Philips Presents Results from 3-Year Telehealth Program Impacting over 100,000 Patients across Europe

PhilipsRoyal Philips (NYSE: PHG, AEX: PHIA), a global leader in health technology today announced the results of the Advancing Care Coordination & Telehealth Deployment at Scale (ACT@Scale) Program during the 19th annual International Conference on Integrated Care in San Sebastian, Spain. ACT@Scale is the first of its kind initiative to explore the organizational and structural processes needed to successfully implement care coordination and telehealth services on a large scale. Published results of the three-year program across six European regions are now available, along with recommendations for best practices in connected care.

The World Health Organization (WHO) has established the target goal of a 25% relative reduction in risk of premature mortality from cardiovascular diseases, cancer, diabetes, or chronic respiratory diseases by 2025 in Europe [1]. Connected care is viewed by many governments as essential to enable more efficient, patient-centric and continuous care for the aging EU population. However, while many local connected care pilot programs are successful, they fail to scale to their full potential.

ACT@Scale builds on the expertise and successful experiences of the ACT program, leveraging tested collaborative methods and tools to implement improvements, and is fully aligned with the European Innovation Partnership on Active and Healthy Aging objectives to deploy integrated care for chronically ill patients. The EU-sponsored project comprises 16 partners from eight EU countries, including 14 programs in six regions coordinated by Philips.

"The ACT@Scale program delivers a clear methodology for service quality improvement with EU-wide evidence-based recommendations for coordinated care and telehealth deployment, and further demonstrates our commitment to help care providers and societies implement and scale innovative delivery models to support tens of thousands of elderly or people living with chronic conditions in different local settings," said Carla Kriwet, Chief Business Leader, Connected Care, Philips. "We look forward to sharing the outcomes of this study that can be successfully replicated across the European Union. The synergy of Philips’ Connected Care business and Research helps us to scale high impact projects together with our customers."

Digital health best practices for large-scale deployment

The ACT@Scale handbook contains recommendations to achieve change at scale, and spotlights examples of success. It identifies best-in-class processes, structures and ways of working across the six participating European regions. Insights and recommendations can be used to build large scale deployment across Europe and beyond.

"We cannot underestimate the efforts made by healthcare organizations in bringing about change in practice in healthcare. Connected care is disruptive to many aspects of current health care practice and overcoming resistance to change and persuading healthcare professionals, patients and their families as well as managers and those who finance care is not an easy task," said Prof. Stan Newman, Vice-President (International), City, University of London. "The ACT@Scale handbook contains a host of important recommendations to achieve change at scale and provides an impressive insight into some of the best successes in Europe in care coordination and telehealth to date that we can continue to leverage for future deployments."

Among the findings, four key areas were identified as most essential to scale-up and drive adoption of innovation across connected care and telehealth: Citizen Empowerment; Stakeholder and Change Management; Service Selection; and Sustainability & Business Models. Examples of success across key areas showcased in the findings include the My Diabetes My Way online self-management platform for patients in Scotland, which has reached a high level of patient activation with 22,000 diabetes patients across the nation who can access their medical records online to manage their diabetes more effectively. The Basque Country regional stratification approach has also demonstrated success with its multi-morbid integration program, enabling patients with complex health and social care needs at high risk of hospital or care home admission, to lead fulfilled lives and improved clinical outcomes. The program has succeeded to scale up to 16,000 patients across the region by implementing technology solutions to provide access to personalized care plans based on clinical guidelines, and leveraging data from the EHR (Electronic Health Record).

For more information on ACT@Scale, visit http://www.act-at-scale.eu and download the full ACT@Scale handbook for more detail on best practice analysis, examples and results here.

About Royal Philips

Royal Philips (NYSE: PHG, AEX: PHIA) is a leading health technology company focused on improving people's health and enabling better outcomes across the health continuum from healthy living and prevention, to diagnosis, treatment and home care. Philips leverages advanced technology and deep clinical and consumer insights to deliver integrated solutions. Headquartered in the Netherlands, the company is a leader in diagnostic imaging, image-guided therapy, patient monitoring and health informatics, as well as in consumer health and home care. Philips generated 2018 sales of EUR 18.1 billion and employs approximately 77,000 employees with sales and services in more than 100 countries.

