Author:
Liu Changxi,Wang Liqiang,Lu Weijie,Liu Jia,Yang Chengliang,Fan Chunhai,Li Qian,Tang Yujin
Abstract
AbstractBioprinting is an emerging additive manufacturing technology that has enormous potential in bone implantation and repair. The insufficient accuracy of the shape of bioprinted parts is a primary clinical barrier that prevents widespread utilization of bioprinting, especially for bone design with high-resolution requirements. During the last five years, the use of computer vision for process control has been widely practiced in the manufacturing field. Computer vision can improve the performance of bioprinting for bone research with respect to various aspects, including accuracy, resolution, and cell survival rate. Hence, computer vision plays a substantial role in addressing the current defect problem in bioprinting for bone research. In this review, recent advances in the application of computer vision in bioprinting for bone research are summarized and categorized into three groups based on different defect types: bone scaffold process control, deep learning, and cell viability models. The collection of printing parameters, data processing, and feedback of bioprinting information, which ultimately improves printing capabilities, are further discussed. We envision that computer vision may offer opportunities to accelerate bioprinting development and provide a new perception for bone research.
Funder
Guangxi Key Laboratory of Automatic Detection Technology and Instrument Foundation
Publisher
Springer Science and Business Media LLC
Subject
Physiology,Histology,Endocrinology, Diabetes and Metabolism
Reference147 articles.
1. Stevens, M. M. Biomaterials for bone materials that enhance bone regeneration have a wealth of potential. Bone 11, 18–25 (2008).
2. Amini, A. R., Laurencin, C. T. & Nukavarapu, S. P. Bone tissue engineering: recent advances and challenges. Crit. Rev. Biomed. Eng. 40, 363–408 (2012).
3. Bose, S., Vahabzadeh, S. & Bandyopadhyay, A. Bone tissue engineering using 3D printing. Mater. Today 16, 496–504 (2013).
4. Oberpenning, F., Meng, J., Yoo, J. J. & Atala, A. De novo reconstitution of a functional mammalian urinary bladder by tissue engineering. Nat. Biotechnol. 17, 149–155 (1999).
5. Wilson, W. C. & Boland, T. Cell and organ printing 1: protein and cell printers. Anat. Rec. Discov. Mol. Cell. Evol. Biol. 272, 491–496 (2003).
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