Amazing Feats of Biological Engineering


Book Description

Engineers design our modern world. They combine science and technology to create incredible vehicles, structures, and objects. This title examines amazing feats of biological engineering. Engaging text explores bionic legs, artificial organs, and animal cloning. It also examines the engineers who made these projects a reality and traces the history of the discipline. Relevant sidebars, stunning photos, and a glossary aid readers' understanding of the topic. A hands-on project and career-planning chart give readers a sense of what it takes to become an engineer. Additional features include a table of contents, a selected bibliography, source notes, and an index, plus essential facts about each featured feat of engineering. Aligned to Common Core standards and correlated to state standards. Essential Library is an imprint of Abdo Publishing, a division of ABDO.




Amazing Feats of Biological Engineering


Book Description

Explores advancements made in the field of biomedical techology, including DNA sequencing, cloning, synthetic body parts, and more.




The Cheating Cell


Book Description

A fundamental and groundbreaking reassessment of how we view and manage cancer When we think of the forces driving cancer, we don’t necessarily think of evolution. But evolution and cancer are closely linked because the historical processes that created life also created cancer. The Cheating Cell delves into this extraordinary relationship, and shows that by understanding cancer’s evolutionary origins, researchers can come up with more effective, revolutionary treatments. Athena Aktipis goes back billions of years to explore when unicellular forms became multicellular organisms. Within these bodies of cooperating cells, cheating ones arose, overusing resources and replicating out of control, giving rise to cancer. Aktipis illustrates how evolution has paved the way for cancer’s ubiquity, and why it will exist as long as multicellular life does. Even so, she argues, this doesn’t mean we should give up on treating cancer—in fact, evolutionary approaches offer new and promising options for the disease’s prevention and treatments that aim at long-term management rather than simple eradication. Looking across species—from sponges and cacti to dogs and elephants—we are discovering new mechanisms of tumor suppression and the many ways that multicellular life-forms have evolved to keep cancer under control. By accepting that cancer is a part of our biological past, present, and future—and that we cannot win a war against evolution—treatments can become smarter, more strategic, and more humane. Unifying the latest research from biology, ecology, medicine, and social science, The Cheating Cell challenges us to rethink cancer’s fundamental nature and our relationship to it.




Movement And Locomotion In Animals


Book Description

Movement and locomotion are collectively called the biomechanics, which is the science that brings Biology and mechanical engineering together. It is the liveliest and most fascinating branch and deals with the study of animal locomotion: how birds fly and fishes swim, how slugs crawl, how legged animal (and people) run, and much else besides. The bewildering variety of styles of movement used by creatures ranging in size from amoeba to whales presents innumerable challenges to biomechanicists.




Biomedical Engineering


Book Description

The second edition of this introductory textbook conveys the impact of biomedical engineering through examples, applications, and a problem-solving approach.




Bioengineering in the Real World


Book Description

Take a look into the fascinating world of bioengineering, why it is an intriguing STEM career, and the amazing work scientists in this field have accomplished throughout the years.




Basic Biology for Born Engineers


Book Description

Physics owes much of its success to the application of differential calculus. Correspondingly, most laws of physics are formulated as differential equations. This success has created the prejudice that a science cannot be ‘exact’ unless it stands firmly on a foundation of calculus. This doesn’t, however, work for biology. Living things are not as continuous, let alone differentiable, as most organisms and their parts change or end quite abruptly. Biology cannot offer differential equations for (say) the role of chromosomal telomeres in aging, or a link between macrophage polyploidy and cancer. The information flow between the limbic system and the frontal cortex is far too erratic to permit differentiation. The pheromone secretions that control the social order of ants follow no mathematical laws. The topology of the human skeleton is neither a perfect sphere, nor an idealized doughnut. However, all these and countless other biological phenomena decide life and death and are amazingly exact As such, instead of even trying to paint living things with the exquisitely resolving brush of differential calculus, we may accept that they are actually made up of individual and sizable ‘pixels’. Hence, this book presents a novel view of biology as the unified science of ‘living mosaics’, which consist of discrete, yet interacting, ‘tiles’, which, in turn, are such ‘mosaics’ in their own rights.




Introduction to Biomedical Engineering


Book Description

Introduction to Biomedical Engineering is a comprehensive survey text for biomedical engineering courses. It is the most widely adopted text across the BME course spectrum, valued by instructors and students alike for its authority, clarity and encyclopedic coverage in a single volume. Biomedical engineers need to understand the wide range of topics that are covered in this text, including basic mathematical modeling; anatomy and physiology; electrical engineering, signal processing and instrumentation; biomechanics; biomaterials science and tissue engineering; and medical and engineering ethics. Enderle and Bronzino tackle these core topics at a level appropriate for senior undergraduate students and graduate students who are majoring in BME, or studying it as a combined course with a related engineering, biology or life science, or medical/pre-medical course. NEW: Each chapter in the 3rd Edition is revised and updated, with new chapters and materials on compartmental analysis, biochemical engineering, transport phenomena, physiological modeling and tissue engineering. Chapters on peripheral topics have been removed and made avaialblw online, including optics and computational cell biology NEW: many new worked examples within chapters NEW: more end of chapter exercises, homework problems NEW: image files from the text available in PowerPoint format for adopting instructors Readers benefit from the experience and expertise of two of the most internationally renowned BME educators Instructors benefit from a comprehensive teaching package including a fully worked solutions manual A complete introduction and survey of BME NEW: new chapters on compartmental analysis, biochemical engineering, and biomedical transport phenomena NEW: revised and updated chapters throughout the book feature current research and developments in, for example biomaterials, tissue engineering, biosensors, physiological modeling, and biosignal processing NEW: more worked examples and end of chapter exercises NEW: image files from the text available in PowerPoint format for adopting instructors As with prior editions, this third edition provides a historical look at the major developments across biomedical domains and covers the fundamental principles underlying biomedical engineering analysis, modeling, and design Bonus chapters on the web include: Rehabilitation Engineering and Assistive Technology, Genomics and Bioinformatics, and Computational Cell Biology and Complexity




Biomedical Engineering


Book Description

This book is addressed to scientists and professionals working in the wide area of biomedical engineering, from biochemistry and pharmacy to medicine and clinical engineering. The panorama of problems presented in this volume may be of special interest for young scientists, looking for innovative technologies and new trends in biomedical engineering.




Encyclopedia of Agricultural, Food, and Biological Engineering


Book Description

Examining the role of engineering in delivery of quality consumer products, this expansive resource covers the development and design of procedures, equipment, and systems utilized in the production and conversion of raw materials into food and nonfood consumer goods. With nearly 2000 photographs, figures, tables, and equations including 128 color figures the book emphasizes and illustrates the various engineering processes associated with the production of materials with agricultural origin. With contributions from more than 350 experts and featuring more than 200 entries and 3600 references, this is the largest and most comprehensive guide on raw production technology.