This book provides a comprehensive overview of microfluidic-assisted devices and bioMEMS, covering their fundamental principles, manufacturing processes, and biomedical applications. It explores the design, fabrication, and integration of microfluidic devices and MEMS, emphasizing their role in microscale physics and biomedical engineering. Key topics include micropumps, biosensors, and organ-on-a-chip systems, with applications in drug discovery, disease diagnosis, and tissue engineering. The book also discusses recent advances in the field, particularly the integration of biosensors with microfluidic systems, highlighting their growing impact on biomedical research and healthcare innovations.

Les mer
The book also discusses recent advances in the field, particularly the integration of biosensors with microfluidic systems, highlighting their growing impact on biomedical research and healthcare innovations.
Les mer

1. Manufacturing methods for microfluidic devices using microscale physics.- 2. A brief introduction to Micro-electro Mechanical Systems (MEMS) and the process of manufacturing them.- 3. Bio MEMS.- 4. Micro Electromechanical Systems (MEMS) Based Microfluidic Devices for Biomedical Applications (micropumps).- 5. Integration of biosensors and microfluidics and their application.

Les mer

This book provides a comprehensive overview of microfluidic-assisted devices and bioMEMS, covering their fundamental principles, manufacturing processes, and biomedical applications. It explores the design, fabrication, and integration of microfluidic devices and MEMS, emphasizing their role in microscale physics and biomedical engineering. Key topics include micropumps, biosensors, and organ-on-a-chip systems, with applications in drug discovery, disease diagnosis, and tissue engineering. The book also discusses recent advances in the field, particularly the integration of biosensors with microfluidic systems, highlighting their growing impact on biomedical research and healthcare innovations.

Les mer
Comprehensive overview of microfluidic-assisted devices and bioMEMS Covers the fundamental principles of microfluidics and MEMS Introduces bioMEMS and their applications
GPSR Compliance The European Union's (EU) General Product Safety Regulation (GPSR) is a set of rules that requires consumer products to be safe and our obligations to ensure this. If you have any concerns about our products you can contact us on ProductSafety@springernature.com. In case Publisher is established outside the EU, the EU authorized representative is: Springer Nature Customer Service Center GmbH Europaplatz 3 69115 Heidelberg, Germany ProductSafety@springernature.com
Les mer

Produktdetaljer

ISBN
9783031884184
Publisert
2025-06-04
Utgiver
Springer International Publishing AG; Springer International Publishing AG
Høyde
235 mm
Bredde
155 mm
Aldersnivå
Research, P, UP, 06, 05
Språk
Product language
Engelsk
Format
Product format
Innbundet
Antall sider
220

Om bidragsyterne

Dr. Seyed Morteza Naghib received his Ph.D. in biomedical engineering from Tehran Polytechnique (2014) and M.ASc. (2010) and B.ASc. (2009) degrees from Amirkabir University of Technology both in biomedical engineering (biomaterials). His research interests are in the areas of tissue engineering, medical nanotechnology, nanobiomaterials, nanocarriers, and nanobiosensors. He also published 3 books in the field entitled "Localized Micro/Nanocarriers for Programmed and On-Demand Controlled Drug Release", "Electrochemical Biosensors in Practice: Materials and Methods", and "Green plant extract-based synthesis of multifunctional nanoparticles and their biological activities". 

Yasaman Rezaeian graduated in Nanotechnology Engineering-Nanomaterials from Iran University of Science and Technology and in Physics from Ferdowsi University of Mashhad. During her studies, she ranked second among the top three students in her faculty. Since 2021, she has been working as a research assistant at Motamed Cancer Institute, investigating novel nanomaterials and treatments for breast cancers, especially working on drug carriers for controlled release. Her research includes the synthesis of drug delivery carriers for controlled release to increase the precision and effectiveness of treatment, and she has spent nearly two years advancing cancer research at the institute. She is recognized as a talented young researcher in these fields.