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3D Printed Bionic Ears

delete2013-05-06
delete760
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OA
AI
M
Manu Sebastian Mannoor
Z
Ziwen Jiang
T
Teena James
Y
Yong Lin Kong
K
Karen Malatesta
W
Winston O. Soboyejo
N
Naveen Verma
D
David H. Gracias
M
Michael C. McAlpine *
DOI:10.1021/nl4007744delete
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Abstract

Abstract

En 中文
The ability to three-dimensionally interweave biological tissue with functional electronics could enable the creation of bionic organs possessing enhanced functionalities over their human counterparts. Conventional electronic devices are inherently two-dimensional, preventing seamless multidimensional integration with synthetic biology, as the processes and materials are very different. Here, we present a novel strategy for overcoming these difficulties via additive manufacturing of biological cells with structural and nanoparticle derived electronic elements. As a proof of concept, we generated a bionic ear via 3D printing of a cell-seeded hydrogel matrix in the anatomic geometry of a human ear, along with an intertwined conducting polymer consisting of infused silver nanoparticles. This allowed for in vitro culturing of cartilage tissue around an inductive coil antenna in the ear, which subsequently enables readout of inductively-coupled signals from cochlea-shaped electrodes. The printed ear exhibits enhanced auditory sensing for radio frequency reception, and complementary left and right ears can listen to stereo audio music. Overall, our approach suggests a means to intricately merge biologic and nanoelectronic functionalities via 3D printing.
Keywords:
Cybernetics
tissue engineering
bioelectronics
cyborg organs
electronic implants
additive manufacturing
AI Summary

AI Summary

Key information extracted from the uploaded paper, including a brief overview, abstract, background, key highlights, visual analysis, and future outlook.

Journal

Nano Letters cover
Nano Letters
IF:
9.1
Papers:
2.7W
Citations:
16.5W

Organization

P
Princeton University
Scholars:
2.1W
Papers: 2.3W
Citations: 5.1W
J
Johns Hopkins University
Scholars:
10.2W
Papers: 8.8W
Citations: 13.0W
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