Mechanical Engineering In Biomedical Application

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Engineering Materials For Biomedical Applications
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Author : Swee-hin Teoh
language : en
Publisher: World Scientific
Release Date : 2004-10-21
Engineering Materials For Biomedical Applications written by Swee-hin Teoh and has been published by World Scientific this book supported file pdf, txt, epub, kindle and other format this book has been release on 2004-10-21 with Medical categories.
The success of any implant or medical device depends very much on the biomaterial used. Synthetic materials (such as metals, polymers and composites) have made significant contributions to many established medical devices. The aim of this book is to provide a basic understanding on the engineering and processing aspects of biomaterials used in medical applications. Of paramount importance is the tripartite relationship between material properties, processing methods and design. As the target audiences cover a wide interdisciplinary field, each chapter is written with a detailed background so that audience of another discipline will be able to understand. For the more knowledgeable reader, a detailed list of references is included.
Mechanical Engineering In Biomedical Application
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Author : Jay Prakash Srivastava
language : en
Publisher: John Wiley & Sons
Release Date : 2024-01-02
Mechanical Engineering In Biomedical Application written by Jay Prakash Srivastava and has been published by John Wiley & Sons this book supported file pdf, txt, epub, kindle and other format this book has been release on 2024-01-02 with Mathematics categories.
MECHANICAL ENGINEERING IN BIOMEDICAL APPLICATIONS The book explores the latest research and developments related to the interdisciplinary field of biomedical and mechanical engineering offering insights and perspectives on the research, key technologies, and mechanical engineering techniques used in biomedical applications. The book is divided into several sections that cover different aspects of mechanical engineering in biomedical research. The first section focuses on the role of additive manufacturing technologies, rehabilitation in healthcare applications, and artificial recreation of human organs. The section also covers the advances, risks, and challenges of bio 3D printing. The second section presents insight into biomaterials, including their properties, applications, and fabrication techniques. The section also covers the use of powder metallurgy methodology and techniques of biopolymer and bio-ceramic coatings on prosthetic implants. The third section covers biofluid mechanics, including the mechanics of fluid flow within our body, the mechanical aspects of human synovial fluids, and the design of medical devices for fluid flow applications. The section also covers the use of computational modeling to study the blockage of carotid arteries. The final section elaborates on soft robotic manipulation for use in medical sciences. Audience The book provides practical insights and applications for mechanical engineers, biomedical engineers, medical professionals, and researchers working on the design and development of biomedical devices and implants.
Finite Element Analysis For Biomedical Engineering Applications
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Author : Z. Yang
language : en
Publisher: CRC Press
Release Date : 2019-03-14
Finite Element Analysis For Biomedical Engineering Applications written by Z. Yang and has been published by CRC Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2019-03-14 with Mathematics categories.
Finite element analysis has been widely applied to study biomedical problems. This book aims to simulate some common medical problems using finite element advanced technologies, which establish a base for medical researchers to conduct further investigations. This book consists of four main parts: (1) bone, (2) soft tissues, (3) joints, and (4) implants. Each part starts with the structure and function of the biology and then follows the corresponding finite element advanced features, such as anisotropic nonlinear material, multidimensional interpolation, XFEM, fiber enhancement, UserHyper, porous media, wear, and crack growth fatigue analysis. The final section presents some specific biomedical problems, such as abdominal aortic aneurysm, intervertebral disc, head impact, knee contact, and SMA cardiovascular stent. All modeling files are attached in the appendixes of the book. This book will be helpful to graduate students and researchers in the biomedical field who engage in simulations of biomedical problems. The book also provides all readers with a better understanding of current advanced finite element technologies. Details finite element modeling of bone, soft tissues, joints, and implants Presents advanced finite element technologies, such as fiber enhancement, porous media, wear, and crack growth fatigue analysis Discusses specific biomedical problems, such as abdominal aortic aneurysm, intervertebral disc, head impact, knee contact, and SMA cardiovascular stent Explains principles for modeling biology Provides various descriptive modeling files
Biomedical Devices
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Author : Raymond H. W. Lam
language : en
Publisher: Springer
Release Date : 2019-08-30
Biomedical Devices written by Raymond H. W. Lam and has been published by Springer this book supported file pdf, txt, epub, kindle and other format this book has been release on 2019-08-30 with Medical categories.
