Spatiotemporal Techniques in Multimodal Imaging for Brain Mapping and Epilepsy

Spatiotemporal Techniques in Multimodal Imaging for Brain Mapping and Epilepsy
Author: Daniel Mordechai Goldenholz
Publisher:
Total Pages: 274
Release: 2006
Genre:
ISBN:

Abstract: This thesis explored multimodal brain imaging using advanced spatiotemporal techniques. The first set of experiments were based on simulations. Much controversy exists in the literature regarding the differences between magnetoencephalography (MEG) and electroencephalography (EEG), both practically and theoretically. The differences were explored using simulations that evaluated the expected signal-to-noise ratios from reasonable brain sources. MEG and EEG were found to be complementary, with each modality optimally suited to image activity from different areas of the cortical surface. Consequently, evaluations of epileptic patients and general neuroscience experiments will both benefit from simultaneously collected MEG/EEG. The second set of experiments represent an example of MEG combined with magnetic resonance imaging (MRI) and functional MRI (fMRI) applied to healthy subjects. The study set out to resolve two questions relating to shape perception. First, does the brain activate functional areas sequentially during shape perception, as has been suggested in recent literature? Second, which, if any, functional areas are active time-locked with reaction-time? The study found that functional areas are non-sequentially activated, and that area IT is active time-locked with reaction-time. These two points, coupled with the method for multimodal integration, can help further develop our understanding of shape perception in particular, and cortical dynamics in general for healthy subjects. Broadly, these two studies represent practical guidelines for epilepsy evaluations and brain mapping studies. For epilepsy studies, clinicians could combine MEG and EEG to maximize the probability of finding the source of seizures. For brain mapping in general, EEG, MEG, MRI and fMRI can be combined in the methods outlined here to obtain more sophisticated views of cortical dynamics.

Multimodal Imaging in Neurology

Multimodal Imaging in Neurology
Author: Hans-Peter Müller
Publisher: Springer Nature
Total Pages: 75
Release: 2022-06-01
Genre: Technology & Engineering
ISBN: 3031016238

The field of brain imaging is developing at a rapid pace and has greatly advanced the areas of cognitive and clinical neuroscience. The availability of neuroimaging techniques, especially magnetic resonance imaging (MRI), functional MRI (fMRI), diffusion tensor imaging (DTI) and magnetoencephalography (MEG) and magnetic source imaging (MSI) has brought about breakthroughs in neuroscience. To obtain comprehensive information about the activity of the human brain, different analytical approaches should be complemented. Thus, in "intermodal multimodality" imaging, great efforts have been made to combine the highest spatial resolution (MRI, fMRI) with the best temporal resolution (MEG or EEG). "Intramodal multimodality" imaging combines various functional MRI techniques (e.g., fMRI, DTI, and/or morphometric/volumetric analysis). The multimodal approach is conceptually based on the combination of different noninvasive functional neuroimaging tools, their registration and cointegration. In particular, the combination of imaging applications that map different functional systems is useful, such as fMRI as a technique for the localization of cortical function and DTI as a technique for mapping of white matter fiber bundles or tracts. This booklet gives an insight into the wide field of multimodal imaging with respect to concepts, data acquisition, and postprocessing. Examples for intermodal and intramodal multimodality imaging are also demonstrated. Table of Contents: Introduction / Neurological Measurement Techniques and First Steps of Postprocessing / Coordinate Transformation / Examples for Multimodal Imaging / Clinical Aspects of Multimodal Imaging / References / Biography

Multimodal Optical Imaging of Seizure with Flowmetry Stabilization

Multimodal Optical Imaging of Seizure with Flowmetry Stabilization
Author: Dene Ringuette
Publisher:
Total Pages: 0
Release: 2019
Genre:
ISBN:

Two novel multimodal optical imaging systems, both providing concurrent full-field blood flow and oxygenation/volume mapping, were developed to investigate epilepsy-related disease models: 1) An epifluorescence microscope-integrated system, permitting simultaneous intracellular calcium imaging and electrographic recording of brain activity and 2) a miniaturized head-mounted system (collaborative work), permitting brain imaging of freely-behaving rats. The microscope-integrated system investigated microvascular dynamics during seizure, revealing large arteriole dilation associated with seizure onset. Furthermore, the electrographically correlated neurovascular seizure responses, intracellular calcium dynamics, and inter-seizure consistency were found to be modified after anti-seizure drug administration. The miniaturized system investigated an absence seizure model, revealing a previously under-characterized biphasic neurovascular response to motor arrest at seizure onset. Blood flow was measured using laser speckle contrast imaging (LSCI), permitting high spatiotemporal resolution flowmetry. While all the imaging modalities employed have a high dynamic range, LSCI-derived image sequences have rapidly varying high spatial frequency distortions. These distortions significantly reduce the reliability of misfocus correction and image registration approaches, which are required for brain-motion insensitive signal amplification. Novel speckle noise insensitive parameters were developed for sub-depth of field active LSCI misfocus correction and high precision LSCI image registration, permitting flowmetry stabilization. An adaptive cardiographic synchronization scheme enabled precise cardiac cycle-driven blood flow trace characterization and greater flowmetry stabilization than previously reported. The LSCI image registration approach exploited high precision vessel edge detection filters which are stable in the presence of a spatial sparsity enforcement scheme that preserves temporal flow dynamics. Consequently, these filters provide a data decompression mechanism that permits the measurement of arteriole diameter changes and blood flow dynamics at/below 1.0±0.5% and 0.10±0.05% data retention, respectively. Concurrent compression of oxygenation and calcium imaging data is feasible for most applications given their lower spatiotemporal contrast. Ongoing research is presented supporting the suitability of photoacoustic imaging for whole-brain myelin mapping, demyelination assessment, and hypoxia-ischemia tracking. Cardiographic synchronization permitted deep cerebral artery visualization with improved artery occlusion sensitivity. The several proof-of-principle innovations presented will enable expanded multimodal imaging studies of disease processes, progression and treatment effects in freely-behaving animals with improved flowmetry stability and data transmission efficiency.

