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RFID analysis of the complexity of cellular pathology workflow—An opportunity for digital pathology

Digital pathology (DP) offers potential for time efficiency gains over an analog workflow however, to date, evidence supporting this claim is relatively lacking. Studies available concentrate on specific workflow points such as diagnostic reporting time, rather than overall efficiencies in slide log...

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Autores principales: Browning, Lisa, White, Kieron, Siiankoski, Darrin, Colling, Richard, Roskell, Derek, Fryer, Eve, Hemsworth, Helen, Roberts-Gant, Sharon, Roelofsen, Ruud, Rittscher, Jens, Verrill, Clare
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9377528/
https://www.ncbi.nlm.nih.gov/pubmed/35979219
http://dx.doi.org/10.3389/fmed.2022.933933
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author Browning, Lisa
White, Kieron
Siiankoski, Darrin
Colling, Richard
Roskell, Derek
Fryer, Eve
Hemsworth, Helen
Roberts-Gant, Sharon
Roelofsen, Ruud
Rittscher, Jens
Verrill, Clare
author_facet Browning, Lisa
White, Kieron
Siiankoski, Darrin
Colling, Richard
Roskell, Derek
Fryer, Eve
Hemsworth, Helen
Roberts-Gant, Sharon
Roelofsen, Ruud
Rittscher, Jens
Verrill, Clare
author_sort Browning, Lisa
collection PubMed
description Digital pathology (DP) offers potential for time efficiency gains over an analog workflow however, to date, evidence supporting this claim is relatively lacking. Studies available concentrate on specific workflow points such as diagnostic reporting time, rather than overall efficiencies in slide logistics that might be expected. This is in part a result of the complexity and variation in analog working, and the challenge therefore in capturing this. We have utilized RFID technology to conduct a novel study capturing the movement of diagnostic cases within the analog pathway in a large teaching hospital setting, thus providing benchmark data for potential efficiency gains with DP. This technology overcomes the need to manually record data items and has facilitated the capture of both the physical journey of a case and the time associated with relevant components of the analog pathway predicted to be redundant in the digital setting. RFID tracking of 1,173 surgical pathology cases and over 30 staff in an analog cellular pathology workflow illustrates the complexity of the physical movement of slides within the department, which impacts on case traceability within the system. Detailed analysis of over 400 case journeys highlights redundant periods created by batching of slides at workflow points, including potentially 2–3 h for a case to become available for reporting after release from the lab, and variable lag-times prior to collection for reporting, and provides an illustration of patterns of lab and pathologist working within the analog setting. This study supports the challenge in evidencing efficiency gains to be anticipated with DP in the context of the variation and complexity of the analog pathway, but also evidences the efficiency gains that may be expected through a greater understanding of patterns of working and movement of cases. Such data may benefit other departments building a business case for DP.
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spelling pubmed-93775282022-08-16 RFID analysis of the complexity of cellular pathology workflow—An opportunity for digital pathology Browning, Lisa White, Kieron Siiankoski, Darrin Colling, Richard Roskell, Derek Fryer, Eve Hemsworth, Helen Roberts-Gant, Sharon Roelofsen, Ruud Rittscher, Jens Verrill, Clare Front Med (Lausanne) Medicine Digital pathology (DP) offers potential for time efficiency gains over an analog workflow however, to date, evidence supporting this claim is relatively lacking. Studies available concentrate on specific workflow points such as diagnostic reporting time, rather than overall efficiencies in slide logistics that might be expected. This is in part a result of the complexity and variation in analog working, and the challenge therefore in capturing this. We have utilized RFID technology to conduct a novel study capturing the movement of diagnostic cases within the analog pathway in a large teaching hospital setting, thus providing benchmark data for potential efficiency gains with DP. This technology overcomes the need to manually record data items and has facilitated the capture of both the physical journey of a case and the time associated with relevant components of the analog pathway predicted to be redundant in the digital setting. RFID tracking of 1,173 surgical pathology cases and over 30 staff in an analog cellular pathology workflow illustrates the complexity of the physical movement of slides within the department, which impacts on case traceability within the system. Detailed analysis of over 400 case journeys highlights redundant periods created by batching of slides at workflow points, including potentially 2–3 h for a case to become available for reporting after release from the lab, and variable lag-times prior to collection for reporting, and provides an illustration of patterns of lab and pathologist working within the analog setting. This study supports the challenge in evidencing efficiency gains to be anticipated with DP in the context of the variation and complexity of the analog pathway, but also evidences the efficiency gains that may be expected through a greater understanding of patterns of working and movement of cases. Such data may benefit other departments building a business case for DP. Frontiers Media S.A. 2022-08-01 /pmc/articles/PMC9377528/ /pubmed/35979219 http://dx.doi.org/10.3389/fmed.2022.933933 Text en Copyright © 2022 Browning, White, Siiankoski, Colling, Roskell, Fryer, Hemsworth, Roberts-Gant, Roelofsen, Rittscher and Verrill. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Medicine
Browning, Lisa
White, Kieron
Siiankoski, Darrin
Colling, Richard
Roskell, Derek
Fryer, Eve
Hemsworth, Helen
Roberts-Gant, Sharon
Roelofsen, Ruud
Rittscher, Jens
Verrill, Clare
RFID analysis of the complexity of cellular pathology workflow—An opportunity for digital pathology
title RFID analysis of the complexity of cellular pathology workflow—An opportunity for digital pathology
title_full RFID analysis of the complexity of cellular pathology workflow—An opportunity for digital pathology
title_fullStr RFID analysis of the complexity of cellular pathology workflow—An opportunity for digital pathology
title_full_unstemmed RFID analysis of the complexity of cellular pathology workflow—An opportunity for digital pathology
title_short RFID analysis of the complexity of cellular pathology workflow—An opportunity for digital pathology
title_sort rfid analysis of the complexity of cellular pathology workflow—an opportunity for digital pathology
topic Medicine
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9377528/
https://www.ncbi.nlm.nih.gov/pubmed/35979219
http://dx.doi.org/10.3389/fmed.2022.933933
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