Automation of systematic literature reviews: A systematic literature review
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[1] Jian-Yun Nie,et al. Discriminating between empirical studies and nonempirical works using automated text classification , 2018, Research synthesis methods.
[2] Bedir Tekinerdogan,et al. Obstacles and features of Farm Management Information Systems: A systematic literature review , 2019, Comput. Electron. Agric..
[3] Gobinda G. Chowdhury,et al. Natural language processing , 2005, Annu. Rev. Inf. Sci. Technol..
[4] Carla E. Brodley,et al. Semi-automated screening of biomedical citations for systematic reviews , 2010, BMC Bioinformatics.
[5] P. Glasziou,et al. Systematic review automation technologies , 2014, Systematic Reviews.
[6] Jacob Krüger,et al. (Automated) Literature Analysis - Threats and Experiences , 2018, 2018 IEEE/ACM 13th International Workshop on Software Engineering for Science (SE4Science).
[7] Peter C Gøtzsche,et al. Data extraction errors in meta-analyses that use standardized mean differences. , 2007, JAMA.
[8] Paula R Williamson,et al. High prevalence but low impact of data extraction and reporting errors were found in Cochrane systematic reviews. , 2005, Journal of clinical epidemiology.
[9] Michelle Cawley,et al. Novel text analytics approach to identify relevant literature for human health risk assessments: A pilot study with health effects of in utero exposures. , 2019, Environment international.
[10] William R. Hersh,et al. Reducing workload in systematic review preparation using automated citation classification. , 2006, Journal of the American Medical Informatics Association : JAMIA.
[11] Sophia Ananiadou,et al. Reducing systematic review workload through certainty-based screening , 2014, J. Biomed. Informatics.
[12] Duy Duc An Bui,et al. Extractive text summarization system to aid data extraction from full text in systematic review development , 2016, J. Biomed. Informatics.
[13] Anne E. James,et al. The Canonical Model of Structure for Data Extraction in Systematic Reviews of Scientific Research Articles , 2018, 2018 Fifth International Conference on Social Networks Analysis, Management and Security (SNAMS).
[14] Rossitza Goleva,et al. Automation in Systematic, Scoping and Rapid Reviews by an NLP Toolkit: A Case Study in Enhanced Living Environments , 2019, Enhanced Living Environments.
[15] Siddhartha R. Jonnalagadda,et al. Automating data extraction in systematic reviews: a systematic review , 2015, Systematic Reviews.
[16] Shanthi Nagarajan,et al. IKKβ inhibitor identification: a multi-filter driven novel scaffold , 2010, BMC Bioinformatics.
[17] Byron C. Wallace,et al. Toward systematic review automation: a practical guide to using machine learning tools in research synthesis , 2019, Systematic Reviews.
[18] Guido Zuccon,et al. Automatic Boolean Query Formulation for Systematic Review Literature Search , 2020, WWW.
[19] Ronald Gualán,et al. A ranking-based approach for supporting the initial selection of primary studies in a Systematic Literature Review , 2019, 2019 XLV Latin American Computing Conference (CLEI).
[20] Brahim Ouhbi,et al. Using rule-based classifiers in systematic reviews: a semantic class association rules approach , 2015, iiWAS.
[21] Brahim Ouhbi,et al. A hybrid feature selection rule measure and its application to systematic review , 2016, iiWAS.
[22] Mohammad Hassan Murad,et al. Choice of data extraction tools for systematic reviews depends on resources and review complexity. , 2009, Journal of clinical epidemiology.
[23] Enrico Coiera,et al. Automated screening of research studies for systematic reviews using study characteristics , 2018, Systematic Reviews.
[24] Sophia Ananiadou,et al. Topic detection using paragraph vectors to support active learning in systematic reviews , 2016, J. Biomed. Informatics.
[25] Byron C. Wallace,et al. Extracting PICO Sentences from Clinical Trial Reports using Supervised Distant Supervision , 2016, J. Mach. Learn. Res..
