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日本磁気共鳴医学会 | 論文
- In vitro ^1H-NMR Spectroscopic Analysis of Metabolites in Fast-and Slow-twitch Muscles of Young Rats
- Combining Time-resolved and Single-phase 3D Techniques in Contrast-enhanced Carotid MR Angiography
- Dynamic MR Cholangiography after Fatty Meal Loading : Cystic Contractility and Dynamic Evaluation of Biliary Stasis
- Perfusion Study of Hypervascular Hepatocellular Carcinoma with SPIO
- Gd-EOB-DTPA Enhanced MRI for Hepatocellular Carcinoma : Quantitative Evaluation of Tumor Enhancement in Hepatobiliary Phase
- MR-guided Vacuum-assisted Breast Biopsy Using a Non-titanium Needle
- Ultrasound-guided Cryoablation of Invasive Ductal Carcinoma inside the MR Room
- High-speed Imaging at 3 Tesla : A Technical and Clinical Review with an Emphasis on Whole-brain 3D Imaging
- Prompt Contrast Enhancement of Cerebrospinal Fluid Space in the Fundus of the Internal Auditory Canal : Observations in Patients with Meningeal Diseases on 3D-FLAIR Images at 3 Tesla
- Contrast-enhanced MR Imaging of Metastatic Brain Tumor at 3 Tesla : Utility of T_1-weighted SPACE Compared with 2D Spin Echo and 3D Gradient Echo Sequence
- Visualization of Neuromelanin in the Substantia Nigra and Locus Ceruleus at 1.5T Using a 3D-gradient Echo Sequence with Magnetization Transfer Contrast
- Motor Denervation of Tumors of the Head and Neck : Changes in MR Appearance
- Symmetrical Lesions of the Middle Cerebellar Peduncle : MR Imaging and Differential Diagnosis
- Fenestration of the Middle Cerebral Artery Detected by MR Angiography
- Computed Tomography and Magnetic Resonance Imaging of the Pericardium : Anatomy and Pathology
- High-field MRI of the Central Nervous System : Current Approaches to Clinical and Microscopic Imaging
- Enhancement Effects and Relaxivities of Gadolinium-DTPA at 1.5 versus 3 Tesla : A Phantom Study
- Age-related Changes in Locus Ceruleus on Neuromelanin Magnetic Resonance Imaging at 3 Tesla
- Cerebellar Atrophy Attributed to Cerebellitis in Two Patients
- MR Findings of Cerebral White Matter in Cockayne Syndrome