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Public Health Microbiology: Methods and Protocols is focused on microorganisms that can present a hazard to human health in the course of everyday life. There are chapters dealing with organisms that are directly pathogenic to humans, including bacteria, viruses, and fungi; on organisms that produce toxins during growth in their natural habitats; on the use of bacteriocins produced by such organisms as lactobacilli and bifidobacteria; as well as several chapters on hazard analysis, the use of disinfectants, microbiological analysis of cosmetics, and microbiological tests for sanitation equipment in food factories. Additional chapters look at the use of animals (mice) in the study of the various characteristics of milk and their relationships with lactic acid bacteria in particular. Other chapters focus on special methods for determining particular components of milk. In particular, in Parts I and II, on bacterial and viral pathogens, special attention is given to methods for PCR detection of genes with resistance to tetracycline, as well as to Salmonella enterica; for identification and typing of Campylobacter coli; for detection of the abundance of enteric viruses, hepatitis A virus, and rotaviruses in sewage, and of bacteriophages infecting the O157:H7 strain of Escherichia coli. Part III offers methods for computerized analysis and typing of fungal isolates, for isolation and enumeration of fungi in foods, and for the determination of aflatoxin and zearalenone.
EPIDEMIOLOGISTS ARE SCIENTISTS who study diseases and other health risks within specific populations, such as geographical areas, cultures, occupations, demographic groups, or those who are genetically connected. They are "disease detectives," so-called because they are the investigators who discover how and where disease outbreaks start, then find ways to prevent them from spreading and recurring in the future. It is believed that the first epidemiologist was Hippocrates, who studied how the outbreaks of different diseases correlated with environmental factors in Ancient Greece. That was nearly 2500 years ago. Since then, epidemiologists have saved millions of lives. They prevented the return of the Black Plague, identified how AIDS was transmitted, and quickly put a stop to the recent outbreak of Ebola in the US. These are just a few historical examples. The types of diseases that epidemiologists study are vast, ranging from food poisoning, to "clusters" of children with cancer, to mad cow disease. The work of epidemiologists is based on intense research, which involves the collection of samples and data, and the application of statistical analysis. Much of it is accomplished in laboratories, but many of these professionals never set foot in a lab. Instead, they might be found in hospitals informing the medical staff of infectious outbreaks, or developing containment solutions for infections within the facility. Some work for pharmaceutical companies working on new drugs or monitoring vaccine development. Others may be out in epidemic ravaged communities, ensuring public safety as quarantine officers or investigating possible toxic agents in the environment. Still others are employed in the academic world, teaching and conducting research at universities. To do this work, epidemiologists must be good with numbers, particularly statistics, in order to collect and accurately analyze data. That skill is of primary importance, but there is plenty more to learn before entering this career. You should expect to spend about six years following high school acquiring a master's degree in public health (MPH) or a related field, such as health, biology, medicine, or statistics. When exploring an epidemiology career, you will find plenty of attractive features. For example, you will be generously compensated for your contribution to the public health of the world. The working conditions are generally excellent, the hours rarely include overtime, and travel is an option for those who want to experience other cultures. The future looks bright for future epidemiologists. The United States is placing a high priority on building up the nation's public health workforce. There are many questions that bright, energetic people are needed to help answer. What does this mean for you? It means that with a degree in public health, you will enjoy unparalleled job security and a career path filled with advancement opportunities. Best of all, you will be working in an exciting field that offers the personal and professional satisfaction of saving countless lives.
Many girls want to become scientists when they grow up, just like many boys do. But for these girls, the struggle to do what they love and to be treated with respect has been much harder because of the discrimination and bias in our society. In Women in Microbiology, we meet women who, despite these obstacles and against tough odds, have become scientific leaders and revered mentors. The women profiled in this collection range from historic figures like Alice Catherine Evans and Ruth Ella Moore to modern heroes like Michele Swanson and Katrina Forest. What binds all of these remarkable women are a passion for their work, a zest for life, a warm devotion to mentoring others—especially younger women—and a sense of justice and fairness that they are willing to fight tirelessly to obtain. Each story is unique, but each woman featured in Women in Microbiology has done so much to expand our knowledge of the natural world while also making it easier for the next generation of scientists to work collaboratively and in an atmosphere where people are judged by their intellect, imagination, skill, and commitment to service regardless of gender or race. Women in Microbiology is a wonderful collection of stories that will inspire everyone, but especially young women and men who are wondering how to find their way in the working world. Some of the names are familiar and some are lesser known, but all of the stories arouse a sense of excitement, driven by tales of new, important scientific insights, stories of overcoming adversity and breaking boundaries, and the inclusion of personal tips and advice from successful careers. These stories are proof that a person can live a balanced and passionate life in science that is rich and rewarding.
