743,463 resultados para simSearch:679-04250626,k

  • 679-04250639

    DNA molecule, artwork

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  • 679-04250637

    DNA molecule, artwork

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  • 679-04250628

    DNA molecule, artwork

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  • 679-04250626

    DNA molecule, artwork

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  • 679-04250644

    DNA molecule, artwork

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  • 679-04250642

    DNA transcription factor, molecular model

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  • 679-04250640

    DNA molecule, artwork

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  • 679-04250638

    DNA molecule, artwork

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  • 679-04250636

    DNA molecule, artwork

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  • 679-04250632

    DNA molecule, artwork

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  • 679-04250631

    Genetics research, conceptual artwork

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  • 679-04250630

    Genetics research, conceptual artwork

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  • 679-04250627

    DNA molecule, artwork

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  • 679-04250625

    DNA molecule, artwork

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  • 679-04250641

    Genetics research, conceptual artwork

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  • 679-04250629

    Genetics research, conceptual artwork

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  • 679-04250635

    DNA molecule, artwork

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  • 679-04250633

    Human genome, conceptual artwork

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  • 679-04250634

    Human genome, conceptual artwork

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  • 679-04250619

    Genetics research, conceptual artwork

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  • 679-04250659

    Human cloning, conceptual artwork

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  • 679-04250624

    Genetics research, conceptual artwork

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  • 679-04250623

    Genetics research, conceptual artwork

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  • 679-04250622

    Genetics research, conceptual artwork

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  • 679-04250621

    Genetics research, conceptual artwork

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  • 679-04250620

    Genetics research, conceptual artwork

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  • 679-04249856

    DNA molecule, computer artwork

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  • 679-04249818

    DNA molecule, computer artwork

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  • 679-04249817

    DNA molecule, computer artwork

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  • 679-04249815

    DNA molecule, computer artwork

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  • 679-04249788

    DNA molecule

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  • 679-04249787

    DNA molecule

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  • 679-04249786

    DNA molecule

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  • 679-04249785

    DNA molecule

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  • 679-04249784

    DNA structure

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  • 679-04250587

    Brain research, conceptual artwork

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  • 679-04249855

    Dioxin molecule

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  • 679-04249832

    Cholesterol molecule

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  • 679-04249816

    DNA molecule, computer artwork

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  • 679-07607958

    Artwork of a DNA (deoxyribonucleic acid) strand model.

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  • 679-07607957

    Artwork of a DNA (deoxyribonucleic acid) strand model.

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  • 679-04250812

    DNA molecule, computer artwork

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  • 679-04250656

    Molecular model, artwork

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  • 679-04250522

    DNA construction, artwork

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  • 679-04249833

    Caffeine molecule

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  • 679-08106421

    Acetic acid bacteria, illustration.

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  • 679-08106418

    Red blood cells, illustration.

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  • 679-08106417

    Red blood cells, illustration.

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  • 679-08106408

    Villi of the intestine, illustration.

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  • 679-08106407

    Villi of the intestine, illustration.

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  • 679-07607758

    Buckytube, computer artwork.

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  • 679-07607757

    Buckytube, computer artwork.

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  • 679-07608051

    Artwork of the EHEC (enterohaemorrhagic Escherichia coli) bacteria.

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  • 679-07608050

    Artwork of the E. coli bacteria.

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  • 679-07608048

    Artwork of dust mites.

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  • 679-07608043

    Artwork of bacilli bacteria.

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  • 679-03680757

    Conceptual image of genetic screening, showing a DNA molecule and genetic code with a cursor tracking one of the DNA spheres. Gene tests are used to test for genetic disorders, prenatal diagnostics (preimplantation genetic diagnosis (PGD), preimplantation genetic screening (PGS), newborn screening and forensic testing.

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  • 679-04251342

    Transcription factor complexed with DNA

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  • 679-04250699

    Stem cells, conceptual artwork

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  • 679-04250698

    Stem cells, conceptual artwork

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  • 679-04250694

    Stem cell research, conceptual artwork

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  • 679-04250693

    Stem cell research, conceptual artwork

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  • 679-04250692

    Stem cell research, conceptual artwork

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  • 679-04250673

    Leptin, molecular model

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  • 679-04250588

    Brain research, conceptual artwork

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  • 400-04411707

    Atoms and DNA matching background illustration design

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  • 679-06673638

    DNA (deoxyribonucleic acid), molecular model.

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  • 679-06673637

    DNA (deoxyribonucleic acid), molecular model.

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  • 679-06673636

    DNA (deoxyribonucleic acid), molecular model.

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  • 679-06673635

    DNA (deoxyribonucleic acid), molecular model.

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  • 679-06673634

    DNA (deoxyribonucleic acid), molecular model.

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  • 679-06673633

    DNA (deoxyribonucleic acid), molecular model.

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  • 679-06673632

    DNA (deoxyribonucleic acid), molecular model.

