Electromagnetic and Acoustic Waves in Bioengineering Applications
Title | Electromagnetic and Acoustic Waves in Bioengineering Applications PDF eBook |
Author | Ivo Čáp |
Publisher | BoD – Books on Demand |
Pages | 226 |
Release | 2021-12-24 |
Genre | Science |
ISBN | 1789853478 |
The book deals with the analysis of oscillations, mechanical and electromagnetic waves, and their use in medicine. Each chapter contains the theoretical basis and the use of relevant phenomena in medical practice. Description of oscillations is important for understanding waves and the nature of magnetic resonance. A chapter on mechanical waves describes the origin and properties of sound, infrasound and ultrasound, their medical applications, and perception of sound by human hearing. A chapter on electromagnetic waves examines their origin, properties, and applications in therapy and diagnostics. Subsequent chapters describe how interference and diffraction lead to applications like optical imaging, holography, virtual reality, and perception of light by human vision. Also addressed is how quantum properties of radiation helped develop the laser scalpel, fluorescence microscopy, spectroscopy, X-rays, and gamma radiation.
Ultrasonic and Electromagnetic NDE for Structure and Material Characterization
Title | Ultrasonic and Electromagnetic NDE for Structure and Material Characterization PDF eBook |
Author | Tribikram Kundu |
Publisher | CRC Press |
Pages | 890 |
Release | 2016-04-19 |
Genre | Science |
ISBN | 1466570474 |
Most books on nondestructive evaluation (NDE) focus either on the theoretical background or on advanced applications. Bridging the gap between the two, Ultrasonic and Electromagnetic NDE for Structure and Material Characterization: Engineering and Biomedical Applications brings together the principles, equations, and applications of ultrasonic and
Electromagnetic Wave Propagation for Industry and Biomedical Applications
Title | Electromagnetic Wave Propagation for Industry and Biomedical Applications PDF eBook |
Author | Lulu Wang |
Publisher | BoD – Books on Demand |
Pages | 198 |
Release | 2022-03-16 |
Genre | Science |
ISBN | 1839685816 |
This book highlights original research and high-quality technical briefs on electromagnetic wave propagation, radiation, and scattering, and their applications in industry and biomedical engineering. It also presents recent research achievements in the theoretical, computational, and experimental aspects of electromagnetic wave propagation, radiation, and scattering. The book is divided into three sections. Section 1 consists of chapters with general mathematical methods and approaches to the forward and inverse problems of wave propagation. Section 2 presents the problems of wave propagation in superconducting materials and porous media. Finally, Section 3 discusses various industry and biomedical applications of electromagnetic wave propagation, radiation, and scattering.
Multi-wave Electromagnetic-Acoustic Sensing and Imaging
Title | Multi-wave Electromagnetic-Acoustic Sensing and Imaging PDF eBook |
Author | Fei Gao |
Publisher | Springer |
Pages | 169 |
Release | 2017-02-01 |
Genre | Technology & Engineering |
ISBN | 9811037167 |
This thesis covers a broad range of interdisciplinary topics concerning electromagnetic-acoustic (EM-Acoustic) sensing and imaging, mainly addressing three aspects: fundamental physics, critical biomedical applications, and sensing/imaging system design. From the fundamental physics perspective, it introduces several highly interesting EM-Acoustic sensing and imaging methods, which can potentially provide higher sensitivity, multi-contrast capability, and better imaging performance with less distortion. From the biomedical applications perspective, the thesis introduces useful techniques specifically designed to address selected challenging biomedical applications, delivering rich contrast, higher sensitivity and finer spatial resolution. Both phantom and ex vivo experiments are presented, and in vivo validations are progressing towards real clinical application scenarios. From the sensing and imaging system design perspective, the book proposes several promising sensing/imaging prototypes. Further, it offers concrete suggestions that could bring these systems closer to becoming “real” products and commercialization, such as replacing costly lasers with portable laser diodes, or integrating transmitting and data recording on a single board.
Carbon Nanotubes for Biomedical Applications
Title | Carbon Nanotubes for Biomedical Applications PDF eBook |
Author | Rüdiger Klingeler |
Publisher | Springer Science & Business Media |
Pages | 286 |
Release | 2011-02-09 |
Genre | Technology & Engineering |
ISBN | 3642148026 |
This book explores the potential of multi-functional carbon nanotubes for biomedical applications. It combines contributions from chemistry, physics, biology, engineering, and medicine. The complete overview of the state-of-the-art addresses different synthesis and biofunctionalisation routes and shows the structural and magnetic properties of nanotubes relevant to biomedical applications. Particular emphasis is put on the interaction of carbon nanotubes with biological environments, i.e. toxicity, biocompatibility, cellular uptake, intracellular distribution, interaction with the immune system and environmental impact. The insertion of NMR-active substances allows diagnostic usage as markers and sensors, e.g. for imaging and contactless local temperature sensing. The potential of nanotubes for therapeutic applications is highlighted by studies on chemotherapeutic drug filling and release, targeting and magnetic hyperthermia studies for anti-cancer treatment at the cellular level.
Inverse Heat Conduction and Heat Exchangers
Title | Inverse Heat Conduction and Heat Exchangers PDF eBook |
Author | Suvanjan Bhattacharyya |
Publisher | BoD – Books on Demand |
Pages | 204 |
Release | 2020-12-02 |
Genre | Science |
ISBN | 1789851777 |
A direct solution of the heat conduction equation with prescribed initial and boundary conditions yields temperature distribution inside a specimen. The direct solution is mathematically considered as a well-posed one because the solution exists, is unique, and continuously depends on input data. The estimation of unknown parameters from the measured temperature data is known as the inverse problem of heat conduction. An error in temperature measurement, thermal time lagging, thermocouple-cavity, or signal noise data makes stability a problem in the estimation of unknown parameters. The solution of the inverse problem can be obtained by employing the gradient or non-gradient based inverse algorithm. The aim of this book is to analyze the inverse problem and heat exchanger applications in the fields of aerospace, mechanical, applied mechanics, environment sciences, and engineering.
Medical and Biomedical Applications of Shock Waves
Title | Medical and Biomedical Applications of Shock Waves PDF eBook |
Author | Achim M. Loske |
Publisher | Springer |
Pages | 396 |
Release | 2016-12-01 |
Genre | Science |
ISBN | 3319475703 |
This book provides current, comprehensive, and clear explanations of the physics behind medical and biomedical applications of shock waves. Extracorporeal shock wave lithotripsy is one of the greatest medical advances of our time, and its techniques and clinical devices are continuously evolving. Further research continues to improve the understanding of calculi fragmentation and tissue-damaging mechanisms. Shock waves are also used in orthopedics and traumatology. Possible applications in oncology, cardiology, dentistry, gene therapy, cell transfection, transformation of fungi and bacteria, as well as the inactivation of microorganisms are promising approaches for clinical treatment, industrial applications and research. Medical and Biomedical Applications of Shock Waves is useful as a guide for students, technicians and researchers working in universities and laboratories. Chemists, biologists, physicians and veterinarians, involved in research or clinical practice will find useful advice, but also engineers and physicists may benefit from the overview of current research endeavors and future directions. Furthermore, it may also serve to direct manufacturers towards the design of more efficient and safer clinical, industrial and laboratory equipment.