Claims
- 1. A method for acquiring a plurality of images of an object of interest using a tomosynthesis imaging system, said method comprising:
determining a thickness of an object of interest; and adjusting at least one parameter of an image acquisition process based on the determined thickness.
- 2. A method in accordance with claim 1 further comprising:
acquiring a first view using the adjusted parameter; adjusting at least one parameter based on the acquired view; and acquiring a second view based on the parameter adjusted after acquiring the first view.
- 3. A method in accordance with claim 1 further comprising applying a reduced compression force.
- 4. A method in accordance with claim 1 wherein adjusting at least one parameter of an image acquisition process comprises adjusting at least one of an acquisition geometry parameter, a radiation control parameter, a reconstruction parameter, and a data acquisition parameter wherein adjusting the data acquisition parameter comprises adjusting a detector gain.
- 5. A method in accordance with claim 1 wherein adjusting at least one parameter of an image acquisition process comprises adjusting at least one of an acquisition geometry parameter, a radiation control parameter, and a reconstruction parameter, wherein the acquisition geometry parameter comprises a geometry parameter to acquire a first view at a first angle and a second view at a second angle.
- 6. A method in accordance with claim 1 wherein adjusting at least one parameter of an image acquisition process comprises adjusting at least one of an acquisition geometry parameter, a radiation control parameter, and a reconstruction parameter, wherein the radiation control parameter comprises at least one of a radiation source anode, a radiation source filter, a radiation source voltage, a radiation source current, and a radiation exposure time.
- 7. A method in accordance with claim 1 wherein adjusting at least one parameter of an image acquisition process comprises adjusting at least one of an acquisition geometry parameter, a radiation control parameter, a reconstruction parameter, wherein adjusting the reconstruction parameter comprises adjusting at least one of a thickness of a reconstructed volume, and a quantity of reconstructed slices, and a data acquisition parameter wherein adjusting the data acquisition parameter comprises adjusting a detector gain.
- 8. A method in accordance with claim 1 wherein the object of interest is a breast.
- 9. A method for acquiring a plurality of images of an object of interest using a tomosynthesis imaging system, said method comprising:
applying a reduced compression force; determining a thickness of a breast based on the reduced compression force; and adjusting at least one of a geometry parameter to acquire a first view at a first angle and a second view at a second angle, a radiation source anode, a radiation source filter, a radiation source voltage, a radiation source current, a radiation exposure time, a thickness of a reconstructed volume, a detector gain, and a quantity of reconstructed slices.
- 10. A method for operating a tomosynthesis imaging system, said method comprising:
providing an object of interest; generating a mammographic compressed thickness of the object; adjusting the mammographic compressed thickness such that the mammographic compressed breast thickness is increased by 0.5 cm for breasts with a compressed thickness of 2-4 cm, is increased by 0.75 cm for breasts between 4-6 cm, is increased by 1.0 cm for breasts between 6-8 cm, and is increased by 1.25 cm for breasts greater than 8 cm compressed thickness; and using the adjusted mammographic compressed thickness to perform a tomosynthesis scan.
- 11. A method in accordance with claim 10 further comprising:
acquiring a first view using the adjusted parameter; adjusting at least one parameter based on the acquired view; and acquiring a second view based on the parameter adjusted after acquiring the first view.
- 12. A method in accordance with claim 10 further comprising applying a reduced compression force.
- 13. A method in accordance with claim 10 further comprising adjusting at least one parameter of an image acquisition process.
- 14. A method in accordance with claim 11 wherein adjusting at least one parameter of an image acquisition process comprises adjusting at least one of an acquisition geometry parameter, a radiation control parameter, a reconstruction parameter, and a data acquisition parameter wherein adjusting the data acquisition parameter comprises adjusting a detector gain.
- 15. A method in accordance with claim 13 wherein adjusting at least one parameter of an image acquisition process comprises adjusting at least one of an acquisition geometry parameter, a radiation control parameter, and a reconstruction parameter, wherein said acquisition geometry parameter comprises a geometry parameter to acquire a first view at a first angle and a second view at a second angle.
- 16. A method in accordance with claim 13 wherein adjusting at least one parameter of an image acquisition process comprises adjusting at least one of an acquisition geometry parameter, a radiation control parameter, and a reconstruction parameter, wherein said radiation control parameter comprises at least one of a radiation source anode, a radiation source filter, a radiation source voltage, a radiation source current, and a radiation exposure time.
- 17. A method in accordance with claim 13 wherein adjusting at least one parameter of an image acquisition process comprises adjusting at least one of an acquisition geometry parameter, a radiation control parameter, and a reconstruction parameter, wherein said reconstruction parameter comprises at least one of a thickness of a reconstructed volume, and a quantity of reconstructed slices.
- 18. A tomosynthesis imaging system for acquiring a plurality of images of an object of interest, said tomosynthesis imaging system comprising;
a detector array; at least one radiation source; a compression force indicator; a compressed breast thickness indicator; and a computer coupled to said detector array and said radiation source and configured to:
determine a thickness of an object of interest; and adjust at least one parameter of an image acquisition process based on the determined thickness.