This textbook provides essential knowledge for biomedical product development, including material properties, fabrication processes and design techniques for different applications, as well as process design and optimization. This book is multidisciplinary and readers can learn techniques to apply acquired knowledge for various applications of biomedical design. Further, this book encourages readers to discover and convert newly reported technologies into products and services for the future development of biomedical applications. This is an ideal book for upper-level undergraduate and graduate students, engineers, technologists, and researchers working in the area of biomedical engineering and manufacturing. This book also: Provides a comprehensive set of fundamental knowledge for engineering students and entry level engineers to design biomedical devices Offers a unique approach to manufacturing of biomedical devices by integrating and formulating different considerations in process design tasks into optimization problems Provides a broad range of application examples to guide readers through the thinking process of designing and manufacturing biomedical devices, from basic understanding about the requirements and regulations to a set of manufacturing parameters
Modeling And Simulation In Biomedical Engineering Applications In Cardiorespiratory Physiology
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Author : Willem L. van Meurs
language : en
Publisher: McGraw Hill Professional
Release Date : 2011-08-07
Modeling And Simulation In Biomedical Engineering Applications In Cardiorespiratory Physiology written by Willem L. van Meurs and has been published by McGraw Hill Professional this book supported file pdf, txt, epub, kindle and other format this book has been release on 2011-08-07 with Technology & Engineering categories.
THEORY AND PRACTICE OF MODELING AND SIMULATING HUMAN PHYSIOLOGY Written by a coinventor of the Human Patient Simulator (HPS) and past president of the Society in Europe for Simulation Applied to Medicine (SESAM), Modeling and Simulation in Biomedical Engineering: Applications in Cardiorespiratory Physiology is a compact and consistent introduction to this expanding field. The book divides the modeling and simulation process into five manageable steps--requirements, conceptual models, mathematical models, software implementation, and simulation results and validation. A framework and a basic set of deterministic, continuous-time models for the cardiorespiratory system are provided. This timely resource also addresses advanced topics, including sensitivity analysis and setting model requirements as part of an encompassing simulation and simulator design. Practical examples provide you with the skills to evaluate and adapt existing physiologic models or create new ones for specific applications. Coverage includes: Signals and systems Model requirements Conceptual models Mathematical models Software implementation Simulation results and model validation Cardiorespiratory system model Circulation Respiration Physiologic control Sensitivity analysis of a cardiovascular model Design of model-driven acute care training simulators “Uniquely qualified to author such a text, van Meurs is one of the original developers of CAE Healthcare’s Human Patient Simulator (HPS). ...His understanding of mathematics, human physiology, pharmacology, control systems, and systems engineering, combined with a conversational writing style, results in a readable text. ...The ample illustrations and tables also break up the text and make reading the book easier on the eyes. ...concise yet in conversational style, with real-life examples. This book is highly recommended for coursework in physiologic modeling and for all who are interested in simulator design and development. The book pulls all these topics together under one cover and is an important contribution to biomedical literature.” --IEEE Pulse, January 2014 “This book is written by a professional engineer who is unique in that he seems to have a natural understanding of 3 key areas as follows: the hardware involved with simulators, human physiology, and mathematical modeling. Willem van Meurs is one of the inventors of the model-driven human patient simulator (HPS), and so, he is very qualified to write this book. The book is written in a clear way, using the first person throughout, in a conversational manner, with a style that involves posing questions and answering them in subsequent text. ...The book starts with a very useful introduction and background chapter, setting out the scene for the rest of the book. ...I have used his book in enhancing my own talks and understanding human patient simulation and can strongly recommend it.” --Simulation in Healthcare December, 2012 Reviewed by Mark A. Tooley, Ph.D., Department of Medical Physics and Bioengineering, Royal United Hospital, Combe Park, Bath, UK.
Magnesium Alloys For Biomedical Applications
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Author : Deepak Kumar
language : en
Publisher: CRC Press
Release Date : 2024-04-26
Magnesium Alloys For Biomedical Applications written by Deepak Kumar and has been published by CRC Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2024-04-26 with Technology & Engineering categories.
Magnesium alloys have enormous potential for use in biomedical implants. Magnesium Alloys for Biomedical Applications delves into recent advances and prospects for implementation and provides scientific insights into current issues posed by Mg alloy materials. It provides an overview of research on their mechanical and tribological characteristics, corrosion tendencies, and biological characteristics, with a particular emphasis on biomedical implants. Details the fundamentals of Mg alloys as well as necessary surface modifications of Mg alloys for biomedical use. Discusses emerging Mg alloys and their composites. Covers mechanical, tribological, and chemical properties, as well as fatigue and corrosion. Highlights emerging manufacturing methods and advancements in new alloy design, composite manufacturing, unique structure design, surface modification, and recyclability. Helps readers identify appropriate Mg-based materials for their applications and select optimal improvement methods. Summarizes current challenges and suggests a roadmap for future research. Aimed at researchers in materials and biomedical engineering, this book explores the many breakthroughs achieved with these materials and where the field should concentrate to ensure the development of safe and reliable Mg alloy-based implants.
