Mostafa ronaghi biography of michael jordan

  • All materials for extraction, sequencing, and analysis have been contributed by the devoted corporate research partners of XMP, including Mostafa Ronaghi, Rob.
  • Jordan, K. (2005), What We Learned From 9/11: A Terrorism Grief And Recovery.
  • Pyrosequencing is a high-throughput non-gel-based DNA sequencing method that was introduced in the late 1990s.
  • Lior Pachter

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    Lior S. Pachter

    Person information

    • affiliation:University of California, Berkeley, USA

    2020 – today

    • 2024
    • [j53]

      Delaney K. Sullivan, Lior Pachter:
      Flexible parsing, interpretation, and editing of technical sequences with splitcode.Bioinform.40(6) (2024)
    • [j52]

      Tara Chari, Gennady Gorin, Lior Pachter:
      Biophysically interpretable inference of cell types from multimodal sequencing data.Nat. Comput. Sci.4(9): 677-689 (2024)
    • 2023
    • [j51]

      Ángel Gálvez-Merchán, Kyung Hoi (Joseph) Min, Lior Pachter, A. Sina Booeshaghi:
      Metadata retrieval from sequence databases with ffq.Bioinform.39(1) (2023)
    • [j50]

      Laura Luebbert, Lior Pachter:
      Efficient querying of genomic reference databases with gget.Bioinform.39(1) (2023)
    • [j49]

      Tara Chari, Lior Pachter:
      The specious art of single-cell genomics.PLoS Comput. Biol.19(8) (2023)
    • 2022
    • [j48]

      Gennady Gorin, Meichen F

      Abstract

      Simple Summary

      Next-generation sequencing (NGS) is a powerful tool used in genomics research. NGS can sequence millions of DNA fragments at once, providing detailed information about the structure of genomes, genetic variations, gene activity, and changes in gene behavior. Recent advancements have focused on faster and more accurate sequencing, reduced costs, and improved data analysis. These advancements hold great promise for unlocking new insights into genomics and improving our understanding of diseases and personalized healthcare. This review article provides an overview of NGS technology and its impact on various areas of research, such as clinical genomics, cancer, infectious diseases, and the study of the microbiome.

      Abstract

      The advent of next-generation sequencing (NGS) has brought about a paradigm shift in genomics research, offering unparalleled capabilities for analyzing DNA and RNA molecules in a high-throughput and cost-effective manner. This transformati

      Revisão Revisado por pares

      Influenza genome analysis using pyrosequencing method: current applications for a moving target

      2009;Taylor & Francis;Volume: 9;Issue: 5Linguagem: Inglês

      10.1586/erm.09.21

      ISSN

      1744-8352

      Autores

      Varough Deyde, Larisa V. Gubareva,

      Tópico(s)

      Biological Agents for Bioterrorism

      Resumo

      Pyrosequencing is a high-throughput non-gel-based DNA sequencing method that was introduced in the late 1990s. It employs a DNA sequencing-by-synthesis approach based on real-time measurement of pyrophosphate released from incorporation of dNTPs. A cascade of enzymatic reactions proportionally converts the pyrophosphate to a light signal recorded in a form of peaks, known as pyrograms. Routinely, a 45–60-nucleotide sequence is obtained per reaction. Recent improvements introduced in the assay chemistry have extended the read to approximately 100 nucleotides. Since its advent, pyrosequencing has been applied in the fields of microbiology, molecular bi

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