Fluorescent analysis of individualized C. elegans without using neural networks
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Updated
Mar 30, 2026 - MATLAB
Fluorescent analysis of individualized C. elegans without using neural networks
Scripts to analyse and convert NeuroPAL datasets
Here, I include my thoughts about how does the brain of the worm give rise to remarkable behavioral plasticities
An in vivo PRA reveals intronic motifs that combinatorially regulate splicing in a tissue-biased manner.
This Repo includes Code from my Bachelor Thesis at the Chair of Automatic Control (Faculty of Engineering - CAU Kiel)
Repository of the code created for the Bachelor's Thesis (Trabajo Fin de Grado) of Viktoriya Bohach for the degree on Biomedical Engineering in Universidad Rey Juan Carlos.
c elegans neuromechanical simulation in webassembly
Study the connectome structure in C. Elegans by finding paths between a set of neuron classes present.
An integrated neuromechanical model for the nematode, C. elegans, which is modeled by Jordan H. Boyle.
An automated method for estimating micropillar dislocation induced by C. Elegans worms using bright-field videos & image processing
Deterministic NEMA v0.1 toolchain for connectome simulation on Artix-7: IR validation, bit-exact fixed-point reference, HLS flow, and reproducible artifacts.
A desktop GUI application built with Python and Tkinter for managing *C. elegans* worm strains.
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