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Clinical Trial Summary

This study aims to develop, evaluate and translate highly accelerated imaging sequences (each protocol under 5 minutes) for in-vivo knee Osteoarthritis applications on a standard clinical 3T scanner using novel compression sensing and parallel imaging strategies.The overarching objective of the study is to establish a non-invasive imaging biomarker based on the development of rapid relaxation mapping with compressed sensing (CS) that will be clinically useful for assessment of early Osteoarthritis. A total of 90 subjects including 30 patients with high risk of developing knee osteoarthritis (OA), 30 patients with mild OA and 30 healthy controls will be accrued.


Clinical Trial Description

Current noninvasive imaging methods to evaluate knee joints include plain radiographs, computed tomography (CT), and clinical morphological magnetic resonance imaging (MRI) of joint structures. These techniques can only detect later-stage, macroscopic joint structural abnormalities that are irreversible and not amenable to early therapy. This study aims to develop highly accelerated imaging sequences for ex-vivo knee OA applications on a standard clinical 3T scanner using novel CS and parallel imaging (PI) strategies. ;


Study Design


Related Conditions & MeSH terms


NCT number NCT02888119
Study type Interventional
Source NYU Langone Health
Contact
Status Completed
Phase N/A
Start date July 2016
Completion date December 13, 2021

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