IP Library Granted Patent US 12,609,193
Granted Patent B2
US 12,609,193 · App. 18/105,109 · Granted Apr 21, 2026

Systems and methods for a multi-parameter sampling tool

Inventors: Tanguy Thierry Boucneau (Versailles, FR); Sofiene Bourghes (Paris, FR); Nicolas Gogin (Chatenay-Malabry, FR); Adeline Digard-Bahuon (Bonnelles, FR); Jorge Eduardo Hernandez Londono (Versailles, FR)
Assignee: GE PRECISION HEALTHCARE LLC
G16H30/40G06F3/04845G06F3/04847G06T5/20G06T5/40G06V10/758G06V10/762G16H30/20G06T2207/20104
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Quick Facts
Patent No.
US 12,609,193
App. No.
18/105,109
Granted
Apr 21, 2026
Kind
B2
Abstract

A system may include a processor-based device storing or accessing an image review application, which when executed by the processor-based device, causes acts to be performed such as retrieving image data for populating a graphical user interface displayed on the processor-based device and receiving a user input selecting a workflow tool and a sampling tool. The sampling tool, when executed by the processor-based device, may also receiving an additional user input of a region of interest within the image data, determining values for a parameter of interest based on the pixels within the region of interest, automatically configuring the workflow tool based on the determined values for the parameter of interest, and generating preset parameters of the workflow tool. The image review application may also adjust the display of the image data on the GUI using the configured workflow tool.

Claims (70)

1 . A system, comprising:

a processor-based device storing or accessing a medical imaging review application, which when executed by the processor-based device, causes acts to be performed comprising:

retrieving medical imaging data for populating a graphical user interface (GUI) displayed on the processor-based device;

receiving a first user input selecting a workflow tool; and

receiving a second user input of selecting a sampling tool, wherein the sampling tool, when executed by the processor-based device, causes acts to be performed comprising:

receiving a third user input via the sampling tool of a region of interest within the medical imaging data;

determining a value or values for a parameter of interest based on pixels or voxels within the region of interest, wherein determining the value or values for the parameter of interest comprises:

generating a histogram based on the pixels or the voxels within the region of interest;

fitting a first curve to a first histogram cluster of the histogram;

fitting a second curve to a second histogram cluster of the histogram; and

determining the value or values for the parameter of interest based on the first curve;

adjusting the value or values for the parameter of interest based on the second curve; and

automatically configuring the workflow tool based on the determined value or values for the parameter of interest;

generating preset parameters of the workflow tool; and

using the configured workflow tool to adjust the display of the medical imaging data on the GUI.

2 . The system of claim 1 , wherein the sampling tool, when executed by the processor-based device, causes acts to be performed comprising:

performing a robust statistical analysis on the pixels or the voxels within the region of interest to determine a measure of central tendency; and

determining the value or values for the parameter of interest based on the statistical analysis.

3 . The system of claim 1 , wherein the sampling tool, when executed by the processor-based device, causes acts to be performed comprising:

determining the value or values for the parameter of interest in response to determining a histogram cluster of the histogram is representative of the pixels or the voxels within the region of interest.

4 . The system of claim 1 , wherein the sampling tool, when executed by the processor-based device, causes acts to be performed comprising:

applying a filter or filters to the pixels or the voxels of the medical imaging data prior to determining the value or values for the parameter of interest.

5 . The system of claim 1 , wherein the medical imaging review application, when executed by the processor-based device, uses the configured workflow tool to adjust the display of the medical imaging data by:

applying one or more masks to the medical imaging data based on the configured workflow tool; and

populating the GUI with the medical imaging data and the one or more applied masks.

6 . The system of claim 1 , wherein the medical imaging review application, when executed by the processor-based device, causes acts to be performed comprising:

displaying a two-dimensional representation of the medical imaging data on the processor-based device, wherein the medical imaging data comprises volumetric image data, wherein the two-dimensional representation of the medical imaging data comprises a slice of the volumetric image data;

and wherein the sampling tool, when executed by the processor-based device, causes acts to performed comprising:

identifying one or more adjacent slices of volumetric image data of the two-dimensional representation of the image data; and

determining the value or values for the parameter of interest based on the voxels of the two-dimensional representation of the image data and the adjacent slices of volumetric image data.

