Magnetic Resonance Imaging in Epilepsy: The Central Clinical Research Questions | |
The Anatomical Bases of the Epilepsies and MRI: Implications for MRI | |
Brain Structure in Epilepsy: The Crucial Role of MRI | |
MR Spectroscopy in Epilepsy | |
Mesial Temporal Lobe Structures: Anatomy | |
Magnetic Resonance Imaging of Hippocampal Sclerosis: Reliability of Visual Diagnosis and Implications for Surgical Treatment | |
Volumetric MRI Studies of the Hippocampus | |
Advances in Morphometric and Volumetric Analysis in Temporal Lobe Epilepsy | |
The Role of MRI Volumetric Studies in the Investigation of Patients with Intractable Epilepsy | |
The Future Role for MR Imaging in Epilepsy: Morphometry and Volume Analysis | |
Quantitative Relaxometry of Hippocampal Sclerosis | |
The Significance of T2 Changes in the Hippocampus | |
Investigation of Effects of Vigabatrin with Magnetic Resonance Imaging and Spectroscopy In Vivo | |
MR of Epilepsy: Three Observations | |
Cortical Dysplasia and Heterotopias | |
Cortical Dysgenesis in Adults with Epilepsy | |
Hemimegalencephaly | |
Agenesis of the Corpus Callosum | |
The Congenital Bilateral Peri-sylvian Syndrome: Imaging Findings | |
Focal Cortical Dysplasia in Temporal Lobe Epilepsy: The Role of Magnetic Resonance Imaging | |
MR in Congenital and Hereditary Metabolic Disorders Associated with Epilepsy | |
MRI in the Delineation of Genetic Metabolic Disorders | |
Minimal Developmental Disturbances in Epilepsy and MRI | |
Correlation of MRI and EEG | |
Principles of Stereotaxy Applied to MRI and EEG | |
MRI Stereotactic Placement of Intracranial Electrodes | |
Frameless Stereotaxy: Technical Aspects | |
Correlation of MRI and MEG | |
Volumetric Magnetic Resonance Imaging: Impact on Neuropsychological Studies | |
MRI and Intellectual Decline in Epilepsy | |
MRI and SPECT in Epilepsy Surgery | |
MR-Directed Stereotactic Resections and Per-operative Screening Using Low-Field MRI | |
Non-malignant Tumoural Lesions | |
Vascular Anomalies in Epilepsy: MRI Contribution | |
Magnetic Resonance and Neocortical Epilepsy Atrophies | |
Application of Spectroscopy to Epilepsy | |
Proton MR Spectroscopic Imaging in the Investigation of Patients with Temporal Lobe Epilepsy | |
Proton MR Spectroscopy in the Evaluation of Mesial Temporal Sclerosis | |
The Potential of Proton MR Spectroscopy for Monitoring: Pathological Alterations of Human Cerebral Metabolism In Vivo | |
Quantitative Proton MR Spectroscopy of the Human Brain | |
Image-Guided Proton MR Spectroscopy in Epilepsy | |
Techniques for Localisation and Signal Improvement in In Vivo Proton and Phosphorus MR Spectroscopy | |
Proton Observation of [superscript 13]C-Labelled Metabolites | |
Use of Combined [superscript 13]C-, [superscript 19]F- and [superscript 31]P-MR Spectroscopy in Research on Brain Metabolism | |
Malignant Tumoural Lesions Investigated by MRS | |
Analysis of Cortical Patterns | |
Digital Image Processing for Epilepsy | |
An MRI-Based Probabilistic Atlas of Neuroanatomy | |
Other Methods: Functional Imaging, Magnetisation Transfer, and Relaxation Times | |
MR Imaging of Diffusion | |
Fast Imaging and Serial Scanning | |
NMR Studies of Brain Activation | |
Differential Diagnosis of Human Intracranial Tumors In Vivo Using [superscript 1]H MR Spectroscopic Imaging and Feature Space for Spectral Pattern Recognition | |
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