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What You'll Learn

Master GIS disease surveillance monitoring. Learn to visualize disease outbreaks, track disease spread, and identify risk factors to inform public health interventions.

Course Benefits
Industry Certification

Internationally recognized qualification

Expert Instructors

Learn from industry professionals

Dedicated Support

Assistance during and after training

Practical Skills

Apply knowledge immediately

Comprehensive 10-day curriculum with all materials included
Hands-on exercises and real-world case studies
Valuable networking opportunities with peers and experts
Post-course resources and refresher materials
Training on GIS Disease Surveillance Monitoring - Course Cover Image
Duration 10 Days
Level Intermediate
Format In-Person

Course Overview

Featured

The GIS Disease Surveillance Monitoring course is designed to equip participants with the skills and knowledge needed to effectively utilize Geographic Information Systems (GIS) for tracking and analyzing disease outbreaks. This course provides a comprehensive understanding of spatial data management, spatial analysis techniques, and the application of GIS in public health surveillance. Participants will learn to map disease occurrences, identify spatial patterns, and support decision-making processes for disease prevention and control.

Course Duration

10 Days

Who Should Attend

  • Public health professionals and epidemiologists
  • Medical and health researchers
  • GIS specialists and data analysts
  • Environmental health officers
  • Government and non-governmental organization staff involved in health monitoring
  • Students and academics in public health, geography, or related fields

Course Impact

Organisational Impact

  • Strengthens institutional capacity to monitor, track, and respond to disease outbreaks using GIS.

  • Enhances evidence-based decision-making in public health through spatial analysis of disease patterns.

  • Improves efficiency in disease surveillance, enabling timely interventions and resource allocation.

  • Supports integration of geospatial intelligence into national and local health monitoring systems.

  • Builds organisational expertise in applying GIS to strengthen public health policies and programs.

Personal Impact

  • Equips participants with practical GIS skills for mapping and analyzing disease data.

  • Builds confidence in identifying spatial patterns that support disease prevention and control.

  • Expands career opportunities in public health, epidemiology, and health data analysis.

  • Provides hands-on experience in applying GIS for real-world disease surveillance challenges.

  • Empowers participants to contribute to stronger, data-driven health monitoring systems.

Course Objectives

By the end of this course, participants will be able to:

  • Understand the principles and concepts of GIS and their application in disease surveillance.
  • Collect, manage, and analyze spatial data related to disease occurrences.
  • Utilize GIS tools to map disease distribution and identify spatial patterns.
  • Conduct spatial analysis to assess the impact of environmental factors on disease spread.
  • Develop and interpret GIS-based models for disease risk assessment.
  • Apply GIS techniques to support public health decision-making and policy development.
  • Communicate findings effectively through maps and spatial data visualizations.

Course Outline

Module 1: Introduction to GIS in Public Health

  • Basics of GIS and spatial data
  • Importance of GIS in disease surveillance
  • Overview of GIS software (QGIS, ArcGIS, Google Earth Pro)
  • Practical Exercise: Installing and navigating GIS software
  • Case Study: Use of GIS in tracking COVID-19 spread

Module 2: Data Collection and Management

  • Sources of spatial data (census, satellite imagery, health records)
  • Mobile data collection tools (ODK, KoboToolbox)
  • Data cleaning and geocoding practices
  • Practical Exercise: Importing and cleaning patient location data
  • Case Study: GIS-supported field data collection during a cholera outbreak

Module 3: Mapping Disease Distribution

  • Creating thematic disease maps
  • Visualizing incidence and prevalence
  • Map classification methods
  • Practical Exercise: Create a disease hotspot map using GIS software
  • Case Study: Mapping malaria incidence in rural communities

Module 4: Spatial Analysis Techniques

  • Spatial autocorrelation and clustering
  • Hotspot detection using spatial tools
  • Kernel density estimation
  • Practical Exercise: Conduct hotspot analysis using disease case data
  • Case Study: Identifying tuberculosis hotspots in urban locations

