Autonomous Healthcare develops AI-enabled software solutions for critical care management, including mechanical ventilation and hemodynamic monitoring. Their technology enhances clinical workflows and patient safety by automating medication management and fluid administration in intensive care settings.
Funding
$1.9M raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.
Founders
Product
Problem
ICU clinicians face challenges in optimizing mechanical ventilation, hemodynamic management, and medication administration due to the complexity of patient physiology and the need for continuous monitoring and adjustment. Manual titration of medications and ventilator settings can be time-consuming, error-prone, and may lead to suboptimal patient outcomes.
Solution
Autonomous Healthcare develops AI-enabled software solutions designed to automate and optimize critical care management in the ICU. Their Syncron-E™ software provides AI-driven mechanical ventilation management, while E-Fusion™ offers semi-automated and fully automated hemodynamic management. Additionally, their TraCS™ software streamlines medication management through AI-based drug management. These solutions leverage advanced algorithms and closed-loop control to enhance clinical workflows, improve patient safety, and reduce the burden on clinicians.
Target Audience
The primary target audience includes critical care physicians, nurses, and hospital systems seeking to improve patient outcomes and streamline workflows in intensive care units.
Features
- Syncron-E™: AI-enabled software for automated mechanical ventilation management.
- E-Fusion™: Software for semi-automated and fully-automated hemodynamic management.
- TraCS™: AI-enabled software for medication management, streamlining pharmacy workflows.
- Adaptive control technology for controlling the depth of anesthesia.
- Closed-loop control of cardiopulmonary management and ICU sedation.
- Algorithms for human-in-the-loop and closed-loop fluid and hemodynamic management.