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This book covers the principles of advanced 3D fabrication techniques, stem cells and biomaterials for neural engineering. Renowned contributors cover topics such as neural tissue regeneration, peripheral and central nervous system repair, brain-machine interfaces and in vitro nervous system modeling. Within these areas, focus remains on exciting and emerging technologies such as highly developed neuroprostheses and the communication channels between the brain and prostheses, enabling technologies that are beneficial for development of therapeutic interventions, advanced fabrication techniques such as 3D bioprinting, photolithography, microfluidics, and subtractive fabrication, and the engineering of implantable neural grafts. There is a strong focus on stem cells and 3D bioprinting technologies throughout the book, including working with embryonic, fetal, neonatal, and adult stem cells and a variety of sophisticated 3D bioprinting methods for neural engineering applications. There is also a strong focus on biomaterials, including various conductive biomaterials and biomimetic nanomaterials such as carbon-based nanomaterials and engineered 3D nanofibrous scaffolds for neural tissue regeneration. Finally, two chapters on in vitro nervous system models are also included, which cover this topic in the context of studying physiology and pathology of the human nervous system, and for use in drug discovery research. This is an essential book for biomedical engineers, neuroscientists, neurophysiologists, and industry professionals.
Engineering. --- Neurosciences. --- Biomedical engineering. --- Engineering --- Optical materials. --- Electronic materials. --- Biomaterials. --- Nanotechnology. --- Biomedical Engineering. --- Materials Engineering. --- Optical and Electronic Materials. --- Materials. --- Clinical engineering --- Medical engineering --- Neural sciences --- Neurological sciences --- Neuroscience --- Construction --- Bioengineering --- Biophysics --- Medicine --- Medical sciences --- Nervous system --- Industrial arts --- Technology --- Biomedical Engineering and Bioengineering. --- Molecular technology --- Nanoscale technology --- High technology --- Optics --- Materials --- Biocompatible materials --- Biomaterials --- Medical materials --- Biomedical engineering --- Biocompatibility --- Prosthesis --- Engineering—Materials. --- Electronic materials --- Bioartificial materials --- Hemocompatible materials --- Biomaterials (Biomedical materials)
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This book covers the principles of advanced 3D fabrication techniques, stem cells and biomaterials for neural engineering. Renowned contributors cover topics such as neural tissue regeneration, peripheral and central nervous system repair, brain-machine interfaces and in vitro nervous system modeling. Within these areas, focus remains on exciting and emerging technologies such as highly developed neuroprostheses and the communication channels between the brain and prostheses, enabling technologies that are beneficial for development of therapeutic interventions, advanced fabrication techniques such as 3D bioprinting, photolithography, microfluidics, and subtractive fabrication, and the engineering of implantable neural grafts. There is a strong focus on stem cells and 3D bioprinting technologies throughout the book, including working with embryonic, fetal, neonatal, and adult stem cells and a variety of sophisticated 3D bioprinting methods for neural engineering applications. There is also a strong focus on biomaterials, including various conductive biomaterials and biomimetic nanomaterials such as carbon-based nanomaterials and engineered 3D nanofibrous scaffolds for neural tissue regeneration. Finally, two chapters on in vitro nervous system models are also included, which cover this topic in the context of studying physiology and pathology of the human nervous system, and for use in drug discovery research. This is an essential book for biomedical engineers, neuroscientists, neurophysiologists, and industry professionals.
Optics. Quantum optics --- Electronics and optics of solids --- General biophysics --- Human biochemistry --- Neuropathology --- Materials sciences --- Electrical engineering --- Applied physical engineering --- biologische materialen --- materiaalkennis --- medische biochemie --- neurologie --- nanotechniek --- stamcellen --- biochemie --- elektronica --- ingenieurswetenschappen --- transistoren --- halfgeleiders --- microwaves
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3D Bioprinting and Nanotechnology in Tissue Engineering and Regenerative Medicine, Second Edition provides an in-depth introduction to bioprinting and nanotechnology and their industrial applications. Sections cover 4D Printing Smart Multi-responsive Structure, Cells for Bioprinting, 4D Printing Biomaterials, 3D/4D printing functional biomedical devices, 3D Printing for Cardiac and Heart Regeneration, Integrating 3D printing with Ultrasound for Musculoskeletal Regeneration, 3D Printing for Liver Regeneration, 3D Printing for Cancer Studies, 4D Printing Soft Bio-robots, Clinical Translation and Future Directions.
Tissue engineering. --- Biomedical engineering --- Regenerative medicine --- Tissue culture --- Tissue Engineering --- Guided Tissue Regeneration --- Regeneration, Guided Tissue --- Tissue Regeneration, Guided --- Bioprinting --- Cell- and Tissue-Based Therapy --- Engineering, Tissue --- Microphysiological Systems --- Organ Culture Techniques --- Tissue Expansion --- Regenerative Medicine --- Guided tissue regeneration. --- Nanomedicine. --- Nanotechnology. --- Bioprinting. --- Nanotechnology
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3D Bioprinting and Nanotechnology in Tissue Engineering provides an in depth introduction to these two technologies and their industrial applications. Stem cells in tissue regeneration are covered, along with nanobiomaterials. Commercialization, legal and regulatory considerations are also discussed in order to help you translate nanotechnology and 3D printing-based products to the marketplace and the clinic. Dr. Zhang's and Dr. Fishers' team of expert contributors have pooled their expertise in order to provide a summary of the suitability, sustainability and limitations of each technique for each specific application. The increasing availability and decreasing costs of nanotechnologies and 3D printing technologies are driving their use to meet medical needs, and this book provides an overview of these technologies and their integration. It shows how nanotechnology can increase the clinical efficiency of prosthesis or artificial tissues made by bioprinting or biofabrication. Students and professionals will receive a balanced assessment of relevant technology with theoretical foundation, while still learning about the newest printing techniques. Includes clinical applications, regulatory hurdles, and risk-benefit analysis of each technology. This book will assist you in selecting the best materials and identifying the right parameters for printing, plus incorporate cells and biologically active agents into a printed structure Learn the advantages of integrating 3D printing and nanotechnology in order to improve the safety of your nano-scale materials for biomedical applications.
Molecular physics --- Applied physical engineering --- Manufacturing technologies
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Covers the clinical applications of 3D Bioprinting technologies, and risk-benefit analysis of each
Culture Techniques --- Medicine --- Miniaturization --- Natural Science Disciplines --- Technology --- Health Occupations --- Clinical Laboratory Techniques --- Disciplines and Occupations --- Technology, Industry, and Agriculture --- Investigative Techniques --- Technology, Industry, Agriculture --- Analytical, Diagnostic and Therapeutic Techniques and Equipment --- Nanotechnology --- Regenerative Medicine --- Tissue Engineering --- Three-dimensional printing. --- 3-D printing --- 3D printing --- 3DP (Three-dimensional printing) --- Additive manufacturing
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