Niedermeyer's Electroencephalography

Niedermeyer's Electroencephalography
Author: Donald L. Schomer
Publisher: Lippincott Williams & Wilkins
Total Pages: 1308
Release: 2012-10-18
Genre: Medical
ISBN: 1451153155

The leading reference on electroencephalography since 1982, Niedermeyer's Electroencephalography is now in its thoroughly updated Sixth Edition. An international group of experts provides comprehensive coverage of the neurophysiologic and technical aspects of EEG, evoked potentials, and magnetoencephalography, as well as the clinical applications of these studies in neonates, infants, children, adults, and older adults. This edition's new lead editor, Donald Schomer, MD, has updated the technical information and added a major new chapter on artifacts. Other highlights include complete coverage of EEG in the intensive care unit and new chapters on integrating other recording devices with EEG; transcranial electrical and magnetic stimulation; EEG/TMS in evaluation of cognitive and mood disorders; and sleep in premature infants, children and adolescents, and the elderly. A companion website includes fully searchable text and image bank.

Atlas of Epilepsies

Atlas of Epilepsies
Author: S.R. Benbadis
Publisher: Springer Science & Business Media
Total Pages: 1966
Release: 2010-09-20
Genre: Medical
ISBN: 1848821271

Atlas of Epilepsies is a landmark, all-encompassing, illustrated reference work and hands-on guide to the diagnosis, management and treatment of epilepsy in all its forms and across all age groups. The premier text in the field with over one thousand images, the Atlas’s highly illustrative approach tackles the difficult subject of epileptic seizures and epileptic syndromes, accompanied by sequential photographs of each management step. Intraoperative photographs are accompanied by detailed figure legends describing nuances, subtleties, and the thought processes involved in each step, providing a fuller understanding of each procedure. The Atlas draws on the expertise of over 300 internationally-renowned experts, and is liberally interspersed with clinical insights and personal vignettes that offer helpful tips, technical advice and critical knowledge to the clinician and scholar. The thorough and complete table of contents includes dedicated sections or chapters on important topics such as neonatal and pediatric seizures; imitators of epilepsy; EEG and neuroimaging; psychiatric and quality of life aspects of epilepsy; and a complete guide to treatment options including current and up-to-date chapters on pharmaceuticals, surgical procedures, and additional and alternative treatments. No other publication addresses epilepsies as thoroughly and completely as the Atlas of Epilepsies. Exhaustive and illustrative, convenient and current, this reference is sure to be the premier text on epilepsy for many years to come.

The Epileptic Focus

The Epileptic Focus
Author: Heinz Gregor Wieser
Publisher: Demos Medical Publishing
Total Pages: 248
Release: 1987
Genre: Medical
ISBN:

Continuous Spikes and Waves During Slow Sleep

Continuous Spikes and Waves During Slow Sleep
Author: Fondazione Pierfranco e Luisa Mariani
Publisher: John Libbey Eurotext
Total Pages: 280
Release: 1995
Genre: Medical
ISBN: 9780861964888

This book collects the results of clinical experience and research, as well as the opionions of the specialists who have studied in depth several rare and complex syndromes associated with "Continuous Spikes and Waves During Slow Sleep", the Landau-Kleffner syndrome, and related conditions. It also presents a wide-ranging collection of cases presented by the participants in the meeting, and analysed in its various clinical, electrophysiological and psycho-intellectual aspects. The purpose of the book is to provide a thorough updated on specialised knowledge about the syndromes characterised by the presence of CSWS on the EEG, to bring out the many, still unanswered -- questions, and to stimulate further interdisciplinary research to verify the validity of present hypotheses, in order to clarify which preventive and therapeutic methods can best attain the control of such syndromes.

Magnetoencephalography

Magnetoencephalography
Author: Selma Supek
Publisher: Springer
Total Pages: 999
Release: 2014-08-07
Genre: Technology & Engineering
ISBN: 3642330452

Magnetoencephalography (MEG) is an invaluable functional brain imaging technique that provides direct, real-time monitoring of neuronal activity necessary for gaining insight into dynamic cortical networks. Our intentions with this book are to cover the richness and transdisciplinary nature of the MEG field, make it more accessible to newcomers and experienced researchers and to stimulate growth in the MEG area. The book presents a comprehensive overview of MEG basics and the latest developments in methodological, empirical and clinical research, directed toward master and doctoral students, as well as researchers. There are three levels of contributions: 1) tutorials on instrumentation, measurements, modeling, and experimental design; 2) topical reviews providing extensive coverage of relevant research topics; and 3) short contributions on open, challenging issues, future developments and novel applications. The topics range from neuromagnetic measurements, signal processing and source localization techniques to dynamic functional networks underlying perception and cognition in both health and disease. Topical reviews cover, among others: development on SQUID-based and novel sensors, multi-modal integration (low field MRI and MEG; EEG and fMRI), Bayesian approaches to multi-modal integration, direct neuronal imaging, novel noise reduction methods, source-space functional analysis, decoding of brain states, dynamic brain connectivity, sensory-motor integration, MEG studies on perception and cognition, thalamocortical oscillations, fetal and neonatal MEG, pediatric MEG studies, cognitive development, clinical applications of MEG in epilepsy, pre-surgical mapping, stroke, schizophrenia, stuttering, traumatic brain injury, post-traumatic stress disorder, depression, autism, aging and neurodegeneration, MEG applications in cognitive neuropharmacology and an overview of the major open-source analysis tools.