Search Constraints
Search Results
Select an image to start the slideshow
Microfluidic High-Throughput Methods for the Induction and Characterization of Repeatable, Titratable Traumatic Neural Injury in the Nematode Caenorhabditis elegans
1 of 10
Applications of Deep Learning in Brain Injury Biomechanics and Spine Image Registration
2 of 10
Applications of Machine Learning in Real-time Brain Tissue Strain Estimation
3 of 10
Neuromodulation of Sex-Specific Pheromone-Mediated Behaviors
4 of 10
Machine Learning Pipelines for Deconvolution of Cellular and Subcellular Heterogeneity from Cell Imaging
5 of 10
Development of automated analysis methods for identifying behavioral and neural plasticity in sleep and learning in C. elegans
6 of 10
RVD2: An ultra-sensitive variant detection model for low-depth heterogeneous next-generation sequencing data
7 of 10
Automated whole-organism functional screening technologies and neurological disease models in C. elegans
8 of 10
Statistical Methods for Characterizing Genomic Heterogeneity in Mixed Samples
9 of 10
A Microfluidic Platform for Exploring Learning Behavior in C. elegans
10 of 10