
Centralized ICU & CCU Patient Surveillance Architecture

Intensive Care & Telemetry Wards
Engineered for intensive care, step-down telemetry units, and post-anesthesia recovery, this solution links up to 64 continuous patient beds to centralized nurse surveillance stations. Utilizing multi-vector physiological telemetry and intelligent alarm thresholding, it provides early detection of clinical deterioration while dramatically mitigating non-actionable alarm fatigue.
Continuous multi-bed monitoring infrastructure linking bedside physiological telemetry, central clinical stations, and secure enterprise hospital information systems.
Analyzes physiological trends across multiple parameters before escalating audible alarms, reducing nuisance alerts by up to 65%.
Bedside monitors detach seamlessly into lightweight transport units, maintaining continuous telemetry charting during internal patient transfers.

Coordinated hardware, optical routing, and nurse station displays.
Modular components engineered to function harmoniously within high-acuity clinical environments.
Analyzes physiological trends across multiple parameters before escalating audible alarms, reducing nuisance alerts by up to 65%.
Bedside monitors detach seamlessly into lightweight transport units, maintaining continuous telemetry charting during internal patient transfers.
High-contrast multi-bed surveillance displays with automated rhythm strip analysis and customized early-warning scores.
Native HL7 FHIR interfaces continuously stream verified vitals and waveform snapshots into hospital electronic health records.
How our integrated architecture accelerates preparation, execution, and patient handoff.
High-frequency 24-bit physiological acquisition across ECG, SpO2, invasive BP, and core temperature.
Real-time synchronized waveform streaming to nurse station consoles and secure clinical mobile pagers.
Time-stamped biometric parameters logged directly into patient medical records without manual nurse entry.
Measurable benefits for surgical teams, intensive care nurses, and hospital administration.
Multivariate alarm verification algorithms reducing clinical alarm fatigue while retaining 100% sensitivity for true acute events.
Continuous patient tracking during inter-department transport without requiring lead disconnection or recalibration.
Native bidirectional HL7 FHIR interfaces for automatic vital chart synchronization with electronic health records.
Anti-glare displays visible from wide viewing angles across brightly lit intensive care wards.
Connect with our solutions engineering team in Richmond, BC to arrange a facility review, room planning consultation, and system deployment timeline.