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A micro-CT-based method for quantitative brain lesion characterization and electrode localization
by
Masís, Javier
, Wolff, Steffen B. E.
, Cox, David D.
, Joesch, Maximilian
, Mankus, David
, Guitchounts, Grigori
in
631/378
/ 631/378/2629
/ Computed tomography
/ Electrodes
/ Electron microscopy
/ Humanities and Social Sciences
/ Lesions
/ Localization
/ Methods
/ multidisciplinary
/ Neuroimaging
/ Osmium
/ Osmium tetroxide
/ Science
/ Science (multidisciplinary)
/ Sectioning
/ Visual cortex
2018
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A micro-CT-based method for quantitative brain lesion characterization and electrode localization
by
Masís, Javier
, Wolff, Steffen B. E.
, Cox, David D.
, Joesch, Maximilian
, Mankus, David
, Guitchounts, Grigori
in
631/378
/ 631/378/2629
/ Computed tomography
/ Electrodes
/ Electron microscopy
/ Humanities and Social Sciences
/ Lesions
/ Localization
/ Methods
/ multidisciplinary
/ Neuroimaging
/ Osmium
/ Osmium tetroxide
/ Science
/ Science (multidisciplinary)
/ Sectioning
/ Visual cortex
2018
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A micro-CT-based method for quantitative brain lesion characterization and electrode localization
by
Masís, Javier
, Wolff, Steffen B. E.
, Cox, David D.
, Joesch, Maximilian
, Mankus, David
, Guitchounts, Grigori
in
631/378
/ 631/378/2629
/ Computed tomography
/ Electrodes
/ Electron microscopy
/ Humanities and Social Sciences
/ Lesions
/ Localization
/ Methods
/ multidisciplinary
/ Neuroimaging
/ Osmium
/ Osmium tetroxide
/ Science
/ Science (multidisciplinary)
/ Sectioning
/ Visual cortex
2018
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A micro-CT-based method for quantitative brain lesion characterization and electrode localization
Journal Article
A micro-CT-based method for quantitative brain lesion characterization and electrode localization
2018
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Overview
Lesion verification and quantification is traditionally done via histological examination of sectioned brains, a time-consuming process that relies heavily on manual estimation. Such methods are particularly problematic in posterior cortical regions (
e
.
g
. visual cortex), where sectioning leads to significant damage and distortion of tissue. Even more challenging is the
post hoc
localization of micro-electrodes, which relies on the same techniques, suffers from similar drawbacks and requires even higher precision. Here, we propose a new, simple method for quantitative lesion characterization and electrode localization that is less labor-intensive and yields more detailed results than conventional methods. We leverage staining techniques standard in electron microscopy with the use of commodity micro-CT imaging. We stain whole rat and zebra finch brains in osmium tetroxide, embed these in resin and scan entire brains in a micro-CT machine. The scans result in 3D reconstructions of the brains with section thickness dependent on sample size (12–15 and 5–6 microns for rat and zebra finch respectively) that can be segmented manually or automatically. Because the method captures the entire intact brain volume, comparisons within and across studies are more tractable, and the extent of lesions and electrodes may be studied with higher accuracy than with current methods.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
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