Automation in livestock farming - A technological revolution
暂无分享,去创建一个
[1] G. Marchesi. IMPROVING ANIMAL WELFARE, ANIMAL PRODUCTION QUALITY AND FOOD SAFETY WITH ADVANCED SENSOR SYSTEMS , 2013 .
[2] Scott A. Shearer,et al. Monitoring cattle behavior and pasture use with GPS and GIS , 2000 .
[3] de Koning,et al. Automatic milking – common practice on dairy farms , 2010 .
[4] R. Rempel,et al. Effects of differential correction on accuracy of a GPS animal location system , 1997 .
[5] Biswajit Roy,et al. Application of radio frequency identification (RFID) technology in dairy herd management. , 2014 .
[6] Tim A. McAllister,et al. Electronic identification: Applications in beef production and research , 2000 .
[7] Harris Bl,et al. Automatic reading of Kamars for heat detection in dairy herds , 2010 .
[8] P J Berger,et al. Birth weight as a predictor of calving ease and perinatal mortality in Holstein cattle. , 2003, Journal of dairy science.
[9] G. S. Lewis,et al. Changes throughout estrous cycles of variables that might indicate estrus in dairy cows. , 1984, Journal of dairy science.
[10] D. Viaggi,et al. Assessing the effect of the CAP on farm innovation adoption. An analysis in two French regions , 2011 .
[11] N. R. Scott,et al. Detection of estrus in dairy cows by electrical measurements of vaginal mucus and by milk progesterone. , 1976, Journal of dairy science.
[12] P. Pascolo,et al. Improving calving management to further enhance reproductive performance in dairy cattle , 2010, Veterinary Research Communications.
[13] Henk Hogeveen,et al. Socio-economic aspects of automatic milking , 2004 .
[14] Ulrich Brehme,et al. ALT pedometer-New sensor-aided measurement system for improvement in oestrus detection , 2008 .
[15] H Hogeveen,et al. The profitability of automatic milking on Dutch dairy farms. , 2007, Journal of dairy science.
[16] R. Firk,et al. Automation of oestrus detection in dairy cows: a review , 2002 .
[17] R W Rorie,et al. Application of electronic estrus detection technologies to reproductive management of cattle. , 2002, Theriogenology.
[18] C. Rotz,et al. Automatic milking systems, farm size, and milk production. , 2003, Journal of dairy science.
[19] Gerardo Caja,et al. Development of a ceramic bolus for the permanent electronic identification of sheep, goat and cattle , 1999 .
[20] L. Murgia,et al. Evaluation of the performance of the first automatic milking system for buffaloes. , 2014, Journal of dairy science.
[21] P. Mäntysaari,et al. Effect of feeding frequency of a total mixed ration on the performance of high-yielding dairy cows. , 2006, Journal of dairy science.
[22] A. D. Kennedy,et al. Measurement of vaginal temperature by radiotelemetry for the prediction of estrus in beef cows. , 1998, Theriogenology.
[23] P J Berger,et al. Effect of dystocia on yield, fertility, and cow losses and an economic evaluation of dystocia scores for Holsteins. , 1997, Journal of dairy science.
[24] Dirk U. Pfeiffer,et al. Comparison of electronic and visual identification systems in pigs , 1998 .
[25] J. Jago,et al. Validation of a technology for objectively measuring behaviour in dairy cows and its application for oestrous detection , 2007 .
[26] C. Amiama,et al. Estimating efficiency in automatic milking systems. , 2012, Journal of dairy science.
[27] Stephen Elliott,et al. Animal identification by retinal imaging and applications for biosecurity , 2004 .
[28] Wang Jun,et al. Notice of RetractionApplications of Intelligent Information Technology in food logistics , 2010, 2010 International Conference on Computer and Communication Technologies in Agriculture Engineering.
[29] K. Betteridge,et al. Sensors for detecting and logging spatial distribution of urine patches of grazing female sheep and cattle , 2010 .
[30] Tim Wark,et al. Tracking livestock using global positioning systems – are we still lost? , 2011 .
[31] David Zilberman,et al. Sequential technology implementation, network externalities, and risk: the case of automatic milking systems , 2012 .
[32] Esmaeil S. Nadimi,et al. Monitoring and classifying the behavior of a herd of sheep using ad hoc wireless sensor networks and artificial intelligence , 2009 .
[33] Farris Ej,et al. Activity of dairy cows during estrus. , 1954 .
[34] John F Mee,et al. Managing the dairy cow at calving time. , 2004, The Veterinary clinics of North America. Food animal practice.
[35] G. H. Kroeze,et al. Results of a multivariate approach to automated oestrus and mastitis detection , 1997 .
[36] Anthony Waterhouse,et al. A note on the circadian rhythm and feeding behaviour of sheep fitted with a lightweight GPS collar , 1998 .
[38] C. A. Kiddy,et al. Variation in physical activity as an indication of estrus in dairy cows. , 1977, Journal of dairy science.
[39] M. V. Keyserlingk,et al. Frequency of feed delivery affects the behavior of lactating dairy cows. , 2005, Journal of dairy science.
[40] W Steeneveld,et al. Comparing technical efficiency of farms with an automatic milking system and a conventional milking system. , 2012, Journal of dairy science.
[41] Carola Sauter-Louis,et al. Index of Contents , 1994, Journal of Helminthology.