Lee Lab Digital Research Archive
Welcome to the Lee Lab Digital Research Archive. Lee Lab is a biomedical engineering research group in the School of Engineering and Carney Institute for Brain Science at Brown University. The lab focuses on the development of optical technologies for label-free, micrometer-resolution, three-dimensional imaging of tissue structures and dynamics, mainly in but not limited to the brain cortex, and dissemination of the technologies for translational research through wide collaboration. The lab also works on novel neural prostheses based on biophotonics. This Digital Archive is for the preservation and public dissemination of Lee Lab's research data sets, metadata and documentation, code, and publications. Collection DOI: https://doi.org/10.26300/5prn-za52.
For questions about a deposited resource please contact Professor Jonghwan Lee by email at [email protected].
Subcollections (3)
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(NIH R01EY030569) Plasmonic Retinal Prosthesis
This collection is for the preservation and public dissemination of Lee Lab's digital research data and code files created and collected under the NIH National Eye Institute-funded project "Plasmonic Retinal Prosthesis" (NIH R01EY030569). Please cite the digital object identifier (DOI) …... -
(NIH R01AG067228) Long-Term Tracking of Cerebral Microvascular Structural and Functional Alterations between Normal and Alzheimer's Aging
This collection is for the preservation and public dissemination of Lee Lab's digital research data and code files created and collected under the NIH National Institute on Aging-funded project "Long-Term Tracking of Cerebral Microvascular Structural and Functional Alterations between Normal …... -
(NIH R00EB014879) Microscopic imaging of neuro-capillary coupling in brain cortex
This collection is for the preservation and public dissemination of Lee Lab's digital research data and code files created and collected under the NIH National Institute of Biomedical Imaging and Bioengineering (NIBIB)-funded project "Microscopic imaging of neuro-capillary coupling in brain …...