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The Effect of Screen Size on Mobile Phone User Comprehension of Health Information and Application Structure: An Experimental Approach

  • Mobile Systems
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Abstract

This research analyzes the impact of mobile phone screen size on user comprehension of health information and application structure. Applying experimental approach, we asked randomly selected users to read content and conduct tasks on a commonly used diabetes mobile application using three different mobile phone screen sizes. We timed and tracked a number of parameters, including correctness, effectiveness of completing tasks, content ease of reading, clarity of information organization, and comprehension. The impact of screen size on user comprehension/retention, clarity of information organization, and reading time were mixed. It is assumed on first glance that mobile screen size would affect all qualities of information reading and comprehension, including clarity of displayed information organization, reading time and user comprehension/retention of displayed information, but actually the screen size, in this experimental research, did not have significant impact on user comprehension/retention of the content or on understanding the application structure. However, it did have significant impact on clarity of information organization and reading time. Participants with larger screen size took shorter time reading the content with a significant difference in the ease of reading. While there was no significant difference in the comprehension of information or the application structures, there were a higher task completion rate and a lower number of errors with the bigger screen size. Screen size does not directly affect user comprehension of health information. However, it does affect clarity of information organization, reading time and user’s ability to recall information.

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References

  1. Kim, H. W., Chan, H. C., and Gupta, S., Value-based adoption of mobile internet: An empirical investigation. Decis. Support. Syst. 43(1):111–126, 2007.

    Article  Google Scholar 

  2. Finn, R. mHealth Report, 2012 available at http://www.ruderfinn.com/pdf/Ruder%20Finn%20US%20mHealth%20report%20FINAL.pdf.

  3. Greenspun, H., and Coughlin, S. mHealth in an mWorld: How Mobile Technology is Transforming Health Care. Deloitte Center for Health Solutions, 2012

  4. Research2guidance. Mobile Health Market Report 2013–2017, 2013. Retrived from http://www.research2guidance.com/shop/index.php/mhealth-report-2

  5. Health Data Management. Kalorama Tracks Mobile Medical App Market, 2012. retrieved http://www.healthdatamanagement.com/news/mobile-medical-apps-applications-market-kalorama-44597-1.html.

  6. West, D., How mobile devices are transforming healthcare. Issues Technol. Innov. 18:1–14, 2012.

    Google Scholar 

  7. Zhang, D., and Adipat, B., Challenges, methodologies, and issues in the usability testing of mobile applications. Int. J. Hum.-Comput. Interact. 18(3):293–308, 2005.

    Article  Google Scholar 

  8. Richardson, J., Dillon, A., and McKnight, C. The effect of window size on reading and manipulating electronic text. Contemp. Ergon. 474–479, 1989.

  9. Duchnicky, R. L., and Kolers, P. A., Readability of text scrolled on visual display terminals as a function of window size. Hum. Factors 25(6):683–692, 1983.

    PubMed  CAS  Google Scholar 

  10. Russell, M. C., and Chaparro, B. S. Exploring effects of speed and font size with RSVP. In: Proceedings of the Human Factors and Ergonomics Society Annual Meeting (Vol. 45, No. 6, pp. 640–644). SAGE Publications, 2001.

  11. Cheng, Y. H., and Good, R. L., L1 glosses: Effects on EFL learners’ reading comprehension and vocabulary retention. Read Foreign Lang 21(2):119–142, 2009.

    Google Scholar 

  12. Sanchez, C. A., and Goolsbee, J. Z., Character size and reading to remember from small displays. Comput. Educ. 55(3):1056–1062, 2010.

    Article  Google Scholar 

  13. Maniar, N., Bennett, E., Hand, S., and Allan, G., The effect of mobile phone screen size on video based learning. J. Softw. 3(4):51–61, 2008.

    Article  Google Scholar 

  14. Leung, R., McGrenere, J., and Graf, P. The learnability of mobile application interfaces needs improvement. In: Proc. of British HCI Workshop on HCI and the Older Population, 2008.

  15. Krishna, S., and Boren, S. A., Diabetes self-management care via cell phone: A systematic review. J Diabetes Sci. Technol. 2(3):509–517, 2008.

