grant

Using geospatial science to maximize the opportunity to access ART in Africa

Organization UNIVERSITY OF CALIFORNIA LOS ANGELESLocation LOS ANGELES, UNITED STATESPosted 17 Aug 2022Deadline 31 Jul 2026
NIHUS FederalResearch GrantFY2024AIDSAIDS VirusAcquired Immune DeficiencyAcquired Immune Deficiency SyndromeAcquired Immune Deficiency Syndrome VirusAcquired Immunodeficiency SyndromeAcquired Immunodeficiency Syndrome VirusAdoptedAfricaAfrica South of the SaharaAfricanAreaCOVID-19CV-19CaringCollaborationsCoronavirus Infectious Disease 2019CountryDataData SetDecrease disparityDisparitiesDisparityEconomicsEpidemicEquityFaceGeographic DistributionGeographyHIVHealthHealth Care SystemsHealth FacilitiesHealth ResourcesHealth care facilityHealthcareHealthcare FacilityHealthcare SystemsHuman Immunodeficiency VirusesIncidenceIndividualInequalityInterruptionInterventionIntervention StrategiesLAV-HTLV-IIILocationLower disparityLymphadenopathy-Associated VirusMalawiMath ModelsMethodsModelingNyasalandPatternPersonsPopulationPrevalenceProcessSamplingScienceSeriesSpatial DistributionSub-Saharan AfricaSubsaharan AfricaSurvey InstrumentSurveysTravelVirus-HIVaccess disparitiesaccessibility disparitiesantiretroviral therapyantiretroviral treatmentcare facilitiescoronavirus disease 2019coronavirus disease-19coronavirus infectious disease-19designdesigningdisparities in accessdisparity reductioneconomicfacesfacialgeographic disadvantagegeographic disparitygeographic inequalitygeographic inequitygeographic location disparityhealth careinequality in accessinequity in accessinequity in accessibilityinterventional strategylow income countrymathematic modelmathematical modelmathematical modelingmitigate disparitymodel designnovelpopulation basedprogramsreduce disparityreduction in disparitytheoriestool
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Full Description

PROJECT SUMMARY / ABSTRACT
This proposal is to develop and implement methods for quantifying geographic disparities, within Sub-Saharan

African countries, in the opportunity for people living with HIV (PLHIV) to access antiretroviral therapy (ART);

and to identify optimal strategies for reducing such disparities. The methods that we will develop constitute a

novel analytic framework, which we will use to complete our three Specific Aims: (1) First, we will develop a

spatial interaction model which can be applied in any SSA country to estimate the geographic opportunity to

access ART and to identify disparities in this opportunity. We will apply the model to Malawi, which has one of

the most severe HIV epidemics in the world, and where our previous studies have shown that PLHIV face

substantial geographic disparities in accessing HIV care. To do so we will analyze a series of datasets, including

the nationwide Malawi Population-based HIV Impact Assessments [MPHIAs]; the MPHIAs were collected in

2015/16 and 2020/21, spanning a period when ART coverage increased substantially. (2) Second, we will

quantify the geographic relationship between the opportunity to access ART and its actual utilization, and

determine the degree to which this relationship changed between the two timepoints. (3) Third, we will use our

modeling framework in further analyses of the MPHIA 2020/21 dataset with the objective of identifying optimal

strategies to reduce geographic disparities in the opportunity to access ART; both through the location of new

healthcare facilities (HCFs) and through the allocation of additional supplies of ART. We will conduct these

studies through a U.S.-Malawi collaborative team.

Grant Number: 5R01AI167713-03
NIH Institute/Center: NIH

Principal Investigator: Sally Blower

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