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SLAS Technology

Published By Elsevier

  • SLAS Technology: 2023, vol: 28, issue: 3
  • 1)- Roman Voronov, Murat Guvendiren. Bioprinting the future. SLAS technology. 2023, 28 (3): 101
    Cited : 0
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  • 2)- Allen Zennifer, Madhumithra Thangadurai, Dhakshinamoorthy Sundaramurthi, Swaminathan Sethuraman. Additive manufacturing of peripheral nerve conduits - Fabrication methods, design considerations and clinical challenges. SLAS technology. 2023, 28 (3): 102-126
    Cited : 10
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  • 3)- Atchara Chinnakorn, Wiwat Nuansing, Mahdi Bodaghi, Bernard Rolfe, Ali Zolfagharian. Recent progress of 4D printing in cancer therapeutics studies. SLAS technology. 2023, 28 (3): 127-141
    Cited : 15
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  • 4)- Kamil Elkhoury, Julio Zuazola, Sanjairaj Vijayavenkataraman. Bioprinting the future using light: A review on photocrosslinking reactions, photoreactive groups, and photoinitiators. SLAS technology. 2023, 28 (3): 142-151
    Cited : 8
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  • 5)- Joana Rita Oliveira Faria Marques, Patricia González-Alva, Ruby Yu-Tong Lin, Beatriz Ferreira Fernandes, Akhilanand Chaurasia, Nileshkumar Dubey. Advances in tissue engineering of cancer microenvironment-from three-dimensional culture to three-dimensional printing. SLAS technology. 2023, 28 (3): 152-164
    Cited : 2
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  • 6)- Raffaele Pugliese, Serena Graziosi. Biomimetic scaffolds using triply periodic minimal surface-based porous structures for biomedical applications. SLAS technology. 2023, 28 (3): 165-182
    Cited : 20
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  • 7)- Muthu Parkkavi Sekar, Harshavardhan Budharaju, Swaminathan Sethuraman, Dhakshinamoorthy Sundaramurthi. Carboxymethyl cellulose-agarose-gelatin: A thermoresponsive triad bioink composition to fabricate volumetric soft tissue constructs. SLAS technology. 2023, 28 (3): 183-198
    Cited : 7
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  • 8)- Toan V Phan, Yamin Oo, Khurshid Ahmed, Teerapat Rodboon, Vinicius Rosa, Supansa Yodmuang, Joao N Ferreira. Salivary gland regeneration: from salivary gland stem cells to three-dimensional bioprinting. SLAS technology. 2023, 28 (3): 199-209
    Cited : 3
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