    Article  PubMed  PubMed Central  Google Scholar 

  16. Center for Global eHealth Innovation. Annual Report 2011/2012, 2012. Retrived from http://ehealthinnovation.org/wp-content/uploads/CentreforGlobaleHealthInnovation-AnnualReport-2011-2012.pdf

  17. Martínez-Pérez, B., de la Torre-Díez, I., and López-Coronado, M. Mobile health applications for the most prevalent conditions by the World Health Organization: review and analysis. J. Med. Int. Res. 15(6), 2013.

  18. Diabetes 101, 2015. Retrieved from http://www.wagmob.com

  19. Dyson, M. C., How physical text layout affects reading from screen. Behav. Inform. Technol. 23(6):377–393, 2004.

    Article  Google Scholar 

  20. Pulido, D., Modeling the role of second language proficiency and topic familiarity in second language incidental vocabulary acquisition through reading. Lang. Learn. 53(2):233–284, 2003.

    Article  Google Scholar 

  21. Council for Research Excellence. Following the Mobile Path of TV Content, 2013. Retrived from http://www.researchexcellence.com/documents/misc/CRE_Mobile_final_final_7_23_%28Final%29.pdf

  22. Jones, M., Buchanan, G., and Thimbleby, H., Improving web search on small screen devices. Interact. Comput. 15(4):479–495, 2003.

    Article  Google Scholar 

  23. Swierenga, S. J. Menuing and Scrolling as Alternative Information Access Techniques. In: Proceedings of the Human Factors and Ergonomics Society Annual Meeting (Vol. 34, No. 4, pp. 356–359). SAGE Publications, 1990.

  24. Hansen, W. J. User engineering principles for interactive systems. In: Proceedings of the November 16–18, 1971, fall joint computer conference (pp. 523–532). ACM, 1971.

  25. Chiang, Z. H., Wen, C. C., Chen, A. C., and Hou, C. Y. An analysis of smartphone size regarding operating performance. In: Human Interface and the Management of Information. Information and Interaction for Health, Safety, Mobility and Complex Environments (pp. 363–372). Springer Berlin Heidelberg, 2013.

  26. Antoniou, A., and Lepouras, G. Using bluetooth technology for personalised visitor information. In: Proceedings of the IADIS international Conference on Mobile Learning, (pp. 28–30), 2005.

  27. Aldabbagh, D., Alsharif, K., and Househ, M., Health information in the Arab world. Studies in health technology and informatics 190:297–299, 2013.

    PubMed  Google Scholar 

  28. Ababtain, A. F., Almulhim, D. A., and Househ, M. S., The state of mobile health in the developing world and the Middle East. Stud. Health Technol. Inform. 190:300–302, 2013.

    PubMed  Google Scholar 

  29. Alajmi, D., Almansour, S., and Househ, M., Recommendations for implementing telemedicine in the developing world. Stud. Health Technol. Inform. 190:118–120, 2013.

    PubMed  Google Scholar 

  30. Househ, M., Mobile social networking health (MSNet-health): Beyond the mHealth frontier. Stud. Health Technol. Inform. 180:808–812, 2011.

    Google Scholar 

  31. Househ, M., Borycki, E. M., Kushniruk, A. W., and Alofaysan, S. mHealth: A Passing Fad or Here to Stay. Telemedicine and E-Health Services, Policies and Applications: Advancements and Developments, 151, 2012.

  32. Alghamdi, E., Yunus, F., and Househ, M., The impact of mobile phone screen size on user comprehension of health information. Stud. Health Technol. Inform. 190:154, 2013.

    PubMed  Google Scholar 

  33. Househ, M., Kushniruk, A., Maclure, M., Carleton, B., and Cloutier-Fisher, D., A case study examining the impacts of conferencing technologies in distributed healthcare groups. Healthc. Q. 12(4):112–115, 2009.

    PubMed  Google Scholar 

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Correspondence to Mowafa Househ.

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This article is part of the Topical Collection on Mobile Systems.

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Al Ghamdi, E., Yunus, F., Da’ar, O. et al. The Effect of Screen Size on Mobile Phone User Comprehension of Health Information and Application Structure: An Experimental Approach. J Med Syst 40, 11 (2016). https://doi.org/10.1007/s10916-015-0381-5

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  • DOI: https://doi.org/10.1007/s10916-015-0381-5

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