AI-Enabled Telemedicine and Remote Monitoring Course
At a glance
- Duration
- 12 days
- Format
- Classroom
- Cities
- Paris, Abu Dhabi, Barcelona, Madrid, Amsterdam, San Diego and more
- Next session
- 5 – 16 October 2026, Paris
- Average fee
- 9,900 €
Overview
AI-Enabled Telemedicine and Remote Patient Monitoring Operations Course is a ten-day course for virtual care managers, monitoring coordinators, clinical operations personnel, data staff, quality teams, and implementers, who leave with a Virtual Care and Monitoring Implementation Plan. Participants design service pathways, govern device and patient data, route alerts, support clinician review, engage patients, apply controls, and monitor operations without giving clinical advice. Agile Leaders Training Center provides training in AI-enabled telemedicine and remote monitoring operations.
Who Should Attend
- Virtual care personnel responsible for telemedicine service delivery
- Monitoring personnel responsible for patient data and alert workflows
- Clinical operations personnel responsible for review and escalation handoffs
- Health data personnel responsible for readiness, interoperability, and access
- Quality personnel responsible for safety controls and performance monitoring
- Implementation personnel responsible for introducing AI-enabled service changes
The course assumes participants contribute to virtual care, monitoring, data, quality, or implementation, and it leaves out diagnosis, treatment advice, device engineering, programming, and model development.
Departments and Industries
The course supports governed telemedicine and monitoring operations across healthcare and supporting technology services.
- Hospital virtual care services
- Primary and community care operations
- Remote patient monitoring services
- Health information and clinical systems functions
- Healthcare quality and patient safety functions
- Digital health implementation services
Learning Objectives
By the end of this course, participants will be able to:
- Apply a suitability screen to AI-enabled virtual care use cases
- Analyze telemedicine pathways and remote monitoring data readiness
- Build alert triage, escalation, and clinician-review workflows
- Evaluate patient engagement, privacy, access, bias, and safety controls
- Build operational measures, surveillance, and corrective actions
- Build a Virtual Care and Monitoring Implementation Plan
Course Agenda
Day 1: Service Purpose and Boundaries
- Virtual Care Service Purpose Canvas
- AI Use-Case Suitability Matrix
- Patient Impact and Decision Rights Chart
- Clinical Responsibility Boundary Map
- Scope, Exclusion, and Escalation Checklist
Day 2: Telemedicine Pathways
- Telemedicine Access and Intake Journey Map
- Virtual Consultation Handoff Blueprint
- Care Team Role and Responsibility Matrix
- Service Accessibility and Inclusion Review
- Patient Consent and Communication Record
Day 3: Monitoring Service Design
- Remote Monitoring Service Model Canvas
- Device Enrollment and Activation Pathway
- Measurement Purpose and Frequency Register
- Patient Support and Adherence Map
- Monitoring Exit and Transition Checklist
Day 4: Data Readiness
- Device and Patient Data Inventory
- Data Quality and Completeness Scorecard
- Interoperability and System Handoff Map
- Data Lineage and Traceability Register
- Local Validation Evidence Review Sheet
Day 5: Alert Triage
- Alert Definition and Priority Matrix
- False-Alert and Missing-Data Review Log
- Time-Sensitivity and Routing Decision Tree
- Alert Workload Capacity Board
- Triage Exception Handling Checklist
Day 6: Review and Escalation
- Clinician Review Responsibility Chart
- Human Override and Decision Register
- Escalation Pathway and Contact Tree
- Closed-Loop Handoff Confirmation Record
- Incident Learning and Follow-Up Log
Day 7: Engagement and Access
- Patient Engagement Segmentation Canvas
- Digital Access Barrier Assessment
- Communication Channel Selection Matrix
- Patient Feedback and Service Recovery Log
- Caregiver Participation Boundary Checklist
Day 8: Governance and Safety
- Privacy and Permitted-Use Checklist
- Role-Based Access Control Matrix
- Bias and Subgroup Impact Review
- Virtual Care Safety Control Register
- Accountability and Approval RACI Chart
Day 9: Measurement and Surveillance
- Virtual Care Operational Metrics Board
- Alert-to-Action Performance Scorecard
- Patient Experience Measurement Plan
- Postdeployment Surveillance Register
- Corrective Action and Change Control Log
Day 10: Implementation Practice
- Suggested Exercise: Screen a Virtual Care Use Case
- Suggested Exercise: Map Telemedicine and Monitoring Pathways
- Suggested Exercise: Design Alert Triage and Escalation
- Suggested Exercise: Build a Governance and Measurement Pack
- Capstone Exercise: Virtual Care and Monitoring Implementation Plan
Practical Exercises
The course uses suggested activities that turn service evidence into governed virtual care operations.
