Recipient organisationUlster UniversitySource-published name: University of Ulster
Funding£174K
PeriodNov 2025 — Nov 2026
In plain English
AI plain-English summary
Around 200,000 people in the UK live with a stoma, and over 20,000 new stomas are created each year, yet the standard method for monitoring output—pouring fluid into a measuring jug—is impractical for daily life and misses early warning signs of complications. This matters because high-output stomas can cause dehydration and skin damage, leading to frequent hospital readmissions. Current smart pouch systems can detect leaks but cannot measure output volume or pH, which are critical for spotting infections, blockages, or inflammatory bowel disease flare-ups before they become emergencies. The research team is testing a new sensor made from laser-induced graphene that could be integrated into stoma pouches to continuously monitor both output and pH. If successful, this would give patients and clinicians real-time data to manage fluid balance and prevent skin erosion, reducing readmissions and allowing ostomates to return to work and social activities without constant jug-and-funnel interruptions. The technology is still at the proof-of-concept stage, but it directly addresses a gap in post-surgical care that affects tens of thousands of people each year.
View original technical description
It has been estimated that there are some 200,000 ostomates in the UK, with over 20,000 new stomas created each year and while there have been substantial advances in surgical procedures, complications post discharge remain considerable. High output volumes of ileal fluid are of particular concern where they can lead to dehydration and can greatly increase the risk of readmission. The standard approach of measuring stomal output via a measuring jug is largely incompatible with normal everyday life especially where the patient is attempting to re-establish their pre-surgery social or occupational activities. While there is now considerable interest in the development of smart pouch systems that can provide an early warning of leak events, none have the diagnostic capability to monitor the output from the stoma nor its composition. This is significant as changes in stoma pH can will be a factor in increasing erosion of the pouch adhesive leading to moisture associated skin damage (MASD) which increases the likelihood of leakage. MASD is another critical contributing factor to readmission and a major concern for ostomates. Integrating sensors within the stoma collection pouch that autonomously monitor both stoma output and pH would provide a much more consistent and diagnostically rich approach and would be invaluable in identifying emerging trends in stomal output caused by enteric infection, obstruction or recurrent / active inflammatory bowel disease. It could be envisaged that alongside dietary diaries, the pH / output telemetry would also assist in providing smarter, more analytically robust solutions to minimising skin complications. The aim of the proposed programme is to investigate the efficacy of a new sensing approach based on laser induced graphene that could speed the development of smart pouch systems.
Plain English summaries and category classifications on this site are generated by AI and may not perfectly reflect the original research.
Is something wrong? Let us know