Javascript must be enabled to continue!
Health facility-based malaria surveillance: The effects of age, area of residence and diagnostics on test positivity rates
View through CrossRef
Abstract
Background
The malaria test positivity rate (TPR) is increasingly used as an indicator of malaria morbidity because TPR is based on laboratory-confirmed cases and is simple to incorporate into existing surveillance systems. However, temporal trends in TPR may reflect changes in factors associated with malaria rather than true changes in malaria morbidity. This study examines the effects of age, area of residence and diagnostic test on TPR at two health facilities in regions of Uganda with differing malaria endemicity.
Methods
The analysis included data from diagnostic blood smears performed at health facilities in Walukuba and Aduku between January 2009 and December 2010. The associations between age and time and between age and TPR were evaluated independently to determine the potential for age to confound temporal trends in TPR. Subsequently, differences between observed TPR and TPR adjusted for age were compared to determine if confounding was present. A similar analysis was performed for area of residence. Temporal trends in observed TPR were compared to trends in TPR expected using rapid diagnostic tests, which were modelled based upon sensitivity and specificity in prior studies.
Results
Age was independently associated with both TPR and time at both sites. At Aduku, age-adjusted TPR increased relative to observed TPR due to the association between younger age and TPR and the gradual increase in age distribution. At Walukuba, there were no clear differences between observed and age-adjusted TPR. Area of residence was independently associated with both TPR and time at both sites, though there were no clear differences in temporal trends in area of residence-adjusted TPR and observed TPR at either site. Expected TPR with pLDH- and HRP-2-based rapid diagnostic tests (RDTs) was higher than observed TPR at all time points at both sites.
Conclusions
Adjusting for potential confounders such as age and area of residence can ensure that temporal trends in TPR due to confounding are not mistakenly ascribed to true changes in malaria morbidity. The potentially large effect of diagnostic test on TPR can be accounted for by calculating and adjusting for the sensitivity and specificity of the test used.
Springer Science and Business Media LLC
Title: Health facility-based malaria surveillance: The effects of age, area of residence and diagnostics on test positivity rates
Description:
Abstract
Background
The malaria test positivity rate (TPR) is increasingly used as an indicator of malaria morbidity because TPR is based on laboratory-confirmed cases and is simple to incorporate into existing surveillance systems.
However, temporal trends in TPR may reflect changes in factors associated with malaria rather than true changes in malaria morbidity.
This study examines the effects of age, area of residence and diagnostic test on TPR at two health facilities in regions of Uganda with differing malaria endemicity.
Methods
The analysis included data from diagnostic blood smears performed at health facilities in Walukuba and Aduku between January 2009 and December 2010.
The associations between age and time and between age and TPR were evaluated independently to determine the potential for age to confound temporal trends in TPR.
Subsequently, differences between observed TPR and TPR adjusted for age were compared to determine if confounding was present.
A similar analysis was performed for area of residence.
Temporal trends in observed TPR were compared to trends in TPR expected using rapid diagnostic tests, which were modelled based upon sensitivity and specificity in prior studies.
Results
Age was independently associated with both TPR and time at both sites.
At Aduku, age-adjusted TPR increased relative to observed TPR due to the association between younger age and TPR and the gradual increase in age distribution.
At Walukuba, there were no clear differences between observed and age-adjusted TPR.
Area of residence was independently associated with both TPR and time at both sites, though there were no clear differences in temporal trends in area of residence-adjusted TPR and observed TPR at either site.
Expected TPR with pLDH- and HRP-2-based rapid diagnostic tests (RDTs) was higher than observed TPR at all time points at both sites.
Conclusions
Adjusting for potential confounders such as age and area of residence can ensure that temporal trends in TPR due to confounding are not mistakenly ascribed to true changes in malaria morbidity.
The potentially large effect of diagnostic test on TPR can be accounted for by calculating and adjusting for the sensitivity and specificity of the test used.
Related Results
Impact And Acceptability of Seasonal Malaria Chemoprevention (SMC) And Pharmacovigilance Campaign Among Under-Five Children In Nigeria: An Explanatory Study
Impact And Acceptability of Seasonal Malaria Chemoprevention (SMC) And Pharmacovigilance Campaign Among Under-Five Children In Nigeria: An Explanatory Study
Globally, an estimated 249 million malaria cases occurred in 2022, leading to 608,000 malaria deaths in a single year. Malaria is one of the most severe public health problems, wit...
Shifts in Indonesia’s malaria landscape: an analysis of 2010-2019 routine surveillance data
Shifts in Indonesia’s malaria landscape: an analysis of 2010-2019 routine surveillance data
Abstract
Background
Indonesia faces challenges in achieving its goal of eliminating malaria by 2030, with cases stagnating betw...
Malariology (A Continuing Education Activity)
Malariology (A Continuing Education Activity)
Malariology is the scientific study of Malaria. Malaria is a life-threatening disease caused by parasites that are transmitted to people through the bites of infected female Anophe...
Malaria epidemiological characteristics and control in Guangzhou, China, 1950–2022
Malaria epidemiological characteristics and control in Guangzhou, China, 1950–2022
Abstract
Background
Malaria was once widespread in Guangzhou, China. However, a series of control measures have succeeded in eliminating local malar...
Musta mere ranniku eesti asunikud malaaria meelevallas
Musta mere ranniku eesti asunikud malaaria meelevallas
At the end of the 19th century, Estonian settlers encountered malaria in the Volga region and Siberia, but outbreaks with the most serious consequences hit Estonians in the Black S...
Malaria Surveillance system evaluation in Ankober woreda North Shewa, Amhara region, Ethiopia, 2022
Malaria Surveillance system evaluation in Ankober woreda North Shewa, Amhara region, Ethiopia, 2022
Abstract
Background: Malaria remains one of the most important causes of human morbidity and mortality with enormous medical, economic and emotional impact in the world. Th...
Malaria Incidence and Associated Risk Factors in and Around Anger Gute Town, Western Ethiopia
Malaria Incidence and Associated Risk Factors in and Around Anger Gute Town, Western Ethiopia
Abstract
Background: Malaria is one of the most important causes of morbidity and mortality in sub-Saharan Africa including Ethiopia. About 75% of the total area of the cou...

