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  • Advanced Biological Computer Developed.
  • May 23, 2013 — Using only biomolecules (such as DNA and enzymes), scientists at the Technion-Israel Institute of Technology have developed and constructed an advanced biological transducer, a computing machine capable of manipulating genetic codes, and using the output as new input for subsequent computations.
  • The breakthrough might someday create new possibilities in biotechnology, including individual gene therapy and cloning.
  • Interest in such biomolecular computing devices is strong, mainly because of their ability (unlike electronic computers) to interact directly with biological systems and even living organisms.
  • No interface is required since all components of molecular computers, including hardware, software, input and output, are molecules that interact in solution along a cascade of programmable chemical events.
  • "Our results show a novel, synthetic designed computing machine that computes iteratively and produces biologically relevant results," says lead researcher Prof. Ehud Keinan of the Technion Schulich Faculty of Chemistry.
  • "In addition to enhanced computation power, this DNA-based transducer offers multiple benefits, including the ability to read and transform genetic information, miniaturization to the molecular scale, and the aptitude to produce computational results that interact directly with living organisms."

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    • May 23, 2013 — Using only biomolecules (such as DNA and enzymes), scientists at the Technion-Israel Institute of Technology have developed and constructed an advanced biological transducer, a computing machine capable of manipulating genetic codes, and using the output as new input for subsequent computations.
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    • LEGG TIL EN NY RETTELSE! - Setning 2LEGG TIL EN NY RETTELSE! - Setning 2
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    • Interest in such biomolecular computing devices is strong, mainly because of their ability (unlike electronic computers) to interact directly with biological systems and even living organisms.
      Stem nå!
    • LEGG TIL EN NY RETTELSE! - Setning 4LEGG TIL EN NY RETTELSE! - Setning 4
  • Setning 5
    • No interface is required since all components of molecular computers, including hardware, software, input and output, are molecules that interact in solution along a cascade of programmable chemical events.
      Stem nå!
    • LEGG TIL EN NY RETTELSE! - Setning 5LEGG TIL EN NY RETTELSE! - Setning 5
  • Setning 6
    • "Our results show a novel, synthetic designed computing machine that computes iteratively and produces biologically relevant results," says lead researcher Prof. Ehud Keinan of the Technion Schulich Faculty of Chemistry.
      Stem nå!
    • LEGG TIL EN NY RETTELSE! - Setning 6LEGG TIL EN NY RETTELSE! - Setning 6
  • Setning 7
    • "In addition to enhanced computation power, this DNA-based transducer offers multiple benefits, including the ability to read and transform genetic information, miniaturization to the molecular scale, and the aptitude to produce computational results that interact directly with living organisms."
      Stem nå!
    • LEGG TIL EN NY RETTELSE! - Setning 7LEGG TIL EN NY RETTELSE! - Setning 7