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Paper

Combinatorial and Machine Learning Approaches for Improved Somatic Variant Calling From Formalin-Fixed Paraffin-Embedded Genome Sequence Data

by Independent / Community 0039303644246458baa4ba8dead9e1f98573c020
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65.6
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A: Authority 76
P: Popularity 51
R: Recency 100
Q: Quality 65
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Formalin fixation of paraffin-embedded tissue samples is a well-established method for preserving tissue and is routinely used in clinical settings. Although formalin-fixed, paraffin-embedded (FFPE) tissues are deemed crucial for research and clinical applications, the fixation process results in molecular damage to nucleic acids, thus confounding their use in genome sequence analysis. Methods to improve genomic data quality from FFPE tissues have emerged, but there remains significant room f...

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Registry ID 0039303644246458baa4ba8dead9e1f98573c020
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BibTeX
@misc{0039303644246458baa4ba8dead9e1f98573c020,
  author = {Unknown},
  title = {Combinatorial and Machine Learning Approaches for Improved Somatic Variant Calling From Formalin-Fixed Paraffin-Embedded Genome Sequence Data Paper},
  year = {2026},
  howpublished = {\url{https://api.semanticscholar.org/0039303644246458baa4ba8dead9e1f98573c020}},
  note = {Accessed via Free2AITools.}
}
APA Style
Unknown. (2026). Combinatorial and Machine Learning Approaches for Improved Somatic Variant Calling From Formalin-Fixed Paraffin-Embedded Genome Sequence Data [Paper]. Free2AITools. https://api.semanticscholar.org/0039303644246458baa4ba8dead9e1f98573c020

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Semantic (S) 50

Query-time baseline · scored live at search

Authority (A) 76
Popularity (P) 51
Recency (R) 100
Quality (Q) 65

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FNI V2.0 for Combinatorial and Machine Learning Approaches for Improved Somatic Variant Calling From Formalin-Fixed Paraffin-Embedded Genome Sequence Data: Authority (A:76), Popularity (P:51), Recency (R:100), Quality (Q:65). Semantic (S) is a query-time baseline scored live at search.

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πŸ“ Executive Summary

"Formalin fixation of paraffin-embedded tissue samples is a well-established method for preserving tissue and is routinely used in clinical settings. Although formalin-fixed, paraffin-embedded (FFPE) tissues are deemed crucial for research and clinical applications, the fixation process results in molecular damage to nucleic acids, thus confounding their use in genome sequence analysis. Methods to improve genomic data quality from FFPE tissues have emerged, but there remains significant room f..."

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@article{Unknown2026Combinatorial,
  title={Combinatorial and Machine Learning Approaches for Improved Somatic Variant Calling From Formalin-Fixed Paraffin-Embedded Genome Sequence Data},
  author={},
  note={Indexed by Free2AITools},
  year={2026}
}

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πŸ›οΈ76AuthorityFNI pillar
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