- Suggested activity: define a use case, service boundary, patient journey, and team responsibilities
- Suggested activity: map monitoring enrollment, data handoffs, readiness evidence, and alert routing
- Suggested activity: design clinician review, escalation, patient engagement, and access arrangements
- Suggested activity: apply privacy, bias, safety, measurement, surveillance, and corrective-action controls
FAQs
Who suits AI-enabled telemedicine and remote patient monitoring operations training, and what does it assume?
AI-enabled telemedicine and remote patient monitoring operations training suits personnel responsible for virtual services, monitoring, data, quality, or implementation. It assumes practical involvement in care operations and does not require programming.
How does telemedicine and remote monitoring operations training differ from clinical diagnosis training?
Telemedicine and remote monitoring operations training focuses on pathways, data, alert routing, oversight, engagement, controls, and measurement, while clinical diagnosis training develops patient assessment and treatment decisions.
How should remote patient monitoring alerts be prioritized?
Remote patient monitoring alerts should be prioritized using defined purpose, data quality, time sensitivity, patient context, workload capacity, review responsibility, escalation paths, and documented exceptions.
What controls support AI-enabled telemedicine operations?
AI-enabled telemedicine operations need privacy boundaries, access controls, subgroup review, human decision rights, safety checks, traceable handoffs, operational measures, surveillance, and corrective actions.
What belongs in a Virtual Care and Monitoring Implementation Plan?
The plan should contain service boundaries, pathways, roles, data readiness, alert design, review and escalation arrangements, engagement methods, controls, measures, surveillance, and change actions.
Conclusion
Participants take back a Virtual Care and Monitoring Implementation Plan linking service purpose, pathways, data, alerts, human review, engagement, controls, and measurement. It changes how teams introduce and govern AI-enabled telemedicine and monitoring services. The plan supports traceable action, accountable escalation, and monitored improvement.
credits: 5 credit per day
Course Mode: full-time
Provider: Agile Leaders Training Center
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Events for this Course
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Paris 5 – 16 October 2026
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Abu Dhabi 5 – 16 October 2026
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Barcelona 12 – 23 October 2026
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Madrid 19 – 30 October 2026
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Amsterdam 26 October – 6 November 2026
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San Diego 2 – 13 November 2026
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Vienna 9 – 20 November 2026
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Jakarta 16 – 27 November 2026
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Nairobi 22 November – 3 December 2026
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London 23 November – 4 December 2026
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Prague 30 November – 11 December 2026
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Singapore 30 November – 11 December 2026
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Doha 6 – 17 December 2026
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Accra 13 – 24 December 2026
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Manama 20 – 31 December 2026
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Sharm El-Sheikh 21 December 2026 – 1 January 2027
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Tokyo 28 December 2026 – 8 January 2027
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Abu Dhabi 28 December 2026 – 8 January 2027
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Madrid 4 – 15 January 2027
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Dubai 11 – 22 January 2027
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Rome 11 – 22 January 2027
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Montreux 18 – 29 January 2027
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Cairo 25 January – 5 February 2027
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Seoul 25 January – 5 February 2027
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Muscat 31 January – 11 February 2027
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London 1 – 12 February 2027
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Zanzibar 7 – 18 February 2027
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Kuwait 14 – 25 February 2027
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Geneva 21 February – 4 March 2027
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Chicago 28 February – 11 March 2027
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Toronto 28 February – 11 March 2027
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Kuala Lumpur 8 – 19 March 2027
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Abu Dhabi 8 – 19 March 2027
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Langkawi 14 – 25 March 2027
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Porto 15 – 26 March 2027
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Istanbul 22 March – 2 April 2027
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Barcelona 22 March – 2 April 2027
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Vienna 29 March – 9 April 2027
