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Martinic G 《Lab animal》2011,40(10):319-322
Uncontrolled hemorrhage is the most common preventable cause of death for soldiers wounded in combat. In live-tissue trauma training (LTTT), animals (mostly goats and pigs) are used to train physicians and paramedical personnel in how to treat severe traumatic injuries, including severe blood loss. Military personnel insist that such realistic training is necessary and has to date saved countless lives of soldiers. Animal rights groups, however, argue that the practice is inhumane and should be replaced with alternative methods. In this essay, the author explains how and why animals are used for LTTT and in military medical research (MMR), as well as why he feels that the continued use of animals for LTTT and MMR is justified. The author hopes to encourage wider discussion of this topic within the scientific, defense and animal welfare circles, leading to further refinements in the welfare and protection of animals used for these important, though often controversial, purposes.  相似文献   

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Transgenic animals in biomedical research.   总被引:2,自引:0,他引:2  
G T Merlino 《FASEB journal》1991,5(14):2996-3001
The advent of transgenic technology, in which foreign genetic information is stably introduced into the mammalian germ line, has dramatically enhanced our basic knowledge of physiologic and pathologic processes. Transgenic animals created by these genetic manipulations are being used to provide insights into gene regulation, development, pathogenesis, and the treatment of disease. Furthermore, transgenic biotechnology holds great promise for the creation of genetically superior livestock and the industrial production of precious pharmaceuticals. It is evident now that the study and use of transgenic animals will significantly improve the human condition.  相似文献   

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Transgenic animals are useful tools for the study of biological functions of proteins and secondary gene products synthesized by the action of protein catalysts. Research in nutrition and allied fields is benefiting from their use as models to contrast normal and altered metabolism. Although food, nutritional products, and ingredients from transgenic animals have not yet reached consumers, the technologies for their production are maturing and yielding exciting results in experimental and farm animals. Regulatory governmental bodies are already issuing guidelines and legislation in anticipation of the advent of these products and ingredients. This review summarizes available technology for the production of transgenic animals, discusses their scientific and commercial potential, and examines ancillary issues relevant to the field of nutrition.  相似文献   

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Common, often overlooked, variables in biomedical research with animals are reviewed. The barren primary enclosure is an abnormal living environment for laboratory animals. Species-appropriate enrichment attenuates some of the distress resulting from chronic understimulation. Social deprivation distress of individually-caged social animals is best mitigated by the provision of compatible companionship. Biotelemetry and positive reinforcement training avoid or minimize stress reactions that typically occur when animals are forcibly restrained during procedures. The variables, 'light' and 'position of living quarters' are inherent in the multi-tier caging system. To date there is no satisfactory alternative other than the single-tier cage arrangement that eliminates both variables. Removing test animals from their familiar home environment and from their cage mates for procedures introduces stress as an avoidable influential variable. Music may become an important variable if not all subjects are exposed to it. Disturbance time cannot be controlled as an extraneous variable but it should at least be mentioned to explain possible incongruities of data. A positive relationship between animal care personnel and research subjects is a key requisite to minimize stress as a data-confounding variable.  相似文献   

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J H Ellenberg 《Biometrics》1990,46(1):1-18; discussion 19-32
There has been an explosive growth in the development of statistical methodology over the past several decades. Research in both medicine and public health, in which the involvement of biostatisticians has increased dramatically during this period, has been both a beneficiary of this new methodology as well as a source of new problems. The contributions of statistical methodology in design, implementation, and analysis as they relate to the role that biostatistics and biostatisticians now play in the field of medical research are addressed. We comment on: (1) the acceptance by the medical community that biostatistical concepts are an integral part of sound medical research; (2) the sometimes unrealistic expectations placed on biostatistics and biostatisticians given limited resources and/or limited control; (3) some controversies among biostatisticians; and (4) the need for emphasizing the design and implementation phases of medical investigations.  相似文献   

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本文概述了实验动物的分类、特点及其在医学生物学中的应用。在医学生物学的发展过程中,实验动物的重要性已愈来愈被人们所认识。合理地选用实验动物对达到预定的实验目的起着至关重要的作用。  相似文献   

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