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GW4 researchers develop website to help reduce the spread of coronavirus in the home

GW4 researchers develop website to help reduce the spread of coronavirus in the home

The researchers behind ‘Germ Defence’ from the GW4 universities of Bath and Bristol, plus Southampton believe the quick redevelopment of the site for COVID-19 will help the public to shift behaviours. The researchers suggest it can help all of us move from current lockdown towards a so-called ‘new normal’, where social distancing measures look likely to apply for the foreseeable future.  

The ‘Germ Defence’ website draws on behaviour change techniques to help users think through and adopt better home hygiene and stronger infection control. Developed by health experts and psychologists, previous research into its effectiveness, involving a study of over 20,000 people, found that users of the site were less likely to catch flu or other viruses; and if they did become ill, on average, their illnesses were shorter and milder.

By working through a series of questions and scenarios, users on the site get a tailor-made plan to reduce their exposure to COVID-19 and viral load within the home. This is particularly important to reduce infection when one member of a household has left and returned again.

GW4 Crucible alumni Dr Ben Ainsworth from the Department of Psychology at the University of Bath explains: “We know that COVID-19 is caught in the same way as other viruses. Germ Defence provides advice on how you can protect yourself using the same methods that have worked for other viruses.

“It only takes around 10 minutes to go through the information - but it could help protect you from coronavirus, as well as offer you a lifetime of fewer colds and flu. It may take a bit of practice for you and your family to use the ideas on Germ Defence. But once you have learnt them, they will become habits that you’ll do easily which will protect you from becoming ill.”

Professor Lucy Yardley, theme lead for the NIHR Health Protection Research Unit in Behavioural Science and Evaluation at the University of Bristol, added: “Most people think that if a family member gets ill then it is just a matter of luck whether other people in the household get infected. But our team has shown that the people who follow the Germ Defence advice get fewer and less severe infections – and so do the people they live with.

“We hope the app will save lives by helping people avoid spreading coronavirus to family members.”

Important home hygiene suggestions offered to users on the site include:

  • Leaving packages and deliveries for up to 72 hours before opening them to reduce the risk of infection from the disease being passed on surfaces;
  • Regularly disinfecting surfaces in the home. This is seen as particularly important in view of the latest SAGE evidence on just how long the virus can live on hard surfaces;
  • Instilling better hygiene measures between household members, in particular in families, for example by not sharing common household items like towels.

Last month, the redevelopment of Germ Defence was announced by UKRI and at a Downing Street briefing as part of the UK government’s response to COVID-19, focusing on how universities around the UK can help. The research team are working closely with Public Health England and international colleagues in its roll-out in response to coronavirus. Dr Ainsworth is leading on the international dissemination of the project and working with doctors, policymakers, and members of the public from across the globe to ensure Germ Defence is as effective as possible no matter the context. The site is currently being translated into over 20 languages for international use.

Their study published last week in the BMJ argued that since most people with COVID-19 are cared for at home, it is increasingly important to limit the amount of virus they come into contact with by reducing virus load.

Paul Little, Professor of Primary Care Research at the University of Southampton, who led the BMJ article said: “We developed and trialled Germ Defence so that it could be widely disseminated both during normal winter months and also during a major pandemic. We showed clear reductions in both transmission of infections to other family members and also in transmission from other family members. It should help reduce both the number of family members who become ill with COVID-19, and also reduce the severity of illness if family members do become ill."

To access the Germ Defence site visit: http://germdefence.org/

University of Bath
University of Bristol
Cardiff University
University of Exeter