IP Library Granted Patent US 8,737,713
Granted Patent B2
US 8,737,713 · App. 13/196,936 · Granted May 27, 2014

System for frame selection for optimal registration of a multi-frame dataset

Inventor: John Baumgart (Hoffman Estates, IL)
Assignee: Siemens Medical Solutions USA, Inc.
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 8,737,713
App. No.
13/196,936
Granted
May 27, 2014
Kind
B2
Abstract

An Angiographic X-ray imaging system provides enhanced image feature visualization. At least one repository includes data representing a sequence of X-ray images of a portion of patient anatomy acquired over a time interval and signal data representing electrical activity of the heart of the patient over the time interval. An image data processor determines for individual images of the sequence of X-ray images, characteristics of a portion of the signal data associated with a corresponding image. The characteristics comprise at least one of, (a) a peak to peak value of a portion of the signal data associated with a corresponding image and (b) an average value of a portion of the signal data associated with the corresponding image. The image data processor selects a set of images exclusive of particular images from the sequence of X-ray images in response to the determined characteristics and generates an averaged image from the set of images.

Claims (74)

1. An X-ray imaging system providing enhanced image feature visualization, comprising:

at least one repository of data representing a sequence of X-ray images of a portion of patient anatomy acquired over a time interval and signal data representing electrical activity of the heart of the patient over the time interval; and

an image data processor for,

determining, for each image of said sequence of X-ray images, a maximum value and a minimum value of a portion of said signal data associated with the image,

calculating, for each image of said sequence of X-ray images, an average value based on the maximum value and the minimum value of the portion of said signal data associated with the image,

selecting a set of images from said sequence of X-ray images by comparing said average value of a particular image with the average values of said sequence of X-ray images and excluding said particular image from said set of images in response to a determination that said average value of said particular image is insufficiently close to said average values of said sequence of X-ray images, the set of images excluding one or more images of said sequence of X-ray images, and

generating a generated image from said set of images.

2. A system according to claim 1 , wherein

an image comprises an image frame.

3. A system according to claim 1 , wherein

said image data processor identifies said portion of said signal data associated with an image based on acquisition time of the portion of said signal data and acquisition time of the associated image.

4. A system according to claim 3 , wherein

said image data processor identifies said portion of said signal data associated with an image, as a portion of said signal data acquired from said patient at a time during said time interval corresponding to a time during said interval during which the corresponding image was acquired.

5. A system according to claim 1 , wherein

said generated image enhances visualization of an invasive instrument,

the system further including

a display processor for initiating generation of data representing said generated image for display.

6. A system according to claim 1 , wherein

said portion of said signal data comprises at least one of, (a) a heart cycle, (b) a segment of a heart cycle and a section of said signal data encompassing a time at which a corresponding image was acquired.

7. A system according to claim 6 , wherein

said segment comprises at least one of a P wave segment, a QRS complex segment, an ST segment, a T wave segment and a U wave segment.

8. A system according to claim 1 , wherein

said signal data representing electrical activity of the heart of the patient comprises at least one of (a) an ECG signal, (b) an Intra-cardiac electrocardiogram (ICEG) signal, (c) a hemodynamic signal and (d) a blood oxygen saturation SPO2 signal.

9. An X-ray imaging system providing enhanced image feature visualization, comprising:

at least one repository of data representing a sequence of X-ray images of a portion of patient anatomy acquired over a time interval and signal data representing electrical activity of the heart of the patient over the time interval; and

an image data processor for,

determining, for each image of said sequence of X-ray images, at least one of a maximum value and a minimum value of a portion of said signal data associated with the image,

calculating, for each image of said sequence of X-ray images, an average value based on the at least one of the maximum value and the minimum value of the portion of said signal data associated with the image,

selecting a set of images from said sequence of X-ray images by comparing said average value of a particular image with the average values of said sequence of X-ray images and excluding said particular image from said set of images in response to a determination that said average value of said particular image is insufficiently close to said average values of said sequence of X-ray images, the set of images excluding one or more images of said sequence of X-ray images, and

generating a generated image from said set of images.

10. A system according to claim 9 , wherein

said image data processor identifies said portion of said signal data associated with an image, based on acquisition time of the portion of said signal data and acquisition time of the associated image.

11. A system according to claim 10 , wherein

said image data processor identifies said portion of said signal data associated with an image, as a portion of said signal data acquired from said patient at a time during said time interval corresponding to a time during said interval during which the corresponding image was acquired.

12. A system according to claim 9 , wherein

said generated image enhances visualization of an invasive instrument,

the system further including

a display processor for initiating generation of data representing said generated image for display.

13. A system according to claim 9 , wherein

said portion of said signal data comprises at least one of, (a) a heart cycle, (b) a segment of a heart cycle and a section of said signal data encompassing a time at which a corresponding image was acquired.

