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Join Trinity's Professor Luke O'Neill on the greatest journey of them all. From the very big to the very small - vast galaxies to microscopic atoms - travel through the wonders of the universe, the mysteries of the human body, and the tiny world of molecules. Discover the Irish scientists that have helped to shape our world and find out how to become one yourself. How do we measure the universe? Why do we need plants? How do our bodies repair themselves when we are ill? What species will exist on earth in a million years' time? Discover the answers to these questions and a lot more in this thrilling and engrossing book packed with fascinating phenomena, vibrant illustrations, experiments you can do yourself, and heaps of fun facts.
When Luke O’Neil isn’t angry, he’s asleep. When he’s awake, he gives vent to some of the most heartfelt, political and anger-fueled prose to power its way to the public sphere since Hunter S. Thompson smashed a typewriter’s keys. Welcome to Hell World is an unexpurgated selection of Luke O’Neil’s finest rants, near-poetic rhapsodies, and investigatory journalism. Racism, sexism, immigration, unemployment, Marcus Aurelius, opioid addiction, Iraq: all are processed through the O’Neil grinder. He details failings in his own life and in those he observes around him: and the result is a book that is at once intensely confessional and an energetic, unforgettable condemnation of American mores. Welcome to Hell World is, in the author’s words, a “fever dream nightmare of reporting and personal essays from one of the lowest periods in our country in recent memory.” It is also a burning example of some of the best writing you’re likely to read anywhere.
The third volume in this series deals with Lukan themes in feminist perspectives. The fourteeen essays from an international authorship cover a range of issues, including Imperial Masculinity, Mary and Asceticism, Martha in the Kitchen and Reading Luke 15 with Arab Chistian Women. The list of contributors includes Robert Karris, Mary Rose D'Angelo, Brigitte Kahl, Turd Karlsen Seim, Barbara Reid, Teresa Hornsby, Ben Witherington III, Esther DeBoer, Veronica Koperski, Loveday Alexander, Warren Carter, Pamela Thimmes, Carol Schersten Lahurd and Maris-Luisa Rigato. The volume also includes an introduction by the editor, and a bibloigraphy.
Leading physician scientists and noted researchers review novel methods for determining the etiology of a variety of lung cancers and present readily reproducible techniques for examining the associated multitude of genetic abnormalities. The methods make it possible to detect these alterations at the cellular, DNA, and protein levels, to study the development of lung cancer in vitro and in vivo-either in situ or in the form of metastases, and to test targeted therapies with detailed model systems. An animal models section gives explicit instructions for setting up and testing these systems, which are rarely described in the literature.
Psychiatric Genetics provides the reader with a complete view of the methodological problems encountered in psychiatry genetics and proposes solutions to commonly occurring questions. The best European and American specialists have given a thorough review on the advantages and disadvantages of genetic epidemiological methods, the way to choose a genetic marker or a clinical interview and how to ascertain patients, unaffected relatives and controls and what should be the criteria to include a case or a control. New phenotypic methods are described focusing on candidate symptom and endophenotype approaches. Examples coming from cognitive neurosciences, biochemistry, electrophysiology and brain imaging techniques are reviewed. This book will serve as an essential handbook for psychiatrists, psychologists, and geneticists involved in the genetics of psychiatric disorders.
“Venter instills awe for biology as it is, and as it might become in our hands.” —Publishers Weekly On May 20, 2010, headlines around the world announced one of the most extraordinary accomplishments in modern science: the creation of the world’s first synthetic lifeform. In Life at the Speed of Light, scientist J. Craig Venter, best known for sequencing the human genome, shares the dramatic account of how he led a team of researchers in this pioneering effort in synthetic genomics—and how that work will have a profound impact on our existence in the years to come. This is a fascinating and authoritative study that provides readers an opportunity to ponder afresh the age-old question “What is life?” at the dawn of a new era of biological engineering.
Viral Vectors for Gene Therapy: Methods and Protocols consists of 30 ch- ters detailing the use of herpes viruses, adenoviruses, adeno-associated viruses, simple and complex retroviruses, including lentiviruses, and other virus systems for vector development and gene transfer. Chapter cont- butions provide perspective in the use of viral vectors for applications in the brain and in the central nervous system. Viral Vectors for Gene Therapy: Methods and Protocols contains step-by-step methods for successful rep- cation of experimental procedures, and should prove useful for both experienced investigators and newcomers in the field, including those beginning graduate study or undergoing postdo...
The FactsBook Series has established itself as the best source of easily accessible and accurate facts about protein groups. They use an easy-to-follow format and are researched and compiled by experts in the field. This Factsbook is devoted to nuclear receptors. The first section presents an introduction and describes the mode of action of the receptors in general. The second section of the book contains detailed entries covering each type of receptor. Entries provide information on: Nomenclature and structure, Isolation, DNA binding properties, Ligands, Expression, Target genes, Knockouts, Disease association, Gene structure, promoter and isoforms, Chromosomal location, Amino acid sequences, Key references
The study of the pathogenesis of Shiga toxin-producing Escherichia coli (STEC) infections encompasses many different disciplines, including clinical microbiology, diagnostics, animal ecology, and food safety, as well as the cellular microbiology of both bacterial pathogenesis and the mechanisms of toxin action. E. coli: Shiga Toxin Methods and Protocols aims to bring together a number of experts from each of these varied fields in order to o- line some of the basic protocols for the diagnosis and study of STEC pat- genesis. We hope that our book will prove a valuable resource for the clinical microbiologist as well as the cellular microbiologist. For the clinical microbiologist, our aim is to detail a number of current protocols for the detection of STEC in patient samples, each of which have their own advantages. Chapter 1 provides an introduction into the medical significance of STEC infections. Chapters 2–7 follow with protocols for the diagnosis and detection of STEC bacteria in patient and animal samples.
In HaemophilusiInfluenzae Protocols, leading research scientists and infectious disease specialists detail in a readily reproducible format the major molecular and immunological techniques for exploring the pathogenicity of H. influenzae. Described with step-by-instructions to ensure robust and successful experimental results, the techniques cover plasmid analysis, proteomics, genomics, DNA array technology, gene expression, mutagenesis (transposon and nontransposon), and structural analysis. These methods illuminate how the bacterium causes disease, as well as how best to develop novel vaccines and antibiotics against the organism.