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Cambodia

I-TECH’s work in Cambodia began in 2013 on a laboratory program focused on refining operations and building capacity through improved quality assurance and management practices. The program continues to deliver intensive mentoring and support for laboratory workers, support for national laboratory system policy development, and job-specific training programs.

In 2018, I-TECH expanded its work in Cambodia with the Enhancing Quality of Care Activity (EQHA) program. The EQHA program aims to improve the quality of public and private health services in national and sub-national health systems by August 2023 by improving the national health policy regulatory framework and pre-service health education and training institutions.

In all efforts, I-TECH works closely with the Ministry of Health and local partners to support and strengthen laboratory systems and improve the quality of public and private health services in Cambodia.

Program Highlights

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Stefan Wiktor

Stefan Wiktor, MD, is a physician with more than 25 years of experience in epidemiologic research and public health programs related to the control of infectious diseases. He leads I-TECH’s work on hepatitis prevention and control, and is Acting Professor in the Department of Global Health. Prior to joining I-TECH, Dr. Wiktor was the Team Lead of the World Health Organization’s Global Hepatitis Programme.

Dr. Wiktor previously worked at the U.S. Centers for Disease Control and Prevention (CDC) where he conducted research studies of HIV-1 and HIV-2 in Cote d’Ivoire, West Africa, and led a large-scale HIV/AIDS prevention and treatment program in Tanzania. His research showed that anti-retroviral medications were effective in preventing mother-to-child HIV transmission. Other research he did proved that antibiotics reduced bacterial infections in HIV-infected adults, a finding that led to the WHO recommendation for use of antibiotic prophylaxis to prevent deaths in HIV-infected adults.

Program Highlights

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BID Initiative Partners with I-TECH to Track Vaccinations with Better Data

The following post was written in partnership with PATH‘s Better Immunization Data (BID) Initiative.

Patients at Usa River Health Center Tanzania. Photo courtesy of the BID Initiative.

The digital health landscape is rife with disconnected systems that make it challenging to aggregate information and improve the health of populations. After years of disjointed experiences, multiple organizations and governments have found that multi-platform, standardized, and connected information systems are critical to allow health care providers and decision makers access to timely and accurate information.

In this spirit, the International Training and Education Center for Health (I-TECH) joined forces with PATH’s BID Initiative to prevent disease by developing a platform to better trace vaccinations in low-resource settings. As part of its Global Health Security award, I-TECH is localizing the BID Initiative’s Zambia Electronic Immunisation Registry (ZEIR), an app powered by OpenSRP which is an open source mobile health platform, for use in Siaya County, Kenya.

I-TECH reached out to the BID Initiative last summer to hear more about BID’s lessons learned. The two teams began collaborating in earnest last December, leveraging the BID Initiative’s large scope in Zambia and Tanzania with I-TECH’s expertise in working with the OpenMRS platform.

Parallel projects with common goals

Reuben Mwanza (right) of PATH enters vaccination data into a tablet computer during a vaccination service at the Mahatma Gandhi Clinic in Livingstone, Zambia on October 17, 2016. Photo courtesy of the BID Initiative.

In Kenya, I-TECH has been tasked with building an electronic platform to capture immunizations when they happen. The aim of the project—conducted in partnership with the Kenyan Ministry of Health, the CDC Global Health Protection Division, and the CDC Global Immunization Division—is to improve immunization coverage. This is done by tracking and monitoring who is due for which vaccine, starting with population-level coverage within a single county, thus decreasing the chance of outbreaks of vaccine-preventable diseases.

Similarly, the BID Initiative has been working with the Ministry of Health and nurses in Tanzania and Zambia to develop an electronic immunization registry, among other data use tools, to ensure data becomes more accessible and useful to health workers. This, in turn, can help with decision making to prevent vaccine stockouts and enable follow-up with patients who have not returned for needed vaccines. BID’s learnings provided an opportune starting point for I-TECH’s work.

“ZEIR provides all of the workflows we need,” says Craig Appl, I-TECH Senior Technical Advisor for Health Informatics. “It already considers how users will interact with the application. It collects immunization data in a user-friendly manner, allowing health care workers to more accurately administer and record childhood immunizations and to more easily follow-up with children defaulting on their immunization schedule.”

Improvements through open source collaboration

I-TECH and BID have turned to Ona, a social enterprise based in Nairobi, Kenya, committed to fostering change by building information systems infrastructure. BID began working with Ona in January 2017 to adapt the OpenSRP system to Zambia’s national immunization program. This open source development process has been critical to the success of both teams and represents the collective knowledge of a community of developers known as the THRIVE Consortium.

“We simply couldn’t do this if OpenSRP and ZEIR software development was closed source,” says Appl. “The documentation, source code, and community wiki are all open for collaboration. Our team is able to actively track the improvements across the community, receive value where others have built features, and contribute where our projects align. Through open collaboration, we have many more individuals and teams working to improve health outcomes where we work.”

Laurie Werner, BID’s Global Director, agrees, pointing out that each new tool and iteration of the app is more adaptable and affordable than the last. “I-TECH is able to see solutions and propose solutions,” says Werner, “that’s the beauty of open source software.”

Matt Berg, CEO of Ona, views the OpenSRP app created for both projects as a customizable springboard that could potentially accommodate additional modules for antenatal care, malaria data, and maternal and child health.

“From our prior work with BID, we had this great starting point that another country or group could take and adapt and get up and running quickly,” says Berg.

Adaptability equals cost efficiency

Cost is a major driver for any implementation. Until now, it has been more cost efficient to build specific functionality on top of popular generalized information systems and tools, which decreases adaptability. Initial investments in the BID and I-TECH projects have allowed for both flexibility and specificity.

