IP Library Granted Patent US 12690843
Granted Patent B2
US 12690843 · App. 18/367,874 · Granted Jul 28, 2026

Key frame identification for intravascular ultrasound based on plaque burden

Inventors: Haruka Imura (Maple Grove, MN); Judith Tiferes Wang (Buenos Aires, AR); Wenguang Li (Los Gatos, CA); Erik Stephen Freed (New Brighton, MN); Jennifer Gibbs (White Bear, MN); Anming He Cai (San Jose, CA)
Assignee: BOSTON SCIENTIFIC SCIMED, INC.
A61B8/469A61B8/0891A61B8/12A61B8/5207A61B8/5223
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Quick Facts
Patent No.
US 12690843
App. No.
18/367,874
Granted
Jul 28, 2026
Kind
B2
Abstract

The present disclosure provides to process intravascular ultrasound (IVUS) images to identify key frames such as the proximal key frame, a distal key frame, and a minimal key frame from the IVUS images based on the raw lumen area, vessel area, and plaque burden. Ones of the key frames can be re-identified based on manipulation of other ones of the key frames.

Claims (52)

1 . A computing apparatus for an intravascular ultrasound (IVUS) system, comprising:

circuitry to couple to an intravascular ultrasound (IVUS) system;

a memory device storing instructions; and

a processor coupled to the circuitry and the memory device, the processor configured to execute the instructions, which when executed cause the computing apparatus to:

receive a series of intravascular ultrasound (IVUS) images of a vessel of a patient, the series of IVUS images comprising a proximal IVUS frame, a distal IVUS frame, and a plurality of interior IVUS frames;

determine a raw lumen area represented in each of the plurality of interior IVUS frames;

generate, for each of the plurality of interior IVUS frames, a smooth lumen area based on a sampling filter and the raw lumen area;

identify as a smooth lumen frame, the one of the plurality of interior IVUS frames having a smooth lumen area less than or equal to the least smooth lumen area of the plurality of interior IVUS frames;

select a minimum region subset of the plurality of interior IVUS frames, the minimum region subset of interior IVUS frames comprising a series of adjacent interior IVUS frames comprising the smooth lumen frame and at least one other of the plurality of interior IVUS frames, wherein the smooth lumen frame and the at least one other of the plurality of interior IVUS frames are co-linear; and

identify as a minimum key frame, the one of the minimum region subset of the plurality of interior IVUS frames having a raw lumen area less than or equal to the smallest raw lumen area among the minimum region subset of the plurality of interior IVUS frames.

2 . The computing apparatus of claim 1 , wherein the minimum region subset of the plurality of interior IVUS frames comprises 21 frames.

3 . The computing apparatus of claim 1 , wherein the minimum region subset of the plurality of interior IVUS frames comprises ones of the series of IVUS images representing a distance along the vessel.

4 . The computing apparatus of claim 3 , wherein the distance is less than or equal to 2 millimeters.

5 . The computing apparatus of claim 1 , wherein the interior IVUS frames are disposed between the proximal IVUS frame and the distal IVUS frame.

6 . The computing apparatus of claim 1 , wherein the series of IVUS images comprise a plurality of IVUS image frames, the instructions when executed cause the computing apparatus to:

designate the first frame in the series of IVUS images as the distal key frame; and

designate the last frame in the series of IVUS images as the proximal key frame.

7 . The computing apparatus of claim 1 , the instructions when executed cause the computing apparatus to receive, from an input device, an indication of the proximal IVUS frame and the distal IVUS frame.

8 . The computing apparatus of claim 7 , wherein the series of IVUS images comprise a plurality of IVUS image frames and wherein identifying as the smooth lumen frame, the one of the plurality of interior IVUS frames having a smooth lumen area less than or equal to the smooth lumen area of the plurality interior IVUS frames comprises:

designate each one of the plurality IVUS images disposed between the proximal IVUS frame and the distal IVUS frame as interior IVUS frames;

identify the least smooth lumen area of the plurality of interior IVUS frames;

identify the one or more of the plurality of interior IVUS frames having a smooth lumen area equal to the least smooth lumen area; and

designate a one of the identified one or more of the plurality of interior IVUS frames disposed central to the proximal IVUS frame and the distal IVUS frame as the minimum smooth lumen frame.