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  • 679-06672901

    Virus particles, computer artwork.

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  • 679-05797109

    DNA, artwork

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  • 679-05797108

    DNA, artwork

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  • 679-07151211

    DNA molecule, computer artwork.

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  • 679-07150920

    HIV reverse transcription enzyme. Molecular model of the reverse transcriptase enzyme (pink) found in HIV (the human immunodeficiency virus), complexed with a DNA (deoxyribonucleic acid) molecule (green and blue) and the antigen-binding fragment (Fab) of an antibody (orange). Reverse transcriptase transcribes the single-stranded RNA (ribonucleic acid) genome of HIV into DNA that is capable of inte

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  • 679-07150865

    TATA box-binding protein complex. Molecular model showing a yeast TATA box-binding protein (TBP) complexed with a strand of DNA (deoxyribonucleic acid, red and blue) and transcription factor IIA. TBP is a general transcription factor that binds specifically to the TATA box DNA sequence during DNA transcription. TATA boxes are found in the promoter region of a gene, the area where transcription is

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  • 679-07150864

    TATA box-binding protein and DNA. Molecular model showing a TATA box-binding protein (TBP) complexed with a strand of DNA (deoxyribonucleic acid, red and blue). TATA boxes are found in the promoter region of a gene, the area where transcription is initiated from.

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  • 679-07150848

    TATA box-binding protein complex. Molecular model showing a yeast TATA box-binding protein (TBP) complexed with a strand of DNA (deoxyribonucleic acid, red and blue) and transcription factor IIB. TBP is a general transcription factor that binds specifically to the TATA box DNA sequence during DNA transcription. TATA boxes are found in the promoter region of a gene, the area where transcription is

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  • 679-07150720

    Gene activator protein. Molecular model of catabolite gene activator protein (CAP, yellow) complexed with deoxyribonucleic acid (DNA, red and blue) and RNA polymerase (green and pink). CAP activates genes that enable bacteria to use an alternative energy source when glucose, the preferred energy source, is unavailable. Falling levels of glucose cause an increase in the messenger molecule cAMP, whi

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  • 679-07150648

    DNA Holliday junction complex. Molecular model of the enzyme FLP recombinase in complex with a Holliday junction between homologous strands of DNA (deoxyribonucleic acid). A Holliday junction forms during crossing over, a natural genetic process that occurs between homologous chromosomes and leads to the switching of genetic material between the chromosomes. This recombination increases the geneti

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  • 679-07150637

    Nucleosome, molecular model. A nucleosome is a subunit of chromatin, the substance that forms chromosomes. It consists of a short length of DNA (deoxyribonucleic acid, red and blue helix) wrapped around a core of eight histone proteins (centre). Here the secondary structure of the proteins is shown. The structure of the nucleosome allows large quantities of DNA, the genetic material, to be package

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  • 679-07150628

    Nucleosome, molecular model. A nucleosome is a subunit of chromatin, the substance that forms chromosomes. It consists of a short length of DNA (deoxyribonucleic acid, red and blue helix) wrapped around a core of eight histone proteins (centre). Here the secondary structure of the proteins is shown. The structure of the nucleosome allows large quantities of DNA, the genetic material, to be package

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  • 679-07150623

    LAC repressor bound to DNA. Molecular model of a LAC (lactose) repressor molecule (pink and turquoise) interacting with bacterial DNA (deoxyribonucleic acid, red and blue). The LAC repressor inhibits the expression of genes that code for an enzyme which metabolizes lactose in bacteria. It is only present when lactose levels are low. This ensures that the bacteria only produce machinery used for th

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  • 679-07150599

    DNA Holliday junction. Molecular model of a Holliday junction (centre) between homologous strands of DNA (deoxyribonucleic acid). A Holliday junction forms during crossing over, a natural genetic process that occurs between homologous chromosomes and leads to the switching of genetic material between the chromosomes. This recombination increases the genetic variation in a population.

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  • 679-07150583

    Gene activator protein. Molecular model of catabolite gene activator protein (CAP, pink and green) bound to a molecule of deoxyribonucleic acid (DNA, across top). CAP activates genes that enable bacteria to use an alternative energy source when glucose, the preferred energy source, is unavailable. Falling levels of glucose cause an increase in the messenger molecule cAMP, which binds to CAP enabli

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  • 679-07150581

    TATA box-binding protein and DNA. Molecular model showing a TATA box-binding protein (TBP) complexed with a strand of DNA (deoxyribonucleic acid, red and blue). TATA boxes are found in the promoter region of a gene, the area where transcription is initiated from.

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  • 679-07150575

    E. coli Holliday junction complex. Molecular model of a RuvA protein (red) in complex with a Holliday junction between homologous strands of DNA (deoxyribonucleic acid, blue) from an E. coli (Escherichia coli) bacterium. A Holliday junction forms during crossing over, a natural genetic process that occurs between homologous chromosomes and leads to the switching of genetic material between the chr

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