[26] Seunghee Kim,et al. An SVM-based high-quality article classifier for systematic reviews , 2014, J. Biomed. Informatics.
[27] Mourad Ouzzani,et al. Making progress with the automation of systematic reviews: principles of the International Collaboration for the Automation of Systematic Reviews (ICASR) , 2018, Systematic Reviews.
[28] Johannes Wagner,et al. A clustering approach for topic filtering within systematic literature reviews , 2020, MethodsX.
[29] Per Runeson,et al. A Machine Learning Approach for Semi-Automated Search and Selection in Literature Studies , 2017, EASE.
[30] Milene Selbach Silveira,et al. A method to support search string building in systematic literature reviews through visual text mining , 2015, SAC.
[31] Mehwish Riaz,et al. Analysing the Use of Graphs to Represent the Results of Systematic Reviews in Software Engineering , 2011, 2011 25th Brazilian Symposium on Software Engineering.
[32] Thiago R. P. M. Rúbio,et al. Enhancing academic literature review through relevance recommendation: Using bibliometric and text-based features for classification , 2016, 2016 11th Iberian Conference on Information Systems and Technologies (CISTI).
[33] Carla E. Brodley,et al. Active learning for biomedical citation screening , 2010, KDD.
[34] Stan Matwin,et al. Building Systematic Reviews Using Automatic Text Classification Techniques , 2010, COLING.
[35] J. McGowan,et al. Systematic reviews need systematic searchers. , 2005, Journal of the Medical Library Association : JMLA.
[36] Tari Turner,et al. Living Systematic Reviews: An Emerging Opportunity to Narrow the Evidence-Practice Gap , 2014, PLoS medicine.
[37] Rosane Minghim,et al. A visual analysis approach to validate the selection review of primary studies in systematic reviews , 2012, Inf. Softw. Technol..
[38] Adrian Tsang,et al. Data Sampling and Supervised Learning for HIV Literature Screening , 2016, IEEE Transactions on NanoBioscience.
[39] Robin Paynter,et al. Commentary on EPC methods: an exploration of the use of text-mining software in systematic reviews. , 2016, Journal of clinical epidemiology.
[40] James Thomas,et al. Use of cost-effectiveness analysis to compare the efficiency of study identification methods in systematic reviews , 2016, Systematic Reviews.
[41] Stan Matwin,et al. Exploiting the systematic review protocol for classification of medical abstracts , 2011, Artif. Intell. Medicine.
[42] Falk Scholer,et al. The challenge of high recall in biomedical systematic search , 2009, DTMBIO.
[43] O. Dieste,et al. Developing Search Strategies for Detecting Relevant Experiments for Systematic Reviews , 2007, First International Symposium on Empirical Software Engineering and Measurement (ESEM 2007).
[44] Prem Timsina,et al. Advanced analytics for the automation of medical systematic reviews , 2016, Inf. Syst. Frontiers.
[45] Emilia Mendes,et al. Using Visual Text Mining to Support the Study Selection Activity in Systematic Literature Reviews , 2011, 2011 International Symposium on Empirical Software Engineering and Measurement.
[46] Jing Liao,et al. Machine learning algorithms for systematic review: reducing workload in a preclinical review of animal studies and reducing human screening error , 2019, Systematic Reviews.
[47] Dina Demner-Fushman,et al. Screening nonrandomized studies for medical systematic reviews: A comparative study of classifiers , 2012, Artif. Intell. Medicine.
[48] Duy Duc An Bui,et al. Automatically finding relevant citations for clinical guideline development , 2015, J. Biomed. Informatics.
[49] M Bartholomew,et al. James Lind’s Treatise of the Scurvy (1753) , 2002, Postgraduate medical journal.
[50] Matthew Michelson,et al. The significant cost of systematic reviews and meta-analyses: A call for greater involvement of machine learning to assess the promise of clinical trials , 2019, Contemporary clinical trials communications.
[51] Scott Reeves,et al. Twelve tips for undertaking a systematic review , 2002, Medical teacher.
