18525417. USER INTERFACE FOR AXIAL DEVICE MOVEMENT simplified abstract (Imperative Care, Inc.)

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USER INTERFACE FOR AXIAL DEVICE MOVEMENT

Organization Name

Imperative Care, Inc.

Inventor(s)

Lilip Lau of Los Altos CA (US)

Kyle Bartholomew of Campbell CA (US)

Sami Ur-Rehman Shad of Fremont CA (US)

Hilary Ann Koster of Easley SC (US)

Dave Bim-merle of Mountain View CA (US)

Courtney Helland of San Francisco CA (US)

Kevin Jeanneret of Mountain View CA (US)

David Gonzalez of Campbell CA (US)

Sarah Plewe of Foster City CA (US)

USER INTERFACE FOR AXIAL DEVICE MOVEMENT - A simplified explanation of the abstract

This abstract first appeared for US patent application 18525417 titled 'USER INTERFACE FOR AXIAL DEVICE MOVEMENT

The robotic interventional device control system described in the patent application includes an interventional device, a controller for axial movement control, a sensor system for detecting movement, and hardware processors for data processing and user interface generation.

  • The system allows for precise control of the interventional device's axial movement along a drive table.
  • The sensor system detects the axial movement of the interventional device and provides motion data to the hardware processors.
  • The user interface includes an instrument window with a representation of the interventional device and a marker that changes configuration based on the device's movement.
  • The display shows the user interface for easy monitoring and control of the interventional device.

Potential Applications: - Medical procedures requiring precise interventional device control - Industrial applications where automated control of devices is necessary

Problems Solved: - Ensures accurate and controlled movement of interventional devices - Provides real-time feedback on device movement for improved precision

Benefits: - Enhanced control and accuracy in interventional procedures - Streamlined workflow and improved efficiency in device control

Commercial Applications: Title: "Robotic Interventional Device Control System for Precision Procedures" This technology can be utilized in medical settings for surgeries and interventions, as well as in industrial automation for precise device control. The market implications include increased efficiency and accuracy in various applications.

Prior Art: Further research can be conducted in the field of robotic control systems for interventional devices to explore existing technologies and innovations.

Frequently Updated Research: Stay updated on advancements in robotic control systems for interventional devices to incorporate the latest technologies and improvements.

Questions about Robotic Interventional Device Control System: 1. How does the system ensure precise control of the interventional device's axial movement? 2. What are the potential applications of this technology beyond medical procedures?


Original Abstract Submitted

A robotic interventional device control system includes an interventional device; a controller configured to control axial movement of the interventional device along a drive table; a sensor system configured to detect axial movement of the interventional device along the drive table; and one or more hardware processors configured to receive motion data from the sensor system, the motion data indicative of whether the interventional device is axially moving along the drive table. The one or more hardware processors configured to generate a user interface comprising an instrument window. The instrument window includes a representation of the interventional device; and an interventional device marker associated with the representation of the interventional device, the interventional device marker configured to transition from a first configuration to a second configuration when the interventional device is moving axially along the drive table. The system includes a display configured to display the user interface.