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The Anatomical Record, 2001
AbstractWe review recent developments in brain mapping and computational anatomy that have greatly expanded our ability to analyze brain structure and function. The enormous diversity of brain maps and imaging methods has spurred the development of population‐based digital brain atlases.
A W, Toga, P M, Thompson
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AbstractWe review recent developments in brain mapping and computational anatomy that have greatly expanded our ability to analyze brain structure and function. The enormous diversity of brain maps and imaging methods has spurred the development of population‐based digital brain atlases.
A W, Toga, P M, Thompson
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Neuropathological Brain Mapping
Dementia and Geriatric Cognitive Disorders, 1997Neuropathological brain mapping is enabled by extensive semiserial sectioning with whole brain coronal microscopical sections prepared from every 5 to 15 mm. By this method not only type of change but also distribution and regional severity can be assessed, which is fundamental for a correct neuropathological diagnosis.
A, Brun, E, Englund
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Nature Reviews Neuroscience, 2003
Brain asymmetry has been observed in animals and humans in terms of structure, function and behaviour. This lateralization is thought to reflect evolutionary, hereditary, developmental, experiential and pathological factors. Here, we review the diverse literature describing brain asymmetries, focusing primarily on anatomical differences between the ...
Arthur W, Toga, Paul M, Thompson
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Brain asymmetry has been observed in animals and humans in terms of structure, function and behaviour. This lateralization is thought to reflect evolutionary, hereditary, developmental, experiential and pathological factors. Here, we review the diverse literature describing brain asymmetries, focusing primarily on anatomical differences between the ...
Arthur W, Toga, Paul M, Thompson
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IEEE Signal Processing Magazine, 2001
There has been tremendous advances in our ability to produce images of human brain function. Applications of functional brain imaging extend from improving our understanding of the basic mechanisms of cognitive processes to better characterization of pathologies that impair normal function. Magnetoencephalography (MEG) and electroencephalography (EEG) (
Sylvain Baillet +2 more
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There has been tremendous advances in our ability to produce images of human brain function. Applications of functional brain imaging extend from improving our understanding of the basic mechanisms of cognitive processes to better characterization of pathologies that impair normal function. Magnetoencephalography (MEG) and electroencephalography (EEG) (
Sylvain Baillet +2 more
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Clinical Electroencephalography, 1990
The topographic maps of 100 patients with various types of headache (classic migraine, non-classic migraine, muscle contraction, mixed and post-traumatic) were compared to the brain maps of 38 normal controls. Patients with classic migraine showed 11 markers, but especially three of high amplitude theta on 0(1) and alpha on 0(1) and T6, thereby ...
J R, Hughes, L D, Robbins
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The topographic maps of 100 patients with various types of headache (classic migraine, non-classic migraine, muscle contraction, mixed and post-traumatic) were compared to the brain maps of 38 normal controls. Patients with classic migraine showed 11 markers, but especially three of high amplitude theta on 0(1) and alpha on 0(1) and T6, thereby ...
J R, Hughes, L D, Robbins
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Nature Methods, 2010
Oxygen concentrations in the rodent brain are revealed at a microscopic scale by measuring the lifetime of two photon-excited phosphorescence.
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Oxygen concentrations in the rodent brain are revealed at a microscopic scale by measuring the lifetime of two photon-excited phosphorescence.
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ECMS 2013 Proceedings edited by: Webjorn Rekdalsbakken, Robin T. Bye, Houxiang Zhang, 2013
The brain controls spatial navigation in mammals by activating functionally specialized cell types in the medial temporal lobe. Key components of the spatial mapping system are place cells and grid cells. It has been known for some time that place cells are located in the hippocampus and are active only when the animal is entering a specific location ...
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The brain controls spatial navigation in mammals by activating functionally specialized cell types in the medial temporal lobe. Key components of the spatial mapping system are place cells and grid cells. It has been known for some time that place cells are located in the hippocampus and are active only when the animal is entering a specific location ...
openaire +1 more source

