A comprehensive evaluation of an artificial intelligence based digital pathology to monitor large-scale deworming programs against soil-transmitted helminths : a study protocol
- Author
- Peter Ward (UGent) , Sara Roose (UGent) , Mio Ayana Heda, Lindsay A. Broadfield, Peter Dahlberg, Narcis Kabatereine, Adama Kazienga (UGent) , Zeleke Mekonnen Kurmane (UGent) , Betty Nabatte, Lieven Stuyver, Fiona Vande Velde (UGent) , Sofie Van Hoecke (UGent) and Bruno Levecke (UGent)
- Organization
- Abstract
- Background Manual screening of a Kato-Katz (KK) thick stool smear remains the current standard to monitor the impact of large-scale deworming programs against soil-transmitted helminths (STHs). To improve this diagnostic standard, we recently designed an artificial intelligence based digital pathology system (AI-DP) for digital image capture and analysis of KK thick smears. Preliminary results of its diagnostic performance are encouraging, and a comprehensive evaluation of this technology as a cost-efficient end-to-end diagnostic to inform STH control programs against the target product profiles (TPP) of the World Health Organisation (WHO) is the next step for validation.Methods Here, we describe the study protocol for a comprehensive evaluation of the AI-DP based on its (i) diagnostic performance, (ii) repeatability/reproducibility, (iii) time-to-result, (iv) cost-efficiency to inform large-scale deworming programs, and (v) usability in both laboratory and field settings. For each of these five attributes, we designed separate experiments with sufficient power to verify the non-inferiority of the AI-DP (KK2.0) over the manual screening of the KK stool thick smears (KK1.0). These experiments will be conducted in two STH endemic countries with national deworming programs (Ethiopia and Uganda), focussing on school-age children only.Discussion This comprehensive study will provide the necessary data to make an evidence-based decision on whether the technology is indeed performant and a cost-efficient end-to-end diagnostic to inform large-scale deworming programs against STHs. Following the protocolized collection of high-quality data we will seek approval by WHO. Through the dissemination of our methodology and statistics, we hope to support additional developments in AI-DP technologies for other neglected tropical diseases in resource-limited settings.Trial registration The trial was registered on September 29, 2023 Clinicaltrials.gov (ID: NCT06055530).
- Keywords
- KATO-KATZ, INFECTIONS, DIAGNOSIS, CHILDREN, FLOTAC, PREVALENCE, INTENSITY, ACCURACY
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Please use this url to cite or link to this publication: http://hdl.handle.net/1854/LU-01JDHE8N2P1FA1D4FVXAM6VCKB
- MLA
- Ward, Peter, et al. “A Comprehensive Evaluation of an Artificial Intelligence Based Digital Pathology to Monitor Large-Scale Deworming Programs against Soil-Transmitted Helminths : A Study Protocol.” PLOS ONE, vol. 19, no. 10, 2024, doi:10.1371/journal.pone.0309816.
- APA
- Ward, P., Roose, S., Heda, M. A., Broadfield, L. A., Dahlberg, P., Kabatereine, N., … Levecke, B. (2024). A comprehensive evaluation of an artificial intelligence based digital pathology to monitor large-scale deworming programs against soil-transmitted helminths : a study protocol. PLOS ONE, 19(10). https://doi.org/10.1371/journal.pone.0309816
- Chicago author-date
- Ward, Peter, Sara Roose, Mio Ayana Heda, Lindsay A. Broadfield, Peter Dahlberg, Narcis Kabatereine, Adama Kazienga, et al. 2024. “A Comprehensive Evaluation of an Artificial Intelligence Based Digital Pathology to Monitor Large-Scale Deworming Programs against Soil-Transmitted Helminths : A Study Protocol.” PLOS ONE 19 (10). https://doi.org/10.1371/journal.pone.0309816.
