Courtney Jarrahian
Biographic Data
| ID | 9022759 |
|---|---|
| NAME | Courtney Jarrahian |
| GIVEN NAMES | Courtney |
| FAMILY NAME | Jarrahian |
| SIGNATURE | JARRAHIAN C |
| AFFILIATIONS | Program for Appropriate Technology in Health |
| ORCID | 0000-0003-3046-6891 |
| VERIFIED | Yes |
| TOTAL WORKS | 5 |
| TOTAL CITATIONS | 0 |
| AUTHOR COUNT | 5 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2022 |
| LATEST PUBLICATION YEAR | 2026 |
| H-INDEX | 0 |
Priority implementation research for measles-rubella microarray patches identified using the Child Health and Nutrition Research Initiative methodology
Background: Measles and rubella continue to be a significant global health challenge, disproportionately impacting marginalised communities in low- and middle-income countries (LMICs). Innovative technologies such as measles-rubella microarray patches (MR-MAPs) are currently in development and can potentially improve immunisation coverage and equity through their unique product characteristics. Nonetheless, the limited evidence around their use c…
Estimating the future global dose demand for measles–rubella microarray patches
Background: Progress toward measles and rubella (MR) elimination has stagnated as countries are unable to reach the required 95% vaccine coverage. Microarray patches (MAPs) are anticipated to offer significant programmatic advantages to needle and syringe (N/S) presentation and increase MR vaccination coverage. A demand forecast analysis of the programmatic doses required (PDR) could accelerate MR-MAP development by informing the size and return …
Exploring potential applications of measles and rubella microarray patches (MR-MAPs)
Introduction: Innovative vaccine products will be critical in helping to address the existing implementation barriers that have prevented the achievement of the measles and rubella (MR) vaccine coverage targets. Overcoming those barriers will be necessary to achieve the "Immunization Agenda 2030" goals. Microarray patches (MAPs), an innovative needle-free delivery device currently in clinical development, can be a potential game changer in this r…
Accelerating the Development of Measles and Rubella Microarray Patches to Eliminate Measles and Rubella
Measles and rubella microarray patches (MR-MAPs) are critical in achieving measles and rubella eradication, a goal highly unlikely to meet with current vaccines presentations. With low commercial incentive to MAP developers, limited and uncertain funding, the need for investment in a novel manufacturing facility, and remaining questions about the source of antigen, product demand, and regulatory pathway, MR-MAPs are unlikely to be prequalified by…
Evaluating the potential cost-effectiveness of microarray patches to expand access to hepatitis B birth dose vaccination in low-and middle-income countries
Timely birth dose vaccination is key for achieving elimination of hepatitis B, however, programmatic requirements for delivering current vaccine presentations to births outside of health facilities inhibits coverage within many low-and middle-income countries (LMICs). Vaccine technologies in development such as microarray patches (MAPs) could assist in overcoming these barriers, but procurement could incur higher per-dose commodity costs than cur…
No prominent works on this page.
Accelerating the Development of Measles and Rubella Microarray Patches to Eliminate Measles and Rubella
Measles and rubella microarray patches (MR-MAPs) are critical in achieving measles and rubella eradication, a goal highly unlikely to meet with current vaccines presentations. With low commercial incentive to MAP developers, limited and uncertain funding, the need for investment in a novel manufacturing facility, and remaining questions about the source of antigen, product demand, and regulatory pathway, MR-MAPs are unlikely to be prequalified by…
Evaluating the potential cost-effectiveness of microarray patches to expand access to hepatitis B birth dose vaccination in low-and middle-income countries
Timely birth dose vaccination is key for achieving elimination of hepatitis B, however, programmatic requirements for delivering current vaccine presentations to births outside of health facilities inhibits coverage within many low-and middle-income countries (LMICs). Vaccine technologies in development such as microarray patches (MAPs) could assist in overcoming these barriers, but procurement could incur higher per-dose commodity costs than cur…
Estimating the future global dose demand for measles–rubella microarray patches
Background: Progress toward measles and rubella (MR) elimination has stagnated as countries are unable to reach the required 95% vaccine coverage. Microarray patches (MAPs) are anticipated to offer significant programmatic advantages to needle and syringe (N/S) presentation and increase MR vaccination coverage. A demand forecast analysis of the programmatic doses required (PDR) could accelerate MR-MAP development by informing the size and return …
Exploring potential applications of measles and rubella microarray patches (MR-MAPs)
Introduction: Innovative vaccine products will be critical in helping to address the existing implementation barriers that have prevented the achievement of the measles and rubella (MR) vaccine coverage targets. Overcoming those barriers will be necessary to achieve the "Immunization Agenda 2030" goals. Microarray patches (MAPs), an innovative needle-free delivery device currently in clinical development, can be a potential game changer in this r…
Priority implementation research for measles-rubella microarray patches identified using the Child Health and Nutrition Research Initiative methodology
Background: Measles and rubella continue to be a significant global health challenge, disproportionately impacting marginalised communities in low- and middle-income countries (LMICs). Innovative technologies such as measles-rubella microarray patches (MR-MAPs) are currently in development and can potentially improve immunisation coverage and equity through their unique product characteristics. Nonetheless, the limited evidence around their use c…
Measles (4 works) · Medicine (4 works) · Vaccination (4 works) · Vaccine Coverage and Hesitancy (4 works) · Virology (4 works) · Virology and Viral Diseases (4 works) · Computer Science (3 works) · Rubella (3 works) · Animal Disease Management and Epidemiology (1 works) · Animal Virus Infections Studies (1 works)