Artificial intelligence‐assisted high‐throughput screening of printing conditions of hydrogel architectures for accelerated diabetic wound healing

B Chen, J Dong, M Ruelas, X Ye, J He… - Advanced Functional …, 2022 - Wiley Online Library
Abstract In 3D (bio) printing, it is critical to optimize the printing conditions to obtain scaffolds
with designed structures and good uniformities. Traditional approaches for optimizing the …

In vitro and mechanical characterization of PLA/egg shell biocomposite scaffold manufactured using f used deposition modeling technology for tissue engineering …

S Gnanamani Sankaravel, RB Syed… - Polymer …, 2022 - Wiley Online Library
Fused deposition modeling (FDM) plays a crucial role in additive manufacturing in the
development of novel materials to match the properties of patient specific implants …

Revealing the compressive and flow properties of novel bone scaffold structure manufactured by selective laser sintering technique

S Rashia Begum, M Saravana Kumar… - Proceedings of the …, 2022 - journals.sagepub.com
Additive manufacturing is revolutionizing the field of medical sciences through its key
application in the development of bone scaffolds. During scaffold fabrication, achieving a …

Experimental investigation and optimal 3D bioprinting parameters of SA-Gel porous cartilage scaffold

Y Gong, F Wang, MSH Al-Furjan, L Shan, J He, X Bian… - Applied Sciences, 2020 - mdpi.com
The main aim of this paper is to achieve the suitable SA-GEL (sodium alginate and gelatin)
porous cartilage scaffold by 3D printing technology with optimal prediction parameters …

[PDF][PDF] Supervisors: Prof. dr. ir. Bart Van der Bruggen Prof. dr. ir. Peter van puyvelde

E SY, M NTHESIS, F ES, A SO, T NAN - Science (PhD), 2018 - lirias.kuleuven.be
1.1 Background Separation processes play a remarkable role in the chemical and
pharmaceutical industries, where they account for 40–70% of both capital and operating …