IDMED
Medical device company based in Marseille that designs, develops and commercializes perioperative and intensive‑care monitoring devices. Primary focuses include quantitative pupillometry, quantitative neuromuscular transmission monitoring using three‑dimensional accelerometry, wireless sensor stations, and automated endotracheal cuff pressure control. The company references multiple peer‑reviewed clinical studies, reports ISO 13485 certification and CE marking, and identifies FDA 510(k) clearance for at least one device on technical pages.
Industries
Nr. of Employees
small (1-50)
IDMED
3 rue John Maynard Keynes, 13013 Marseille, FRANCE
Products
Automated pupillometry device for clinical monitoring
Bedside device for reproducible measurement of absolute pupil size and pupillary light reflex metrics to support neurological assessment and analgesia monitoring.
3D accelerometry neuromuscular monitor
Accelerometer‑based neuromuscular monitor providing TOF/PTC/ATP and other stimulation modes with calibration‑free sensors for quantitative monitoring of neuromuscular blockade.
Wireless neuromuscular monitoring station
Station integrating wireless rechargeable sensors, secure transmission, real‑time GUI, alarms and trend displays to manage depth of neuromuscular block and facilitate sensor accessibility.
Automated endotracheal cuff pressure controller
Device for continuous automatic regulation of endotracheal tube cuff pressure with alarms, automatic deflation/surge and options for patient‑single tubing with antibacterial filter, intended to reduce tracheal injury and ventilator‑associated pneumonia risk.
Automated pupillometry device for clinical monitoring
Bedside device for reproducible measurement of absolute pupil size and pupillary light reflex metrics to support neurological assessment and analgesia monitoring.
3D accelerometry neuromuscular monitor
Accelerometer‑based neuromuscular monitor providing TOF/PTC/ATP and other stimulation modes with calibration‑free sensors for quantitative monitoring of neuromuscular blockade.
Wireless neuromuscular monitoring station
Station integrating wireless rechargeable sensors, secure transmission, real‑time GUI, alarms and trend displays to manage depth of neuromuscular block and facilitate sensor accessibility.
Automated endotracheal cuff pressure controller
Device for continuous automatic regulation of endotracheal tube cuff pressure with alarms, automatic deflation/surge and options for patient‑single tubing with antibacterial filter, intended to reduce tracheal injury and ventilator‑associated pneumonia risk.
Services
On‑site or remote product demonstrations and free trials arranged for hospitals and clinical teams.
International distribution through local distributors with contact and clinical support for product availability and enquiries.
On‑site or remote product demonstrations and free trials arranged for hospitals and clinical teams.
International distribution through local distributors with contact and clinical support for product availability and enquiries.
Expertise Areas
- Quantitative pupillometry
- Neuromuscular transmission monitoring
- Wireless sensor telemetry for physiological monitoring
- Automated airway cuff pressure control
Key Technologies
- Three‑dimensional accelerometry for movement measurement
- Automated TOF/PTC stimulation modes (including ATP automatic mode)
- Secure wireless medical telemetry and docking/charging systems
- Embedded real‑time signal processing and alarm algorithms
News & Updates
List and references to multiple peer‑reviewed studies comparing accelerometry‑based monitors with mechanomyography and electromyography across operating room and ICU contexts.
References to a doctoral thesis and conference presentations assessing performance of a wireless neuromuscular monitor versus wired references, and related recent reviews of NMT monitoring methods.
Examples include comparative studies between acceleromyography and EMG, modified TOF‑ratio investigations and observational studies on postoperative pulmonary function and neuromuscular recovery.
List and references to multiple peer‑reviewed studies comparing accelerometry‑based monitors with mechanomyography and electromyography across operating room and ICU contexts.
References to a doctoral thesis and conference presentations assessing performance of a wireless neuromuscular monitor versus wired references, and related recent reviews of NMT monitoring methods.
Examples include comparative studies between acceleromyography and EMG, modified TOF‑ratio investigations and observational studies on postoperative pulmonary function and neuromuscular recovery.