Chitosan and its derivatives in 3D/4D (bio) printing for tissue engineering and drug delivery applications

T Agarwal, I Chiesa, M Costantini, A Lopamarda… - International Journal of …, 2023 - Elsevier
Tissue engineering research has undergone to a revolutionary improvement, thanks to
technological advancements, such as the introduction of bioprinting technologies. The ability …

Advancing 3D bioprinting through machine learning and artificial intelligence

S Ramesh, A Deep, A Tamayol, A Kamaraj, C Mahajan… - Bioprinting, 2024 - Elsevier
Abstract 3D bioprinting, a vital tool in tissue engineering, drug testing, and disease
modeling, is increasingly integrated with machine learning (ML) and artificial intelligence …

In situ bioprinting: intraoperative implementation of regenerative medicine

M Samandari, A Mostafavi, J Quint, A Memić… - Trends in …, 2022 - cell.com
Bioprinting has emerged as a strong tool for devising regenerative therapies to address
unmet medical needs. However, the translation of conventional in vitro bioprinting …

[HTML][HTML] In vivo bioprinting: Broadening the therapeutic horizon for tissue injuries

W Zhao, C Hu, T Xu - Bioactive Materials, 2023 - Elsevier
Tissue injury is a collective term for various disorders associated with organs and tissues
induced by extrinsic or intrinsic factors, which significantly concerns human health. In vivo …

Bioink formulation and machine learning-empowered bioprinting optimization

S Freeman, S Calabro, R Williams, S **… - … in Bioengineering and …, 2022 - frontiersin.org
Bioprinting enables the fabrication of complex, heterogeneous tissues through robotically-
controlled placement of cells and biomaterials. It has been rapidly develo** into a …

Robotic in situ bioprinting for cartilage tissue engineering

Y Wang, RF Pereira, C Peach, B Huang… - … Journal of Extreme …, 2023 - iopscience.iop.org
Articular cartilage damage caused by trauma or degenerative pathologies such as
osteoarthritis can result in significant pain, mobility issues, and disability. Current surgical …

[HTML][HTML] A fully automatic non-planar slicing algorithm for the additive manufacturing of complex geometries

GM Fortunato, M Nicoletta, E Batoni, G Vozzi… - Additive …, 2023 - Elsevier
The aim of this work is the implementation of a novel non-planar slicing algorithm, capable
of combining traditional planar layers with non-planar ones. The geometry to be …

Robotic-assisted automated in situ bioprinting

H Dong, B Hu, W Zhang, W ** functional 3D tissues for
tissue engineering and regenerative medicine applications. Recently, the direct formation of …

Design considerations for digital light processing bioprinters

CE Garciamendez-Mijares, FJ Aguilar… - Applied physics …, 2024 - pubs.aip.org
With the rapid development and popularization of additive manufacturing, different
technologies, including, but not limited to, extrusion-, droplet-, and vat-photopolymerization …