Literature DB >> 24531143

T1 magnetic resonance imaging head segmentation for diffuse optical tomography and electroencephalography.

Katherine L Perdue, Solomon G Diamond.   

Abstract

Accurate segmentation of structural magnetic resonance images is critical for creating subject-specific forward models for functional neuroimaging source localization. In this work, we present an innovative segmentation algorithm that generates accurate head tissue layer thicknesses that are needed for diffuse optical tomography (DOT) data analysis. The presented algorithm is compared against other publicly available head segmentation methods. The proposed algorithm has a root mean square scalp thickness error of 1.60 mm, skull thickness error of 1.96 mm, and summed scalp and skull error of 1.49 mm. We also introduce a segmentation evaluation metric that evaluates the accuracy of tissue layer thicknesses in regions of the head where optodes are typically placed. The presented segmentation algorithm and evaluation metric are tools for improving the localization accuracy of neuroimaging with DOT, and also multimodal neuroimaging such as combined electroencephalography and DOT.

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Year:  2014        PMID: 24531143      PMCID: PMC3924797          DOI: 10.1117/1.JBO.19.2.026011

Source DB:  PubMed          Journal:  J Biomed Opt        ISSN: 1083-3668            Impact factor:   3.170


  24 in total

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  11 in total

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6.  The Effect of a Transcranial Channel as a Skull/Brain Interface in High-Definition Transcranial Direct Current Stimulation-A Computational Study.

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7.  Neanderthal-Derived Genetic Variation Shapes Modern Human Cranium and Brain.

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8.  fNIRS Optodes' Location Decider (fOLD): a toolbox for probe arrangement guided by brain regions-of-interest.

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10.  RT-NET: real-time reconstruction of neural activity using high-density electroencephalography.

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