3 remarkable books reveal the latest scientific discoveries about addiction, antibiotic-resistant disease, bacteria — and you These three remarkable books take you to the cutting edge of health science, revealing today’s most powerful scientific discoveries about addiction, antibiotic-resistant disease, and bacteria. In The Addicted Brain, leading neuroscientist Michael Kuhar, Ph.D. explains how and why addiction destroys lives, and presents the latest advances in treatment and prevention. Using breathtaking brain imagery and other research, Kuhar reveals the powerful, long-term brain changes that drugs can cause, explaining why it can be so difficult for addicts to escape them. He describes why some people are unusually susceptible to addiction; illuminates striking neural similarities between drugs and pleasures ranging from alcohol and gambling to sex and caffeine; and outlines the 12 characteristics most often associated with successful treatment. Next, in Antibiotic Resistance: Understanding and Responding to an Emerging Crisis, Karl S. Drlica and David S. Perlin presents a thorough and authoritative overview of the growing resistance of pathogenic bacteria to antibiotics, and what this means to our ability to control and treat infectious diseases. The authors answer crucial questions such as: What is resistance? How does it emerge? How do common human activities contribute to resistance? What can we do about it? Are there better ways to discover new antibiotics? How can we strengthen our defenses against resistance, minimize public health risks and extend the effectiveness of the antibiotics we have? Finally, in Allies and Enemies, Anne Maczulak tells the story of the amazing, intimate partnership between humans and bacteria. Offering a powerful new perspective on Earth’s oldest creatures, Maczulak explains how bacteria work, how they evolve, their surprising contributions and uses, the roles they’ve played in human history – and why you can't survive without them. From pioneering scientists and researchers including Michael Kuhar, Karl S. Drlica, David S. Perlin, and Anne Maczulak
This is the eBook version of the printed book. This Element is an excerpt from Antibiotic Resistance: Understanding and Responding to an Emerging Crisis (9780131387737) by Karl Drlica and David S. Perlin. Available in print and digital formats. What everyone needs to know about antibiotics: what they are, how they work, what they can do, and what they can’t do. Antibiotics are selective poisons. They are relatively small molecules (about 20-100 times the size of water molecules) that interfere with normal life processes of microbes and viruses. Human cells differ enough from pathogens for antibiotics to act selectively. For example, our cells lack walls, whereas bacterial cells have them. Consequently, penicillin, which blocks cell wall synthesis, is specific to bacteria....
3 books illuminate the cutting edge medical research that could save your life Right now, science is transforming what we know about preserving and improving human health. These three extraordinary books take you to the cutting edge of emerging science, presenting new findings that might someday save your life. In Antibiotic Resistance: Understanding and Responding to an Emerging Crisis, Karl S. Drlica and David S. Perlin presents a thorough and authoritative overview of the growing resistance of pathogenic bacteria to antibiotics, and what this means to our ability to control and treat infectious diseases. The authors answer crucial questions such as: What is resistance? How does it emerge? How do common human activities promote resistance? What can we do about it? How can we strengthen our defenses against resistance, minimize our risks, extend the effectiveness of current antibiotics, and find new ones faster? Next, in Chips, Clones, and Living Beyond 100: How Far Will the Biosciences Take Us?, Paul and Joyce A. Schoemaker tour the remarkable field of biosciences as it stands today, and preview the directions and innovations that are most likely to emerge in the coming years. They offer a clear, non-technical overview of crucial current developments that are likely to have enormous impact, addressing issues ranging from increased human longevity to global warming, bio-warfare to personalized medicine. Along the way, they illuminate each of the exciting technologies and hot-button issues associated with contemporary biotechnology - including stem cells, cloning, probiotics, DNA microarrays, proteomics, gene therapy, and more. Finally, in It Takes a Genome, Greg Gibson posits a revolutionary new hypothesis: our genome is out of equilibrium, both with itself and its environment. Our bodies weren’t designed to subsist on fat and sugary foods; our immune systems aren’t designed for today’s clean, bland environments; our minds aren’t designed to process hard-edged, artificial electronic inputs from dawn ‘til midnight. That, says Gibson, is why so many of us suffer from chronic diseases that barely touched our ancestors. Gibson reveals the stunningly complex ways genes cooperate and interact; illuminates the genetic “mismatches” that lead to cancer, diabetes, inflammatory and infectious diseases, AIDS, depression, and senility; and considers surprising new evidence for genetic variations in human psychology. From world-renowned leaders and experts, including Karl S. Drlica, David S. Perlin, Paul J. H. Schoemaker, Joyce A. Schoemaker, and Greg Gibson
This is the eBook version of the printed book. This Element is an excerpt from Antibiotic Resistance: Understanding and Responding to an Emerging Crisis (9780131387737) by Karl Drlica and David S. Perlin. Available in print and digital formats. The truth behind the headlines: What antibiotic resistance is, why it’s growing, and what this means to human health. As a global community, we have not considered antibiotics as a resource to be actively protected. Consequently, we use antibiotics in ways that directly lead to resistance. Changing those ways requires an understanding of antibiotic principles. We begin with a brief description of MRSA to illustrate a bacterial-based health problem....