Module 5: Environmental and Socioeconomic Factors

  • Impact of environmental conditions on disease spread
  • Socioeconomic determinants of health
  • Integration of multi-layer data analysis
  • Practical Exercise:​​​​​​​ Overlaying environmental and disease data
  • Case Study: Assessing drought conditions in relation to cholera outbreaks

Module 6: Risk Assessment and Modeling

  • Development of risk maps
  • GIS-based disease modeling techniques
  • Predictive analysis for disease outbreaks
  • Practical Exercise:​​​​​​​ Building a predictive model using GIS
  • Case Study: Risk mapping for dengue fever

Module 7: Public Health Applications and Decision-Making

  • GIS use in emergency response and disaster planning
  • Applying spatial analytics in outbreak containment
  • GIS for policy formulation and intervention planning
  • Practical Exercise:Design an emergency response map
  • Case Study: Use of GIS in Ebola outbreak preparedness and response

Module 8: Communicating Results

  • Preparing effective maps and visual reports
  • GIS output integration in reports and presentations
  • Best practices for data sharing with stakeholders
  • Practical Exercise:​​​​​​​ Creating maps and presentation-ready visuals
  • Case Study: Visualization of COVID-19 health data using dashboards

Module 9: GIS Project Workshop

Group-based geospatial health project

  • Data collection, analysis, mapping, and reporting
    Practical Exercise:​​​​​​​ Team project development
    Case Study Options:

    • Malaria outbreak analysis

    • Cholera in flood-prone areas

    • Influenza clustering in urban populations


Module 10: Final Presentation and Evaluation

  • Final project presentations
  • Peer review and expert evaluation
  • Demonstration of practical GIS skills
  • Course summary and improvement recommendations
  • Practical: Submission of final GIS analysis report
  • Case Study: Review of global GIS public health applications

Prerequisites

No specific prerequisites required. This course is suitable for beginners and professionals alike.

Course Administration Details

Customized Training

This training can be tailored to your institution needs and delivered at a location of your choice upon request.

Requirements

Participants need to be proficient in English.

Training Fee

The fee covers tuition, training materials, refreshments, lunch, and study visits. Participants are responsible for their own travel, visa, insurance, and personal expenses.

Certification

Upon successful completion of this course, participants will be issued with a certificate from Ideal Workplace Solutions certified by the National Industrial Training Authority (NITA) under License NO: NITA/TRN/2734.

Accommodation

Accommodation can be arranged upon request. Contact via email for reservations.

Payment

Payment should be made before the training starts, with proof of payment sent to outreach@idealworkplacesolutions.org.

For further inquiries, please contact us on details below:

Register for the Course

Select a date and location that works for you.

