User interface for rotational device movement

US12569308B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-12569308-B2
Application numberUS-202318525278-A
CountryUS
Kind codeB2
Filing dateNov 30, 2023
Priority dateDec 1, 2022
Publication dateMar 10, 2026
Grant dateMar 10, 2026

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A robotic interventional device control system includes an interventional device comprising a longitudinal axis and configured to rotate about the longitudinal axis; a controller configured to control rotational movement of the interventional device about the longitudinal axis; at least one sensor configured to detect rotational movement of the interventional device about the longitudinal axis; and one or more hardware processors configured to receive motion data from the at least one sensor, the motion data indicative of whether the interventional device is rotating. The one or more hardware processors are further configured to generate a user interface comprising an instrument window having a representation of the interventional device and an interventional device marker associated with the representation of the interventional device. The interventional device marker includes a radial progress indicator configured to provide a visual indication of a degree of rotation relative of the interventional device about the longitudinal axis.

First claim

Opening claim text (preview).

What is claimed is: 1 . A robotic interventional device control system comprising: an interventional device comprising a longitudinal axis and configured to rotate about the longitudinal axis; a controller configured to control rotational movement of the interventional device about the longitudinal axis; at least one sensor configured to detect rotational movement of the interventional device about the longitudinal axis; one or more hardware processors configured to receive motion data from the at least one sensor, the motion data indicative of whether the interventional device is rotating about the longitudinal axis; wherein the one or more hardware processors are further configured to, based on the motion data, generate a user interface comprising an instrument window, the instrument window comprising, a representation of the interventional device; an interventional device marker associated with the representation of the interventional device, the interventional device marker comprising a radial progress indicator configured to provide a visual indication of a degree of rotation relative to a threshold of the interventional device about the longitudinal axis; wherein the controller is further configured to control axial movement of the interventional device along a drive table, and wherein the representation of the interventional device is configured to transition from a first configuration to a second configuration along a central longitudinal axis when the interventional device is moving axially along the drive table. 2 . The robotic interventional device control system of claim 1 , wherein the radial progress indicator comprises a ring shaped progress bar configured to fill in at least one of a clockwise direction and a counterclockwise direction, wherein the radial progress indicator filling in the clockwise direction provides a visual indication that the interventional device is rotating in the clockwise direction, and wherein the radial progress indicator filling in the counterclockwise direction provides a visual indication that the interventional device is rotating in the counterclockwise direction. 3 . The robotic interventional device control system of claim 1 , wherein in the first configuration, the representation of the interventional device is in a first position, and wherein in the second configuration, the representation of the interventional device is in a second position. 4 . The robotic interventional device control system of claim 3 , wherein the first position is closer to a bottom end of the central longitudinal axis than the second position. 5 . The robotic interventional device control system of claim 3 , wherein the first position is closer to a top end of the central longitudinal axis than the second position. 6 . The robotic interventional device control system of claim 1 , wherein the interventional device marker is configured to transition from a first animation state to a second animation state upon an occurrence of an interventional device event. 7 . The robotic interventional device control system of claim 6 , wherein the interventional device event comprises one of aspiration being available at the interventional device, aspiration being unavailable at the interventional device, aspiration being active at the interventional device, contrast injection being available at the interventional device, or contrast injection being unavailable at the interventional device. 8 . The robotic interventional device control system of claim 1 , wherein the controller is configured to control rotational movement of the interventional device about the longitudinal axis responsive to a user input. 9 . The robotic interventional device control system of claim 1 , wherein the representation of the interventional device extends along the central longitudinal axis. 10 . A robotic interventional device control system comprising: an interventional device comprising a longitudinal axis and configured to rotate about the longitudinal axis; a controller configured to control rotational movement of the interventional device about the longitudinal axis; at least one sensor configured to detect rotational movement of the interventional device about the longitudinal axis; one or more hardware processors configured to receive motion data from the at least one sensor, the motion data indicative of whether the interventional device is rotating about the longitudinal axis; wherein the one or more hardware processors are further configured to, based on the motion data, generate a user interface comprising an instrument window, the instrument window comprising, a representation of the interventional device; an interventional device marker associated with the representation of the interventional device, the interventional device marker comprising a radial progress indicator configured to provide a visual indication of a degree of rotation relative to a threshold of the interventional device about the longitudinal axis; wherein the threshold represents a maximum rotation of the interventional device. 11 . A robotic interventional device control system comprising: an interventional device comprising a longitudinal axis and configured to rotate about the longitudinal axis; a controller configured to control rotational movement of the interventional device about the longitudinal axis; at least one sensor configured to detect rotational movement of the interventional device about the longitudinal axis; one or more hardware processors configured to receive motion data from the at least one sensor, the motion data indicative of whether the interventional device is rotating about the longitudinal axis; wherein the one or more hardware processors are further configured to, based on the motion data, generate a user interface comprising an instrument window, the instrument window comprising, a representation of the interventional device; an interventional device marker associated with the representation of the interventional device, the interventional device marker comprising a radial progress indicator configured to provide a visual indication of a degree of rotation relative to a threshold of the interventional device about the longitudinal axis; and wherein the radial progress indicator comprises a ring shaped progress bar configured to fill up, wherein the ring shaped progress bar is further configured to be empty when the interventional device is not rotating, and wherein the ring shaped progress bar is further configured to be full when the interventional device completes a full revolution about the longitudinal axis. 12 . A robotic interventional device control system comprising: an interventional device comprising a longitudinal axis and configured to rotate about the longitudinal axis; a controller configured to control rotational movement of the interventional device about the longitudinal axis; at least one sensor configured to detect rotational movement of the interventional device about the longitudinal axis; one or more hardware processors configured to receive motion data from the at least one sensor, the motion data indicative of whether the interventional device is rotating about the longitudinal axis; wherein the one or more hardware processors are further configured to, based on the motion data, generate a user interface comprising an instrument window, the instrument window comprising, a representation of the interventional device, wherein the representation of the interventional device extends along a central longitudinal axis; an interventional device marker associated with the representation of the interventional d

Assignees

Inventors

Classifications

  • using pointers, e.g. pointers having reference marks for determining coordinates of body points · CPC title

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  • Surgical systems with images on a monitor during operation · CPC title

  • Reference marker arrangements for use with image guided surgery · CPC title

  • Tracking using image or pattern recognition · CPC title

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What does patent US12569308B2 cover?
A robotic interventional device control system includes an interventional device comprising a longitudinal axis and configured to rotate about the longitudinal axis; a controller configured to control rotational movement of the interventional device about the longitudinal axis; at least one sensor configured to detect rotational movement of the interventional device about the longitudinal axis;…
Who is the assignee on this patent?
Imperative Care Inc
What technology area does this patent fall under?
Primary CPC classification A61B34/37. Mapped technology areas include Human Necessities.
When was this patent published?
Publication date Tue Mar 10 2026 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 12 related publications on this page (citations in our corpus or others sharing the same primary CPC).