Nanotechnology For Biomedical Applications
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Author : Sreerag Gopi
language : en
Publisher: Springer Nature
Release Date : 2022-03-08
Nanotechnology For Biomedical Applications written by Sreerag Gopi and has been published by Springer Nature this book supported file pdf, txt, epub, kindle and other format this book has been release on 2022-03-08 with Technology & Engineering categories.
This book provides an overview of the use of nanoparticles, carbon-nanotubes, liposomes, and nanopatterned flat surfaces for specific biomedical applications. This book explains the chemical and physical properties of the surface of these materials that allow their use in diagnosis, biosensing and bioimaging devices, drug delivery systems, and bone substitute implants. The toxicology of these particles is also discussed in the light of a new field referred to as nanotoxicology in this book. This book will be useful for engineers, researchers and industry professionals primarily in the fields of polymer science and engineering, materials science, surface science, nanocatalysis, biotechnology and biomedicine.
Additive Manufacturing For Biomedical Applications
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Author : Anurag Dixit
language : en
Publisher: Springer Nature
Release Date : 2024-11-05
Additive Manufacturing For Biomedical Applications written by Anurag Dixit and has been published by Springer Nature this book supported file pdf, txt, epub, kindle and other format this book has been release on 2024-11-05 with Technology & Engineering categories.
New fabrication techniques and biomaterials have advanced significantly as attention toward healthcare innovations in recent decades has increased. This book provides a comprehensive overview of the application of additive manufacturing for biomedical devices. The book focuses on the use of biomaterial for hard and soft tissue engineering. These materials can imitate the mechanical, structural, and biological characteristics of the parent tissue, repairing or replacing its functioning. It provides details on the use of various biomaterials for different biomedical applications. It highlights the present trends and potential of various techniques and materials for various applications. The chapters in this book written by eminent experts highlight recent developments in additive manufacturing for biological mimicking and surgical planning. It discusses latest advances in various 3D printing technologies in the fabrication of biomedical devices for orthopaedic and cardiovascular applications, along with rising trends in designing and creating tissue replacement substitute simulants. This book can serve as a fundamental textbook for research in additive manufacturing, fabrication of implants or scaffolds and medical device development, biomaterials, tissue engineering, and biomedical engineering. This book can be a valuable resource for mechanical and biomedical engineers, academicians, healthcare researchers, and professionals interested in tissue engineering.
Early Detection And Rehabilitation Technologies For Dementia Neuroscience And Biomedical Applications
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Author : Wu, Jinglong
language : en
Publisher: IGI Global
Release Date : 2011-05-31
Early Detection And Rehabilitation Technologies For Dementia Neuroscience And Biomedical Applications written by Wu, Jinglong and has been published by IGI Global this book supported file pdf, txt, epub, kindle and other format this book has been release on 2011-05-31 with Medical categories.
"This book provides a comprehensive collection for experts in the Neuroscience and Biomedical technology fields, outlining various concepts from cognitive neuroscience and dementia to neural technology and rehabilitation"--Provided by publisher.
Novel Bio Nanocomposites For Biomedical Applications
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Author : Kashma Sharma
language : en
Publisher: Springer Nature
Release Date : 2024-10-19
Novel Bio Nanocomposites For Biomedical Applications written by Kashma Sharma and has been published by Springer Nature this book supported file pdf, txt, epub, kindle and other format this book has been release on 2024-10-19 with Technology & Engineering categories.
This book presents a comprehensive overview of bio-nanocomposites, from the fundamentals to emerging biomedical applications. Bio-nanocomposites have established themselves as a promising class of hybrid materials derived from natural and synthetic biodegradable polymers and organic/inorganic fillers. Different compositions can, therefore, lead to different applications based on the desired performance. This book introduces a variety of biopolymer nanocomposites, from their synthesis to their structure and applications. The fundamentals and systematic advancements in synthesizing bio-nanocomposites and their characterizations have been highlighted. In addition, the biocompatible and bridgeable properties of bio-nanocomposites are investigated in terms of functionalization, dispersion, and surface manipulation. This book also provides insights into the most recent research in bio-nanocomposites as applied to biomedical fields, including tissue engineering, wound healing, drug delivery, food packaging, agriculture, sensors, and therapies. Finally, the book proposes future prospects and challenges associated with bio-nanocomposites to achieve the desired performance in targeted biomedical applications. Given its scope, this book interests students, academics, and researchers working on the synthesis, biological applications, and pharmaceutical uses of biopolymers and associated nanocomposites.