9 . The computing apparatus of claim 1 , wherein the sampling filter comprises a first sampling filter, the instructions when executed cause the computing apparatus to generate, for each of the plurality of IVUS images, a smoother lumen area based on a second sampling filter and the smooth lumen area, wherein the second sampling filter is different than the first sampling filter.

10 . The computing apparatus of claim 1 , wherein the series of IVUS images comprise a plurality of IVUS image frames, the instructions when executed cause the computing apparatus to:

identify an initial proximal search frame and an initial distal search frame;

identify an IVUS image frame from the one of the plurality of IVUS image frames located between the initial proximal search frame and the initial distal search frame having the smallest smoother lumen area;

identify, as a central search frame, the one of the plurality of IVUS image frames located within a first distance of the IVUS image frame having the smallest raw lumen area;

identify, as the distal key frame, the one of the plurality of IVUS image frames located within a second distance distal from the central search frame having a smooth plaque burden and a raw plaque burden less than a threshold value; and

identify, as the proximal key frame, the one of the plurality of IVUS image frames located within the second distance proximal from the central search frame having a smooth plaque burden and a raw plaque burden less than the threshold value.

11 . The computing apparatus of claim 10 , wherein the threshold value is between 40 and 60 percent.

12 . The computing apparatus of claim 10 , wherein the first distance is less than or equal to 1 millimeter (mm) and wherein the second distance is less than or equal to 5 mm.

13 . A non-transitory computer-readable storage medium, the computer-readable storage medium including instructions that when executed by a computer, cause the computer to:

receive a series of intravascular ultrasound (IVUS) images of a vessel of a patient, the series of IVUS images comprising a proximal IVUS frame, a distal IVUS frame, and a plurality of interior IVUS frames;

determine a raw lumen area represented in each of the plurality of interior IVUS frames;

generate, for each of the plurality of interior IVUS frames, a smooth lumen area based on a sampling filter and the lumen area;

identify as a smooth lumen frame, the one of the plurality of interior IVUS frames having a smooth lumen area less than or equal to the least smooth lumen area of the plurality of interior IVUS frames;

select a minimum region subset of the plurality of interior IVUS frames, the minimum region subset of interior IVUS frames comprising a series of adjacent interior IVUS frames comprising the smooth lumen frame and at least one other of the plurality of interior IVUS frames, wherein the smooth lumen frame and the at least one other of the plurality of interior IVUS frames are co-linear; and

identify as a minimum key frame, the one of the minimum region subset of the plurality of interior IVUS frames having a raw lumen area less than or equal to the smallest raw lumen area among the minimum region subset of the plurality of interior IVUS frames.

14 . The computer-readable storage medium of claim 13 , wherein the minimum region subset of the plurality of interior IVUS frames comprises 21 frames.

15 . The computer-readable storage medium of claim 13 , wherein the minimum region subset of the plurality of interior IVUS frames comprises ones of the series of IVUS images representing a distance along the vessel.

16 . The computer-readable storage medium of claim 15 , wherein the distance is less than or equal to 2 millimeters.

17 . The computer-readable storage medium of claim 13 , wherein the interior IVUS frames are disposed between the proximal IVUS frame and the distal IVUS frame.

18 . The computer-readable storage medium of claim 13 , wherein the series of IVUS images comprise a plurality of IVUS image frames, the instructions when executed cause the computer to:

designate the first frame in the series of IVUS images as the distal key frame; and

designate the last frame in the series of IVUS images as the proximal key frame.

19 . The computer-readable storage medium of claim 13 , the instructions when executed cause the computer to receive, from an input device, an indication of the proximal IVUS frame and the distal IVUS frame.

20 . The computer-readable storage medium of claim 19 , wherein the series of IVUS images comprise a plurality of IVUS image frames and wherein identifying as the smooth lumen frame, the one of the plurality of interior IVUS frames having a smooth lumen area less than or equal to the smooth lumen area of the plurality interior IVUS frames comprises:

designate each one of the plurality IVUS images disposed between the proximal IVUS frame and the distal IVUS frame as interior IVUS frames;

identify the least smooth lumen area of the plurality of interior IVUS frames;

identify the one or more of the plurality of interior IVUS frames having a smooth lumen area equal to the least smooth lumen area; and

designate a one of the identified one or more of the plurality of interior IVUS frames disposed central to the proximal IVUS frame and the distal IVUS frame as the minimum smooth lumen frame.