1991, The effects of male and female labor supply on commodity demands, Econometrica, 59, 925-951.