- Chicago author-date (all authors)
- Ward, Peter, Sara Roose, Mio Ayana Heda, Lindsay A. Broadfield, Peter Dahlberg, Narcis Kabatereine, Adama Kazienga, Zeleke Mekonnen Kurmane, Betty Nabatte, Lieven Stuyver, Fiona Vande Velde, Sofie Van Hoecke, and Bruno Levecke. 2024. “A Comprehensive Evaluation of an Artificial Intelligence Based Digital Pathology to Monitor Large-Scale Deworming Programs against Soil-Transmitted Helminths : A Study Protocol.” PLOS ONE 19 (10). doi:10.1371/journal.pone.0309816.
- Vancouver
- 1.Ward P, Roose S, Heda MA, Broadfield LA, Dahlberg P, Kabatereine N, et al. A comprehensive evaluation of an artificial intelligence based digital pathology to monitor large-scale deworming programs against soil-transmitted helminths : a study protocol. PLOS ONE. 2024;19(10).
- IEEE
- [1]P. Ward et al., “A comprehensive evaluation of an artificial intelligence based digital pathology to monitor large-scale deworming programs against soil-transmitted helminths : a study protocol,” PLOS ONE, vol. 19, no. 10, 2024.
@article{01JDHE8N2P1FA1D4FVXAM6VCKB,
abstract = {{Background Manual screening of a Kato-Katz (KK) thick stool smear remains the current standard to monitor the impact of large-scale deworming programs against soil-transmitted helminths (STHs). To improve this diagnostic standard, we recently designed an artificial intelligence based digital pathology system (AI-DP) for digital image capture and analysis of KK thick smears. Preliminary results of its diagnostic performance are encouraging, and a comprehensive evaluation of this technology as a cost-efficient end-to-end diagnostic to inform STH control programs against the target product profiles (TPP) of the World Health Organisation (WHO) is the next step for validation.Methods Here, we describe the study protocol for a comprehensive evaluation of the AI-DP based on its (i) diagnostic performance, (ii) repeatability/reproducibility, (iii) time-to-result, (iv) cost-efficiency to inform large-scale deworming programs, and (v) usability in both laboratory and field settings. For each of these five attributes, we designed separate experiments with sufficient power to verify the non-inferiority of the AI-DP (KK2.0) over the manual screening of the KK stool thick smears (KK1.0). These experiments will be conducted in two STH endemic countries with national deworming programs (Ethiopia and Uganda), focussing on school-age children only.Discussion This comprehensive study will provide the necessary data to make an evidence-based decision on whether the technology is indeed performant and a cost-efficient end-to-end diagnostic to inform large-scale deworming programs against STHs. Following the protocolized collection of high-quality data we will seek approval by WHO. Through the dissemination of our methodology and statistics, we hope to support additional developments in AI-DP technologies for other neglected tropical diseases in resource-limited settings.Trial registration The trial was registered on September 29, 2023 Clinicaltrials.gov (ID: NCT06055530).}},
articleno = {{e0309816}},
author = {{Ward, Peter and Roose, Sara and Heda, Mio Ayana and Broadfield, Lindsay A. and Dahlberg, Peter and Kabatereine, Narcis and Kazienga, Adama and Mekonnen Kurmane, Zeleke and Nabatte, Betty and Stuyver, Lieven and Vande Velde, Fiona and Van Hoecke, Sofie and Levecke, Bruno}},
issn = {{1932-6203}},
journal = {{PLOS ONE}},
keywords = {{KATO-KATZ,INFECTIONS,DIAGNOSIS,CHILDREN,FLOTAC,PREVALENCE,INTENSITY,ACCURACY}},
language = {{eng}},
number = {{10}},
pages = {{22}},
title = {{A comprehensive evaluation of an artificial intelligence based digital pathology to monitor large-scale deworming programs against soil-transmitted helminths : a study protocol}},
url = {{http://doi.org/10.1371/journal.pone.0309816}},
volume = {{19}},
year = {{2024}},
}
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