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Competency for Japanese novice medical laboratory scientists: a Delphi method

Maekawa, Kiriko Kotera, Sayaka Ohsaki, Hiroyuki 神戸大学

2022.12.16

概要

Background Competency is used to channel abilities into successful processes and is employed in the medical field. Globally, several laboratory competencies exist, but the job descriptions of Japanese medical laboratory scientists differ from those of other countries and little evidence-based information on novice medical laboratory scientist competency is available in Japan. This study clarified the competencies of novice medical laboratory scientists based on various expert opinions in Japan. Methods The Delphi method was used to achieve an expert consensus on novice medical laboratory scientist competencies. We asked the participants to evaluate the importance of each item using the Likert scale and set 70% as the final consensus rate. Results We obtained 106/400 (26.5%) and 95/106 (89.6%) responses from participants in rounds 1 and 2, respectively. Their professional experience mean ± standard deviation was 32.4 ± 6.0 years (range: 13–41). The average of each category consensus rate was > 99.1%. Ninety-five expert opinions converged and agreed that the competency comprised 8 categories and 54 items. Conclusions The survey results revealed that novice medical laboratory scientists were expected to have relatively higher main laboratory skill competencies in the 'Preparation and analysis' category than in other categories. Nevertheless, competencies in other categories required basic skills. In addition, our competencies contained unique competencies compared with others due to their divergent roles and their environment. Further research is warranted to explore assessment tools by developing a competency scale, thereby helping clarify the differences between ability and correlated factors. The unique competencies scale can help assess the efficacy of educational programmes for Japanese medical laboratory scientists.

参考文献

1. Guerrero CR. The changing role of the medical technologist. 2021. https://www.academia.edu/50834669/The_Changing_Role_of_the_ Medical_Technologist. Accessed 17 May 2022.

2. The Ministry of Health, Labour and Welfare, Japan. Japanese Association of Medical Technologists and Japanese Association of Medical Technologists Education joint request to review Medical Technologists Education (in Japanese). 2019. https://www.mhlw.go.jp/stf/shingi/other-isei_ 533684_00003.html. Accessed 17 May 2022.

3. The Ministry of Health, Labour and Welfare, Japan. Committee for the improvement of curricula of training schools for medical technologists (in Japanese). 2020. https://www.mhlw.go.jp/content/10803000/000620490. pdf. Accessed 17 May 2022.

4. Kazunori K. Human resource development for medical technologists (in Japanese). Kameraden. 2017;64:26–8.

5. The United States government ofce of personnel management. Assessment & selection; n.d. https://www.opm.gov/policy-data-oversight/asses sment-and-selection/competencies/. Accessed 17 May 2022.

6. Gangani N, McLean GN, Braden RA. A competency-based human resource development strategy. Perform Improv Q. 2006;19:127–39. https://doi.org/10.1111/j.1937-8327.2006.tb00361.x.

7. The International Federation of Biomedical Laboratory Science (IFBLS). ‘IFBLS’ guidelines regarding Core Competence and Core Curriculum. 2012. http://www.ifbls.org/images/IFBLS_Documents/IFBLS_Guidelines_ Core_Competence_and_Core_Curriculum_2016.pdf. Accessed 17 May 2022.

8. The Centers for Disease Control and Prevention (CDC). Competency guidelines for public health laboratory professionals. 2015. https://www. cdc.gov/mmwr/pdf/other/su6401.pdf. Accessed 17 May 2022.

9. Pathology Associations Council. Competency-based standards for medical scientists. 2009. https://www.aims.org.au/documents/item/259. Accessed 17 May 2022.

10. The ASCP Board of Certifcation. U.S. procedures for examination & certifcation. 2021. https://www.ascp.org/content/docs/default-source/ boc-pdfs/exam-content-outlines/ascp-boc-us-procedures-book-web.pdf. Accessed 17 May 2022.

11. CSLMS. CSMLS competency profle general medical laboratory technologist. 2015. https://go.csmls.org/cert/MLTG_CP.pdf. Accessed 17 May 2022.

12. Valdez AP. Competencies of career- entry medical technology graduates of Lyceum of Batangas: basis for enhancement of the internship training program. JPAIR. 2010;4:16–33. https://doi.org/10.7719/jpair.v4i1.98.

13. The International Organisation for Standardisation (ISO). ISO 15189. Medical laboratories- Requirements for quality and competence. 2012.

14. Guzel O, Guner EI. ISO 15189. Accreditation: requirements for quality and competence of medical laboratories, experience of a laboratory. Clin Biochem. 2009;42:274–8. https://doi.org/10.1016/j.clinbiochem.2008.09. 011.

