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@cytomining @WayScience

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jenna-tomkinson/README.md

Hi there! Welcome to my profile πŸ€—

I am a young computational biologist πŸ‘©πŸ»β€πŸ’», just trying to find her place in the world 🌎

  • πŸ”­ I’m currently working on multiple image-based analysis projects in the Gregory P. Way lab.
  • 🌱 I’m currently learning how to grow my knowledge of Python and R. One of my biggest goals is to improve my biostatistics and machine learning skills.

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Feel free to connect with me:


My current projects

If you are curious about the projects I am working on, here is a list of the repositories:

  1. NF1 Cell Painting Project - Image analysis and image-based profiling of Schwann cells of different genotypes (wildtype and null), which is used to generate a machine learning model.
  2. CFReT Project - Image analysis, image-based profiling, and machine learning to predict healthy or failing cell types of cardiac fibroblasts.
  3. Pyroptosis Signature Project - Image analysis and image-based profiling of PBMCs and SHSY-5Ys to use in cell death prediction.

Publications

  1. We submitted a preprint for our project titled "Toward generalizable phenotype prediction from single-cell morphology representations". This paper describes our work to make a generalizable model predicting phenotype based on nucleus features utilizing the Mitocheck 2015 labeled dataset. We applied this model to the JUMP consortium and performed a Leave One Image Out analysis, discovering that many features are variable across datasets, leading to problems with generalizability. We propose different steps to solving this issue within our discussion.

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  1. WayScience/nf1_schwann_cell_painting_data WayScience/nf1_schwann_cell_painting_data Public

    This repository contains all the modules to perform image-based analysis with CellProfiler on NF1 Schwann cell data.

    Jupyter Notebook 5 6

  2. WayScience/pyroptosis_signature_image_profiling WayScience/pyroptosis_signature_image_profiling Public

    This repository contains the pipelines used to analyze the data sets from the Interstellar collaboration.

    Jupyter Notebook 2 3

  3. WayScience/cellpainting_predicts_cardiac_fibrosis WayScience/cellpainting_predicts_cardiac_fibrosis Public

    Image-based profiling and machine learning to predict failing vs. non-failing cardiac fibroblasts

    Jupyter Notebook 4 4

  4. WayScience/IC_Test WayScience/IC_Test Public

    This repository holds all of the research and code used to develop IC Test.

    Python 2