1. Marks, L.B., Jackson, M., Xie, L., et al.: The challenge of maximizing safety in radiation oncology. Pract Radiat Oncol. 1(1), 2–14 (2011). https://doi.org/10.1016/j.prro.2010.10.001
2. Adapa, K.: Unifying evidence-based frameworks to design, develop, implement, and evaluate health information technology tools in radiation oncology (Order No. 29393143). Available from Dissertations & Theses @ University of North Carolina at Chapel Hill; ProQuest Dissertations & Theses Global (2022). (2760194888). http://libproxy.lib.unc.edu/login?url=https://www-proquest-com.libproxy.lib.unc.edu/dissertations-theses/unifying-evidence-based-frameworks-design-develop/docview/2760194888/se-2
3. Ford, E.C., Terezakis, S., Souranis, A., Harris, K., Gay, H., Mutic, S.: Quality control quantification (QCQ): a tool to measure the value of quality control checks in radiation oncology. Int. J, Radiat. Oncol. Biol. Phys. 84(3), e263–e269 (2012). https://doi.org/10.1016/j.ijrobp.2012.04.036
4. Adapa, K., Mosaly, P., Yu, F., Moore, C., Das, S., Mazur, L.: Exploring association between perceived usability of dosimetry quality assurance checklist and perceived cognitive workload of dosimetrists in clinical settings. Proc. Hum. Factors Ergon. Soc. Annu. Meet. 65(1), 771–775 (2021). https://doi-org.libproxy.lib.unc.edu/10.1177/1071181321651285
5. Tracton, G.S., Mazur, L.M., Mosaly, P., Marks, L.B., Das, S.: Developing and assessing electronic checklists for safety mindfulness, workload, and performance. Pract. Radiat. Oncol. 8(6), 458–467 (2018). https://doi.org/10.1016/j.prro.2018.05.001