Literature DB >> 22524389

Rapid prototyping for biomedical engineering: current capabilities and challenges.

Andrés Díaz Lantada1, Pilar Lafont Morgado.   

Abstract

A new set of manufacturing technologies has emerged in the past decades to address market requirements in a customized way and to provide support for research tasks that require prototypes. These new techniques and technologies are usually referred to as rapid prototyping and manufacturing technologies, and they allow prototypes to be produced in a wide range of materials with remarkable precision in a couple of hours. Although they have been rapidly incorporated into product development methodologies, they are still under development, and their applications in bioengineering are continuously evolving. Rapid prototyping and manufacturing technologies can be of assistance in every stage of the development process of novel biodevices, to address various problems that can arise in the devices' interactions with biological systems and the fact that the design decisions must be tested carefully. This review focuses on the main fields of application for rapid prototyping in biomedical engineering and health sciences, as well as on the most remarkable challenges and research trends.

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Substances:

Year:  2012        PMID: 22524389     DOI: 10.1146/annurev-bioeng-071811-150112

Source DB:  PubMed          Journal:  Annu Rev Biomed Eng        ISSN: 1523-9829            Impact factor:   9.590


  22 in total

1.  Three-dimensional printed millifluidic devices for zebrafish embryo tests.

Authors:  Feng Zhu; Joanna Skommer; Niall P Macdonald; Timo Friedrich; Jan Kaslin; Donald Wlodkowic
Journal:  Biomicrofluidics       Date:  2015-07-22       Impact factor: 2.800

2.  Polymers for 3D Printing and Customized Additive Manufacturing.

Authors:  Samuel Clark Ligon; Robert Liska; Jürgen Stampfl; Matthias Gurr; Rolf Mülhaupt
Journal:  Chem Rev       Date:  2017-07-30       Impact factor: 60.622

3.  Vasculogenic potential evaluation of bottom-up, PCL scaffolds guiding early angiogenesis in tissue regeneration.

Authors:  L Rossi; C Attanasio; E Vilardi; M De Gregorio; P A Netti
Journal:  J Mater Sci Mater Med       Date:  2016-04-27       Impact factor: 3.896

4.  Making the cut: Innovative methods for optimizing perfusion-based migration assays.

Authors:  Andrew W Holt; William E Howard; Elizabeth T Ables; Stephanie M George; Cindy A Kukoly; Jake E Rabidou; Jake T Francisco; Angel N Chukwu; David A Tulis
Journal:  Cytometry A       Date:  2016-12-16       Impact factor: 4.355

Review 5.  3D biofabrication strategies for tissue engineering and regenerative medicine.

Authors:  Piyush Bajaj; Ryan M Schweller; Ali Khademhosseini; Jennifer L West; Rashid Bashir
Journal:  Annu Rev Biomed Eng       Date:  2014-05-29       Impact factor: 9.590

6.  Stereolithographic printing of ionically-crosslinked alginate hydrogels for degradable biomaterials and microfluidics.

Authors:  Thomas M Valentin; Susan E Leggett; Po-Yen Chen; Jaskiranjeet K Sodhi; Lauren H Stephens; Hayley D McClintock; Jea Yun Sim; Ian Y Wong
Journal:  Lab Chip       Date:  2017-10-11       Impact factor: 6.799

7.  Chitosan-based scaffolds for bone tissue engineering.

Authors:  Sheeny Lan Levengood; Miqin Zhang
Journal:  J Mater Chem B       Date:  2014-06-07       Impact factor: 6.331

8.  The Application of Pre-operative Three-Dimensional Models in the Management of Mandibular Pathology: Is it Really Useful? An Institutional Study.

Authors:  Sanjay Kumar Roy Chowdhury; Arunkumar Shadamarshan Rengasayee; Rajkumar Krishnaprabhu
Journal:  J Maxillofac Oral Surg       Date:  2020-10-16

9.  Rapid Prototyping of Pneumatic Directional Control Valves.

Authors:  Slawomir Blasiak; Pawel Andrzej Laski; Jakub Emanuel Takosoglu
Journal:  Polymers (Basel)       Date:  2021-04-30       Impact factor: 4.329

Review 10.  Bone Regeneration Based on Tissue Engineering Conceptions - A 21st Century Perspective.

Authors:  Jan Henkel; Maria A Woodruff; Devakara R Epari; Roland Steck; Vaida Glatt; Ian C Dickinson; Peter F M Choong; Michael A Schuetz; Dietmar W Hutmacher
Journal:  Bone Res       Date:  2013-09-25       Impact factor: 13.567

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