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Slyder Nebulizer
Integrated Nano-Emulsification & AI-Powered Dosing
Deliver precision medicine with nano-emulsified particles, real-time AI dosing, and blockchain-secured treatment data, all in an integrated system.
Nano-Emulsified 

Delivery
Convert medications into ultra-fine nano-particles, ensuring faster absorption, improved bioavailability and precise delivery.
AI-Powered

Dosing
Real-time AI algorithms continuously analyze patient data, automatically adjusting each session’s dose to match individual needs.
Full Data 

Traceability
Every session of Slyder is logged in real time, encrypted, and securely stored, providing medical professionals with treatment histories and audit trails.
Built for
Clinical Trials
Designed to fit seamlessly into clinics and research workflows, supporting group monitoring, data aggregation, and treatment insights.
How it Works? (Step-by-Step)
IVPMED’s system delivers precision treatments while keeping medical professionals in control, from setup to real-time monitoring.
1
Insert SLYDER Pod
Slide the Pod directly into the SLYDER Nebulizer, where it locks into place and automatically detects the pod’s composition.
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2
Auto Dashboard Sync
As soon as the session starts, SLYDER streams live data to the IVPMED Medical Dashboard — tracking dosage, time, and patient interactions.
3
Real-Time Optimization
During delivery, onboard sensors track inhalation quality and symptoms. The AI suggests dosing adjustments if necessary to ensure consistent delivery and patient safety.


4
Full Data Traceability
After each session, data is encrypted, stored securely, and made available to clinicians for review — supporting regulatory reporting and clinical trial insights.

​Built for Clinical Trials
& Institutional Care
SLYDER Nebulizer seamlessly integrates into regulated clinical environments, supporting professionals, researchers, and trial managers with real-time data, AI-powered optimization, and fully compliant recordkeeping.
✅ Automatic session logging into the IVPMED Dashboard.
✅ AI-driven group-based monitoring for multi-patients.
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