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From 1985 to 2001, the collaborative research initiative known as the Bannu Archaeological Project conducted archaeological explorations and excavations in the Bannu region, in what was then the North West Frontier Province (NWFP) of Pakistan, now Khyber-Pakhtunkhwa. This Project involves scholars from the Pakistan Heritage Society, the British Museum, the Institute of Archaeology (UCL), Bryn Mawr College and the University of Cambridge. This is the third in a series of volumes that present the final reports of the exploration and excavations carried out by the Bannu Archaeological Project. This volume presents the first synthesis of the archaeology of the historic periods in the Bannu region, spanning the period when the first large scale empires expanded to the borders of South Asia up until the arrival of Islam in the subcontinent at the end of the first and beginning of the second millennium BC. The Bannu region provides specific insight into early imperialism in South Asia, as throughout this protracted period, it was able to maintain a distinctive regional identity in the face of recurring phases of imperial expansion and integration.
2022 RRB NTPC Non Technical Previous Solved Papers
The Prehistory of Food sets subsistence in its social context by focusing on food as a cultural artefact. It brings together contributors with a scientific and biological expertise as well as those interested in the patterns of consumption and social change, and includes a wide range of case studies.
Blood loss in spine surgery is a significant and very common problem connected with all kinds of surgical procedures. An international faculty of authors provide a comprehensive survey on the research and evidence about blood sparing in spine surgery. This publication fills a gap in the spinal literature and provides invaluable data for all those confronted with blood loss during surgical procedures on the spine.
Potassium ions K+ ions are vital in physiological processes, particularly with regard to the cardiovascular system. Modulators influence the channels through which these ions flow and the research into modulator drugs of these channels is the subject of rapidly-advancing research. This work is intended to be of use as a tool for those working in the pharmaceutical industry. Early chapters concentrate on the synthesis and structure-activity relationships of potassium channel modulators. These are followed by discussion on the application of these drugs to different target organs, such as the cardiovascular system and the airways. The book concludes with a broad overview of clinical experience and future prospects.; The authors show how potassium channel activators and potassium channel blockers each have a role to play as therapeutic agents for many disorders, including asthma and respiratory tract disorders, diseases of the central nervous system such as epilepsy, and vascular diseases such as angina, peripheral vascular disease and high blood pressure. This book should therefore also be of interest to those researching into this wide range of diseases.
Much research has focused on the basic cellular and molecular biological aspects of stem cells. Much of this research has been fueled by their potential for use in regenerative medicine applications, which has in turn spurred growing numbers of translational and clinical studies. However, more work is needed if the potential is to be realized for improvement of the lives and well-being of patients with numerous diseases and conditions. This book series 'Cell Biology and Translational Medicine (CBTMED)' as part of Springer Nature’s longstanding and very successful Advances in Experimental Medicine and Biology book series, has the goal to accelerate advances by timely information exchange. Emerging areas of regenerative medicine and translational aspects of stem cells are covered in each volume. Outstanding researchers are recruited to highlight developments and remaining challenges in both the basic research and clinical arenas. This current book is the 14th volume of a continuing series.
Vols. for 1963- include as pt. 2 of the Jan. issue: Medical subject headings.
Legionnaires' disease, a pneumonia caused by the Legionella bacterium, is the leading cause of reported waterborne disease outbreaks in the United States. Legionella occur naturally in water from many different environmental sources, but grow rapidly in the warm, stagnant conditions that can be found in engineered water systems such as cooling towers, building plumbing, and hot tubs. Humans are primarily exposed to Legionella through inhalation of contaminated aerosols into the respiratory system. Legionnaires' disease can be fatal, with between 3 and 33 percent of Legionella infections leading to death, and studies show the incidence of Legionnaires' disease in the United States increased five-fold from 2000 to 2017. Management of Legionella in Water Systems reviews the state of science on Legionella contamination of water systems, specifically the ecology and diagnosis. This report explores the process of transmission via water systems, quantification, prevention and control, and policy and training issues that affect the incidence of Legionnaires' disease. It also analyzes existing knowledge gaps and recommends research priorities moving forward.
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