TM Ernst, TE Prieto, BSR Armstrong - US Patent 9,076,212, 2015 - Google Patents
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R Bammer - US Patent App. 11/823,469, 2009 - Google Patents
BACKGROUND 0004. Due to the sequential nature of the magnetic reso nance imaging (MRI) acquisition process, motion artifacts remain one of the most prevalent confounders of …
G Gerganov, I Kawrakow - US Patent 10,026,186, 2018 - Google Patents
US10026186B2 - Single- and multi-modality alignment of medical images in the presence of non-rigid deformations using phase correlation - Google Patents US10026186B2 - Single- and …
JA Lovberg, XJ Pan - US Patent 9,305,365, 2016 - Google Patents
(57) ABSTRACT A system for tracking a moving target having up to six degrees of freedom and rapidly determining positions of the target, said system includes an easy to locate …
NY Jeffrey, WH Alameida, JA Lovberg, XJ Pan… - US Patent …, 2017 - Google Patents
US9734589B2 - Systems, devices, and methods for tracking and compensating for patient motion during a medical imaging scan - Google Patents US9734589B2 - Systems, devices, and …
NY Jeffrey, JA Lovberg, XJ Pan - US Patent 9,717,461, 2017 - Google Patents
A motion compensation system for tracking and compensating for patient motion during a medical imaging scan comprises an optical marker comprising an optically visible pattern …
UP Gustafsson, AW Dreher - US Patent 10,716,515, 2020 - Google Patents
In some embodiments, a motion detection and correction system and/or device for tracking and compensating for patient motion during a medical imaging scan can be adapted to be …
TM Ernst, BA Zahneisen, NY Jeffrey - US Patent 10,004,462, 2018 - Google Patents
The disclosure herein provides methods, systems, and devices for removing prospective motion correction from medical imaging scans. In an embodiment, a computer-implemented …