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- Ten threats to global health in 2019.(Available at:) (Accessed April 29, 2022)
- Vaccine hesitancy: definition, scope and determinants.Vaccine. 2015; 33: 4161-4164
- Addressing Vaccine Hesitancy in the Age of COVID-19.Acad Pediatr. 2021; 21: S3-S4
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- Increasing Vaccination: Putting Psychological Science Into Action.Psychol Sci Public Interest. 2017; 18: 149-207
- A Systematic review of interventions to improve HPV vaccination coverage.Vaccines (Basel). 2021; 9https://doi.org/10.3390/vaccines9070687
- What is the state-of-the-art in clinical trials on vaccine hesitancy 2015-2020?.Vaccines (Basel). 2021; 9https://doi.org/10.3390/vaccines9040348
- Opportunities for and Barriers to Using Smartphones for Health Education Among Families at an Urban Primary Care Clinic.Clin Pediatr (Phila). 2018; 57: 1281-1285
- Achieving high HPV vaccine completion rates in a pediatric clinic population.Hum Vaccin Immunother. 2019; 15: 1562-1569
- A randomized trial of the effect of centralized reminder/recall on immunizations and preventive care visits for adolescents.Acad Pediatr. 2013; 13: 204-213
- Patient reminder and recall interventions to improve immunization rates.Cochrane Database Syst Rev. 2018; 1: Cd003941
- Centralized reminder/recall to increase influenza vaccination rates: a two-state pragmatic randomized trial.Acad Pediatr. 2020; 20: 374-383
- Personalized reminders for immunization using short messaging systems to improve human papillomavirus vaccination series completion: parallel-group randomized trial.JMIR Mhealth Uhealth. 2021; 9: e26356
- Effect of state immunization information system based reminder/recall for influenza vaccinations: a randomized trial of autodialer, text, and mailed messages.J Pediatr. 2020; 221 (e4): 123-131
- The contribution of reminder-recall to vaccine delivery efforts: a narrative review.Acad Pediatr. 2021; 21: S17-S23
- Adherence to expanded influenza immunization recommendations among primary care providers.J Pediatr. 2012; 160: 480-486.e1
- Effectiveness of email-based reminders to increase vaccine uptake: a systematic review.Vaccine. 2020; 38: 433-443
- Effect of patient portal reminders sent by a health care system on influenza vaccination rates: a randomized clinical trial.JAMA Intern Med. 2020; 180: 962-970
- Effect of personalized messages sent by a health system's patient portal on influenza vaccination rates: a randomized clinical trial.J Gen Intern Med. 2022; 37: 615-623
- Patient Portal Reminders for Pediatric Influenza Vaccinations: A Randomized Clinical Trial.Pediatrics. 2021; 148https://doi.org/10.1542/peds.2020-048413
- Pediatric patient portal use in one health system.J Am Med Inform Assoc. 2020; 27: 444-448
- Longitudinal evaluation of clinical decision support to improve influenza vaccine uptake in an integrated pediatric health care delivery system, Houston, Texas.Appl Clin Inform. 2019; 10: 944-951
- Physician clinical decision support system prompts and administration of subsequent doses of HPV vaccine: A randomized clinical trial.Vaccine. 2019; 37: 4414-4418
- Effect of provider prompts on adolescent immunization rates: a randomized trial.Acad Pediatr. 2015; 15: 149-157
- Effectiveness of decision support for families, clinicians, or both on HPV vaccine receipt.Pediatrics. 2013; 131: 1114-1124
