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1434. Analysis of hand hygiene techniques using the artificial intelligence (AI)-based analysis tool SCORE!

BACKGROUND: Hand hygiene is the most important technique for controlling nosocomial infections. While quantitative evaluations based on the amount of hand sanitizer used and qualitative evaluations such as compliance rates based on direct observation are commonly used to evaluate the effectiveness o...

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Autores principales: Kakeya, Hiroshi, Okada, Yasuyo, Fujita, Akiko, Nakaie, Kiyotaka, Imoto, Waki, Shibata, Wataru, Yamada, Koichi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10679172/
http://dx.doi.org/10.1093/ofid/ofad500.1271
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author Kakeya, Hiroshi
Okada, Yasuyo
Fujita, Akiko
Nakaie, Kiyotaka
Imoto, Waki
Shibata, Wataru
Yamada, Koichi
author_facet Kakeya, Hiroshi
Okada, Yasuyo
Fujita, Akiko
Nakaie, Kiyotaka
Imoto, Waki
Shibata, Wataru
Yamada, Koichi
author_sort Kakeya, Hiroshi
collection PubMed
description BACKGROUND: Hand hygiene is the most important technique for controlling nosocomial infections. While quantitative evaluations based on the amount of hand sanitizer used and qualitative evaluations such as compliance rates based on direct observation are commonly used to evaluate the effectiveness of this education, more objective evaluation indicators are needed. Here, we evaluated the effectiveness of hand hygiene education by scoring hand hygiene techniques using an artificial intelligence (AI)-based analysis tool. METHODS: Hand disinfection (proper spreading of fluorescent paint) and hand washing (proper rinsing of fluorescent paint) techniques were scored before and after a hand hygiene education video training using the AI-based analysis tool SCORE!Ⓡ(Moraine Corporation, Tokyo). Images were taken with an iPhone before and after hand disinfection and washing. The image data were divided into 72 parts, including the wrists and the backs of the right and left palms. Hand hygiene techniques for each part were evaluated using AI. The effectiveness of the training was also evaluated by job categories. RESULTS: The pre- and post-education scores of 935 participants (128 physicians, 484 nurses, 56 nursing assistants, 93 other medical staff, and 174 administrative staff) increased for hand disinfection (P < 0.01) and decreased for hand washing (P < 0.01). The scores for hand disinfection increased for all occupations, while those for hand washing decreased for all occupations except nursing assistants, indicating that hand disinfection was highly effective in education but hand washing was less effective. In a comparison by job categories, there was a large difference in scores between the job categories in terms of the highest and lowest scores for both hand disinfection and hand washing. In the site-specific evaluation, the back of the hand scored higher in hand disinfection, with no significant difference between left and right hands. On the other hand, the palm and left hand scored higher in hand washing, differing from the hand disinfection results. CONCLUSION: Evaluating hand disinfection scores using “SCORE!” allows for the assessment of even minor changes that may be difficult to detect visually and provides information on individual techniques that may require improvement. DISCLOSURES: Hiroshi Kakeya, MD, PhD, Asahi Kasei Pharma Corporation: Honoraria|Merck Sharp & Dohme: Honoraria|Sumitomo Pharma Co., Ltd.: Honoraria
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spelling pubmed-106791722023-11-27 1434. Analysis of hand hygiene techniques using the artificial intelligence (AI)-based analysis tool SCORE! Kakeya, Hiroshi Okada, Yasuyo Fujita, Akiko Nakaie, Kiyotaka Imoto, Waki Shibata, Wataru Yamada, Koichi Open Forum Infect Dis Abstract BACKGROUND: Hand hygiene is the most important technique for controlling nosocomial infections. While quantitative evaluations based on the amount of hand sanitizer used and qualitative evaluations such as compliance rates based on direct observation are commonly used to evaluate the effectiveness of this education, more objective evaluation indicators are needed. Here, we evaluated the effectiveness of hand hygiene education by scoring hand hygiene techniques using an artificial intelligence (AI)-based analysis tool. METHODS: Hand disinfection (proper spreading of fluorescent paint) and hand washing (proper rinsing of fluorescent paint) techniques were scored before and after a hand hygiene education video training using the AI-based analysis tool SCORE!Ⓡ(Moraine Corporation, Tokyo). Images were taken with an iPhone before and after hand disinfection and washing. The image data were divided into 72 parts, including the wrists and the backs of the right and left palms. Hand hygiene techniques for each part were evaluated using AI. The effectiveness of the training was also evaluated by job categories. RESULTS: The pre- and post-education scores of 935 participants (128 physicians, 484 nurses, 56 nursing assistants, 93 other medical staff, and 174 administrative staff) increased for hand disinfection (P < 0.01) and decreased for hand washing (P < 0.01). The scores for hand disinfection increased for all occupations, while those for hand washing decreased for all occupations except nursing assistants, indicating that hand disinfection was highly effective in education but hand washing was less effective. In a comparison by job categories, there was a large difference in scores between the job categories in terms of the highest and lowest scores for both hand disinfection and hand washing. In the site-specific evaluation, the back of the hand scored higher in hand disinfection, with no significant difference between left and right hands. On the other hand, the palm and left hand scored higher in hand washing, differing from the hand disinfection results. CONCLUSION: Evaluating hand disinfection scores using “SCORE!” allows for the assessment of even minor changes that may be difficult to detect visually and provides information on individual techniques that may require improvement. DISCLOSURES: Hiroshi Kakeya, MD, PhD, Asahi Kasei Pharma Corporation: Honoraria|Merck Sharp & Dohme: Honoraria|Sumitomo Pharma Co., Ltd.: Honoraria Oxford University Press 2023-11-27 /pmc/articles/PMC10679172/ http://dx.doi.org/10.1093/ofid/ofad500.1271 Text en © The Author(s) 2023. Published by Oxford University Press on behalf of Infectious Diseases Society of America. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Abstract
Kakeya, Hiroshi
Okada, Yasuyo
Fujita, Akiko
Nakaie, Kiyotaka
Imoto, Waki
Shibata, Wataru
Yamada, Koichi
1434. Analysis of hand hygiene techniques using the artificial intelligence (AI)-based analysis tool SCORE!
title 1434. Analysis of hand hygiene techniques using the artificial intelligence (AI)-based analysis tool SCORE!
title_full 1434. Analysis of hand hygiene techniques using the artificial intelligence (AI)-based analysis tool SCORE!
title_fullStr 1434. Analysis of hand hygiene techniques using the artificial intelligence (AI)-based analysis tool SCORE!
title_full_unstemmed 1434. Analysis of hand hygiene techniques using the artificial intelligence (AI)-based analysis tool SCORE!
title_short 1434. Analysis of hand hygiene techniques using the artificial intelligence (AI)-based analysis tool SCORE!
title_sort 1434. analysis of hand hygiene techniques using the artificial intelligence (ai)-based analysis tool score!
topic Abstract
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10679172/
http://dx.doi.org/10.1093/ofid/ofad500.1271
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