Electrofluidodynamic Technologies (EFDTs) for Biomaterials and Medical Devices: Principles and Advances: Woodhead Publishing Series in Biomaterials
Editat de Vincenzo Guarino, Luigi Ambrosioen Limba Engleză Hardback – 20 ian 2018
- Presents a complete picture of Electrofluidodynamic technologies and their use in biomedicine
- Provides a comprehensive, professional reference on the subject, covering materials processing, fabrication and the use of novel devices for tissue engineering and therapeutics
- Focuses on technological advances, with an emphasis on studies and clinical trials
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Specificații
ISBN-13: 9780081017456
ISBN-10: 0081017456
Pagini: 426
Dimensiuni: 152 x 229 mm
Greutate: 0.74 kg
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Biomaterials
ISBN-10: 0081017456
Pagini: 426
Dimensiuni: 152 x 229 mm
Greutate: 0.74 kg
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Biomaterials
Public țintă
scientists in materials science, biomedical engineers, researchers in the medical sectorCuprins
1. Introduction to electrofluidodynamic techniques Part I: Process optimization
2. Introduction to electrofluidodynamic techniques Part II: cell to cell/material interactions
3. Melt electrospinning
4. Biofabrication via integrated 3D printing and electrospinning
5. Pyro-Electrohydrodynamic Spinning for micro and nano Patterning
6. Multilayered scaffolds for interface tissue engineering applications
7. air-flow electrofluidodynamics
8. Electrospinning and Microfluidics: an integrated approach for tissue engineering and cancer
9. Electrospun fibres for drug and molecular delivery
10. Additive Electrospraying for scaffold functionalization
11. Bioactive fibres for bone regeneration
12. Design of electrospun fibrous patches for myocardium regeneration
13. Hydrogel fibrous scaffolds for accelerated wound healing
14. Natural polymer based electrospun fibres for antibacterial use
15. Electrospun patches for skin regeneration
16. Multifilament Electrospun devices for ligaments regeneration
17. 3D conduits for peripheral nerve regeneration
18. Inorganic nanoparticles for teranostic use
19. Advances on the use of Electrospun fibres for central Nervous System
2. Introduction to electrofluidodynamic techniques Part II: cell to cell/material interactions
3. Melt electrospinning
4. Biofabrication via integrated 3D printing and electrospinning
5. Pyro-Electrohydrodynamic Spinning for micro and nano Patterning
6. Multilayered scaffolds for interface tissue engineering applications
7. air-flow electrofluidodynamics
8. Electrospinning and Microfluidics: an integrated approach for tissue engineering and cancer
9. Electrospun fibres for drug and molecular delivery
10. Additive Electrospraying for scaffold functionalization
11. Bioactive fibres for bone regeneration
12. Design of electrospun fibrous patches for myocardium regeneration
13. Hydrogel fibrous scaffolds for accelerated wound healing
14. Natural polymer based electrospun fibres for antibacterial use
15. Electrospun patches for skin regeneration
16. Multifilament Electrospun devices for ligaments regeneration
17. 3D conduits for peripheral nerve regeneration
18. Inorganic nanoparticles for teranostic use
19. Advances on the use of Electrospun fibres for central Nervous System