An essential guide for students in the life sciences, established researchers, and career counselors, this resource features discussions of job security, future trends, and potential career paths. Even those already working in the industry will find helpful information on how to take advantage of opportunities within their own companies and elsewhere.
Brings the excitement, breadth, and power of the modern microbial sciences to the next generation of students and scientists. This new edition of Microbe is an eloquent and highly readable introduction to microbiology that will engage and excite science majors and pre-health professionals. The authors, all prominent scientists, have carefully crafted this lively narrative to bring key microbiology concepts to life and promote a lifelong passion for the microbial sciences. Far more than a comprehensive reference book, Microbe is replete with case studies, ranging from sauerkraut fermentation to the cholera outbreak in Haiti, that illustrate the impact of key microbiology concepts on real-world scenarios. To further engage students and deepen their understanding of both the principles and practice of science, each chapter includes multiple active learning exercises that encourage students to demonstrate their understanding and application of concepts, as well as video, spoken, and written resources. Questions are posed throughout the book to introduce the next key concept and to prompt students to actively participate in the learning experience. An equally valuable tool for instructors who teach a traditional lecture format and those who emphasize active learning in their classroom, Microbe integrates key concepts, learning outcomes, and fundamental statements directly from the ASM Recommended Curriculum Guidelines for Undergraduate Microbiology Education.
Ben Ketchum is a microbiologist who lives in Montana and has just one year left to gain his tenure. Ben also lost his anthrax grant so now he's forced to turn to the brewer's yeast, a microbe he knows virtually nothing about, just to keep his lab up & running. On a whim, the bacteriologist buys a ticket to Egypt - birthplace of perhaps the world's oldest civilization - where he learns about the yeast's role in building the pyramids, as well as the history of brewing, baking, and winemaking. Next, Ben travels to a more recent example of a beer culture - Germany - where he learns the yeast's role in bringing about Western civilization including the field of biochemistry. Lastly, Ben attends a symposium on the brewer's yeast, where he uncovers all the ways the yeast has been helping scientists accomplish such diverse tasks as manufacturing valuable human proteins and even gaining insight into the origins of cancer. This is part one of a longer novel ""Cystic Fibrosis & the Brewer's Yeast.""
Practical Handbook of Microbiology, 4th edition provides basic, clear and concise knowledge and practical information about working with microorganisms. Useful to anyone interested in microbes, the book is intended to especially benefit four groups: trained microbiologists working within one specific area of microbiology; people with training in other disciplines, and use microorganisms as a tool or "chemical reagent"; business people evaluating investments in microbiology focused companies; and an emerging group, people in occupations and trades that might have limited training in microbiology, but who require specific practical information. Key Features Provides a comprehensive compendium of basic information on microorganisms—from classical microbiology to genomics. Includes coverage of disease-causing bacteria, bacterial viruses (phage), and the use of phage for treating diseases, and added coverage of extremophiles. Features comprehensive coverage of antimicrobial agents, including chapters on anti-fungals and anti-virals. Covers the Microbiome, gene editing with CRISPR, Parasites, Fungi, and Animal Viruses. Adds numerous chapters especially intended for professionals such as healthcare and industrial professionals, environmental scientists and ecologists, teachers, and businesspeople. Includes comprehensive survey table of Clinical, Commercial, and Research-Model bacteria. The Open Access version of this book, available at http://www.taylorfrancis.com, has been made available under a Creative Commons Attribution-Non Commercial-No Derivatives 4.0 license. Chapter 21, "Archaea," of this book is freely available as a downloadable Open Access PDF under a Creative Commons Attribution-Non Commercial-No Derivatives 4.0 license available at http://www.taylorfrancis.com See Emanuel Goldman's Open Access article: "Lamarck redux and other false arguments against SARS-CoV-2 vaccination," https://www.embopress.org/doi/full/10.15252/embr.202254675
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