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  2. Bioinformatics - Wikipedia

    en.wikipedia.org/wiki/Bioinformatics

    Bioinformatics uses biology, chemistry, physics, computer science, data science, computer programming, information engineering, mathematics and statistics to analyze and interpret biological data. The process of analyzing and interpreting data can sometimes be referred to as computational biology , however this distinction between the two terms ...

  3. Biological data - Wikipedia

    en.wikipedia.org/wiki/Biological_data

    In the past few decades, leaps in genomic research have led to massive amounts of biological data. As a result, bioinformatics was created as the convergence of genomics, biotechnology, and information technology, while concentrating on biological data. Biological data has also been difficult to define, as bioinformatics is a wide-encompassing ...

  4. Translational bioinformatics - Wikipedia

    en.wikipedia.org/wiki/Translational_bioinformatics

    Translational bioinformatics is a relatively young field within translational research. [5] [6] Google trends indicate the use of "bioinformatics" has decreased since the mid-1990s when it was suggested as a transformative approach to biomedical research. [6]

  5. Computational biology - Wikipedia

    en.wikipedia.org/wiki/Computational_biology

    In Poland, computational biology is closely linked to mathematics and computational science, serving as a foundation for bioinformatics and biological physics. The field is divided into two main areas: one focusing on physics and simulation and the other on biological sequences. [11]

  6. Biodiversity informatics - Wikipedia

    en.wikipedia.org/wiki/Biodiversity_informatics

    Biodiversity informatics is the application of informatics techniques to biodiversity information, such as taxonomy, biogeography or ecology.It is defined as the application of Information technology technologies to management, algorithmic exploration, analysis and interpretation of primary data regarding life, particularly at the species level organization. [1]

  7. Computational genomics - Wikipedia

    en.wikipedia.org/wiki/Computational_genomics

    As such, computational genomics may be regarded as a subset of bioinformatics and computational biology, but with a focus on using whole genomes (rather than individual genes) to understand the principles of how the DNA of a species controls its biology at the molecular level and beyond. With the current abundance of massive biological datasets ...

  8. Biological computing - Wikipedia

    en.wikipedia.org/wiki/Biological_computing

    The development of biocomputers has been made possible by the expanding new science of nanobiotechnology. The term nanobiotechnology can be defined in multiple ways; in a more general sense, nanobiotechnology can be defined as any type of technology that uses both nano-scale materials (i.e. materials having characteristic dimensions of 1-100 ...

  9. Biological data visualization - Wikipedia

    en.wikipedia.org/wiki/Biological_data_visualization

    They have remarkable mechanical, electrical, and thermal properties and are used in various applications from materials science to nanotechnology. Visualization of nanotubes typically requires TEM, SEM, or AFM. Nanofibers. Nanofibers are fibers with diameters in the nanometer scale. They are created through processes like electrospinning and ...