In-Person Training Schedules


January 2026
Date Days Venue Fee (VAT Incl.) Register
5 Jan - 9 Jan 2026 5 days Nairobi, Kenya KES 99,000 | USD 1,400 Enroll Now
5 Jan - 9 Jan 2026 5 days Cape Town, South Africa USD 3,500 Enroll Now
5 Jan - 9 Jan 2026 5 days Dubai, United Arabs Emirates USD 4,000 Enroll Now
5 Jan - 9 Jan 2026 5 days Zanzibar, Tanzania USD 2,200 Enroll Now
12 Jan - 16 Jan 2026 5 days Mombasa, Kenya KES 115,000 | USD 1,500 Enroll Now
12 Jan - 16 Jan 2026 5 days Kigali, Rwanda USD 1,800 Enroll Now
12 Jan - 16 Jan 2026 5 days Accra, Ghana USD 5,950 Enroll Now
12 Jan - 16 Jan 2026 5 days Kampala, Uganda USD 2,200 Enroll Now
19 Jan - 23 Jan 2026 5 days Dar es Salaam, Tanzania USD 2,000 Enroll Now
19 Jan - 23 Jan 2026 5 days Johannesburg, South Africa USD 3,100 Enroll Now
19 Jan - 23 Jan 2026 5 days Nakuru, Kenya KES 105,000 | USD 1,400 Enroll Now
19 Jan - 23 Jan 2026 5 days Dakar, Senegal USD 3,500 Enroll Now
26 Jan - 30 Jan 2026 5 days Pretoria, South Africa USD 3,100 Enroll Now
26 Jan - 30 Jan 2026 5 days Kisumu, Kenya KES 105,000 | USD 1,500 Enroll Now
26 Jan - 30 Jan 2026 5 days Naivasha, Kenya KES 105,000 | USD 1,400 Enroll Now
26 Jan - 30 Jan 2026 5 days Arusha, Tanzania USD 2,000 Enroll Now
5 Jan - 9 Jan 2026
5 days
Venue:
Nairobi, Kenya
Fee (VAT Incl.):
KES 99,000
USD 1,400
Enroll Now
5 Jan - 9 Jan 2026
5 days
Venue:
Cape Town, South Africa
Fee (VAT Incl.):
USD 3,500
Enroll Now
5 Jan - 9 Jan 2026
5 days
Venue:
Dubai, United Arabs Emirates
Fee (VAT Incl.):
USD 4,000
Enroll Now
5 Jan - 9 Jan 2026
5 days
Venue:
Zanzibar, Tanzania
Fee (VAT Incl.):
USD 2,200
Enroll Now
12 Jan - 16 Jan 2026
5 days
Venue:
Mombasa, Kenya
Fee (VAT Incl.):
KES 115,000
USD 1,500
Enroll Now
12 Jan - 16 Jan 2026
5 days
Venue:
Kigali, Rwanda
Fee (VAT Incl.):
USD 1,800
Enroll Now
12 Jan - 16 Jan 2026
5 days
Venue:
Accra, Ghana
Fee (VAT Incl.):
USD 5,950
Enroll Now
12 Jan - 16 Jan 2026
5 days
Venue:
Kampala, Uganda
Fee (VAT Incl.):
USD 2,200
Enroll Now
19 Jan - 23 Jan 2026
5 days
Venue:
Dar es Salaam, Tanzania
Fee (VAT Incl.):
USD 2,000
Enroll Now
19 Jan - 23 Jan 2026
5 days
Venue:
Johannesburg, South Africa
Fee (VAT Incl.):
USD 3,100
Enroll Now
19 Jan - 23 Jan 2026
5 days
Venue:
Nakuru, Kenya
Fee (VAT Incl.):
KES 105,000
USD 1,400
Enroll Now
19 Jan - 23 Jan 2026
5 days
Venue:
Dakar, Senegal
Fee (VAT Incl.):
USD 3,500
Enroll Now
26 Jan - 30 Jan 2026
5 days
Venue:
Pretoria, South Africa
Fee (VAT Incl.):
USD 3,100
Enroll Now
26 Jan - 30 Jan 2026
5 days
Venue:
Kisumu, Kenya
Fee (VAT Incl.):
KES 105,000
USD 1,500
Enroll Now
26 Jan - 30 Jan 2026
5 days
Venue:
Naivasha, Kenya
Fee (VAT Incl.):
KES 105,000
USD 1,400
Enroll Now
26 Jan - 30 Jan 2026
5 days
Venue:
Arusha, Tanzania
Fee (VAT Incl.):
USD 2,000
Enroll Now

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Frequently Asked Questions

Find answers to common questions about this course

The goal is to equip you with the skills to use GIS for disease surveillance. You'll learn to track, map, and analyze disease outbreaks in real-time, helping you make data-driven decisions to protect public health.
It's the use of Geographic Information Systems to analyze the spatial patterns of disease outbreaks. The training focuses on how to map disease cases, identify clusters, and understand how environmental factors or population density influence disease spread.
GIS helps you visualize outbreaks in a way that spreadsheets can't. It allows you to see where cases are concentrated, how they spread over time, and where to deploy resources most effectively, which is key for a rapid response.
You'll learn to manage and visualize health data, perform spatial analysis, and create maps and dashboards. The training focuses on a hands-on approach to using GIS software to address real-world epidemiological questions with professionalism.
You'll learn to use GIS for applications like outbreak mapping, risk zone analysis, and tracking the movement of a disease. The training emphasizes how these tools can support public health professionals in their response efforts.
Training on GIS Disease Surveillance Monitoring

Next class starts 5 Jan 2026

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