Search results for "mimetic design"

showing 4 items of 4 documents

Cognitive Mimetics for AI Ethics : Tacit Knowledge, Action Ontologies and Problem Restructuring

2020

Ethics and ethical information processing are an important problem for AI development. It is important for self-evident reasons, but also challenging in its’ implications and should be welcomed by designers and developers as an interesting technical challenge. This article explores AI ethics as a design problem and lays out how cognitive mimetics could be used a method for its design. AI ethics is conceptualized as a problem of implementation on the one hand, and as a problem of ethical contents on the other. From the viewpoint of human information processing, ethics becomes a special case of ethical information processing - one that has deep implications in terms of AI abilities and inform…

järjestelmäsuunnitteluProperty (philosophy)RestructuringComputer sciencetietämystekniikkaContext (language use)Cognitive mimetics02 engineering and technologytekoäly0603 philosophy ethics and religionhiljainen tietoAI ethicsTacit knowledgecognitive mimetics0202 electrical engineering electronic engineering information engineeringComputingMilieux_THECOMPUTINGPROFESSIONInformation processingCognition06 humanities and the artsMimetic designAction (philosophy)AI designmimetic design020201 artificial intelligence & image processingEngineering ethics060301 applied ethicsetiikka
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A New Absorbable Synthetic Substitute With Biomimetic Design for Dural Tissue Repair

2015

Dural repair products are evolving from animal tissue-derived materials to synthetic materials as well as from inert to absorbable features; most of them lack functional and structural characteristics compared with the natural dura mater. In the present study, we evaluated the properties and tissue repair performance of a new dural repair product with biomimetic design. The biomimetic patch exhibits unique three-dimensional nonwoven microfiber structure with good mechanical strength and biocompatibility. The animal study showed that the biomimetic patch and commercially synthetic material group presented new subdural regeneration at 90 days, with low level inflammatory response and minimal …

medicine.medical_specialtyMaterials scienceBiocompatibilityRegeneration (biology)Dura materBiomedical EngineeringMedicine (miscellaneous)Biomimetic designBioengineering02 engineering and technologyGeneral MedicineAdhesionTissue repair021001 nanoscience & nanotechnologySurgeryBiomaterials03 medical and health sciences0302 clinical medicinemedicine.anatomical_structuremedicineImplant0210 nano-technologyWound healing030217 neurology & neurosurgeryBiomedical engineeringArtificial Organs
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Bioinspired synthesis of multifunctional inorganic and bio-organic hybrid materials

2012

Owing to their physical and chemical properties, inorganic functional materials have tremendous impacts on key technologies such as energy generation and storage, information, medicine, and automotive engineering. Nature, on the other hand, provides evolution-optimized processes, which lead to multifunctional inorganic–bio-organic materials with complex structures. Their formation occurs under physiological conditions, and is goverened by a combination of highly regulated biological processes and intrinsic chemical properties. Nevertheless, insights into the molecular mechanisms of biomineralization open up promising perspectives for bioinspired and biomimetic design and the development of …

Marine spongesChemistryBiomimetic designNanotechnologySkeletal structuresCell BiologyHybrid materialMolecular BiologyBiochemistrySilica depositionBiomineralizationFEBS Journal
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Generative design and parametric / topological optimization of cellular structures bio-inspired by additive manufacturing

2022

Biomimicry is the practice of learning from nature and imitating its different functionalities. Nature proposes complex forms and objects which inspired designers and engineers to conceive and find solutions for their engineering problems. The fabrication of these complex objects is particularly assured by the different Additive Manufacturing (AM) techniques. Generally, biomimicry can be addressed at different levels, forms, textures, and behaviors, but in AM, it is presented under two main types. The first is the customization of parts (medical prosthesis, implants or custom sport equipments). And the second consists in the optimization for specific properties such as stiffness and lightne…

Parametric optimizationFabrication additiveAdditive manufacturing[SPI.OTHER] Engineering Sciences [physics]/OtherOptimisation paramétriqueBiomimetic designConception biomimétiqueSimulation
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