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Monitor to innovate with feedback loops: process evaluation protocol for an anemia prevention intervention

Background: Digital process monitoring and evaluation tools designed to capture near-to-real-time intervention data paired with feedback loops have the potential to innovate intervention delivery. Objective: To describe how a multilevel social norms field trial (RANI) is using feedback loops to enha...

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Autores principales: Pant, Ichhya, Patro, Lipika, Sedlander, Erica, Chandrana, Shikha, Rimal, Rajiv
Formato: Online Artículo Texto
Lenguaje:English
Publicado: F1000 Research Limited 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9525569/
https://www.ncbi.nlm.nih.gov/pubmed/36226259
http://dx.doi.org/10.12688/gatesopenres.13417.2
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author Pant, Ichhya
Patro, Lipika
Sedlander, Erica
Chandrana, Shikha
Rimal, Rajiv
author_facet Pant, Ichhya
Patro, Lipika
Sedlander, Erica
Chandrana, Shikha
Rimal, Rajiv
author_sort Pant, Ichhya
collection PubMed
description Background: Digital process monitoring and evaluation tools designed to capture near-to-real-time intervention data paired with feedback loops have the potential to innovate intervention delivery. Objective: To describe how a multilevel social norms field trial (RANI) is using feedback loops to enhance intervention delivery. Methods: We use a mixed-methods process evaluation design to monitor the Reduction of Anemia through Normative Innovations (RANI) project; a three-year randomized control trial which aims to lower rates of anemia among women in Odisha, India. Surveys and structured observation monitor fidelity to implementation and acceptability of implementation activities among study participants. Quantitative data evaluates implementation dose, coverage, exposure, and reach of intervention activities, and qualitative data will delve more deeply into reasons for high or low functioning. Iron folic acid supplement supply and demand are also monitored for stock-outs. Data collected from 130 intervention villages is processed, visualized, and triangulated in near to real-time via Real-time Monitoring for Knowledge Generation (RPM4K), a locally developed software application. Data visualization products facilitate the examination of monitoring data to mitigate bottlenecks and identify and implement tweaks to our intervention delivery strategy on an ongoing basis. Discussion: Feedback loops facilitate timely course corrections. Feedback loops can also engender a shared understanding of ground realities for a geographically dispersed and culturally diverse team. Leveraging feedback loops, we identify opportunities to provide on-going supportive supervision for our community facilitators promoting joint problem-solving, and communication. Monthly media and hemoglobin level demonstration strategies are informed by participant engagement and acceptability. Stock-outs of iron folic acid tablets activate contingency plans to mobilize local stakeholders and advocate for timely resolutions. Unintended effects are monitored based on ongoing feedback from community facilitators. Conclusions: Documenting our processes can inform the future implementation or scale up of similar projects embracing feedback loops to iterate and innovate their intervention delivery.
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spelling pubmed-95255692022-10-11 Monitor to innovate with feedback loops: process evaluation protocol for an anemia prevention intervention Pant, Ichhya Patro, Lipika Sedlander, Erica Chandrana, Shikha Rimal, Rajiv Gates Open Res Study Protocol Background: Digital process monitoring and evaluation tools designed to capture near-to-real-time intervention data paired with feedback loops have the potential to innovate intervention delivery. Objective: To describe how a multilevel social norms field trial (RANI) is using feedback loops to enhance intervention delivery. Methods: We use a mixed-methods process evaluation design to monitor the Reduction of Anemia through Normative Innovations (RANI) project; a three-year randomized control trial which aims to lower rates of anemia among women in Odisha, India. Surveys and structured observation monitor fidelity to implementation and acceptability of implementation activities among study participants. Quantitative data evaluates implementation dose, coverage, exposure, and reach of intervention activities, and qualitative data will delve more deeply into reasons for high or low functioning. Iron folic acid supplement supply and demand are also monitored for stock-outs. Data collected from 130 intervention villages is processed, visualized, and triangulated in near to real-time via Real-time Monitoring for Knowledge Generation (RPM4K), a locally developed software application. Data visualization products facilitate the examination of monitoring data to mitigate bottlenecks and identify and implement tweaks to our intervention delivery strategy on an ongoing basis. Discussion: Feedback loops facilitate timely course corrections. Feedback loops can also engender a shared understanding of ground realities for a geographically dispersed and culturally diverse team. Leveraging feedback loops, we identify opportunities to provide on-going supportive supervision for our community facilitators promoting joint problem-solving, and communication. Monthly media and hemoglobin level demonstration strategies are informed by participant engagement and acceptability. Stock-outs of iron folic acid tablets activate contingency plans to mobilize local stakeholders and advocate for timely resolutions. Unintended effects are monitored based on ongoing feedback from community facilitators. Conclusions: Documenting our processes can inform the future implementation or scale up of similar projects embracing feedback loops to iterate and innovate their intervention delivery. F1000 Research Limited 2022-09-27 /pmc/articles/PMC9525569/ /pubmed/36226259 http://dx.doi.org/10.12688/gatesopenres.13417.2 Text en Copyright: © 2022 Pant I et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Study Protocol
Pant, Ichhya
Patro, Lipika
Sedlander, Erica
Chandrana, Shikha
Rimal, Rajiv
Monitor to innovate with feedback loops: process evaluation protocol for an anemia prevention intervention
title Monitor to innovate with feedback loops: process evaluation protocol for an anemia prevention intervention
title_full Monitor to innovate with feedback loops: process evaluation protocol for an anemia prevention intervention
title_fullStr Monitor to innovate with feedback loops: process evaluation protocol for an anemia prevention intervention
title_full_unstemmed Monitor to innovate with feedback loops: process evaluation protocol for an anemia prevention intervention
title_short Monitor to innovate with feedback loops: process evaluation protocol for an anemia prevention intervention
title_sort monitor to innovate with feedback loops: process evaluation protocol for an anemia prevention intervention
topic Study Protocol
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9525569/
https://www.ncbi.nlm.nih.gov/pubmed/36226259
http://dx.doi.org/10.12688/gatesopenres.13417.2
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