Validation
Proven in operating hospitals, not in a lab
Two internal pilots contribute different operational settings, technical requirements and validation evidence. The Open Pilot adds a scalable route for broader European validation and replication.
Pilot 1 · LuxembourgFHRS
Luxembourg — Hôpitaux Robert Schuman
Securing biomedical devices, hospital OT and mobile care, from connected ambulances to medical implants at home.
Use cases
- Secured biomedical devices — A real-time, AI-enhanced supervision platform monitors infusion pumps and vital-sign monitors. By learning baseline patterns, the AI detects anomalies, blocks suspicious commands and triggers automated alerts to clinical staff.
- Connected ambulances and secure data transfer — A dedicated 5G health slice transmits encrypted patient data from ambulances to the hospital. AI analytics detect irregularities in both clinical data and network behaviour, recommending triage actions before arrival.
- Secure medical implants and remote monitoring — AI continuously analyses telemetry from implants such as pacemakers and insulin pumps located at patients’ homes, through a HealthNet-certified 5G gateway. Any deviation prompts alerts to clinicians for rapid intervention.
At a glance
- professionals employed
- 2,300professionals employed
- collaborating doctors
- 310collaborating doctors
- residents served nationally
- 678,000residents served nationally
- merged clinics
- 4merged clinics
Target indicators
- Reduction in detection-to-alert time for abnormal biomedical and OT device behaviour≥ 85%
- Reduction in potential service disruption during simulated attacks≥ 70%
- AI detection tools, solutions and models deployed and tested≥ 3
- Staff satisfaction and awareness improvement after training≥ 80%
Pilot 2 · EstoniaFPH
Estonia — Foundation Pärnu Hospital
A healthcare-specific SOC-as-a-Service that puts patient-safety logic into the cybersecurity context.
Use cases
- Patient-specific SOCaaS service — Continuous monitoring of electronic health record activity and related clinical workflows to detect anomalies, prevent data breaches and ensure compliance with healthcare regulations.
- Medical device protection — The SOC connects with network-connected medical devices, identifying unusual communication patterns and behaviour and responding proactively.
- Medical device supply-chain monitoring — Services focused on monitoring and securing the medical device supply chain, identifying vulnerabilities and ensuring the integrity and traceability of devices throughout their lifecycle.
At a glance
- licensed beds
- 429licensed beds
- employees
- 1,300employees
- outpatient visits a year
- 238,000outpatient visits a year
- patients reached in peak season
- 300,000patients reached in peak season
Target indicators
- Abnormal EHR access patterns detected and logged≥ 90%
- Automated incident-response playbooks deployed≥ 4
- Networked medical devices continuously monitored≥ 80%
- Detection of supply-chain anomalieswithin 24 hours
EU-wide — the Open Pilot
An open invitation to hospitals, clinics and healthcare providers across Europe to test the project’s tools in their own environment.
Use cases
- Threat monitoring — Connect to the SOCaaS and evaluate healthcare-specific detection against your own environment.
- Incident response automation — Adopt and test CACAO-based incident-response and business-continuity playbooks.
- Cyber hygiene improvement — Run the self-assessment, take the training, and benchmark your readiness against peers.
At a glance
- providers sought
- 15+providers sought
- countries
- 6+countries
- to participate
- Freeto participate
- onboarding opens
- M12+onboarding opens
Target indicators
- External healthcare providers engaged≥ 15
- EU countries represented≥ 6
- HEALTH-ER tools and services tested at least once≥ 8
- Assessments completed≥ 10
- Institutions connected to and testing the SOCaaS≥ 1
The Open Pilot is open to you
Any hospital, clinic or healthcare provider in Europe can apply to test the HEALTH-ER tools, services and methodologies in their own environment.
