bioinformatics - significado y definición. Qué es bioinformatics
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Qué (quién) es bioinformatics - definición

COMPUTATIONAL ANALYSIS OF LARGE, COMPLEX SETS OF BIOLOGICAL DATA
Bioinformatic; Bioinformatician; Bioinformics; Bio informatics; Genetic informatics; Biotechnological application of computer; Bio-informatics; Biomedical computation; Bioinformatist; Free open source bioinformatics projects; Bioinformatics, LLC; Bioinformatics and Engineering; Introduction to bioinformatics; Bioinformatrics; History of bioinformatics; JBrowse; Bioinformatic pipeline; Biological ontologies; Bioinformaticians
  • 3-dimensional protein structures such as this one are common subjects in bioinformatic analyses.
  • MIcroarray vs RNA-Seq
  • These are sequences being compared in a MUSCLE multiple sequence alignment (MSA). Each sequence name (leftmost column) is from various louse species, while the sequences themselves are in the second column.
  • Image: 450 pixels Sequencing analysis steps
  •  doi-access = free }}</ref>
  • Sequence analysis}} for further information.

bioinformatics         
¦ plural noun [treated as sing.] the science of collecting and analysing complex biological data such as genetic codes.
bioinformatics         
<application> The field of science concerning the application of computer science and information technology to biology; using computers to handle biological information, especially computational molecular biology. (2005-01-07)
Bioinformatics         

Bioinformatics ( (listen)) is an interdisciplinary field that develops methods and software tools for understanding biological data, in particular when the data sets are large and complex. As an interdisciplinary field of science, bioinformatics combines biology, chemistry, physics, computer science, information engineering, mathematics and statistics to analyze and interpret the biological data. Bioinformatics has been used for in silico analyses of biological queries using computational and statistical techniques.

Bioinformatics includes biological studies that use computer programming as part of their methodology, as well as specific analysis "pipelines" that are repeatedly used, particularly in the field of genomics. Common uses of bioinformatics include the identification of candidates genes and single nucleotide polymorphisms (SNPs). Often, such identification is made with the aim to better understand the genetic basis of disease, unique adaptations, desirable properties (esp. in agricultural species), or differences between populations. In a less formal way, bioinformatics also tries to understand the organizational principles within nucleic acid and protein sequences, called proteomics.

Image and signal processing allow extraction of useful results from large amounts of raw data. In the field of genetics, it aids in sequencing and annotating genomes and their observed mutations. It plays a role in the text mining of biological literature and the development of biological and gene ontologies to organize and query biological data. It also plays a role in the analysis of gene and protein expression and regulation. Bioinformatics tools aid in comparing, analyzing and interpreting genetic and genomic data and more generally in the understanding of evolutionary aspects of molecular biology. At a more integrative level, it helps analyze and catalogue the biological pathways and networks that are an important part of systems biology. In structural biology, it aids in the simulation and modeling of DNA, RNA, proteins as well as biomolecular interactions.

Wikipedia

Bioinformatics

Bioinformatics ( (listen)) is an interdisciplinary field that develops methods and software tools for understanding biological data, in particular when the data sets are large and complex. As an interdisciplinary field of science, bioinformatics combines biology, chemistry, physics, computer science, information engineering, mathematics and statistics to analyze and interpret the biological data. Bioinformatics has been used for in silico analyses of biological queries using computational and statistical techniques.

Bioinformatics includes biological studies that use computer programming as part of their methodology, as well as specific analysis "pipelines" that are repeatedly used, particularly in the field of genomics. Common uses of bioinformatics include the identification of candidates genes and single nucleotide polymorphisms (SNPs). Often, such identification is made with the aim to better understand the genetic basis of disease, unique adaptations, desirable properties (esp. in agricultural species), or differences between populations. In a less formal way, bioinformatics also tries to understand the organizational principles within nucleic acid and protein sequences, called proteomics.

Image and signal processing allow extraction of useful results from large amounts of raw data. In the field of genetics, it aids in sequencing and annotating genomes and their observed mutations. It plays a role in the text mining of biological literature and the development of biological and gene ontologies to organize and query biological data. It also plays a role in the analysis of gene and protein expression and regulation. Bioinformatics tools aid in comparing, analyzing and interpreting genetic and genomic data and more generally in the understanding of evolutionary aspects of molecular biology. At a more integrative level, it helps analyze and catalogue the biological pathways and networks that are an important part of systems biology. In structural biology, it aids in the simulation and modeling of DNA, RNA, proteins as well as biomolecular interactions.

Ejemplos de uso de bioinformatics
1. IBS also has interests in varied disciplines of robotics and bioinformatics.
2. The panel included experts in forensics, bioinformatics, molecular and medical genetics, and statistical and population genetics.
3. On Tuesday, Matsuura will visit the Weizmann Institute of Science, where UNESCO is helping to create a bioinformatics center.
4. An initial set of 10 gateways will address new scientific opportunities in fields from bioinformatics to nanotechnology as well as interoperation between TeraGrid and other grid infrastructures.
5. The city will also have a special academic zone with advanced institutes for technology, management, medical sciences and bioinformatics center, research and development centers and a technology park.