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From the Tom Clancy for a new generation, a debut thriller following two CIA outcasts who must race to stop a secret Chinese weapon that threatens to provoke a world war After her first assignment in Venezuela goes disastrously awry, rookie case officer Kyra Stryker is brought back to Langley to work in the Red Cell, the CIA’s out-of-the-box think tank. There she’s paired with Jonathan Burke, a straitlaced analyst who has alienated his colleagues with his unorthodox methods and a knack for always being right, political consequences be damned. When a raid on Chinese spies in Taiwan ends in a shoot-out and the release of a deadly chemical, CIA director Kathy Cooke turns to the Red Cell to figure out why China is ready to invade the island nation without any fear of reprisal from the US Navy. Stryker and Burke’s only lead is the top CIA asset in China, code named Pioneer. But when Pioneer reports that Chinese security has him under surveillance, Stryker is offered a chance for redemption with a highly dangerous mission: extract Pioneer from China before he’s arrested and executed. The answers he holds could mean the difference between peace in the Pacific or another world war. From CIA headquarters to the White House to a Navy carrier in the South China Sea and the dark alleyways of Beijing, Red Cell takes readers on a whirlwind race against time as Stryker and Burke work to save Pioneer and discover the hidden threat to America’s power: China’s top-secret weapon. CIA analyst Mark Henshaw infuses expert knowledge of the intelligence world into a pulse-pounding plot to create a fascinating, authentic, and unforgettable read.
Will Conlan is an unconventional thinker. After winning a baseball game with an innovative toss of a rosin bag, he catches the interest of a chief operative of the Homeland Securitys Analytic Red Cell. Employing the creative problem solving of philosophers, futurists, and Hollywood movie writers, this intelligence unit is seeking any original ideas about anticipating terrorist plots. As a recent surge of terrorist activity undermines these fresh insights, the operative banks on the notion that Wills youthful imagination, unclouded by the premise of it cant be done, may provide the key insight they need and seeks to secretly exploit Wills unhindered out of the box thinking. Unaware of the magnitude of danger surrounding him, Will uncovers something he wasnt supposed to discovera connection between a television advertisement and a master terrorist plot. Narrowly surviving, he alone foils a bombing at Wrigley Field. Uncertain about the knowledge he now holds, he has to figure out the terrorists next target. Will just doesnt realizeits him.
This volume discusses the current state of the nation's blood supply--including studies of blood availability, ways of enhancing blood collection and distribution, frozen red cell technology, logistical concerns in prepositioning frozen blood, extended liquid storage of red cells, and blood substitutes.
A brilliant virtuoso of violence, Richard Marcinko rose through Navy ranks to create and command one of this country's most elite and classified counterterrorist units, SEAL TEAM SIX. Now this thirty-year veteran recounts the secret missions and Special Warfare madness of his worldwide military career—and the riveting truth about the top-secret Navy SEALs. Marcinko was almost inhumanly tough, and proved it on hair-raising missions across Vietnam and a war-torn world: blowing up supply junks, charging through minefields, jumping at 19,000 feet with a chute that wouldn't open, fighting hand-to-hand in a hellhole jungle. For the Pentagon, he organized the Navy's first counterterrorist unit: the legendary SEAL TEAM SIX, which went on classified missions from Central America to the Middle East, the North Sea, Africa and beyond. Then Marcinko was tapped to create Red Cell, a dirty-dozen team of the military's most accomplished and decorated counterterrorists. Their unbelievable job was to test the defenses of the Navy's most secure facilities and installations. The result was predictable: all hell broke loose. Here is the hero who saw beyond the blood to ultimate justice—and the decorated warrior who became such a maverick that the Navy brass wanted his head on a pole, and for a time, got it. Richard Marcinko—ROGUE WARRIOR.
Red blood cells in humans—and most other mammals—have a tendency to form aggregates with a characteristic face-to-face morphology, similar to a stack of coins. Known as rouleaux, these aggregates are a normally occurring phenomenon and have a major impact on blood rheology. What is the underlying mechanism that produces this pattern? Does this really happen in blood circulation? And do these rouleaux formations have a useful function? The first book to offer a comprehensive review of the subject, Red Blood Cell Aggregation tackles these and other questions related to red blood cell (RBC) aggregates. The book covers basic, clinical, and physiological aspects of this important biophysical phenomenon and integrates these areas with concepts in bioengineering. It brings together state-of-the-art research on the determinants, mechanisms, and measurement and effects of RBC aggregation as well as on variations and comparative aspects. After an introductory overview, the book outlines factors and conditions that affect RBC aggregation. It presents the two hypotheses—the bridging model and the depletion model—that provide potential mechanisms for the adhesive forces that lead to the regular packing of the cells in rouleaux formations. The book also reviews the methods used to quantify RBC aggregation in vitro, focusing on their importance in clinical practice. Chapters discuss the effect of RBC aggregation on the in vitro rheology of blood as well as on tube flow. The book also looks at what happens in the circulation when red blood cells aggregate and examines variations due to physiological and pathophysiological challenges. The concluding chapter explores the formation of red blood cell aggregates in other mammals. Written by leading researchers in the field, this is an invaluable resource for basic science, medical, and clinical researchers; graduate students; and clinicians interested in mammalian red blood cells.
The Blood Group Antigen FactsBook has been an essential resource in the hematology, transfusion and immunogenetics fields since its first publication in the late 1990s.The third edition of The Blood Group Antigen FactsBook has been completely revised, updated and expanded to cover all 32 blood group systems. It blends scientific background and clinical applications and provides busy researchers and clinicians with at-a-glance information on over 330 blood group antigens, including history and information on terminology, expression, chromosomal assignment, carrier molecular description, functions, molecular bases of antigens and phenotypes, effect of enzymes/chemicals, clinical significance, disease associations and key references. Includes over 330 entries on blood group antigens in individual factsheetsOffers a logical and concise catalogue structure for each antigen in an improved interior design for quick reference. Written by 3 international experts from the field of immunohematology and transfusion medicine.
This book reviews the respiratory function of vertebrate red cells. I have defined the phrase "respiratory function" broadly to include, in addition to the actual oxygen and carbon dioxide transport, erythropoiesis, haemoglobin synthesis, red cell structure, the deformability of red cells in circulation, ion and substrate transport across the cell membrane, cellular metabolism, and control of cellular volume and pH. All of these aspects of the red cell function may affect gas transport between the respiratory epithelia and the tissues. Throughout the book, I have tried to relate our current knowledge about the nucleated red cell function to the wealth of information about the function of mammalian red cells. However, whenever possible, I have placed the emphasis on the nucleated red cell function for two reasons. First, the erythro cytes of 90% of vertebrate species are nucleated, and, second, nucleated red cell function has not been reviewed earlier in a single volume. This being the case, I have tried to make the reference list as complete as I could with regard to nucleated red cells. I hope that the approach adopted is useful for both com parative and human physiologists. Many people have contributed to the making of this book directly or in directly. Antti Soivio started me in this field. Prof. Henrik Wallgren has always encouraged fresh scientific ideas in his department. My present ideas of red cell function have been influenced by work carried out with Prof. Roy E.