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Responding to the explosion of advances in the use of biomarkers to efficiently, rapidly, and economically evaluate the health effects of chemical entities, this authoritative reference provides a detailed overview of the theory, development, and practical application of biomarkers in the toxicological, environmental, forensic, and pharmaceutical s
This book challenges the current thinking and strategies in the field of global peace and security. It is clear that current global public and private institutions are inadequate for the challenges we face today. These challenges cut across borders and require a more coordinated and concerted effort to find workable solutions. This book therefore begins with the question of global leadership and works its way back to the interconnected dynamics of global modernity and conflict. It is divided into four parts, each addressing a fundamental challenge to global peace and security. By exploring how we break out of the current framework, in which we understand global activities and the distribution of resources, and this book provides new ways of understanding the material, cultural, political, and spiritual relations that form the basis of international society.
The 2022 National Institute of Justice (NIJ) Forensic Science Research and Development (R&D) Symposium is intended to promote collaboration and enhance knowledge transfer of NIJ-funded research. The NIJ Forensic Science R&D Program funds both basic or applied R&D projects that will (1) increase the body of knowledge to guide and inform forensic science policy and practice or (2) result in the production of useful materials, devices, systems, or methods that have the potential for forensic application. The intent of this program is to direct the findings of basic scientific research; research and development in broader scientific fields applicable to forensic science; and ongoing forensic science research toward the development of highly discriminating, accurate, reliable, cost-effective, and rapid methods for the identification, analysis, and interpretation of physical evidence for criminal justice purposes.
Winner of the Labriola Center American Indian National Book Award 2017 Mohawk midwife Katsi Cook lives in Akwesasne, an indigenous community in upstate New York that is downwind and downstream from three Superfund sites. For years she witnessed elevated rates of miscarriages, birth defects, and cancer in her town, ultimately drawing connections between environmental contamination and these maladies. When she brought her findings to environmental health researchers, Cook sparked the United States’ first large-scale community-based participatory research project. In The River Is in Us, author Elizabeth Hoover takes us deep into this remarkable community that has partnered with scientists and...
The 2023 National Institute of Justice (NIJ) Forensic Science Research and Development (R&D) Symposium is intended to promote collaboration and enhance knowledge transfer of NIJ-funded research. The NIJ Forensic Science R&D Program funds both basic or applied R&D projects that will (1) increase the body of knowledge to guide and inform forensic science policy and practice or (2) result in the production of useful materials, devices, systems, or methods that have the potential for forensic application. The intent of this program is to direct the findings of basic scientific research; research and development in broader scientific fields applicable to forensic science; and ongoing forensic science research toward the development of highly discriminating, accurate, reliable, cost-effective, and rapid methods for the identification, analysis, and interpretation of physical evidence for criminal justice purposes.
Though polychlorinated biphenyls (PCBs) have been banned in the United States for more than thirty years, the toxic effects of their presence in local environments continue to be a significant public health concern. PCBs: Human and Environmental Disposition and Toxicology brings together more than fifty established specialists on PCB toxicity to discuss recent trends and specialized investigations of PCB influences on the environment and on humans. Renowned scientists including Paul S. Cooke, Takeshi Nakano, Tomas Trnovec, Deborah C. Rice, Linda S. Birnbaum, and Charles S. Wong present cutting-edge research on Hudson River PCBs, human contamination, homologue profiles, high PCB exposure in Slovakia, and PCB effects on the thyroid hormone, nutrition, and estrogen levels in humans and animals. Focusing on the detection, movement, metabolism, toxicity, remediation, and risk assessment of PCB contamination, this multi-disciplinary study is a valuable resource for regulatory agencies and scientists working with PCBs.
The 2021 National Institute of Justice (NIJ) Forensic Science Research and Development (R&D) Symposium is intended to promote collaboration and enhance knowledge transfer of NIJ-funded research. The NIJ Forensic Science R&D Program funds both basic or applied R&D projects that will (1) increase the body of knowledge to guide and inform forensic science policy and practice or (2) result in the production of useful materials, devices, systems, or methods that have the potential for forensic application. The intent of this program is to direct the findings of basic scientific research; research and development in broader scientific fields applicable to forensic science; and ongoing forensic science research toward the development of highly discriminating, accurate, reliable, cost-effective, and rapid methods for the identification, analysis, and interpretation of physical evidence for criminal justice purposes.
This wide-ranging survey of the environmental damage to Native American lands and peoples in North America—in recent times as well as previous decades—documents the continuing impact on the health, wellness, land, and communities of indigenous peoples. Beginning in the early 1950s, Native peoples were recruited to mine "yellow dust"—uranium—and then, over decades, died in large numbers of torturous cancers. Uranium-induced cancers have become the deadliest plague unleashed upon Native peoples of North America—one with grave consequences impacting generations of American Indian families. Today, resource-driven projects such as the Keystone XL pipeline continue to put the health and ...