14 research outputs found

    Molecular developmental evidence for a subcoxal origin of pleurites in insects and identity of the subcoxa in the gnathal appendages

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    A Fabric Component Based Design Approach for High-Performance Integer Arithmetic Circuits

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    Discriminant Analysis Tools for Non Convex Pattern Recognition

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    Analog Design Tools for High-Frequency Applications

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    A Top-Down Minimization Algorithm for Non-Deterministic Systems

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    Einige graphentheoretische Aspekte des VLSI-Layout

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    Automatic Design of Digital Synthetic Gene Circuits

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    De novo computational design of synthetic gene circuits that achieve well-defined target functions is a hard task. Existing, brute-force approaches run optimization algorithms on the structure and on the kinetic parameter values of the network. However, more direct rational methods for automatic circuit design are lacking. Focusing on digital synthetic gene circuits, we developed a methodology and a corresponding tool for in silico automatic design. For a given truth table that specifies a circuit's input–output relations, our algorithm generates and ranks several possible circuit schemes without the need for any optimization. Logic behavior is reproduced by the action of regulatory factors and chemicals on the promoters and on the ribosome binding sites of biological Boolean gates. Simulations of circuits with up to four inputs show a faithful and unequivocal truth table representation, even under parametric perturbations and stochastic noise. A comparison with already implemented circuits, in addition, reveals the potential for simpler designs with the same function. Therefore, we expect the method to help both in devising new circuits and in simplifying existing solutions
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