DIVA study of the mutually constituitive relations between Western biomedicine and Ango- American literature in the 20th and early 21st centuries, tracing the interwoven processes by which both fields have transformed the course of human life./div
Traditional methods of medical education and training are changing rapidly. This volume integrates the printed text--as provided by leading experts in science and medicine--with multimedia applications using desktop conferencing and the Internet in the delivery of instruction. The Department of Biochemistry and Molecular Biology at The George Washington University Medical Center, with the support of an unrestricted educational grant from the Healthcare Education Department of Glaxo Welcome, Inc. , has created a distance-learning lecture series on the Internet for continuing medical education. In this lecture series, leading scientists and physicians discussed the most current as well as future projected treatments of prominent afflictions of mankind. These chosen speakers, who are at the forefront of research and treatment in the field of biomedicine, build a structural framework for the audience in their field of expertise, and from there looked into their crystal ball and discussed their view of the future. The lectures, approximately one hour in length, were broadcast live from The George Washington University Medical Center in Washington, D. C. as part of the Department of Medicine Grand Rounds. These lectures will be available on the Internet until 2001. In partnership with Medical Consumer Media, the lectures were simultaneously broadcast live around the world via the Internet with real-time audio streaming and digitized 35mm slide presentation. The lecture format was designed to foster questions which went beyond basic science and current treatments.
New Frontiers in Biomedical Engineering will be an edited work taken from the 1st Annual World Congress of Chinese Biomedical Engineers - Taipei, Taiwan 2002. As the economy develops rapidly in China and the Asian-Pacific population merges into the global healthcare system, many researchers in the West are trying to make contact with the Chinese BME scientists. At WCCBME 2002, invited leaders, materials scientists, bioengineers, molecular and cellular biologists, orthopaedic surgeons, and manufacturers from P.R. of China, Taiwan, Singapore and Hong Kong covered all five major BME domains: biomechanics, biomaterials and tissue engineering, medical imaging, biophotonics and instrumentation, and rehabilitation. This edited work taken from the World Congress proceedings will capture worldwide readership.
This book provides readers with an integrative overview of the latest research and developments in the broad field of biomedical engineering. Each of the chapters offers a timely review written by leading biomedical engineers and aims at showing how the convergence of scientific and engineering fields with medicine has created a new basis for practically solving problems concerning human health, wellbeing and disease. While some of the latest frontiers of biomedicine, such as neuroscience and regenerative medicine, are becoming increasingly dependent on new ideas and tools from other disciplines, the paradigm shift caused by technological innovations in the fields of information science, nanotechnology, and robotics is opening new opportunities in healthcare, besides dramatically changing the ways we actually practice science. At the same time, a new generation of engineers, fluent in many different scientific “languages,” is creating entirely new fields of research that approach the “old” questions from a new and holistic angle. The book reports on the scientific revolutions in the field of biomedicine by describing the latest technologies and findings developed at the interface between science and engineering. It addresses students, fellows, and faculty and industry investigators searching for new challenges in the broad biomedical engineering fields.
This volume offers interdisciplinary perspectives on contemporary biomedicine as a cultural practice. It brings together leading scholars from cultural anthropology, sociology, history, and science studies to conduct a critical dialogue on the culture(s) of biomedical practice, discussing its epistemic, material, and social implications. The essays look at the ways new biomedical knowledge is constructed within hospitals and academic settings and at how this knowledge changes perceptions, material arrangements, and social relations, not only within clinics and scientific communities, but especially once it is diffused into a broader cultural context.
Smart Nanoparticles for Biomedicine explores smart nanoparticles that change their structural or functional properties in response to specific external stimuli (electric or magnetic fields, electromagnetic radiation, ultrasound, etc.). Particular attention is given to multifunctional nanostructured materials that are pharmacologically active and that can be actuated by virtue of their magnetic, dielectric, optically-active, redox-active, or piezoelectric properties. This important reference resource will be of great value to readers who want to learn more on how smart nanoparticles can be used to create more effective treatment solutions. Nanotechnology has enabled unprecedented control of the interactions between materials and biological entities, from the microscale, to the molecular level. Nanosurfaces and nanostructures have been used to mimic or interact with biological microenvironments, to support specific biological functions, such as cell adhesion, mobility and differentiation, and in tissue healing. Recently, a new paradigm has been proposed for nanomedicine to exploit the intrinsic properties of nanomaterials as active devices rather than as passive structural units or carriers for medications. - Discusses the synthesis, characterization and applications of a new generation of smart nanoparticles for nanomedicine applications - Explores the problems relating to the biocompatibility of a range of nanoparticles, outlining potential solutions - Describes techniques for manipulating specific classes of nanoparticles for a variety of treatment types
Emerging Dynamics: Science, Energy, Society and Values focuses on the impact of science, science-based technology and scientific values on present-day humanity and its future. The book advocates for a science willing to accommodate both human values and scientific facts. The four main subjects focused on throughout the text are: The overwhelming impact of modern science and science-based technology on virtually every aspect of human life Human values and their significance for science and society The need for mutual accommodation between scientific values and the traditional values of society The fundamental role of energy for civilization and society. The book cuts across scientific disciplines and looks at modern civilization through the knowledge provided by the physical, chemical, biomedical and other branches of natural science. The book is unique in its holistic approach, combining knowledge acquired by deduction, reduction-induction, and experimental scientific methods with knowledge acquired through history, philosophy, the arts, faith and cultural traditions. Modern civilization’s most distinct characteristics are due to science, science-based technology and energy. The role of energy in the sustainability of civilization and the impact of biomedical science on man are especially emphasized throughout this timely book, making a case for a hopeful future based on both science and values. A science guided in its applications by human values and a value system cognizant of the facts of science and willing to accommodate them
This book analyzes the question "where do we come from?" by discussing the matrix. The author then applies this to the science technology, and art of ectogenesis, and proves the question "can the machine nurse?"