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Trabzon 4 – 15 April 2027
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New York 12 – 23 April 2027
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Cape town 18 – 29 April 2027
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Dubai 26 April – 7 May 2027
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Milan 26 April – 7 May 2027
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Kuala Lumpur 3 – 14 May 2027
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Abu Dhabi 3 – 14 May 2027
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Tashkent 9 – 20 May 2027
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Zoom 17 – 28 May 2027
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Istanbul 24 May – 4 June 2027
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Amsterdam 24 May – 4 June 2027
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Frankfurt 24 May – 4 June 2027
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London 31 May – 11 June 2027
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Rome 31 May – 11 June 2027
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Phuket 6 – 17 June 2027
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Johannesburg 13 – 24 June 2027
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Paris 21 June – 2 July 2027
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Riyadh 27 June – 8 July 2027
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Marbella 4 – 15 July 2027
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Lisbon 5 – 16 July 2027
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Tbilisi 12 – 23 July 2027
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Bali 18 – 29 July 2027
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Dubai 19 – 30 July 2027
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London 26 July – 6 August 2027
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Al Jubail 1 – 12 August 2027
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Cairo 9 – 20 August 2027
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Milan 9 – 20 August 2027
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Baku 16 – 27 August 2027
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Manama 22 August – 2 September 2027
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Munich 30 August – 10 September 2027
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Casablanca 6 – 17 September 2027
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Amsterdam 6 – 17 September 2027
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Bangkok 12 – 23 September 2027
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Dubai 20 September – 1 October 2027
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Nice 20 September – 1 October 2027
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Amman 26 September – 7 October 2027
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Athens 4 – 15 October 2027
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Berlin 4 – 15 October 2027
| Image | Location | Dates | Duration | Mode | Price | Actions |
|---|---|---|---|---|---|---|
|
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Cape town |
Week 15, 2027 18 – 29 April 2027 |
12 Days | Onsite | €6,400 | |
|
|
Dubai |
Week 17, 2027 26 April – 7 May 2027 |
12 Days | Onsite | €8,500 | |
|
|
Milan |
Week 17, 2027 26 April – 7 May 2027 |
12 Days | Onsite | €10,000 | |
|
|
Kuala Lumpur |
Week 18, 2027 3 – 14 May 2027 |
12 Days | Onsite | €9,000 | |
|
|
Abu Dhabi |
Week 18, 2027 3 – 14 May 2027 |
12 Days | Onsite | €8,000 | |
|
|
Tashkent |
Week 18, 2027 9 – 20 May 2027 |
12 Days | Onsite | €9,000 | |
|
|
Zoom |
Week 20, 2027 17 – 28 May 2027 |
12 Days | Online | €3,000 | |
|
|
Istanbul |
Week 21, 2027 24 May – 4 June 2027 |
12 Days | Onsite | €8,500 | |
|
|
Amsterdam |
Week 21, 2027 24 May – 4 June 2027 |
12 Days | Onsite | €10,000 | |
|
|
Frankfurt |
Week 21, 2027 24 May – 4 June 2027 |
12 Days | Onsite | €10,000 | |
|
|
London |
Week 22, 2027 31 May – 11 June 2027 |
12 Days | Onsite | €10,000 | |
|
|
Rome |
Week 22, 2027 31 May – 11 June 2027 |
12 Days | Onsite | €10,000 | |
|
|
Phuket |
Week 22, 2027 6 – 17 June 2027 |
12 Days | Onsite | €9,000 | |
|
|
Johannesburg |
Week 23, 2027 13 – 24 June 2027 |
12 Days | Onsite | €6,400 | |
|
|
Paris |
Week 25, 2027 21 June – 2 July 2027 |
12 Days | Onsite | €10,000 | |
|
|
Riyadh |
Week 25, 2027 27 June – 8 July 2027 |
12 Days | Onsite | €11,400 | |
|
|
Marbella |
Week 26, 2027 4 – 15 July 2027 |
12 Days | Onsite | €10,000 | |
|
|
Lisbon |
Week 27, 2027 5 – 16 July 2027 |
12 Days | Onsite | €10,000 | |
|
|
Tbilisi |
Week 28, 2027 12 – 23 July 2027 |
12 Days | Onsite | €8,800 | |
|
|
Bali |
Week 28, 2027 18 – 29 July 2027 |
12 Days | Onsite | €10,000 |
Frequently asked questions
What does this course cover?
OverviewAI-Enabled Telemedicine and Remote Patient Monitoring Operations Course is a ten-day course for virtual care managers, monitoring coordinators, clinical operations personnel, data staff, quality teams, and implementers, who leave with a Virtual Care and Monitoring Implementation Plan. Participants design service pathways, govern device and patient…
Are training dates available?
Yes. Available dates and destinations are listed in the course dates section on this page.
How can I register?
Choose an available date on this page and complete the registration form, or send a programme enquiry.
Can I download the course brochure?
Yes. Use the brochure download link provided on this page.
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