The 50th volume of Progress in Botany appears in new guise. In cooperation with Springer-Verlag we have changed from the less attractive typewriter composition to the direct reproduction of a manuscript which was writ ten by means of a text editing system and produced by a laser printer. We, the editors, should like to take the appearance of Volume 50 as the occasion for a few short remarks. Our younger readers are perhaps not aware that our Book Series was founded in 1931 by Fritz von Wettstein, based on the following thoughts and considerations, aptly formulated by him in the Preface to the first volume. "One of the greatest dangers threatening progress in the science of botany is the absolutely unbelievable growth in volume of the literature. The quality of journals, books and individual works that are daily sent to us makes it impossible for anyone person to maintain a general view of the progress made in botany in all the specialized fields, let alone to find time for results from associated su bjects. For varying reasons, every botanist must find this state of matters insupportable. Let us endeavor, in the general interest, to retain a wide background of knowledge, and not become limited specialists. The vitally necessary connections between the specialized fields can only flourish, or even exist, if the general view of botany as a whole can be maintained.
Karl Drlica's Double-Edged Sword: The Promises and Risks of the Genetic Revolution explores both the positive and negative aspects of modern genetics and its potential impact on us as individuals. He presents, with extraordinary clarity, the practical applications of the genetic revolution-what the latest findings mean for families who suffer from genetic diseases as well as for the myriad people who want to use genetic screening to improve their lives.
Protein informatics is a newer name for an already existing discipline. It encompasses the techniques used in bioinformatics and molecular modeling that are related to proteins. While bioinformatics is mainly concerned with the collection, organization, and analysis of biological data, molecular modeling is devoted to representation and manipulation of the structure of proteins. Protein informatics requires substantial prerequisites on computer science, mathematics, and molecular biology. The approach chosen here, allows a direct and rapid grasp on the subject starting from basic knowledge of algorithm design, calculus, linear algebra, and probability theory. An Introduction to Protein Informatics, a professional monograph will provide the reader a comprehensive introduction to the field of protein informatics. The text emphasizes mathematical and computational methods to tackle the central problems of alignment, phylogenetic reconstruction, and prediction and sampling of protein structure. An Introduction to Protein Informatics is designed for a professional audience, composed of researchers and practitioners within bioinformatics, molecular modeling, algorithm design, optimization, and pattern recognition. This book is also suitable as a graduate-level text for students in computer science, mathematics, and biomedicine.
With one new volume each year, this series keeps scientists and advanced students informed of the latest developments and results in all areas of botany. The present volume in- cludes reviews on structural botany, taxonomy, geobotany, plant physiology, genetics, and floral ecology.
This book describes new strategies being used to combat disease agents and invertebrate pests. Outstanding experts from the United States, Belgium, China, Guatemala, Japan, Philippines, Singapore, and Thailand have contributed chapters that cover the latest achievements in genetic engineering, emphasizing the microbial and viral biological control agents that can provide environmentally safe, economical control systems. Topics discussed include genetic engineering of Bacillus thuringiensis and B. sphaericus, the development of insect resistance to microbial biocontrol agents, engineering of baculoviruses and nematodes, bioengineering of plants, plant transformation by particle bombardment, fusion of cultured insect cells, new immunodiagnostic assays and control measures against parasitic human diseases, and genetically engineered microbial agents for malaria control. The book also presents improved mass production procedures of microbial and viral biocontrol agents, as well as regulatory and environmental aspects of genetically engineered biocontrol agents. Biotechnology for Biological Control of Pests and Vectors will provide a valuable reference for researchers and students of biological control, microbiology, virology, and molecular biology.
Authored by two leading investigators, this book presents a thorough and authoritative overview of this multifaceted field of science. Pathogenic bacteria have been evolving and spreading resistance to diverse classes of antibiotics. As a result, we risk losing our ability to control and treat infectious diseases. Understanding antibiotic resistance, therefore, is becoming increasingly essential for a broad audience of healthcare professionals, biomedical and public health researchers, students, and policymakers. The authors answer questions such as: What is resistance? How does it emerge? How do common human activities contribute to resistance? What can we do about it? How can we strengthen our “first lines of defense” against resistance? Are there better ways to discover new antibiotics? What unique issues are associated with MRSA and viral influenza? In addition to defining and evaluating one of the most important emerging threats to public health, the authors explain what can be done to minimize risks to public health, and to preserve and extend the effectiveness of existing and new antibiotics.
