Showing 61 - 80 results of 457 for search '"3D printing"', query time: 0.11s Refine Results
  1. 61

    Patient-Matched 3-D-Printed Guides for the Insertion of Cervical Pedicle Screws in Tumor Surgery by C.-E. Heyde, G. Osterhoff, Spiegl UJA, A. Völker, N. H. von der Höh, J. S. Jarvers

    Published 2021-01-01
    “…These preliminary results show that 3-D-printed patient-specific guides are a promising tool to support and facilitate the implantation of cervical pedicle screws. …”
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    Article
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    Fast 3D printing of fine, continuous, and soft fibers via embedded solvent exchange by Wonsik Eom, Mohammad Tanver Hossain, Vidush Parasramka, Jeongmin Kim, Ryan W. Y. Siu, Kate A. Sanders, Dakota Piorkowski, Andrew Lowe, Hyun Gi Koh, Michael F. L. De Volder, Douglas S. Fudge, Randy H. Ewoldt, Sameh H. Tawfick

    Published 2025-01-01
    “…This is achieved via 3D printing by rapid solvent exchange in high yield stress micro granular gel, leading to radial solidification of the extruded polymer filament at a rate of 2.33 μm/s. …”
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  4. 64

    Bio-inspired 3D printing approach for bonding soft and rigid materials through underextrusion by Arman Goshtasbi, Luca Grignaffini, Ali Sadeghi

    Published 2025-02-01
    “…In response to these challenges, we have developed a 3D printing technique that can be used with almost all commercially available FDM printers. …”
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    3D-Printed Scaffolds and Biomaterials: Review of Alveolar Bone Augmentation and Periodontal Regeneration Applications by Farah Asa’ad, Giorgio Pagni, Sophia P. Pilipchuk, Aldo Bruno Giannì, William V. Giannobile, Giulio Rasperini

    Published 2016-01-01
    “…In this review, we highlight different biomaterials suitable for 3D scaffold fabrication, with a focus on “3D-printed” ones as bone graft substitutes that might be convenient for various applications related to implant therapy. …”
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    Article
  12. 72

    Design and fabrication of customized brain slice matrices using CAD and 3D printing technology. by Yosuke Yamazaki, Maki Yuguchi, Bin Honjo, Keitaro Isokawa

    Published 2025-01-01
    “…This study presents a novel method for creating customized brain slice matrices using Computer-Aided Design (CAD) and 3D printing technology. Brain Slice Matrices are essential jigs for the reproducible preparation of brain tissue sections in neuroscience research. …”
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  13. 73

    In situ minimally invasive 3D printing for bone and cartilage regeneration - a scoping review by Maintz Michaela, Tomooka Yukiko, Eugster Manuela, Gerig Nicolas, Sharma Neha, Thieringer Florian M., Rauter Georg

    Published 2024-09-01
    “…Advancements in personalized medicine, threedimensional (3D) printing, miniaturization, and robot-assisted surgery are driving innovation in tissue engineering. …”
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  14. 74

    An Open-Source 3D Printed Three-Fingered Robotic Gripper for Adaptable and Effective Grasping by Francisco Yumbla, Emiliano Quinones Yumbla, Erick Mendoza, Cristobal Lara, Javier Pagalo, Efraín Terán, Redhwan Algabri, Myeongyun Doh, Tuan Luong, Hyungpil Moon

    Published 2025-01-01
    “…During the development phase, 3D printing materials were employed in the gripper’s design, with Polylactic Acid (PLA) filament used for the rigid mechanical components and Thermoplastic Polyurethane (TPU) for the flexible membranes that distribute pressure to the resistive force sensors. …”
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    Ultralow UV absorber content in 3D printed nanocomposites: maximizing printability and microwave absorption efficiency by David Tilve-Martínez, Wilfrid Neri, Jeanne Lessire, Benjamin Dulucq, Nicolas Vukadinovic, Benoit Berton, Jinkai Yuan, Philippe Poulin

    Published 2025-01-01
    “…This study explores the utilization of 3D printing and VAT photopolymerization to optimize material properties for efficient microwave absorption. …”
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    Electrical Property of 3D Printed Continuous Fiber Reinforced Thermoplastic Composite Mesh Reflecting Surfaces by Kunyang Lin, Xiaofei Ma, Zhen Cui, Youwei Kang, Pengfei Huang, Huanxiao Li, Di Wu, Guanlong Su, Xiaoyong Tian

    Published 2022-01-01
    “…In this study, the continuous fiber reinforced thermoplastic composites mesh reflecting surfaces are prepared by 3D printing technology. The effect of different mesh shape and mesh size on the electrical properties are investigated systematically. …”
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  20. 80

    3D printed biodegradable hydrogel-based multichannel nerve conduits mimicking peripheral nerve fascicules by Woo-Youl Maeng, Yerim Lee, Szu-Han Chen, Kyung Su Kim, Daeun Sung, Wan-Ling Tseng, Gyu-Nam Kim, Young-Hag Koh, Yuan-Yu Hsueh, Jahyun Koo

    Published 2025-04-01
    “…Hydrogel-based NGCs with microscale multichannels resembling actual nerve fascicles are fabricated using digital light processing as 3D printing. Gelatin methacryloyl (GelMA) and polyethylene glycol diacrylate (PEGDA), which are biodegradable and photocurable, are used as the printing solution. …”
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