Theranostic cranial implant for hyperspectral light delivery and microcirculation imaging without scalp removal
Davoodzadeh, N.; Cano-Velazquez, M. S.; Jonak, C. R.; Halaney, D. L.; Binder, D. K.; Hernandez-Cordero, J. A.; Aguilar, G.
Show abstract
Light based techniques for imaging, diagnosing and treating the brain have become widespread clinical tools, but application of these techniques is limited by optical attenuation in the scalp and skull. This optical attenuation reduces the achievable spatial resolution, precluding the visualization of small features such as brain microvessels. The goal of this study was to assess a strategy for providing ongoing optical access to the brain without the need for repeated craniectomy or retraction of the scalp. This strategy involves the use of a transparent cranial implant and skin optical clearing agents, and was tested in mice to assess improvements in optical access which could be achieved for laser speckle imaging of cerebral microvasculature. Combined transmittance of the optically cleared scalp overlying the transparent cranial implant was as high as 89% in the NIR range, 50% in red range, 24% in green range, and 20% in blue range. In vivo laser speckle imaging experiments of mouse cerebral blood vessels showed that the proposed optical access increased signal-to-noise ratio and image resolution, allowing for visualization of microvessels through the transparent implant, which was not possible through the uncleared scalp and intact skull.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Portable Six-Channel Laser Speckle System for Simultaneous Cerebral Blood Flow and Volume Measurement with Potential Application for Characterization of Brain Injury 95%
- Implantable photonic neural probes for light-sheet fluorescence brain imaging 95%
- Foundry-fabricated dual-color nanophotonic neural probes for photostimulation and electrophysiological recording 95%
Similar papers in this journal
- Interferometric imaging of thermal expansion for temperature control in retinal laser therapy 95%
- Non-Degenerate Two-Photon Imaging of Deep Rodent Cortex using Indocyanine Green in the water absorption window 95%
- A scalable, multi-wavelength, broad bandwidth frequency-domain near-infrared spectroscopy platform for real-time quantitative tissue optical imaging 94%
Similar papers in this journal
- Machine learning-enabled cancer diagnostics with widefield polarimetric second-harmonic generation microscopy 95%
- Method for in vivo assessment of cancer tissue inhomogeneity and accurate histology-like morphological segmentation based on Optical Coherence Elastography 94%
- Deep-Tissue Two-Photon Brain Imaging Enabled by a Tunable Fiber-Optic Dispersive Wave Generator 94%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.