InHEART

InHEART

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Revolutionizes cardiac care with AI-driven 3D heart modeling.
Ai Tool Details

In the high-stakes world of cardiac care, diagnosing and treating arrhythmias like atrial fibrillation or ventricular tachycardia demands precision, speed, and deep insight into the heart’s electrical system. But traditional 3D mapping during ablation procedures is time-consuming, radiation-heavy, and often incomplete — relying on point-by-point catheter contact and fluoroscopy that can miss critical pathways.

That’s where InHEART comes in — not just another cardiac mapping tool, but a breakthrough AI-powered 3D heart modeling platform built to help electrophysiologists (EPs) create accurate, real-time anatomical and electrical maps of the heart — non-invasively, in minutes, and without radiation.

Unlike conventional EP systems that require hours of intra-procedural mapping, InHEART uses artificial intelligence to generate a personalized 3D model of a patient’s heart from standard CT or MRI scans — then simulates electrical activity to identify arrhythmia sources before the procedure even begins.

It’s not about faster mapping — it’s about seeing the whole story before the first incision.


Tool Overview: What is InHEART?

InHEART is a medical AI platform designed for cardiologists, electrophysiologists, and cardiac centers that want to improve the accuracy, safety, and success rate of ablation procedures for complex arrhythmias.

The platform works by:

  • Analyzing routine cardiac CT or MRI scans using deep learning
  • Reconstructing a patient-specific 3D model of the heart’s anatomy — including chambers, veins, and scar tissue
  • Simulating electrical propagation to predict arrhythmia drivers (e.g., rotor sites, re-entry circuits)
  • Delivering a pre-procedural roadmap to guide ablation strategy and catheter navigation
  • Integrating with EP lab systems for real-time procedural guidance

Used in hospitals and EP labs across Europe, Asia, and Latin America, InHEART replaces lengthy intra-procedural mapping and guesswork with a data-driven, pre-planned approach — reducing procedure time, radiation exposure, and recurrence risk.

It doesn’t just map the heart — it anticipates its rhythm.


Key Features of InHEART

  1. AI-Powered 3D Heart Reconstruction
    Turn standard CT/MRI scans into detailed, interactive 3D models — in under 10 minutes.
  2. Electrophysiological Simulation Engine
    Predict arrhythmia mechanisms using biophysical modeling and machine learning.
  3. Pre-Ablation Roadmap Generation
    Identify high-probability ablation targets before the procedure starts.
  4. Scar & Fibrosis Detection
    Automatically detect and visualize myocardial scarring — a key driver of arrhythmias.
  5. Integration with EP Navigation Systems
    Export models to platforms like CARTO or EnSite for real-time procedural use.
  6. No Additional Scans or Radiation
    Works with existing diagnostic imaging — no extra burden on the patient.
  7. Multi-Chamber Support
    Model atria, ventricles, and pulmonary veins with high anatomical accuracy.
  8. Procedure Time Reduction
    Cut mapping time by up to 50% — leading to faster, safer ablations.
  9. Clinical Validation & Peer-Reviewed Studies
    Backed by research in journals like Heart Rhythm and JACC: Clinical Electrophysiology.
  10. Secure & HIPAA/GDP-Compliant
    Fully compliant with medical data regulations — hosted in secure medical clouds.

Benefits of Using InHEART

  • Improve Ablation Success Rates
    Target the true source of arrhythmias — not just symptoms.
  • Perfect for Electrophysiologists
    Enter the lab with a data-driven plan — not a blank map.
  • Great for Cardiac Centers & Hospitals
    Deliver advanced care with better outcomes and shorter procedures.
  • Ideal for Complex Arrhythmia Cases
    Gain insight into persistent AFib, VT, and post-surgical arrhythmias.
  • Reduces Radiation & Fluoroscopy Time
    Safer for patients and medical staff.
  • Supports Personalized Cardiac Care
    Every heart is unique — treat it that way.
  • Improves OR Efficiency
    Shorter procedures mean higher throughput and lower costs.
  • No Invasive Setup Required
    Just upload a CT or MRI — no new hardware or sensors.
  • Actionable Output Without the Noise
    Get real clinical insights — not just pretty visuals.
  • Future-Proofs Your EP Lab
    As AI integrates into medicine, InHEART positions you at the forefront.

Who Can Benefit from InHEART?

  • Electrophysiologists: Plan ablations with precision and confidence.
  • Cardiologists: Offer advanced arrhythmia care with better outcomes.
  • Hospitals & Cardiac Centers: Differentiate with AI-powered cardiac innovation.
  • Medical Imaging Teams: Add clinical value to routine cardiac scans.
  • Clinical Researchers: Study arrhythmia mechanisms with AI-enhanced modeling.
  • Healthcare Innovators: Lead in digital health and AI adoption.

Real-World Impact: How EP Labs Use InHEART

  • A European hospital reduced ablation recurrence rates by 32% after adopting InHEART for pre-procedural planning.
  • An EP lab in Brazil cut average procedure time from 180 to 90 minutes — improving patient safety.
  • A cardiac center in Asia successfully treated a complex VT case that had failed two prior ablations — guided by InHEART’s simulation.
  • A research team used InHEART models to publish new insights into rotor dynamics in persistent AFib.

Final Thoughts

InHEART isn’t just another imaging tool — it’s a paradigm shift in cardiac electrophysiology, helping doctors move from reactive mapping to predictive planning. By combining AI intelligence, biophysical modeling, and clinical precision, it becomes more than just software — it becomes a digital twin of the heart, guiding life-saving interventions with unprecedented clarity.

If you’re tired of long procedures, uncertain outcomes, or missing the root cause of arrhythmias, InHEART could be exactly what you need to bring precision, predictability, and progress back to cardiac care.

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