Nerbio’s iCARE Platform simplifies patient monitoring with a suite of modular wireless sensors, AI support and mobile connectivity enabling smarter, safer, and more efficient patient care.
The traditional tangled web of cables and separate monitors is replaced by a single, wireless, and intelligent ecosystem that enhances patient safety, clinical efficiency, and cost-effectiveness.
• Included with the iTOF NMB monitor
• Compact, battery-powered wireless hub driven by advanced low-power System-on-Chip
• Operates for over six months on a single replaceable 9V battery
• Processes real-time data from multiple wireless sensors using a secure, robust Bluetooth mesh network
• Provides integrated visual and audible alarms and voice announcements compliant with IEC and FDA standards
• Dedicated sensors for monitoring specific physiological parameters
• Lightweight, wireless, battery-powered, with reuseable patient-contact surfaces and compact electronics (no expensive consumables)
• Onboard processing reduces data volume and ensures integrity with timestamped case records
• Sensor modules use replaceable batteries with life exceeding six months
Our second-generation TOF software and app. Adds full automation, patent-pending "twitch normalization" algorithm, case trend chart, Nerbio Device Administration portal, and easy-to-implement FHIR enabled real-time wireless data connections with hospital systems.
Solid-state spectrographic capnography is indicator of proper endotracheal tube placement and ventilation adequacy.
Combined GSR and peripheral temperature monitor for pain management analgesic titration to improve patient outcomes and cost savings.
EEG-based depth-of-anesthesia monitoring helps avoid over-sedation and intraoperative awareness leading to shorter PACU and OR turnover times.
World's first easy to use gold-standard Mechanomyography TOF device.
AI vision system than reads, understands and tracks literally all monitoring devices.
Acoustic based non-invasive continuous venous and arterial blood pressure monitoring for earlier detection and response to hemodynamic changes reduces risk of complications from invasive monitoring, increases efficiency and cost savings.
Enables continuous peripheral temperature monitoring throughout diverse clinical settings and accurate peripheral temperature monitoring throughout diverse clinical settings.
A flexible finger probe monitoring dissolved oxygen saturation.
This next-generation microprocessor-driven ecosystem replaces a cluttered array of disparate, wired monitors with a clean, cohesive, modular wireless system with a unified user interface. At its core: a single smart wireless hub orchestrating secure seamless and uninterruptable communication with a suite of compact, body-worn monitoring sensors.
Nerbio iCARE™ harnesses the power of modern mobile devices—leveraging advanced processors, intuitive interfaces, and robust AI frameworks—to deliver a seamless, voice-enabled user experience for quick setup and automated, hands-free monitoring. Its patented system automates patient data management and smartly switches monitoring modes as needed. New sensor modules can be securely paired with a simple tap, and the platform runs smoothly on iOS, Android, or Windows devices, easily integrating with Electronic Medical Records (EMR) via Wi-Fi or Ethernet.
The Bluetooth Mesh Network offers reliable, scalable connectivity with a self-healing design that maintains continuous data flow even when direct paths are blocked. Sensors securely auto-connect as needed, providing seamless coverage over ten meters throughout the entire care continuum—from pre-op to OR, PACU, and ICU. Powered by Bluetooth PAwR technology, it efficiently manages multiple simultaneous real-time data streams for complete portability and performance.
Advanced SoC microprocessors deliver exceptional computational performance essential for operating room environments while maintaining low-power design to ensure reliable wireless connectivity. They feature PSA Level 3 security with encrypted data transmission and secure key storage, and are built to support future multi-protocol wireless expansions beyond Bluetooth mesh.
Small wireless devices travel with patients to increase pre and post op efficiency, reduce risks, and enhance patient safety
Clinicians monitor multiple patients, or multiple patients monitored by single clinician. Complete patient data, settings and history is transferred.
Centralized UI management with voice announcements andoptional voice control reduces clinical fatigue and enhances responsiveness
Automated setup and patient care workflow with easy EMR integration significantly lowers operating costs
Text and voice based advanced AI provides user-friendly conversational responses that are in the context of the individual user’s current situation.
State-of-the-art encryption ensures patient data privacy and compliance