- 19. A tomosynthesis imaging system in accordance with claim 18 wherein said computer further configured to:
acquire a first view using the adjusted parameter; adjust at least one parameter based on the acquired view; and acquire a second view based on the parameter adjusted after acquiring the first view.
- 20. A tomosynthesis imaging system in accordance with claim 18 wherein said computer further configured to apply a reduced compression force.
- 21. A tomosynthesis imaging system in accordance with claim 18 wherein to adjust at least one parameter of an image acquisition process, said computer further configured to adjust at least one of an acquisition geometry parameter, a radiation control parameter, a reconstruction parameter, and a data acquisition parameter wherein adjusting the data acquisition parameter comprises adjusting a detector gain.
- 22. A tomosynthesis imaging system in accordance with claim 18 wherein to adjust at least one parameter of an image acquisition process, said computer further configured to adjust at least one of an acquisition geometry parameter, a radiation control parameter, and a reconstruction parameter wherein said acquisition geometry parameter comprises a geometry parameter to acquire a first view at a first angle and a second view at a second angle.
- 23. A tomosynthesis imaging system in accordance with claim 18 wherein to adjust at least one parameter of an image acquisition process, said computer further configured to adjust at least one of an acquisition geometry parameter, a radiation control parameter, and a reconstruction parameter wherein said radiation control parameter comprises at least one of a radiation source anode, a radiation source filter, a radiation source voltage, a radiation source current, and a radiation exposure time.
- 24. A tomosynthesis imaging system in accordance with claim 18 wherein to adjust at least one parameter of an image acquisition process, said computer further configured to adjust at least one of an acquisition geometry parameter, a radiation control parameter, and a reconstruction parameter wherein said reconstruction parameter comprises at least one of a thickness of a reconstructed volume, and a quantity of reconstructed slices.
- 25. A tomosynthesis imaging system in accordance with claim 18 wherein said object of interest is a breast.
- 26. A tomosynthesis imaging system for acquiring a plurality of images of a breast, said tomosynthesis imaging system comprising;
a detector array; at least one radiation source; a compression force indicator; a compressed breast thickness indicator; and a computer coupled to said detector array and said radiation source and configured to:
apply a reduced compression force; determine a thickness of said breast based on the reduced compression force; and adjust at least one of a geometry parameter to acquire a first view at a first angle and a second view at a second angle, a radiation source anode, a radiation source filter, a radiation source voltage, a radiation source current, a radiation exposure time, a thickness of a reconstructed volume, and a quantity of reconstructed slices.
- 27. A computer readable medium encoded with a program executable by a computer for controlling an imaging system, the imaging system including a radiation source and a digital detector, said program configured to instruct the computer to:
determine a thickness of an object of interest; and adjust at least one parameter of an image acquisition process based on the determined thickness.
- 28. A computer readable medium in accordance with claim 27 wherein said program further configured to instruct the computer:
acquire a first view using the adjusted parameter; adjust at least one parameter based on the acquired view; and acquire a second view based on the parameter adjusted after acquiring the first view.
- 29. A computer readable medium in accordance with claim 27 wherein to determine a thickness of an object of interest, said program further configured to instruct the computer to apply a reduced compression force.
- 30. A computer readable medium in accordance with claim 27 wherein to adjust at least one parameter of an image acquisition process, said computer further configured to adjust at least one of an acquisition geometry parameter, a radiation control parameter, a reconstruction parameter, and a data acquisition parameter wherein adjusting the data acquisition parameter comprises adjusting a detector gain.
- 31. A computer readable medium in accordance with claim 27 wherein to adjust at least one parameter of an image acquisition process, said computer further configured to adjust at least one of an acquisition geometry parameter, a radiation control parameter, and a reconstruction parameter wherein said acquisition geometry parameter comprises a geometry parameter to acquire a first view at a first angle and a second view at a second angle.
- 32. A computer readable medium in accordance with claim 27 wherein to adjust at least one parameter of an image acquisition process, said computer further configured to adjust at least one of an acquisition geometry parameter, a radiation control parameter, and a reconstruction parameter wherein said radiation control parameter comprises at least one of a radiation source anode, a radiation source filter, a radiation source voltage, a radiation source current, and a radiation exposure time.
- 33. A computer readable medium in accordance with claim 27 wherein to adjust at least one parameter of an image acquisition process, said computer further configured to adjust at least one of an acquisition geometry parameter, a radiation control parameter, and a reconstruction parameter wherein said reconstruction parameter comprises at least one of a thickness of a reconstructed volume, and a quantity of reconstructed slices.
- 34. A computer readable medium encoded with a program executable by a computer for calibration of an imaging system, the imaging system including a radiation source and a digital detector, said program configured to instruct the computer to:
apply a reduced compression force to a breast; determine a thickness of said breast based on the reduced compression force; and adjust at least one of a geometry parameter to acquire a first view at a first angle and a second view at a second angle, a radiation source anode, a radiation source filter, a radiation source voltage, a radiation source current, a radiation exposure time, a thickness of a reconstructed volume, and a quantity of reconstructed slices.
STATEMENT REGARDING FEDERALLY SPONSORED RESEARCH & DEVELOPMENT
[0001] The government may have rights in this invention pursuant to Grant DAMD17-98-1-8109 issued from the US Army Medical Research and Materiel Command.