Search results for: TISSUE ADHESIVES,POLYSACCHARIDESBIO-ADHESIVESBIO-GLUEBIOMEDICAL ENGINEERING - Bridge of Knowledge

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Search results for: TISSUE ADHESIVES,POLYSACCHARIDESBIO-ADHESIVESBIO-GLUEBIOMEDICAL ENGINEERING

Best results in : Research Potential Pokaż wszystkie wyniki (41)

Search results for: TISSUE ADHESIVES,POLYSACCHARIDESBIO-ADHESIVESBIO-GLUEBIOMEDICAL ENGINEERING

  • Katedra Technologii Polimerów

    W Katedrze Technologii Polimerów realizowane są prace badawczo-wdrożeniowe, wykonywane ekspertyzy i analizy oraz prowadzone są szkolenia w zakresie technologii polimerów oraz przetwórstwa i recyklingu tworzyw sztucznych. Oferujemy nowe technologie i przeprowadzamy modyfikacje technologii już istniejących.

  • Katedra Mechaniki Budowli

    Research Potential

    Aktualnie działalność naukowo-badawcza Katedry koncentruje się, na następujących zagadnieniach: modelowanie konstrukcji, identyfikacja modeli, mechanika konstrukcji cienkościennych, konstrukcje kompozytowe, nieliniowa statyka i dynamika, teoria niezawodności, problemy zniszczenia, optymalizacja konstrukcji, analiza wrażliwości, identyfikacja uszkodzeń konstrukcji, analiza wpływu drgań na budowlę, czy biomechanika.

  • Zespół Katedry Wytrzymałości Materiałów

    Katedra zajmuje się zagadnieniami związanymi z wytrzymałością elementów konstrukcji, ich teorią oraz analizą, jak również do myśli przewodnich należy zaliczyć materiałowe badania doświadczalne oraz prace nad technologią betonu. Współpracujemy z przemysłem z branż budowlanych i okołobudowlanych, wykorzystując wypracowane doświadczenie i wiedzę z zakresu materiałów konstrukcyjnych i budowlanych.

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Search results for: TISSUE ADHESIVES,POLYSACCHARIDESBIO-ADHESIVESBIO-GLUEBIOMEDICAL ENGINEERING

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Search results for: TISSUE ADHESIVES,POLYSACCHARIDESBIO-ADHESIVESBIO-GLUEBIOMEDICAL ENGINEERING

  • Biomedical engineering of polysaccharide-based tissue adhesives: Recent advances and future direction

    Publication

    - CARBOHYDRATE POLYMERS - Year 2022

    Tissue adhesives have been widely used for preventing wound leaks, sever bleeding, as well as for enhancing drug delivery and biosensing. However, only a few among suggested platforms cover the circumstances required for high-adhesion strength and biocompatibility, without toxicity. Antibacterial properties, controllable degradation, encapsulation capacity, detectability by image-guided procedures and affordable price are also...

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  • Green Polymer Nanocomposites for Skin Tissue Engineering

    Publication

    - ACS Applied Bio Materials - Year 2022

    Fabrication of an appropriate skin scaffold needs to meet several standards related to the mechanical and biological properties. Fully natural/green scaffolds with acceptable biodegradability, biocompatibility, and physiological properties quite often suffer from poor mechanical properties. Therefore, for appropriate skin tissue engineering and to mimic the real functions, we need to use synthetic polymers and/or additives as complements...

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  • ASCORBIC ACID IN POLYURETHANE SYSTEMS FOR TISSUE ENGINEERING

    The introduction of the paper was devoted to the main items of tissue engineering (TE) and the way of porous structure obtaining as scaffolds. Furthermore, the significant role of the scaffold design in TE was described. It was shown, that properly designed polyurethanes (PURs) find application in TE due to the proper physicochemical, mechanical and biological properties. Then the use of L-ascorbic acid (L-AA) in PUR systems for...

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  • Comparative review of piezoelectric biomaterials approach for bone tissue engineering

    Publication
    • A. Samadi
    • M. A. Salati
    • A. Safari
    • M. Jouyandeh
    • M. Barani
    • N. P. Singh Chauhan
    • E. G. Golab
    • P. Zarrintaj
    • S. Kar
    • F. Seidi... and 2 others

    - JOURNAL OF BIOMATERIALS SCIENCE-POLYMER EDITION - Year 2022

    Bone as a minerals’ reservoir and rigid tissue of the body generating red and white blood cells supports various organs. Although the self-regeneration property of bone, it cannot regenerate spontaneously in severe damages and still remains as a challenging issue. Tissue engineering offers several techniques for regenerating damaged bones, where various biomaterials are examined to fabricate scaffolds for bone repair. Piezoelectric...

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  • Electrically Conductive Carbon‐based (Bio)‐nanomaterials for Cardiac Tissue Engineering

    Publication
    • N. Jalilinejad
    • M. Rabiee
    • N. Baheiraei
    • R. Ghahremanzadeh
    • R. Salarian
    • N. Rabiee
    • O. Akhavan
    • P. Zarrintaj
    • A. Hejna
    • M. Saeb... and 4 others

    - Bioengineering & Translational Medicine - Year 2023

    A proper self-regenerating capability is lacking in human cardiac tissue which along with the alarming rate of deaths associated with cardiovascular disorders makes tissue engineering critical. Novel approaches are now being investigated in order to speedily overcome the challenges in this path. Tissue engineering has been revolutionized by the advent of nanomaterials, and later by the application of carbon-based nanomaterials...

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