15. Gregory JS, Francis TH. The Delphi method for graduate research. J Inf Technol Educ. 2007;6:1–20.

16. Hasson F, Keeney S. Enhancing rigour in the Delphi technique research. Technol Forecasting Soc Change. 2011;78:1695–704. https://doi.org/10. 1016/j.techfore.2011.04.005.

17. Polit DF, Beck CT. Nursing research: generating and assessing evidence for nursing practice Ninth edition. Philadelphia: Lippincott Williams & Wilkins; 2012. p. 267–8.

18. Bowles N. The Delphi technique. Nurs Stand. 1999;13:32–6. https://doi. org/10.7748/ns1999.07.13.45.32.c2650.

19. Hsu CC, Sandford BA. The Delphi technique: making sense of consensus. Pract Assess Res Eval. 2007;12:1–10. https://doi.org/10.7275/pdz9-th90.

20. de Villiers MR, de Villiers PJ, Kent AP. The Delphi technique in health sciences education research. Med Teach. 2005;27:639–43. https://doi.org/10. 1080/13611260500069947.

21. Jones J, Hunter D. Consensus methods for medical and health services research. BMJ. 1995;311:376–80. https://doi.org/10.1136/bmj.311.7001. 376.

22. Yousuf MI. Using experts’ opinions through Delphi technique. Pract Assess Res Eval. 2004;12:1–8.

23. Fink A, Kosecof J, Chassin M, Brook RH. Consensus methods: characteristics and guidelines for use. Am J Public Health. 1984;74:979–83. https:// doi.org/10.2105/ajph.74.9.979.

24. Shah K, Naidoo K, Loughman J. Development of socially responsive competency frameworks for ophthalmic technicians and optometrists in Mozambique. Clin Exp Optom. 2016;99:173–82. https://doi.org/10.1111/ cxo.12282.

25. Heidemann LA, Fitzgerald JT, Hughes DT, Hartley S. Inpatient cross-cover consensus recommendations for medical and surgical residents: a Delphi analysis. J Grad Med Educ. 2019;11:277–83. https://doi.org/10.4300/ JGME-D-18-00707.1.

26. Schill JM. The professional socialization of early career medical laboratory scientists. Clin Lab Sci. 2017;30:15–22. https://doi.org/10.29074/ascls.30.1. 15.

27. Patricia B. From novice to expert, excellence and power in clinical nursing practice. Addison-Wesley; 1984. p. 20–38.

28. Chen C, Lee SY, Stevenson HW. Response style and cross-cultural comparisons of rating scales among East Asian and North American students. Psychol Sci. 1995;6:170–5.https://doi.org/10.1111/j.1467-9280.1995.tb003 27.x.

29. The Ministry of Health, Labour and Welfare, Japan. List of local health and welfare (branch) ofces (in Japanese); n.d. https://www.mhlw.go.jp/kouse iroudoushou/shozaiannai/chihoukouseikyoku.html. Accessed 17 May 2022.

30. Itabashi T, Fukazawa K, Kakishima H, Yoshida I, Maruta H, Yokochi T. Problems in business expansion in a ward of medical technicians (in Japanese). Jpn J Technol. 2017;66:332–8. https://doi.org/10.14932/jamt. 17-15.

31. Sossa JW, Halal W, Zarta RH. Delphi method: analysis of rounds, stake - holder and statistical indicators. Foresight. 2019;21:525–44. https://doi. org/10.1108/FS-11-2018-0095 .

32. Kiriko M. Certifcates and systems of medical science in Australia (in Japanese). Jpn J Technol. 2019;67:347–52. https://doi.org/10.14932/jamt. 17-118 .

33. Shigeyuki H. The role of the medical technologist in cancer care: with particular reference to ultrasonography (in Japanese). Iryo. 2008;62:554–7. https://doi.org/10.11261/iryo1946.62.554 .

34. Fumio A. Trial of clinical laboratory scientists in the training of medical activities in the event of a signifcant earthquake in 2009 (in Japanese). Jpn J Technol. 2018;46:157–60.

35. Polit DF, Beck CT. Nursing research: generating and assessing evidence for nursing practice eleventh edition. Philadelphia: Lippincott Williams & Wilkins; 2021. p. 322–31.

36. Hsu CC, Brian A. Sandford, Minimizing non-response in the delphi pro - cess: how to respond to non-response. Pract Assess Res Eval. 2007;12:1–6. https://doi.org/10.7275/by88-4025 .

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