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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.
Essentials of Public Health Microbiology is a practical, applied textbook that examines how infectious disease is transmitted through a population, how it is monitored, and how preventative measures are designed. Major topics include the purification of water, the treatment of wastewater, food microbiology, sexually transmitted diseases, and the methods used to survey populations. A variety of learning tools, including historical perspectives, case studies, government internet databases, and explanatory figures help the student to understand the critical concepts of microbiology as they are applied to improve health and prevent disease across populations. Designed for students who have had a first course in general microbiology, this one-of-a-kind textbook is ideal for upper level undergraduates and graduates in public health and environmental health, as well as environmental engineering, hydrology, and civil engineering. The text is accompanied by a complete package of instructor resources including Instructor’s Manual, TestBank, and PowerPoint slides available at http://go.jblearning.com/burlage.
This book series focuses on current progress in the broad field of medical microbiology, and covers both basic and applied topics related to the study of microbes, their interactions with human and animals, and emerging issues relevant for public health. Original research and review articles present and discuss multidisciplinary findings and developments on various aspects of microbiology, infectious diseases, and their diagnosis, treatment and prevention. Advances in Microbiology, Infectious Diseases and Public Health is a subseries of Advances in Experimental Medicine and Biology, which has been publishing significant contributions in the field for over 30 years and is indexed in Medline, Scopus, EMBASE, BIOSIS, Biological Abstracts, CSA, Biological Sciences and Living Resources (ASFA-1), and Biological Sciences. 2018 Impact Factor: 2.126.
Eve Shapiro has been writing about patient-centered care, physician–patient communication, and relationships between doctors and their patients since 2007. In Joy in Medicine? What 100 Healthcare Professionals Have to Say about Job Satisfaction, Dissatisfaction, Burnout, and Joy, Eve turns her attention to those on the healthcare delivery side of this "sacred interaction." These healthcare professionals share their enthusiasm, joys, frustrations, disappointments, insights, advice, stories, fears, and pain, explaining how it looks and feels to work in healthcare today no matter who you are, where you work, or what your position is in the organizational hierarchy. The healthcare professionals who provide patient care deserve our collective interest in their humanity. Without some insight into who they are and the forces with which they struggle every day, we cannot fully appreciate the obstacles to providing the care we all want for ourselves and our families during the best of times, let alone in the uncertain times that lie ahead.
This informative new guidebook helps students take a hands-on approach to a career in science with accurate, current industry information, job profiles, and tips for career exploration. Job profiles include: Astronomers Biologists Chemists Ecologists Forensic scientists Genetic scientists Geologists Meteorologists Physicists Science technicians.