[52] S. Ananiadou,et al. Using text mining for study identification in systematic reviews: a systematic review of current approaches , 2015, Systematic Reviews.
[53] Tingting Mu,et al. A semi-supervised approach using label propagation to support citation screening , 2017, J. Biomed. Informatics.
[54] Lianping Chen,et al. A systematic review of comparative evidence of aspect-oriented programming , 2010, Inf. Softw. Technol..
[55] Luca Ardito,et al. Linked data approach for selection process automation in systematic reviews , 2011, EASE.
[56] Guido Zuccon,et al. Automatic Boolean Query Refinement for Systematic Review Literature Search , 2019, WWW.
[57] Ana Lucic,et al. Automatic endpoint detection to support the systematic review process , 2015, J. Biomed. Informatics.
[58] A J van Altena,et al. Usage of automation tools in systematic reviews , 2019, Research synthesis methods.
[59] Yogesh K. Dwivedi,et al. Twitter and Research: A Systematic Literature Review Through Text Mining , 2020, IEEE Access.
[60] Aaron M. Cohen,et al. Research Paper: Cross-Topic Learning for Work Prioritization in Systematic Review Creation and Update , 2009, J. Am. Medical Informatics Assoc..
[61] K. Bretonnel Cohen,et al. The structural and content aspects of abstracts versus bodies of full text journal articles are different , 2010, BMC Bioinformatics.
[62] Sophia Ananiadou,et al. Applications of text mining within systematic reviews , 2011, Research synthesis methods.
[63] Ioannis Korkontzelos,et al. Using a neural network-based feature extraction method to facilitate citation screening for systematic reviews , 2020, Expert Syst. Appl. X.
[64] Pearl Brereton,et al. The use of bibliography enriched features for automatic citation screening , 2019, J. Biomed. Informatics.
[65] Siddhartha R. Jonnalagadda,et al. PDF text classification to leverage information extraction from publication reports , 2016, J. Biomed. Informatics.
[66] Yin Kia Chiam,et al. Text-Mining Techniques and Tools for Systematic Literature Reviews: A Systematic Literature Review , 2017, 2017 24th Asia-Pacific Software Engineering Conference (APSEC).
[67] T. Dybå,et al. Applying Systematic Reviews to Diverse Study Types: An Experience Report , 2007, First International Symposium on Empirical Software Engineering and Measurement (ESEM 2007).
[68] Justin Clark,et al. A full systematic review was completed in 2 weeks using automation tools: a case study , 2020 .
[69] Guy Tsafnat,et al. A question of trust: can we build an evidence base to gain trust in systematic review automation technologies? , 2019, Systematic Reviews.
[70] Pearl Brereton,et al. A critical analysis of studies that address the use of text mining for citation screening in systematic reviews , 2016, EASE.
[71] Bedir Tekinerdogan,et al. Model-based testing for software safety: a systematic mapping study , 2017, Software Quality Journal.
[72] K. Shojania,et al. How Quickly Do Systematic Reviews Go Out of Date? A Survival Analysis , 2007, Annals of Internal Medicine.
[73] Manoel G. Mendonça,et al. A Visual Text Mining approach for Systematic Reviews , 2007, First International Symposium on Empirical Software Engineering and Measurement (ESEM 2007).
[74] Juan Jose García Adeva,et al. Automatic text classification to support systematic reviews in medicine , 2014, Expert Syst. Appl..
[75] Mehwish Riaz,et al. Experiences Conducting Systematic Reviews from Novices' Perspective , 2010, EASE.
[76] Stephen G. MacDonell,et al. A visual analysis approach to update systematic reviews , 2014, EASE '14.
[77] Lisa Hartling,et al. Systematic review of the use of process evaluations in knowledge translation research , 2019, Systematic Reviews.
[78] M. Marcolin,et al. Whole field tendencies in transcranial magnetic stimulation: A systematic review with data and text mining. , 2011, Asian journal of psychiatry.