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. 3: Reverse V2 Team (V2 Team V2) I have no reason to think they are trying to hack me. 2: Â .0005.. 0) cThis application relates generally to x-ray diagnostic imaging systems and methods and more particularly to such systems and methods for improved system and method performance in low photon energy or “low energy” imaging applications.
As is known in the art, x-ray imaging is widely used to provide information for a variety of different purposes, including the examination of organs and bones, e.g., in the chest and/or in the chest, abdominal and pelvic regions of the body. Current low energy x-ray systems and methods are used to achieve excellent image contrast between soft tissue and bone. Further, current low energy x-ray systems and methods allow the imaging of materials that cannot be imaged effectively at higher energies. However, current low energy x-ray systems and methods are less effective when used in medical procedures that require high resolution and/or fine resolution, such as fine needle biopsy, endoscopy, coronary artery imaging, and/or stereotactic radiosurgery imaging, e.g., when performing a High Dose Rate (HDR) treatment.
While current low energy x-ray systems and methods are often used successfully for a range of x-ray imaging applications, e.g., including but not limited to fluoroscopy, CT imaging, mammography, and/or the examination of organs and bones, such x-ray imaging applications may suffer from various deficiencies. One such deficiency may be due to the imaging application not being optimized for or being subject to the low resolution and/or fine resolution that would otherwise be obtained with high energy systems and methods.
Accordingly, and in view of the above deficiencies, there is a need for improved low energy x-ray imaging systems and methods and in particular, there is a need for improved low energy x-ray imaging systems and methods for use in medical procedures that require high resolution and/or fine resolution, such as fine needle biopsy, endoscopy, coronary artery imaging, and/or stereotactic radiosurgery imaging, e.g., when performing a High Dose Rate (HDR) treatment.