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as -PSOCT: Volumetric microscopic imaging of human brain architecture and connectivity
2018
NeuroImage
regions, all based on volumetric reconstructions. as-PSOCT provides a viable tool for studying quantitative cytoarchitecture and myeloarchitecture and mapping connectivity with microscopic resolution ...
In this study, we developed a fully automatic serial sectioning polarization sensitive optical coherence tomography (as-PSOCT) system to enable volumetric reconstruction of human brain samples with unprecedented ...
In addition, BF has a financial interest in CorticoMetrics, a company whose medical pursuits focus on brain imaging and measurement technologies. ...
doi:10.1016/j.neuroimage.2017.10.012
pmid:29017866
pmcid:PMC5732037
fatcat:tr6imkudzfbbrdkn5pfn2ugdtu
Refractive-index matching enhanced polarization-sensitive optical coherence tomography quantification in human brain tissue
[article]
2021
bioRxiv
pre-print
Despite the recent progress of PS-OCT in revealing white matter architecture and orientation, quantification of fine-scale fiber tracts in the human brain cortex has been a challenging problem, due to ...
The importance of polarization-sensitive optical coherence tomography (PS-OCT) has been increasingly recognized in human brain imaging. ...
The increased imaging depth and SNR could pave the road to a comprehensive mapping of fiber architecture in the human brain using as-PSOCT. Funding. ...
doi:10.1101/2021.09.12.459943
fatcat:5uod5dichvawldkplkqe66kx2y
Optical Coherence Tomography: Basic Concepts and Applications in Neuroscience Research
2017
Journal of Medical Engineering
Despite some limitations, OCT proves to be a useful imaging tool in both basic and clinical neuroscience research. ...
Optical coherence tomography is a micrometer-scale imaging modality that permits label-free, cross-sectional imaging of biological tissue microstructure using tissue backscattering properties. ...
Chudler for his selfless help, comments, and revision. ...
doi:10.1155/2017/3409327
pmid:29214158
pmcid:PMC5682075
fatcat:dtshjhpdvfel5moafcm2mqq6yy