OpenAlex 5,029 works 427 author topics
Works
5,029 works
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The latest industrial revolution, Industry 4.0, is encouraging the integration of intelligent production systems and advanced information technologies. Additive manufacturing (AM) is considered to be an essential ingredient in this new movement. In this paper, a comprehensive review on AM technologies is presented tog…
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Abiotic and biotic environmental degradation of the bioplastic polymer poly(lactic acid): A review 2017YÖKSİS SJR Q1 JCR Q1 OpenAlex top 1% OpenAlex 99.5%
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Bioprinting is an emerging technique for the fabrication of 3D cell-laden constructs. However, the progress for generating a 3D complex physiological microenvironment has been hampered by a lack of advanced cell-responsive bioinks that enable bioprinting with high structural fidelity, particularly in the case of extru…
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Over the last decades, the fabrication of 3D tissues has become commonplace in tissue engineering and regenerative medicine. However, conventional 3D biofabrication techniques such as scaffolding, microengineering, and fiber and cell sheet engineering are limited in their capacity to fabricate complex tissue construct…
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Three-dimensional (3D) and Four-dimensional (4D) printing emerged as the next generation of fabrication techniques, spanning across various research areas, such as engineering, chemistry, biology, computer science, and materials science. Three-dimensional printing enables the fabrication of complex forms with high pre…
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Four-dimensional (4D) bioprinting, encompassing a wide range of disciplines including bioengineering, materials science, chemistry, and computer sciences, is emerging as the next-generation biofabrication technology. By utilizing stimuli-responsive materials and advanced three-dimensional (3D) bioprinting strategies,…
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Bioprinting can be defined as 3D patterning of living cells and other biologics by filling and assembling them using a computer-aided layer-by-layer deposition approach to fabricate living tissue and organ analogs for tissue engineering. The presence of cells within the ink to use a 'bio-ink' presents the potential to…
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The ability to bioengineer three-dimensional (3D) tissues is a potentially powerful approach to treat diverse diseases such as cancer, loss of tissue function, or organ failure. Traditional tissue engineering methods, however, face challenges in fabricating 3D tissue constructs that resemble the native tissue microvas…
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Catalytic palladium (Pd) nanoparticles on electrospun copolymers of acrylonitrile and acrylic acid (PAN-AA) mats were produced via reduction of PdCl 2 with hydrazine. Fiber mats were electrospun from homogeneous solutions of PAN-AA and PdCl 2 in dimethylformamide (DMF). Pd cations were reduced to Pd metals when fiber…
Academicians
427 academicians
- OSMAN ÜLKİR 41 author topics
- GÖKHAN ÖZER 36 author topics
- ULAŞ YAMAN 33 author topics
- EBUBEKİR KOÇ 32 author topics
- ÇAĞIN BOLAT 31 author topics
- BİNNUR SAĞBAŞ 29 author topics
- NERGİZHAN ANAÇ 29 author topics
- OĞUZ KOÇAR 29 author topics
- RECEP MUHAMMET GÖRGÜLÜARSLAN 28 author topics
- ALPEREN DOĞRU 27 author topics
- KORAY ÖZSOY 27 author topics
- MELTEM ERYILDIZ 23 author topics