Claims
- 1. A system, comprising:
an imaging system for acquiring image signal data from an object being imaged, the imaging being based on one or more image acquisition parameters and where the object has a device inserted therein; a device tracking system for acquiring device tracking signal data associated with the device inserted in the object; logic for tracking the device in the device tracking signal data and determining one or more device properties; and logic for adjusting one or more of the image acquisition parameters based, at least in part, on the one or more device properties.
- 2. The system of claim 1, where the device is a catheter.
- 3. The system of claim 2, where the device tracking signal data is image signal data.
- 4. The system of claim 1, where the logic for tracking includes logic for comparing two or more sets of device tracking signal data and determining a location of the device in the object being imaged.
- 5. The system of claim 1, where the logic for tracking includes logic for comparing two or more images generated from the image signal data and determining a location of the device in an image.
- 6. The system of claim 1, where the one or more device properties include one or more of, a location of the device, a speed of the device, a rate of change of the speed of the device, a direction of travel of the device, a device orientation, and a position of the device relative to a landmark.
- 7. The system of claim 1, where the one or more device properties are, the speed of the device, the orientation of the device, and the position of the device relative to a landmark.
- 8. The system of claim 1, where the one or more properties are the velocity of the device.
- 9. The system of claim 1, where the one or more properties are the velocity of the device and the acceleration of the device.
- 10. The system of claim 1, where the logic for tracking and the logic for adjusting are software.
- 11. The system of claim 1, where the image acquisition parameters include one or more of, image slice position, slice orientation, slice thickness, slice rotation, scan pattern, table motion, field of view, image resolution, type of acquisition, tip angle, image contrast, temporal resolution, spatial resolution, bandwidth, trajectory, TR, and TE.
- 12. The system of claim 1, where the image acquisition parameters are the field of view.
- 13. The system of claim 1, where the image acquisition parameters are the field of view and the image resolution.
- 14. The system of claim 1, where the image acquisition parameters are the image resolution.
- 15. A computer readable medium storing computer executable components of the system of claim 1.
- 16. A method for acquiring images of an object in a magnetic resonance imaging system in accordance with one or more acquisition parameters, where the object being imaged has a device inserted therein, comprising:
establishing one or more established image acquisition parameter values; acquiring one or more images of the object in accordance with the one or more established acquisition parameters; acquiring one or more sets of device tracking data associated with the device inserted in the object; tracking a device movement by analyzing one or more first sets of device tracking data to determine a first location of the device, analyzing one or more second sets of device tracking data to determine a second location, and comparing the first location to the second location; automatically adjusting one or more of the established image acquisition parameters for acquiring subsequent images based on the device movement; and repetitively acquiring, tracking and automatically adjusting until imaging is completed.
- 17. The method of claim 16, where the image acquisition parameters include one or more of image slice position, slice orientation, slice thickness, slice rotation, scan pattern, table motion, field of view, image resolution, type of acquisition, tip angle, image contrast, temporal resolution, spatial resolution, bandwidth, trajectory, TR, and TE.
- 18. The method of claim 16, where the image acquisition parameters are field of view.
- 19. The method of claim 16, where the image acquisition parameters are image resolution.
- 20. The method of claim 16, where the image acquisition parameters are field of view and image resolution.
- 21. A computer readable medium storing computer executable instructions operable to perform computer executable aspects of the method of claim 16.
- 22. A method for acquiring images of an object in a magnetic resonance imaging system in accordance with one or more acquisition parameters, where the object being imaged has a device inserted therein, comprising:
establishing one or more established image acquisition parameter values; acquiring one or more images of the object and the device in accordance with the one or more established acquisition parameters; tracking a device movement between the acquired images by analyzing one or more first images to determine a first location of the device, analyzing one or more second images to determine a second location, and comparing the first location to the second location; automatically adjusting one or more of the established image acquisition parameters for acquiring subsequent images based on the device movement; and repetitively acquiring, tracking and automatically adjusting until imaging is completed.
- 23. The method of claim 22, where the image acquisition parameters include one or more of image slice position, slice orientation, slice thickness, slice rotation, scan pattern, table motion, field of view, image resolution, type of acquisition, tip angle, image contrast, temporal resolution, spatial resolution, bandwidth, trajectory, TR, and TE.
- 24. The method of claim 22, where the image acquisition parameters are field of view.
- 25. The method of claim 22, where the image acquisition parameters are image resolution.
- 26. The method of claim 22, where the image acquisition parameters are field of view and image resolution.
- 27. A computer readable medium storing computer executable instructions operable to perform computer executable aspects of the method of claim 22.
- 28. A software product including one or more computer executable instructions for analyzing magnetic resonance image data of a plurality of images acquired by a magnetic resonance imaging system, the software product comprising:
first computer executable instructions that cause a computer to track a position of an object within the image data; and second computer executable instructions that cause a computer to modify image acquisition parameters of the magnetic resonance imaging system based on the motion of the object.
- 29. A software product including one or more computer executable instructions for analyzing magnetic resonance data acquired by a magnetic resonance imaging system, the software product comprising:
first computer executable instructions that cause a computer to track a position of an object within an object tracking data; and second computer executable instructions that cause a computer to modify image acquisition parameters of the magnetic resonance imaging system based on the motion of the object.
- 30. A magnetic resonance system, comprising:
a bore for receiving an object to be imaged; a main field magnet for generating a main magnetic field within the bore; an object support for moving an object through the bore during imaging; a radio frequency coil for applying radio frequency pulses toward the object; one or more radio frequency antennas for collecting volumetric data samples from the object caused by the radio frequency pulses; a reconstruction processor for transforming the volumetric data samples into one or more volumetric images that corresponds to a portion of the object; a device tracking logic for determining motion properties of a device within the object based on the one or more volumetric images; and parameter control logic for adjusting acquisition parameters for the magnetic resonance system based on the motion properties of the device.
- 31. A computer based system for automatically updating an MR image acquisition parameter, comprising:
means for acquiring an MR image of an object according to one or more image acquisition parameters; means for tracking the motion of a device inserted into the object and moveable with the object; and means for automatically updating the one or more image acquisition parameters based, at least in part, on the tracked motion of the device.
- 32. A set of application programming interfaces embodied on a computer readable medium for execution by a computer component in conjunction with automatically updating an image acquisition parameter, comprising:
a first interface for communicating an existing image acquisition parameter data; a second interface for communicating a device feedback data; and a third interface for communicating an updated image acquisition parameter data generated from the existing acquisition parameter data and the device feedback data.
- 33. In a computer system having a graphical user interface comprising a display and a selection device, a method of providing and selecting from a set of data entries on the display, the method comprising:
retrieving a set of data entries, each of the data entries representing a choice concerning automatically updating an MR image acquisition parameter based on an inserted device motion feedback data; displaying the set of entries on the display; receiving a data entry selection signal indicative of the selection device selecting a selected data entry; and in response to the data entry selection signal, initiating an operation associated with the selected data entry.
- 34. A computer data signal embodied in a transmission medium, comprising:
a set of computer executable instructions for tracking the motion of a device inserted in an object being imaged by MR; and a set of image acquisition parameter data that facilitates controlling one or more aspects of how the object is imaged by MR.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the benefit of U.S. Provisional Application 60/381,204 filed May 17, 2002, entitled System and Method for Adjusting Image Parameters Based on Device Tracking.
Provisional Applications (1)
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Number |
Date |
Country |
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60381204 |
May 2002 |
US |