14. A method for enhancing image feature visualization in X-ray imaging, comprising:

storing in at least one repository data representing a sequence of X-ray images of a portion of patient anatomy acquired over a time interval and signal data representing electrical activity of the heart of the patient over the time interval;

determining for each image of said sequence of X-ray images, a maximum value and a minimum value of a portion of said signal data associated with the image,

calculating, for each image of said sequence of X-ray images, an average value based on the maximum value and the minimum value of the portion of said signal data associated with the image,

selecting a set of images from said sequence of X-ray images by comparing said average value of a particular image with the average values of said sequence of X-ray images and excluding said particular image from said set of images in response to a determination that said average value of said particular image is insufficiently close to said average values of said sequence of X-ray images, the set of images excluding one or more images of said sequence of X-ray images; and

generating a generated image from said set of images.

15. An X-ray imaging system providing enhanced image feature visualization, comprising:

at least one repository of data representing a sequence of X-ray images of a portion of patient anatomy acquired over a time interval and signal data representing electrical activity of the heart of the patient over the time interval; and

an image data processor for,

determining, for each image of said sequence of X-ray images, a maximum value and a minimum value of a portion of said signal data associated with the image,

calculating, for each image of said sequence of X-ray images, a peak to peak value based on the maximum value and the minimum value of the portion of said signal data associated with the image,

selecting a set of images from said sequence of X-ray images by comparing said peak to peak value of a particular image with a peak to peak value of one or more images of said sequence of X-ray images and excluding said particular image from said set of images in response to a determination that said peak to peak value of said particular image is insufficiently close to said peak to peak value of said one or more images, the set of images excluding one or more images of said sequence of X-ray images, and

generating a generated image from said set of images.

16. A system according to claim 15 , wherein

said image data processor identifies said portion of said signal data associated with an image based on acquisition time of the portion of said signal data and acquisition time of the associated image.

17. A system according to claim 16 , wherein

said image data processor identifies said portion of said signal data associated with an image, as a portion of said signal data acquired from said patient at a time during said time interval corresponding to a time during said interval during which the corresponding image was acquired.

18. An X-ray imaging system providing enhanced image feature visualization, comprising:

at least one repository of data representing a sequence of X-ray images of a portion of patient anatomy acquired over a time interval and signal data representing electrical activity of the heart of the patient over the time interval; and

an image data processor for,

determining, for each image of said sequence of X-ray images, at least one of a maximum value and a minimum value of a portion of said signal data associated with the image,

calculating, for each image of said sequence of X-ray images, a peak to peak value based on the at least one of the maximum value and the minimum value of the portion of said signal data associated with the image,

selecting a set of images from said sequence of X-ray images by comparing said peak to peak value of a particular image with a peak to peak value of one or more images of said sequence of X-ray images and excluding said particular image from said set of images in response to a determination that said peak to peak value of said particular image is insufficiently close to said peak to peak value of said one or more images, the set of images excluding one or more images of said sequence of X-ray images, and

generating a generated image from said set of images.

19. A system according to claim 18 , wherein

said image data processor identifies said portion of said signal data associated with an image, based on acquisition time of the portion of said signal data and acquisition time of the associated image.

20. A system according to claim 19 , wherein

said image data processor identifies said portion of said signal data associated with an image, as a portion of said signal data acquired from said patient at a time during said time interval corresponding to a time during said interval during which the corresponding image was acquired.

21. A method for enhancing image feature visualization in X-ray imaging, comprising:

storing in at least one repository data representing a sequence of X-ray images of a portion of patient anatomy acquired over a time interval and signal data representing electrical activity of the heart of the patient over the time interval;

determining for each image of said sequence of X-ray images, a maximum value and a minimum value of a portion of said signal data associated with the image,

calculating, for each image of said sequence of X-ray images, a peak to peak value based on the maximum value and the minimum value of the portion of said signal data associated with the image,

selecting a set of images from said sequence of X-ray images by comparing said peak to peak value of a particular image with a peak to peak value of one or more images of said sequence of X-ray images and excluding said particular image from said set of images in response to a determination that said peak to peak value of said particular image is insufficiently close to said peak to peak value of said one or more images, the set of images excluding one or more images of said sequence of X-ray images; and

generating a generated image from said set of images.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 19, 2017
From: SIEMENS MEDICAL SOLUTIONS USA, INC.
To: SIEMENS HEALTHCARE GMBH
Reel/Frame 043042/0406 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 3, 2011
From: BAUMGART, JOHN
To: SIEMENS MEDICAL SOLUTIONS USA, INC.
Reel/Frame 026692/0238 →
Continuity (2)
Provisional Application 61417944 · Nov 30, 2010
Related Publication 20120134567A1 · May 31, 2012