Digital Twin Technology

Empowering Lifelike Learning:
Virtro's Innovative Digital Twin Simulation

  • Realistic Learning Environments
  • Enhancing Skill Transfer
  • Measurable Competency Development

Digital 3D Replicas

Recreate physical assets or systems in 3D for training and simulations. We create high resolution digital replicas of physical objects that you can interact with in Virtual Reality.


These Digital Twins have the features, functionality and characteristics of live systems to enable simulated training models for practice in various applications.

Industry Use Cases

Healthcare

The future of healthcare delivery and improved patient experience.

Manufacturing

Digital twins are revolutionizing manufacturing by reducing operating costs.

Construction

Using digital twins in construction allows for as-built and as-designed models.

Advanced Algorithms & Complex Particles Systems

Virtro created highly visual digital 3D replicas of the human system for training and surgical simulations for Intelligent Haptronic Solutions.


These Digital Twins have the features, functionality and characteristics of live systems to enable simulated training models for surgical practice. 


To deliver life-like 3D human organ models and visuals, Virtro has developed advanced algorithms and uses complex particle systems to render accurate models.


These models deform and simulate pressure points, bleeding and muscle contraction traits in an accurate Digital Twin of the human upper gastrointestinal tract. 

“Virtro has played an essential role in helping us to develop complex algorithms and high quality visual displays that integrate into our complex haptic devices.”

Zhouming Tang

Cofounder/CTO

Intelligent Haptronic Solutions Inc.

Case Study: Digestive Endoscopy Simulator

Intelligent Haptronics Solutions selected Virtro to partner on their training simulation for surgeons. 


Using a unique combination of haptronics and digital twin technology, surgeons practice using complex surgical tools such as endoscope equipment in simulated reality.   


Using actual surgical tools in a simulated world that mimics motion, deformation, and fluidity, enables surgeons to emulate surgical practices otherwise unavailable to them.