Estimating hospital catchments from in-patient admission records: a spatial statistical approach applied to malaria

Victor A Alegana1,2,3, Cynthia Khazenzi4, Samuel O Akech4

  • 1Kenya Medical Research Institute - Wellcome Trust Research Programme, P.O. Box, 43640-00100, Nairobi, Kenya. valegana@kemri-wellcome.org.

Scientific Reports
|January 30, 2020
PubMed

Insights

Hospital catchment areas for severe malaria in sub-Saharan Africa were mapped using admission data. This spatial analysis helps understand disease burden and plan emergency care for severe malarial anaemia (SMA) and cerebral malaria (CM).

Area of Science:

  • Epidemiology
  • Spatial Analysis
  • Public Health

Background:

  • Hospital admission records are underutilized in sub-Saharan Africa for defining hospital service areas.
  • Understanding spatial accessibility is crucial for managing severe pediatric diseases like malaria.

Purpose of the Study:

  • To investigate spatial hospital accessibility for severe malarial anaemia (SMA) and cerebral malaria (CM) in children.
  • To delineate hospital catchments using novel mathematical-statistical methods.

Main Methods:

  • Utilized prospective clinical surveillance data from four referral hospitals (2015-2018).
  • Linked 5766 malaria admissions to census enumeration areas (EAs) with age-structured populations.
  • Applied a novel framework to predict hospital catchments, accounting for spatial distance and EAs with zero observations.

Main Results:

  • Successfully linked 95.14% of malaria admissions to specific EAs.
  • Identified 10% severe malaria anaemia (SMA) and 5% cerebral malaria (CM) cases.
  • Demonstrated marked geographic catchments around hospitals, with highest hospitalization rates within a 1-hour travel time.

Conclusions:

  • Delineating hospital catchments is vital for effective emergency care planning and accurate epidemiological disease burden assessment.
  • Findings highlight the importance of spatial analysis in understanding access to care for severe pediatric malaria.
  • Further research into treatment-seeking pathways is recommended to refine catchment area understanding.

Related Concept Videos

Steps in Outbreak Investigation01:18

Steps in Outbreak Investigation

In the ever-evolving field of public health, statistical analysis serves as a cornerstone for understanding and managing disease outbreaks. By leveraging various statistical tools, health professionals can predict potential outbreaks, analyze ongoing situations, and devise effective responses to mitigate impact. For that to happen, there are a few possible stages of the analysis:
433
Statistical Methods for Analyzing Epidemiological Data01:25

Statistical Methods for Analyzing Epidemiological Data

Epidemiological data primarily involves information on specific populations' occurrence, distribution, and determinants of health and diseases. This data is crucial for understanding disease patterns and impacts, aiding public health decision-making and disease prevention strategies. The analysis of epidemiological data employs various statistical methods to interpret health-related data effectively. Here are some commonly used methods:
835
Kaplan-Meier Approach01:24

Kaplan-Meier Approach

The Kaplan-Meier estimator is a non-parametric method used to estimate the survival function from time-to-event data. In medical research, it is frequently employed to measure the proportion of patients surviving for a certain period after treatment. This estimator is fundamental in analyzing time-to-event data, making it indispensable in clinical trials, epidemiological studies, and reliability engineering. By estimating survival probabilities, researchers can evaluate treatment effectiveness,...
505
Analysis of Population Pharmacokinetic Data01:12

Analysis of Population Pharmacokinetic Data

Analysis of population pharmacokinetic data involves studying the behavior of drugs within diverse populations to understand their pharmacokinetic parameters. Traditional pharmacokinetic methods typically involve collecting samples from a few individuals and estimating these parameters. While these methods are commonly used, they have limitations in capturing the variability in drug response among individuals or heterogeneous populations. Population pharmacokinetics is employed to address these...
619
Applications of GIS: Disaster Management and Emergency Response01:29

Applications of GIS: Disaster Management and Emergency Response

Geographic Information System (GIS) technology is essential for risk identification, action prioritization, and resource optimization in critical situations like flooding and earthquakes. By integrating spatial and demographic data, GIS provides a comprehensive framework for emergency response.GIS integrates data layers, like rainfall intensity, topography, elevation profiles, and river levels, to model high-risk flood zones. These layers assess areas susceptible to flooding based on their...
387