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Modelling the effect of infection prevention and control measures on rate of Mycobacterium tuberculosis transmission to clinic attendees in primary health clinics in South Africa

Datos Bibliográficos

ID21879723
AutoresNicky McCreesh (0000-0003-1409-8531, London School of Hygiene & Tropical Medicine, autor de correspondencia), Aaron S Karat (0000-0001-9643-664X, Queen Margaret University), Kathy Baisley (0000-0003-1849-6625, London School of Hygiene & Tropical Medicine), Karin Diaconu (0000-0002-5810-9725, Queen Margaret University), Fiammetta Bozzani (0000-0002-9518-6885, London School of Hygiene & Tropical Medicine), Indira Govender (0000-0003-0598-7388, London School of Hygiene & Tropical Medicine), Peter G Beckwith (0000-0003-3206-5696, University of Cape Town), Peter Beckwith (University of Cape Town), Tom Yates (0000-0002-6081-1767, Imperial College London), Arminder Deol (0000-0002-7154-5505, London School of Hygiene & Tropical Medicine), Arminder K Deol (TB Centre, London School of Hygiene and Tropical Medicine, London, UK), Rein Mgj Houben (0000-0003-4132-7467, London School of Hygiene & Tropical Medicine), Karina Kielmann (0000-0001-5519-1658, Queen Margaret University), Richard G White (0000-0003-4410-6635, London School of Hygiene & Tropical Medicine), Anne D Grant (0000-0002-2437-5195, University of the Witwatersrand)
Año2021
Volumen6
Número10
Páginase007124
Fecha de publicación2021-10-01
Peer ReviewedSí
Open AccessSí
TipoARTICLE
RevistaBMJ Global Health (JOURNAL)
Identificadores de la revistaISSN: 2059-7908 • E-ISSN: 2059-7908
EditorialBMJ (PUBLISHER • GB)
DOI10.1136/bmjgh-2021-007124
PMID34697087
OpenAlexW3192001741
IdiomaEN
Citas recibidas5
Referencias citadas16

Background Elevated rates of tuberculosis in healthcare workers demonstrate the high rate of Mycobacterium tuberculosis (Mtb ) transmission in health facilities in high-burden settings. In the context of a project taking a whole systems approach to tuberculosis infection prevention and control (IPC), we aimed to evaluate the potential impact of conventional and novel IPC measures on Mtb transmission to patients and other clinic attendees. Methods An individual-based model of patient movements through clinics, ventilation in waiting areas, and Mtb transmission was developed, and parameterised using empirical data from eight clinics in two provinces in South Africa. Seven interventions—codeveloped with health professionals and policy-makers—were simulated: (1) queue management systems with outdoor waiting areas, (2) ultraviolet germicidal irradiation (UVGI) systems, (3) appointment systems, (4) opening windows and doors, (5) surgical mask wearing by clinic attendees, (6) simple clinic retrofits and (7) increased coverage of long antiretroviral therapy prescriptions and community medicine collection points through the Central Chronic Medicine Dispensing and Distribution (CCMDD) service. Results In the model, (1) outdoor waiting areas reduced the transmission to clinic attendees by 83% (IQR 76%–88%), (2) UVGI by 77% (IQR 64%–85%), (3) appointment systems by 62% (IQR 45%–75%), (4) opening windows and doors by 55% (IQR 25%–72%), (5) masks by 47% (IQR 42%–50%), (6) clinic retrofits by 45% (IQR 16%–64%) and (7) increasing the coverage of CCMDD by 22% (IQR 12%–32%). Conclusions The majority of the interventions achieved median reductions in the rate of transmission to clinic attendees of at least 45%, meaning that a range of highly effective intervention options are available, that can be tailored to the local context. Measures that are not traditionally considered to be IPC interventions, such as appointment systems, may be as effective as more traditional IPC measures, such as mask wearing

Environmental health · Family medicine · Infection control · Medical prescription · Psychological intervention · Tuberculosis · Antibiotic Use and Resistance · Healthcare Operations and Scheduling Optimization · Medicine · Nursing · Tuberculosis Research and Epidemiology · Emergency Medicine · Pediatrics · Surgery

  • Cost-effectiveness of tuberculosis infection prevention and control interventions in South African clinics

    Open Access•Fiammetta Bozzani, Nicky McCreesh et al.•BMJ Global Health•2023

  • Estimating the contribution of transmission in primary healthcare clinics to community-wide TB disease incidence, and the impact of infection prevention and control interventions, in KwaZulu-Natal, South Africa

    Open Access•Nicky McCreesh, Aaron S Karat et al.•BMJ Global Health•2022

  • Estimating waiting times, patient flow, and waiting room occupancy density as part of tuberculosis infection prevention and control research in South African primary health care clinics

    Open Access•Aaron S Karat, Nicky McCreesh et al.•PLOS Global Public Health•2022

  • Direct estimates of absolute ventilation and estimated Mycobacterium tuberculosis transmission risk in clinics in South Africa

    Open Access•Peter G Beckwith, Aaron S Karat et al.•PLOS Global Public Health•2022

  • Qualitative system dynamics modelling to support the design and implementation of tuberculosis infection prevention and control measures in South African primary healthcare facilities

    Open Access•Karin Diaconu, Aaron S Karat et al.•Health Policy and Planning•2024

  • Dynamic modeling approaches to characterize the functioning of health systems

    Open Access•Alenda Y Chang, Osondu Ogbuoji et al.•Social Science & Medicine•2017

Obras citantes distintas5
Citas por año1,25
Intervalo de citas2022 - 2024 (3)
Velocidad de citaciónrecent
Altamente citadoNo
Tipos de citaNeutras: 5
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