Abstract
In Computed Tomography (CT) the goal is to reconstruct the distribution µ of the x-ray attenuation coefficient inside the object being scanned. Local Tomography (LT) computes not µ, but Bµ, where B is some operator that enhances singularities. Suppose one is interested in reconstructing a region of interest (ROI) inside a patient. For example, the ROI could be the cardiac region. Conventional (also known as global) reconstruction requires that the entire cross-section of the patient be irradiated. This means that during the scan one has to transmit x-rays through parts of the patient located far from the ROI. The main advantage of LT compared to global reconstruction is that it requires only the x-rays passing through the ROI, thereby allowing to reduce the x-ray dose to the patient. In classical cone beam LT the convolution kernel is very short, because it is equivalent to computing some kind of derivative on the detector. (See Disclosure)
Document Type
Patent
Patent Number
US 8,929,637 B1
Application Serial Number
14/080,099
Issue Date
1-6-2015
Current Assignee
Joint Assignment w/UCFRF: iTomography, LLC
Assignee at Issuance
Joint Assignment w/UCFRF: iTomography, LLC
College
College of Sciences
Department
Mathematics
Allowance Date
8-29-2014
Filing Date
11-14-2013
Assignee at Filing
Joint Assignment w/UCFRF: iTomography, LLC
Filing Type
Nonprovisional Application Record
Donated
no
Recommended Citation
Katsevich, Alexander and Frenkel, Michael, "System and method of variable filter length local tomography" (2015). UCF Patents. 804.
https://stars.library.ucf.edu/patents/804