- Sources and perceived credibility of vaccine-safety information for parents.Pediatrics. 2011; 127: S107-S112
- Parents' source of vaccine information and impact on vaccine attitudes, beliefs, and nonmedical exemptions.Adv Prev Med. 2012; 2012: 932741
- Opportunities and challenges of Web 2.0 for vaccination decisions.Vaccine. 2012; 30: 3727-3733https://doi.org/10.1016/j.vaccine.2012.02.025
- Use of the internet for health information: United States, 2009. national center for health statistics.(Available at:) (Accessed April 27, 2022)
- Internet/broadband fact sheet.(Available at:) (Accessed April 27, 2022)
- How often people google for vaccination: Qualitative and quantitative insights from a systematic search of the web-based activities using Google Trends.Hum Vaccin Immunother. 2017; 13: 464-469
- The online competition between pro- and anti-vaccination views.Nature. 2020; 582: 230-233
- Weaponized Health Communication: Twitter Bots and Russian Trolls Amplify the Vaccine Debate.Am J Public Health. 2018; 108: 1378-1384
- "Down the rabbit hole" of vaccine misinformation on youtube: network exposure study.J Med Internet Res. 2021; 23: e23262
- Characterizing HPV vaccine sentiments and content on instagram.Health Educ Behav. 2019; 46: 37-48
- Search engine ranking, quality, and content of web pages that are critical versus noncritical of human papillomavirus vaccine.J Adolesc Health. 2016; 58: 33-39
- Parents' Internet use for information about HPV vaccine.Vaccine. 2012; 30: 3757-3762
- Efficacy of a web-based intervention to increase uptake of maternal vaccines: an RCT.Am J Prev Med. 2019; 57: e125-e133
- Finding reliable information about vaccines.Pediatrics. 2011; 127: S134-S137
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- Pediatrics AAo. immunizations.(Available at:) (Accessed April 25, 2022)
- Vaccine safety.(Available at:) (Accessed April 25, 2022)
- Institute for vaccine safety.(Available at:) (Accessed April 25, 2022)
- Parental Perceptions of the Internet and Social Media as a Source of Pediatric Health Information.Acad Pediatr. 2020; 20: 31-38https://doi.org/10.1016/j.acap.2019.09.009
- Are parents getting it right? a survey of parents' internet use for children's health care information.Interact J Med Res. 2015; 4: e12
- Shots heard round the world: better communication holds the key to increasing vaccine acceptance.Nat Immunol. 2021; 22: 1068-1070
- The impact of Facebook’s vaccine misinformation policy on user endorsements of vaccine content: An interrupted time series analysis.Vaccine. 2022; 40: 2209-2214
- A randomized controlled trial of an online immunization curriculum.Vaccine. 2020; 38: 7299-7307
- Quality of web-based educational interventions for clinicians on human papillomavirus vaccine: content and usability assessment.JMIR Cancer. 2018; 4: e3
- A content analysis of HPV vaccine online continuing medical education purpose statements and learning objectives.Hum Vaccin Immunother. 2019; 15: 1508-1518
- Content of web-based continuing medical education about HPV vaccination.Vaccine. 2017; 35: 4510-4514
- What works to increase vaccination uptake.Acad Pediatr. 2021; 21: S9-S16
PEW Research Center. Mobile Fact Sheet. Available at: https://www.pewresearch.org/internet/fact-sheet/mobile/. Accessed April 25, 2022.
