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A Smartphone-Enabled Portable Digital Light Processing 3D Printer

delete2021-07-18
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李婉露 封面图
李婉露 (Wanlu Li)
王冕 封面图
王冕 (Mian Wang)
L
Luis Santiago Mille
J
Juan Antonio Robledo Lara
V
Valentín Huerta
T
Tlalli Uribe Velázquez
程
程凤 (Feng Cheng)
栗
栗洪彬 (Hongbin Li)
J
Jiaxing Gong
T
Terry Ching
C
Caroline A. Murphy
A
Ami Lesha
S
Shabir Hassan
T
Tim B. F. Woodfield
K
Khoon S. Lim *
Y
Yu Shrike Zhang *
DOI:10.1002/adma.202102153delete
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摘要

摘要

En 中文
3D printing has emerged as an enabling approach in a variety of different fields. However, the bulk volume of printing systems limits the expansion of their applications. In this study, a portable 3D Digital Light Processing (DLP) printer is built based on a smartphone-powered projector and a custom-written smartphone-operated app. Constructs with detailed surface architectures, porous features, or hollow structures, as well as sophisticated tissue analogs, are successfully printed using this platform, by utilizing commercial resins as well as a range of hydrogel-based inks, including poly(ethylene glycol)-diacrylate, gelatin methacryloyl, or allylated gelatin. Moreover, due to the portability of the unique DLP printer, medical implants can be fabricated for point-of-care usage, and cell-laden tissues can be produced in situ, achieving a new milestone for mobile-health technologies. Additionally, the all-in-one printing system described herein enables the integration of the 3D scanning smartphone app to obtain object-derived 3D digital models for subsequent printing. Along with further developments, this portable, modular, and easy-to-use smartphone-enabled DLP printer is anticipated to secure exciting opportunities for applications in resource-limited and point-of-care settings not only in biomedicine but also for home and educational purposes.
Keyword:
3D printing
bioprinting
Digital Light Processing
portable devices
smartphone
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期刊

Advanced Materials 封面图
Advanced Materials
IF:
26.8
论文数:
3.4W
被引数:
46.0W

机构

H
Harvard University
学者数:
26.5W
论文数: 22.0W
被引数: 28.7W
引用论文

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