Published on in Vol 8, No 11 (2020): November

Preprints (earlier versions) of this paper are available at https://preprints.jmir.org/preprint/20826, first published .
Natural Language Processing for Surveillance of Cervical and Anal Cancer and Precancer: Algorithm Development and Split-Validation Study

Natural Language Processing for Surveillance of Cervical and Anal Cancer and Precancer: Algorithm Development and Split-Validation Study

Natural Language Processing for Surveillance of Cervical and Anal Cancer and Precancer: Algorithm Development and Split-Validation Study

Journals

  1. Bitterman D, Miller T, Mak R, Savova G. Clinical Natural Language Processing for Radiation Oncology: A Review and Practical Primer. International Journal of Radiation Oncology*Biology*Physics 2021;110(3):641 View
  2. Hosier H, Sheth S, Oliveira C, Perley L, Vash-Margita A. Unindicated cervical cancer screening in adolescent females within a large healthcare system in the United States. American Journal of Obstetrics and Gynecology 2021;225(6):649.e1 View
  3. Vashishth S, Newman-Griffis D, Joshi R, Dutt R, Rosé C. Improving broad-coverage medical entity linking with semantic type prediction and large-scale datasets. Journal of Biomedical Informatics 2021;121:103880 View
  4. Lam H, Nguyen F, Wang X, Stock A, Lenskaya V, Kooshesh M, Li P, Qazi M, Wang S, Dehghan M, Qian X, Si Q, Polydorides A. An accessible, efficient, and accurate natural language processing method for extracting diagnostic data from pathology reports. Journal of Pathology Informatics 2022;13:100154 View
  5. López-Úbeda P, Martín-Noguerol T, Aneiros-Fernández J, Luna A. Natural Language Processing in Pathology. The American Journal of Pathology 2022;192(11):1486 View
  6. Pethani F, Dunn A. Natural language processing for clinical notes in dentistry: A systematic review. Journal of Biomedical Informatics 2023;138:104282 View
  7. Wang L, Fu S, Wen A, Ruan X, He H, Liu S, Moon S, Mai M, Riaz I, Wang N, Yang P, Xu H, Warner J, Liu H. Assessment of Electronic Health Record for Cancer Research and Patient Care Through a Scoping Review of Cancer Natural Language Processing. JCO Clinical Cancer Informatics 2022;(6) View
  8. Condrat C, Filip L, Gherghe M, Cretoiu D, Suciu N. Maternal HPV Infection: Effects on Pregnancy Outcome. Viruses 2021;13(12):2455 View
  9. Saraiya M, Colbert J, Bhat G, Almonte R, Winters D, Sebastian S, O'Hanlon M, Meadows G, Nosal M, Richards T, Michaels M, Townsend J, Miller J, Perkins R, Sawaya G, Wentzensen N, White M, Richardson L. Computable Guidelines and Clinical Decision Support for Cervical Cancer Screening and Management to Improve Outcomes and Health Equity. Journal of Women's Health 2022;31(4):462 View
  10. Gholipour M, Khajouei R, Amiri P, Hajesmaeel Gohari S, Ahmadian L. Extracting cancer concepts from clinical notes using natural language processing: a systematic review. BMC Bioinformatics 2023;24(1) View
  11. Degife E, Oliveira C, Znamierowski E, Meyer J, Sheth S. Uptake of Cervical Cancer Screening Among Female Patients Using a Mobile Medical Clinic. American Journal of Preventive Medicine 2023;65(5):835 View
  12. Ma S, Jiang S, Yang O, Zhang X, Fu Y, Zhang Y, Kaareen A, Ling M, Chen J, Shang C. Use of Machine Learning Tools in Evidence Synthesis of Tobacco Use Among Sexual and Gender Diverse Populations: Algorithm Development and Validation. JMIR Formative Research 2024;8:e49031 View
  13. Lastrucci A, Giarnieri E, Carico E, Giansanti D. Revolutionizing Cytology and Cytopathology with Natural Language Processing and Chatbot Technologies: A Narrative Review on Current Trends and Future Directions. Bioengineering 2024;11(11):1134 View

Books/Policy Documents

  1. Di Noto T, Atat C, Teiga E, Hegi M, Hottinger A, Cuadra M, Hagmann P, Richiardi J. Machine Learning and Principles and Practice of Knowledge Discovery in Databases. View