Case Western Reserve University (20240261057). SYSTEMS, METHODS, AND MEDIA FOR PRESENTING BIOPHYSICAL SIMULATIONS IN AN INTERACTIVE MIXED REALITY ENVIRONMENT simplified abstract

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SYSTEMS, METHODS, AND MEDIA FOR PRESENTING BIOPHYSICAL SIMULATIONS IN AN INTERACTIVE MIXED REALITY ENVIRONMENT

Organization Name

Case Western Reserve University

Inventor(s)

Cameron Mcintyre of Cleveland OH (US)

Angela Noecker of Cleveland OH (US)

Jeffrey Mlakar of Cleveland OH (US)

Mark Griswold of Cleveland OH (US)

SYSTEMS, METHODS, AND MEDIA FOR PRESENTING BIOPHYSICAL SIMULATIONS IN AN INTERACTIVE MIXED REALITY ENVIRONMENT - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240261057 titled 'SYSTEMS, METHODS, AND MEDIA FOR PRESENTING BIOPHYSICAL SIMULATIONS IN AN INTERACTIVE MIXED REALITY ENVIRONMENT

Simplified Explanation: The patent application describes systems, methods, and media for presenting biophysical simulations in an interactive mixed reality environment using a head-mounted display.

Key Features and Innovation:

  • Utilizes a transparent display, sensors, and a processor to visualize biophysical processes and subject-specific anatomical models based on medical imaging data.
  • Presents simulations in connection with medical imaging data and an instrument in different positions for interactive learning.
  • Allows for the visualization of updated simulations with the instrument in a new position for enhanced understanding.

Potential Applications: This technology could be used in medical education and training, allowing students to interact with biophysical simulations in a realistic and engaging manner. It could also have applications in research and development for visualizing complex biological processes.

Problems Solved: This technology addresses the challenge of visualizing and understanding biophysical processes in a three-dimensional and interactive way, enhancing learning and comprehension in the field of medicine and biology.

Benefits:

  • Improved visualization of complex biophysical processes.
  • Enhanced interactive learning experience for students and professionals.
  • Real-time updates and adjustments to simulations for better understanding.

Commercial Applications: "Interactive Biophysical Simulation System for Medical Education and Research" - This technology could be marketed to medical schools, research institutions, and healthcare companies for educational and research purposes, potentially revolutionizing the way biophysical processes are taught and studied.

Questions about Interactive Biophysical Simulation Systems: 1. How does this technology improve upon traditional methods of teaching biophysical processes? 2. What are the potential limitations or challenges of implementing this system in a medical education setting?

Frequently Updated Research: Researchers are continually exploring new ways to enhance interactive learning experiences in the field of biophysics, with a focus on incorporating virtual and augmented reality technologies for improved visualization and understanding.


Original Abstract Submitted

systems, methods, and media for presenting biophysical simulations in an interactive mixed reality environment are provided. in some embodiments, a system comprises: a head mounted display comprising: a transparent display; sensors; and a processor programmed to: receive medical imaging data associated with a subject; receive, from a server, information useable to visualize a simulation of biophysical processes and a subject-specific anatomical model based on the medical imaging data; cause a visualization of the simulation to be presented, via the transparent display, in connection with the medical imaging data and an instrument in a first position; receive, from the server, updated information useable to visualize an updated simulation with the instrument in a second position; and cause a visualization of the updated simulation to be presented with the instrument presented in the second position.