- Vaccipack, a mobile app to promote human papillomavirus vaccine uptake among adolescents aged 11 to 14 years: development and usability study.JMIR Nurs. 2020; 3: e19503
- Effectiveness of a smartphone app to increase parents' knowledge and empowerment in the MMR vaccination decision: A randomized controlled trial.Hum Vaccin Immunother. 2017; 13: 2512-2521
- Gamification in action: theoretical and practical considerations for medical educators.Acad Med. 2018; 93: 1014-1020
- A systematic review of serious video games used for vaccination.Vaccine. 2016; 34: 4478-4483
- Digital gamification to enhance vaccine knowledge and uptake: scoping review.JMIR Serious Games. 2020; 8: e16983
- Teaching children about immunization in a digital age.Hum Vaccin Immunother. 2017; 13: 1155-1157
- Gamification for health promotion: systematic review of behaviour change techniques in smartphone apps.BMJ Open. 2016; 6: e012447
- Educating parents about the vaccination status of their children: A user-centered mobile application.Prev Med Rep. 2017; 5: 241-250
- MomsTalkShots: An individually tailored educational application for maternal and infant vaccines.Vaccine. 2019; 37: 6478-6485
- A Smartphone App to Increase Immunizations in the Pediatric Solid Organ Transplant Population: Development and Initial Usability Study.JMIR Form Res. 2022; 6: e32273
- Information delivered by a chatbot has a positive impact on COVID-19 vaccines attitudes and intentions.J Exp Psychol Appl. 2021; (No Pagination Specified-No Pagination Specified)https://doi.org/10.1037/xap0000400
- The architecture of provider-parent vaccine discussions at health supervision visits.Pediatrics. 2013; 132: 1037-1046
- Clinician-parent discussions about influenza vaccination of children and their association with vaccine acceptance.Vaccine. 2017; 35: 2709-2715
- HPV vaccine: same way, same day.(Available at:) (Accessed April 28, 2022)
- Usability evaluation of the novel smartphone application, hpv vaccine: same way, same day, among pediatric residents.Acad Pediatr. 2021; 21: 742-749
- Evaluation of HPV vaccine: same way, same day(TM): a pilot study.J Health Commun. 2022; : 1-7https://doi.org/10.1080/10810730.2021.2021459
- Communicating with vaccine-hesitant parents: a narrative review.Acad Pediatr. 2021; 21: S24-S29
- Virtual reality simulation in nontechnical skills training for healthcare professionals: a systematic review.Simul Healthc. 2019; 14: 188-194
- A self-administered virtual reality intervention increases COVID-19 vaccination intention.Vaccine. 2021; 39: 6746-6753
- Using immersive virtual reality to improve the beliefs and intentions of influenza vaccine avoidant 18-to-49-year-olds: Considerations, effects, and lessons learned.Vaccine. 2020; 38: 1225-1233
- Virtual reality reduces COVID-19 vaccine hesitancy in the wild.Sci Rep. 2022; 12: 4593
- Development of a culturally and linguistically sensitive virtual reality educational platform to improve vaccine acceptance within a refugee population: the SHIFA community engagement-public health innovation programme.BMJ Open. 2021; 11: e051184
- Effect of virtual reality headset for pediatric fear and pain distraction during immunization.Pain Manag. 2018; 8: 175-179
- Virtual reality for pain and anxiety management in children.Can Fam Physician. 2017; 63: 932-934
- The VRIMM study: virtual reality for immunisation pain in young children-protocol for a randomised controlled trial.BMJ Open. 2020; 10: e038354
- Using virtual technology for fear of medical procedures: a systematic review of the effectiveness of virtual reality-based interventions.Ann Behav Med. 2021; 55: 1062-1079
- A virtual reality curriculum for pediatric residents decreases rates of influenza vaccine refusal.Acad Pediatr. 2017; 17: 431-435
Real F, Ollberding N, Meisman A, et al. Impact of a virtual reality curriculum on human papillomavirus vaccination: a pilot trial Am J Prev Med.
- Usability matters for virtual reality simulations teaching communication.Med Educ. 2020; 54: 1067-1068
- The future of onboarding: implementation of immersive virtual reality for nursing clinical assessment training.J Nurses Prof Dev. 2020; 36: 235-240
- Medical student perspectives on the use of immersive virtual reality for clinical assessment training.Acad Pediatr. 2019; 19: 849-851
- Resident perspectives on communication training that utilizes immersive virtual reality.Educ Health (Abingdon). 2017; 30: 228-231
- An Immersive virtual reality curriculum for pediatric hematology clinicians on shared decision-making for hydroxyurea in sickle cell anemia.J Pediatr Hematol Oncol. 2022; 44: e799-e803
- Implementing effective vaccination interventions into sustainable 'real world' practice.Acad Pediatr. 2021; 21: S78-S80