MEMS Technology for Biomedical Imaging Applications

MEMS Technology for Biomedical Imaging Applications
Title MEMS Technology for Biomedical Imaging Applications PDF eBook
Author Qifa Zhou
Publisher MDPI
Pages 218
Release 2019-10-23
Genre Technology & Engineering
ISBN 303921604X

Download MEMS Technology for Biomedical Imaging Applications Book in PDF, Epub and Kindle

Biomedical imaging is the key technique and process to create informative images of the human body or other organic structures for clinical purposes or medical science. Micro-electro-mechanical systems (MEMS) technology has demonstrated enormous potential in biomedical imaging applications due to its outstanding advantages of, for instance, miniaturization, high speed, higher resolution, and convenience of batch fabrication. There are many advancements and breakthroughs developing in the academic community, and there are a few challenges raised accordingly upon the designs, structures, fabrication, integration, and applications of MEMS for all kinds of biomedical imaging. This Special Issue aims to collate and showcase research papers, short commutations, perspectives, and insightful review articles from esteemed colleagues that demonstrate: (1) original works on the topic of MEMS components or devices based on various kinds of mechanisms for biomedical imaging; and (2) new developments and potentials of applying MEMS technology of any kind in biomedical imaging. The objective of this special session is to provide insightful information regarding the technological advancements for the researchers in the community.

MEMS Technology for Biomedical Imaging Applications

MEMS Technology for Biomedical Imaging Applications
Title MEMS Technology for Biomedical Imaging Applications PDF eBook
Author Qifa Zhou
Publisher
Pages 1
Release 2019
Genre Electronic books
ISBN 9783039216055

Download MEMS Technology for Biomedical Imaging Applications Book in PDF, Epub and Kindle

Biomedical imaging is the key technique and process to create informative images of the human body or other organic structures for clinical purposes or medical science. Micro-electro-mechanical systems (MEMS) technology has demonstrated enormous potential in biomedical imaging applications due to its outstanding advantages of, for instance, miniaturization, high speed, higher resolution, and convenience of batch fabrication. There are many advancements and breakthroughs developing in the academic community, and there are a few challenges raised accordingly upon the designs, structures, fabrication, integration, and applications of MEMS for all kinds of biomedical imaging. This Special Issue aims to collate and showcase research papers, short commutations, perspectives, and insightful review articles from esteemed colleagues that demonstrate: (1) original works on the topic of MEMS components or devices based on various kinds of mechanisms for biomedical imaging; and (2) new developments and potentials of applying MEMS technology of any kind in biomedical imaging. The objective of this special session is to provide insightful information regarding the technological advancements for the researchers in the community.

Mems for Biomedical Applications

Mems for Biomedical Applications
Title Mems for Biomedical Applications PDF eBook
Author Shekhar Bhansali
Publisher Elsevier
Pages 511
Release 2012-07-18
Genre Technology & Engineering
ISBN 0857096273

Download Mems for Biomedical Applications Book in PDF, Epub and Kindle

The application of Micro Electro Mechanical Systems (MEMS) in the biomedical field is leading to a new generation of medical devices. MEMS for biomedical applications reviews the wealth of recent research on fabrication technologies and applications of this exciting technology.The book is divided into four parts: Part one introduces the fundamentals of MEMS for biomedical applications, exploring the microfabrication of polymers and reviewing sensor and actuator mechanisms. Part two describes applications of MEMS for biomedical sensing and diagnostic applications. MEMS for in vivo sensing and electrical impedance spectroscopy are investigated, along with ultrasonic transducers, and lab-on-chip devices. MEMS for tissue engineering and clinical applications are the focus of part three, which considers cell culture and tissue scaffolding devices, BioMEMS for drug delivery and minimally invasive medical procedures. Finally, part four reviews emerging biomedical applications of MEMS, from implantable neuroprobes and ocular implants to cellular microinjection and hybrid MEMS.With its distinguished editors and international team of expert contributors, MEMS for biomedical applications provides an authoritative review for scientists and manufacturers involved in the design and development of medical devices as well as clinicians using this important technology. - Reviews the wealth of recent research on fabrication technologies and applications of Micro Electro Mechanical Systems (MEMS) in the biomedical field - Introduces the fundamentals of MEMS for biomedical applications, exploring the microfabrication of polymers and reviewing sensor and actuator mechanisms - Considers MEMS for biomedical sensing and diagnostic applications, along with MEMS for in vivo sensing and electrical impedance spectroscopy

MEMS and MOEMS Technology and Applications

MEMS and MOEMS Technology and Applications
Title MEMS and MOEMS Technology and Applications PDF eBook
Author P. Rai-Choudhury
Publisher SPIE Press
Pages 544
Release 2000
Genre Technology & Engineering
ISBN 9780819437167

Download MEMS and MOEMS Technology and Applications Book in PDF, Epub and Kindle

The silicon age that led the computer revolution has significantly changed the world. The next 30 years will see the incorporation of new types of functionality onto the chip-structures that will enable the chip to reason, to sense, to act and to communicate. Micromachining technologies offer a wide range of possibilities for active and passive devices. Recent developments have produced sensors, actuators and optical systems. Many of these technologies are based on surface micromachining, which has evolved from silicon integrated circuit technology. This book is written by experts in the field. It contains useful details in design and processing and can be utilized as a reference book or as a textbook.

Medical Imaging

Medical Imaging
Title Medical Imaging PDF eBook
Author Troy Farncombe
Publisher CRC Press
Pages 740
Release 2017-12-19
Genre Science
ISBN 1466582634

Download Medical Imaging Book in PDF, Epub and Kindle

The book has two intentions. First, it assembles the latest research in the field of medical imaging technology in one place. Detailed descriptions of current state-of-the-art medical imaging systems (comprised of x-ray CT, MRI, ultrasound, and nuclear medicine) and data processing techniques are discussed. Information is provided that will give interested engineers and scientists a solid foundation from which to build with additional resources. Secondly, it exposes the reader to myriad applications that medical imaging technology has enabled.

Optical MEMS

Optical MEMS
Title Optical MEMS PDF eBook
Author Huikai Xie
Publisher MDPI
Pages 176
Release 2019-08-06
Genre Technology & Engineering
ISBN 3039213032

Download Optical MEMS Book in PDF, Epub and Kindle

This book is a printed edition of the Special Issue Optical MEMS that was published in Micromachines

MEMS and Nanotechnology-Based Sensors and Devices for Communications, Medical and Aerospace Applications

MEMS and Nanotechnology-Based Sensors and Devices for Communications, Medical and Aerospace Applications
Title MEMS and Nanotechnology-Based Sensors and Devices for Communications, Medical and Aerospace Applications PDF eBook
Author A. R. Jha
Publisher CRC Press
Pages 432
Release 2008-04-08
Genre Computers
ISBN 0849380707

Download MEMS and Nanotechnology-Based Sensors and Devices for Communications, Medical and Aerospace Applications Book in PDF, Epub and Kindle

The integration of microelectromechanical systems (MEMS) and nanotechnology (NT) in sensors and devices significantly reduces their weight, size, power consumption, and production costs. These sensors and devices can then play greater roles in defense operations, wireless communication, the diagnosis and treatment of disease, and many more applicat