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Simq GmbH

The startup develops medical software that utilizes in silico modeling and computer simulations to enhance personalized medicine. By providing healthcare professionals with detailed insights and data, the application enables safer and more effective personalized treatments and diagnostics for patients.

Grafing bei München, DeutschlandFounded 2014153K+ followers
Updated 3 months ago

Funding

$4.6M 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.

Funding rounds are not available yet.

Founders

Product

Problem

The development and validation of personalized medical devices and treatments are often hindered by the complexity and cost of traditional in vivo and in vitro testing methods. These methods may not accurately predict individual patient outcomes due to variations in anatomy, physiology, and disease progression.

Solution

Simq provides medical device manufacturers and healthcare professionals with in silico modeling and computer simulation tools to enhance personalized medicine. Their software platform leverages digital twin technology, AI, and machine learning to create virtual representations of patients and medical devices. These simulations enable users to test device designs, optimize treatment plans, and predict patient outcomes in a virtual environment, reducing the need for extensive physical prototyping and clinical trials. Simq's solutions facilitate faster development cycles, improved device safety and efficacy, and more personalized treatment strategies.

Target Audience

Simq's primary customers include medical device manufacturers seeking to accelerate product development and improve device performance, as well as healthcare providers aiming to personalize treatment plans and predict patient outcomes.

Features

  • Virtual Implant Testing (VIT) software for simulating the performance of implantable medical devices under physiological conditions
  • Optimized Surgical Planning (OSP) tools for simulating surgical procedures on patient-specific models
  • Finite Element Analysis (FEA) for assessing device performance and safety
  • FDA-compliant reporting for technical documentation
  • Customizable workflows for various anatomical regions and implant types
  • Material libraries with validated material properties
  • Cloud-based platform for scalable simulation and analysis
  • Integration with CAD/CAM software for seamless design and simulation workflow
This profile is AI-generated and may contain inaccuracies.