The use of nuclear magnetic resonance of protons to produce proton density images.
1Ten clusters of patients with similar magnetic resonance imaging abnormalities were identified.
2DMN integrity was assessed by resting state functional connectivity magnetic resonance imaging.
3Correlative relationships between magnetic resonance imaging measures and PWT were not significant.
4Surgical approach selections depends on tumor classification on magnetic resonance imaging features.
5Cardiac magnetic resonance imaging and echocardiography were used to assess cardiac phenotypes.
6Swine were assessed by cardiac magnetic resonance imaging and pressure volume catheterization.
7We employed transesophageal echocardiography and magnetic resonance imaging to evaluate the mass.
8A diagnostic evaluation including magnetic resonance imaging and lumbar puncture was unrevealing.
9However, magnetic resonance imaging studies have also revealed widespread white matter disease.
10Imaging examinations included dynamic radiography, computed tomography scans, and magnetic resonance imaging.
11Gadolinium-enhanced T1-weighted magnetic resonance imaging was performed using the MRI stereotactic device.
12Dependent variables were bone geometry and biomechanical properties using magnetic resonance imaging.
13The magnetic resonance imaging revealed a voluminous orbital tumour, probably a rhabdomyosarcoma.
14Cerebellar atrophy was detected by cerebral magnetic resonance imaging in 2 patients.
15WMHs were assessed on baseline T2 fluid-attenuated inversion recovery magnetic resonance imaging.
16Her brain findings had resolved on magnetic resonance imaging 2 months later.
Translations for magnetic resonance imaging