“We tend to focus too much [in the digital health field] on localization, and not on great design,” says Berg. “I think our success in Zambia and Kenya validates the importance of good design…and shows the potential of replicating in places for a fraction of what was originally invested.”

This collaborative environment and focus on adaptable design increases cost efficiency and allows the BID Initiative to fulfill the intention for its solutions to be used in multiple contexts.

“This is the core of the BID Initiative’s theory,” says Werner. “Effective electronic immunization registries have to be adapted to a country’s context and specific needs. Each time you do that, it becomes less and less of a financial investment for future countries.”

This blog post was supported by the Cooperative Agreement Number, U2GH001721, funded by the U.S. Centers for Disease Control and Prevention. Its contents are solely the responsibility of the authors and do not necessarily represent the official views of the Centers for Disease Control and Prevention or the Department of Health and Human Services.

Global Health Security Agenda in Kenya

I-TECH Kenya’s Global Health Security Agenda (GHSA)-funded programs aim to advance the GHSA goals of preventing , detecting, and responding to disease threats to health security.

For the past 8 years, I-TECH Kenya has had a cooperative agreement with US Centers for Disease Control and Prevention (CDC) to work closely with the Kenya Ministry of Health (MOH) on multiple projects related to health security. The key objectives of these activities are preventing and reducing the likelihood of disease outbreaks, improving the efficiency and accuracy of the detection of communicable diseases, strengthening surveillance capacity and national and county levels for a rapid and effective response, enhancing Infection Prevention and Control (IPC) practices to prevent the emergence and spread of pathogens and antimicrobial resistant bacteria.

Prevention

Use IPC practices to combat antimicrobial resistance (AMR) and other microbial threats:

  • Building capacity for IPC in health care facilities is a critical part of disease outbreak and AMR preparedness and prevention. In Kenya, I-TECH has partners with the CDC National Center for Emerging and Zoonotic Infectious Disease and Kenya MOH to support two model hospitals in developing capacity for quality improvement measures for strengthening evidence-based IPC practices, infrastructure, and tools including hand hygiene, waste management, injection safety, surgical site infections, and antimicrobial stewardship. As part of this IPC work, I-TECH created and piloted e-learning modules for IPC. The modules aim to build clinical skills and technical knowledge in infection prevention and control and antimicrobial stewardship among health care workers in low-resource settings, and have now been adopted by WHO.
  • With the onset of the COVID-19 pandemic, I-TECH Kenya was able to play a leadership role in the country in assessing and improving facility readiness at the national and local level to handle COVID-19 cases and maintain the health care workforce.
  • Current IPC activity is focused on surveillance for surgical site infections, an important cause of hospital acquired infections (HAIs).

Disease Prevention through Immunization Program Strengthening:

  • I-TECH collaborated with the Kenya MOH, CDC Global Health Protection Division, and the CDC Global Immunization Division, to build and roll out an online mobile platform for capturing immunization data at the point of care.

Detection

Laboratory Information Systems Strengthening:

  • In Kenya, I-TECH collaborated with the MOH and National Public Health Laboratory Services to enhance and strengthen laboratory information systems at the facility and national levels to improve timeliness and efficiency of testing and reporting results, specifically for AMR testing.

Response

Disease Surveillance and Response:

  • I-TECH supports the Kenya MOH Surveillance Unit in the rollout of trainings for health care workers to routinely and consistently use the real-time surveillance reporting system in Kenya.

HIS Leadership and Governance in Kenya

As a key member of the Kenya electronic medical record (EMR) system technical working group, I-TECH works to implement and standardize the EMR systems used in the management of national HIV and AIDS care and treatment data. Similar efforts have focused on ensuring that different electronic systems can communicate with one another (interoperability) and that health care workers, administrators, and staff are well trained to use and maintain them.

Continue reading “HIS Leadership and Governance in Kenya”

Health Information Systems in Kenya

In 2012, I-TECH designed and developed an electronic medical records (EMR) system, KenyaEMR, to support the care and treatment of HIV/AIDS. KenyaEMR is built on the OpenMRS platform. I-TECH supported the implementation of KenyaEMR in over 300 health facilities throughout Kenya—one of the largest open source EMR rollouts in Africa.

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Field Epidemiology Training Program (FETP) in Tanzania

A training participant takes part in a handwashing exercise as part of a cholera outbreak investigation.

For Tanzania to meet a WHO-specified target of one or more epidemiologists per 200,000 population [1] it will require an additional 250 epidemiologists who are well-trained and geographically distributed in all regions of the country.

To help address this gap, I-TECH, in collaboration with the Centers for Disease Control and Prevention (CDC) and the Ministry of Health Community, Development, Gender, Elderly and Children in Tanzania, launched a new Intermediate Field Epidemiology Training Program (FETP) for mid-level health professionals.

Continue reading “Field Epidemiology Training Program (FETP) in Tanzania”

Differentiated HIV Service Delivery Models in Tanzania

In October 2016, the Government of Tanzania adopted the World Health Organization’s (WHO) Treat All recommendations. The adoption of WHO recommendations, coupled with the Government of Tanzania’s acceptance of the UNAIDS 95-95-95 targets represents a significant commitment to the fight against HIV in Tanzania.

Continue reading “Differentiated HIV Service Delivery Models in Tanzania”

Best Practices

To address the UNAIDS Sustainable Development Goals for elimination of HIV/AIDS, tuberculosis, malaria and other diseases by 2030, and the PEPFAR 3.0 goals, I-TECH leverages the technical expertise of its universities and partners, the broad experience of its funders, and best practices from 15 years of implementing programs.