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Issue title: Imaging the Alzheimer Brain
Guest editors: J. Wesson Ashford, Allyson Rosen, Maheen Adamson, Peter Bayley, Osama Sabri, Ansgar Furst, Sandra E. Black and Michael Weiner
Article type: Research Article
Authors: Yassa, Michael A.; *
Affiliations: Psychological and Brain Sciences, Johns Hopkins University, Baltimore, MD, USA
Correspondence: [*] Correspondence to: Michael A. Yassa, Department of Psychological and Brain Sciences, Johns Hopkins University 3400 N. Charles St. Ames 216A, Baltimore, MD 21218-2686, USA. Tel.: +1 (410) 516 0202; Fax: +1 (410) 516 4478; E-mail: yassa@jhu.edu.
Abstract: Diffusion tensor imaging is capable of resolving large fiber bundles (e.g. the corpus callosum) and has been quite informative in understanding the overall structural connectivity of the brain. Recent data has shown that traditional resolution limitations can be exceeded in humans in vivo to submillimeter resolution. This chapter discusses these new techniques, and specific applications to small pathways such as the perforant path in the medial temporal lobe. High-resolution diffusion tensor imaging is a promising new tool that can be used to discover novel biomarkers for Alzheimer's disease and other disorders. It allows for a much more detailed investigation of brain white matter than previously possible, perhaps offering clues into the first signs of synaptic deterioration that may precede frank neuronl loss. Although these methods are still in their infancy and many challenges have to be overcome before they can be used in a clinical fashion, results so far have been promising. Challenges and future directions are discussed in detail.
Keywords: Hippocampus, perforant path, diffusion tensor imaging, biomarkers, Alzheimer's disease, aging, entorhinal cortex
DOI: 10.3233/JAD-2011-0005
Journal: Journal of Alzheimer's Disease, vol. 26, no. s3, pp. 297-305, 2011
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