Authored by two leading investigators, this book presents a thorough and authoritative overview of this multifaceted field of science. Pathogenic bacteria have been evolving and spreading resistance to diverse classes of antibiotics. As a result, we risk losing our ability to control and treat infectious diseases. Understanding antibiotic resistance, therefore, is becoming increasingly essential for a broad audience of healthcare professionals, biomedical and public health researchers, students, and policymakers. The authors answer questions such as: What is resistance? How does it emerge? How do common human activities contribute to resistance? What can we do about it? How can we strengthen our “first lines of defense” against resistance? Are there better ways to discover new antibiotics? What unique issues are associated with MRSA and viral influenza? In addition to defining and evaluating one of the most important emerging threats to public health, the authors explain what can be done to minimize risks to public health, and to preserve and extend the effectiveness of existing and new antibiotics.
This is the eBook version of the printed book. This Element is an excerpt from Antibiotic Resistance: Understanding and Responding to an Emerging Crisis (9780131387737) by Karl Drlica and David S. Perlin. Available in print and digital formats. The truth behind the headlines: What antibiotic resistance is, why it’s growing, and what this means to human health. As a global community, we have not considered antibiotics as a resource to be actively protected. Consequently, we use antibiotics in ways that directly lead to resistance. Changing those ways requires an understanding of antibiotic principles. We begin with a brief description of MRSA to illustrate a bacterial-based health problem....
This comprehensive, up-to-date volume defines the issues and offers potential solutions to the challenges of antimicrobial resistance. The chapter authors are leading international experts on antimicrobial resistance among a variety of bacteria, viruses including HIV and herpes, parasites and fungi. The chapters explore the molecular mechanisms of drug resistance, the immunology and epidemiology of resistance strains, clinical implications and implications on research and lack thereof, and prevention and future directions.
3 books illuminate the cutting edge medical research that could save your life Right now, science is transforming what we know about preserving and improving human health. These three extraordinary books take you to the cutting edge of emerging science, presenting new findings that might someday save your life. In Antibiotic Resistance: Understanding and Responding to an Emerging Crisis, Karl S. Drlica and David S. Perlin presents a thorough and authoritative overview of the growing resistance of pathogenic bacteria to antibiotics, and what this means to our ability to control and treat infectious diseases. The authors answer crucial questions such as: What is resistance? How does it emerge? How do common human activities promote resistance? What can we do about it? How can we strengthen our defenses against resistance, minimize our risks, extend the effectiveness of current antibiotics, and find new ones faster? Next, in Chips, Clones, and Living Beyond 100: How Far Will the Biosciences Take Us?, Paul and Joyce A. Schoemaker tour the remarkable field of biosciences as it stands today, and preview the directions and innovations that are most likely to emerge in the coming years. They offer a clear, non-technical overview of crucial current developments that are likely to have enormous impact, addressing issues ranging from increased human longevity to global warming, bio-warfare to personalized medicine. Along the way, they illuminate each of the exciting technologies and hot-button issues associated with contemporary biotechnology - including stem cells, cloning, probiotics, DNA microarrays, proteomics, gene therapy, and more. Finally, in It Takes a Genome, Greg Gibson posits a revolutionary new hypothesis: our genome is out of equilibrium, both with itself and its environment. Our bodies weren’t designed to subsist on fat and sugary foods; our immune systems aren’t designed for today’s clean, bland environments; our minds aren’t designed to process hard-edged, artificial electronic inputs from dawn ‘til midnight. That, says Gibson, is why so many of us suffer from chronic diseases that barely touched our ancestors. Gibson reveals the stunningly complex ways genes cooperate and interact; illuminates the genetic “mismatches” that lead to cancer, diabetes, inflammatory and infectious diseases, AIDS, depression, and senility; and considers surprising new evidence for genetic variations in human psychology. From world-renowned leaders and experts, including Karl S. Drlica, David S. Perlin, Paul J. H. Schoemaker, Joyce A. Schoemaker, and Greg Gibson
Karl Drlica's Double-Edged Sword: The Promises and Risks of the Genetic Revolution explores both the positive and negative aspects of modern genetics and its potential impact on us as individuals. He presents, with extraordinary clarity, the practical applications of the genetic revolution-what the latest findings mean for families who suffer from genetic diseases as well as for the myriad people who want to use genetic screening to improve their lives.
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