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Transforming, Genome Editing and Phenotyping the Nitrogen-fixing Tropical Cannabaceae Tree Parasponia andersonii
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Data-Driven Tree Transforms and Metrics.

Gal Mishne1, Ronen Talmon1, Israel Cohen1

  • 1Viterbi Faculty of Electrical Engineering, Technion - Israel Institute of Technology, Haifa 32000, Israel.

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Summary
This summary is machine-generated.

This study introduces novel tree-based methods for organizing complex, high-dimensional data. These data-driven transforms and metrics improve the clustering of tumor samples in breast cancer gene expression analysis.

Keywords:
gene expressiongeometric analysisgraph signal processingmultiscale representationspartition trees

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Area of Science:

  • Computational Biology
  • Data Science
  • Bioinformatics

Background:

  • High-dimensional data often lacks inherent structure or locality.
  • Traditional analysis methods fail when data is not on a regular grid or features are arbitrarily ordered.

Purpose of the Study:

  • To develop data-driven transforms and metrics for organizing complex datasets.
  • To generalize joint clustering of observations and features for non-disjoint groups.
  • To enable transfer learning and data integration across datasets.

Main Methods:

  • Proposed multiscale, data-driven transforms and metrics based on trees.
  • Utilized an iterative refinement procedure exploiting feature-observation co-dependencies.
  • Applied to breast cancer gene expression data for clustering tumor samples.

Main Results:

  • Successfully organized high-dimensional gene expression data.
  • Learned metrics on genes to cluster tumor samples into distinct subtypes.
  • Validated joint organization of genes and samples.

Conclusions:

  • Combining multiple gene expression cohorts improves tumor sample clustering.
  • The proposed tree-based approach effectively handles complex, high-dimensional biological data.
  • Enables robust data organization and analysis across different technologies.