7 . A method, comprising:

receiving, via a processor, a medical image for populating a graphical user interface (GUI) to display for a user;

receiving, via the processor, a first user input selecting a sampling tool;

receiving, via the processor, a second user input from the sampling tool of a region of interest within the medical image;

determining, via the processor, a value or values for a parameter of interest based on pixels or voxels within the region of interest, wherein the determining the value or values for the parameter of interest comprises:

generating, via the processor, a histogram comprising the pixels or the voxels of the region of interest; and

performing, via the processor, a characterization of the histogram to determine the value or values for the parameter of interest, wherein performing the characterization comprises:

fitting, via the processor, a first curve to a first histogram cluster and a second curve to a second histogram cluster of the histogram;

determining, via the processor, the value or values for a first parameter of interest based on the pixels of the first curve; and

determining, via the processor, the value or values for a second parameter of interest based on the pixels or the voxels of the second curve;

populating, via the processor, the GUI with one or more sliders associated with the value or values of the parameter of interest;

receiving, via the processor, a third user input to adjust the one or more sliders; and

storing, via the processor, the third user input and the parameter of interest in machine-learning model;

automatically configuring, via the processor, a workflow tool based on the adjusted value or values for the parameter of interest; and

applying, via the processor, the configured workflow tool to adjust the display of the medical image on the GUI.

8 . The method of claim 7 , comprising:

receiving, via the processor, a fourth user input from the sampling tool to adjust a size or a location of the region of interest within the medical image; and

determining, via the processor, the value or values for the parameter of interest based on the pixels or the voxels within the adjusted region of interest.

9 . The method of claim 7 , comprising:

applying, via the processor, one or more masks to the medical image based on the configured workflow tool; and

populating, via the processor, the GUI with the medical image and the one or more masks.

10 . The method of claim 7 , comprising:

receiving, via the processor, a fourth user input from the sampling tool selecting an anatomical region within the medical image;

determining, via the processor, the value or values for the parameter of interest based on the anatomical region; and

adjusting, via the processor, the value or values of the parameter of interest based on the pixels or the voxels of the anatomical region.

11 . A non-transitory, computer-readable medium comprising computer-readable code, that when executed by one or more processors, causes the one or more processors to perform operations comprising:

receiving image data for populating a graphical user interface (GUI) to display for a user;

receiving a user input selecting a workflow tool and a sampling tool;

receiving an additional user input from the sampling tool of an anatomical region within the image data;

determining a value or values for a parameter of interest based on pixels or voxels associated with the anatomical region, wherein determining the value or values for the parameter of interest comprises:

generating a histogram comprising the pixels or the voxels of the anatomical region;

characterizing of the histogram to determine one or more values of a central tendency of the pixels or the voxels of the anatomical region; and

populating the GUI with the histogram, the one or more values of the central tendency, or both;

dynamically configuring the workflow tool based on the determined value or values for the parameter of interest; and

implementing the configured workflow tool to adjust the display of the image data on the GUI.

12 . The non-transitory computer-readable medium of claim 11 ,

wherein the operations comprises:

identifying a first histogram cluster and a second histogram cluster of the histogram;

determine the first histogram cluster is representative of the pixels of the anatomical region; and

characterizing the first histogram cluster to determine the one or more values of the central tendency of the pixels or the voxels of the anatomical region.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 6, 2023
From: BOUCNEAU, TANGUY THIERRY; BOURGHES, SOFIENE; GOGIN, NICOLAS; DIGARD-BAHUON, ADELINE; HERNANDEZ LONDONO, JORGE EDUARDO
To: GE PRECISION HEALTHCARE LLC
Reel/Frame 062604/0387 →
Continuity (1)
Related Publication 20240266029A1 · Aug 8, 2024
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