About ACT@Scale

The ACT@Scale consortium members include Royal Philips (project coordinator); Academisch Ziekenhuis - Groningen Universitair Medisch Centrum Groningen (UMCG); Asociación Centro De Excelencia Internacional En Investigación Sobre Cronicidad (KROKIKGUNE); Agencia De Qualitat I Avaluacio Sanitaries De Catalunya (AQuAS); Aristotelio Panepistimio Thessalonikis - Aristotle University of Thessaloniki (AUTH); City, University London (CITY); Consorci Institut D’investigacions Biomèdiques August Pi I Sunyer – Hospital Clinic de Barcelona (IDIBAPS); Gesundes Kinzigtal GmbH(GK); Optimedis AG (OPTIMEDIS); Osakidetza-Servicio Vasco De Salud (OSAKIDETZA) ; Regional Agency for Public Health and Social Well-being Northern Ireland (NIRE); Region of Southern Denmark - Odense University Hospital (RSD); University of Dundee (DUNDEE); University of Hull (HULL); Universitätsklinikum Würzburg; Klinikum Der Bayerischen Julius-Maximilians-Universität (WUERZBURG).

About ACT@Scale Handbook

The work leading to these results arises from the ACT@Scale (Advancing Care Coordination and Telehealth deployment at Scale) Program, which has received funding from the European Union, in the framework of the Health Program under grant agreement 709770.

1. http://www.euro.who.int/en/health-topics/disease-prevention

Most Popular Now

Unlocking the 10 Year Health Plan

The government's plan for the NHS is a huge document. Jane Stephenson, chief executive of SPARK TSL, argues the key to unlocking its digital ambitions is to consider what it...

Alcidion Grows Top Talent in the UK, wit…

Alcidion has today announced the addition of three new appointments to their UK-based team, with one internal promotion and two external recruits. Dr Paul Deffley has been announced as the...

AI can Find Cancer Pathologists Miss

Men assessed as healthy after a pathologist analyses their tissue sample may still have an early form of prostate cancer. Using AI, researchers at Uppsala University have been able to...

New Training Year Starts at Siemens Heal…

In September, 197 school graduates will start their vocational training or dual studies in Germany at Siemens Healthineers. 117 apprentices and 80 dual students will begin their careers at Siemens...

AI, Full Automation could Expand Artific…

Automated insulin delivery (AID) systems such as the UVA Health-developed artificial pancreas could help more type 1 diabetes patients if the devices become fully automated, according to a new review...

How AI could Speed the Development of RN…

Using artificial intelligence (AI), MIT researchers have come up with a new way to design nanoparticles that can more efficiently deliver RNA vaccines and other types of RNA therapies. After training...

MIT Researchers Use Generative AI to Des…

With help from artificial intelligence, MIT researchers have designed novel antibiotics that can combat two hard-to-treat infections: drug-resistant Neisseria gonorrhoeae and multi-drug-resistant Staphylococcus aureus (MRSA). Using generative AI algorithms, the research...

AI Hybrid Strategy Improves Mammogram In…

A hybrid reading strategy for screening mammography, developed by Dutch researchers and deployed retrospectively to more than 40,000 exams, reduced radiologist workload by 38% without changing recall or cancer detection...

Penn Developed AI Tools and Datasets Hel…

Doctors treating kidney disease have long depended on trial-and-error to find the best therapies for individual patients. Now, new artificial intelligence (AI) tools developed by researchers in the Perelman School...

Are You Eligible for a Clinical Trial? C…

A new study in the academic journal Machine Learning: Health discovers that ChatGPT can accelerate patient screening for clinical trials, showing promise in reducing delays and improving trial success rates. Researchers...

Global Study Reveals How Patients View M…

How physicians feel about artificial intelligence (AI) in medicine has been studied many times. But what do patients think? A team led by researchers at the Technical University of Munich...

New AI Tool Addresses Accuracy and Fairn…

A team of researchers at the Icahn School of Medicine at Mount Sinai has developed a new method to identify and reduce biases in datasets used to train machine-learning algorithms...