An MR-based brain template and atlas for optical projection tomography and light sheet fluorescence microscopy
Willekens, S. M.; Morini, F.; Mediavilla, T.; Nilsson, E.; Oradd, G.; Hahn, M.; Chotiwan, N.; Visa Majoral, M.; Berggren, P.-O.; Ilegems, E.; Overby, A. K.; Ahlgren, U.; Marcellino, D.
Show abstract
Optical projection tomography (OPT) and light sheet fluorescence microscopy (LSFM) are high-resolution optical imaging techniques operating in the mm-cm range, ideally suited for ex vivo 3D whole mouse brain imaging. Although these techniques exhibit high sensitivity and specificity for antibody-labeled targets, the provided anatomical information remains limited. To allow anatomical mapping of fluorescent signal in whole brain, we developed a novel magnetic resonance (MR) - based template with its associated tissue priors and atlas labels, specifically designed for brains subjected to tissue processing protocols required for 3D optical imaging. We investigated the effect of tissue pre-processing and clearing on brain size and morphology and developed optimized templates for BABB/Murrays clear (OCUM) and DBE/iDISCO (iOCUM) cleared brains. By creating optical-(i)OCUM fusion images using our mapping procedure, we localized dopamine transporter and translocator protein expression and tracer innervation from the eye to the lateral geniculate nucleus of thalamus and superior colliculus. These fusion images allowed for precise anatomical identification of fluorescent signal in discrete brain areas. As such, these templates enable applications in a broad range of research areas integrating optical 3D brain imaging by providing an MR template for cleared brains.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Sex matters: the MouseX DW-ALLEN Atlas for mice diffusion-weighted MR imaging 96%
- Automated joint skull-stripping and segmentation with Multi-Task U-Net in large mouse brain MRI databases 96%
- Myelinated fiber labeling and orientation mapping of the human brain with light-sheet fluorescence microscopy 95%
Similar papers in this journal
- Functionnectome: a framework to analyse the contribution of brain circuits to fMRI 94%
- Distributed harmonic patterns of structure-function dependence orchestrate human consciousness 94%
- Unraveling the mesoscale resting-state functional connectivity of ocular dominance columns in humans using high-resolution functional MRI. 93%
"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.