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1

NATO, Advanced Research Workshop on Human Monitoring for Genetic Effects (2002 Kraków Poland). Human monitoring for genetic effects. IOS Press, 2003.

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2

United States. Congress. Office of Technology Assessment., ed. Genetic monitoring and screening in the workplace. Congress of the U.S., Office of Technology Assessment, 1990.

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3

Pawar, Prashant M. Structural health monitoring using genetic fuzzy systems. Springer, 2011.

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4

Pawar, Prashant M., and Ranjan Ganguli. Structural Health Monitoring Using Genetic Fuzzy Systems. Springer London, 2011. http://dx.doi.org/10.1007/978-0-85729-907-9.

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5

J, Hedrich Hans, Adams M, and International Council for Laboratory Animal Science., eds. Genetic monitoring of inbred strains of rats: A manual on colony management, basic monitoring techniques, and genetic variants of the laboratory rat. Gustav Fischer Verlag, 1990.

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6

Eduardo, Castilla, Stickle Gabriel, Dickman Florence, and March of Dimes Birth Defects Foundation., eds. Methodology for birth defects monitoring. March of Dimes Birth Defects Foundation, Professional Education Dept., 1986.

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7

Pool, Robert. Ecological monitoring of genetically modified crops: A workshop summary. National Academy Press, 2001.

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8

David, Brusick, ed. Methods for genetic risk assessment. Lewis Publishers, 1994.

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9

Neemann, Gerd. Materialien für ein Konzept zum Monitoring von Umweltwirkungen gentechnisch veränderter Pflanzen. Umweltbundesamt, 1999.

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10

Sazykina, M. A. Monitoring genotoksichnosti vodnoĭ sredy: Azovo-Donskoĭ basseĭn. I︠U︡zhnyĭ federalʹnyĭ universitet, 2009.

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11

L, Simon Detlef, Buchenauer Doris, and European Association for Animal Production., eds. Genetic diversity of European livestock breeds: Results of monitoring by the EAAP working group on animal genetic resources. Wageningen Pers, 1993.

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12

Miehe, Anne. Monitoring von Umweltwirkungen gentechnisch veränderter Pflanzen (GVP): Dokumentation eines Fachgespräches des Umweltbundesamtes am 4. und 5. Juni 1998. Umweltbundesamt, 1998.

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13

Reiss, Rebecca A. Genetic techniques for the verification and monitoring of dihaloethane biodegradation in New Mexico aquifers. New Mexico Water Resources Research Institute, New Mexico State University, 2002.

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14

Manuel, Ruiz Muller, Lapeña Isabel, and International Union for Conservation of Nature and Natural Resources., eds. A moving target: Genetic resources and options for tracking and monitoring their international flows. IUCN Publications, 2007.

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15

Robert, Bartz, and Heink Ulrich, eds. Bewertung "ökologischer Schäden" infolge des Anbaus gentechnisch veränderter Organismen (GVO) in der Landwirtschaft. Bundesamt für Naturschutz, 2008.

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16

Kakoli, Ghosh, and Jepson Paul C, eds. Genetically modified organisms in crop production and their effects on the environment: Methodologies for monitoring and the way ahead : expert consultation, 18-20 January 2005 : report and selected papers. Food and Agriculture Organization of the United Nations, 2006.

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17

United Nations Environment Programme. Guidelines for the study of genetic effects in human populations. World Health Organization, 1985.

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18

P, Dhawan Atam, Meyer Claudia M, and United States. National Aeronautics and Space Administration., eds. Genetic algorithm based input selection for a neural network function approximator with application to SSME health monitoring. National Aeronautics and Space Administration, 1991.

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19

European Environmental Mutagen Society. Meeting. Mechanisms of environmental mutagenesis-carcinogenesis. Plenum Press, 1990.

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20

María, Iriondo José, Maxted Nigel, and Dulloo M. Ehsan, eds. Conserving plant genetic diversity in protected areas: Population management of crop wild relatives. CABI, 2008.

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21

S, Sandhu Shahbeg, ed. Short-term bioassays in the analysis of complex environmental mixtures V. Plenum Press, 1987.

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22

A, Minear R., ed. Applications of molecular biology in environmental chemistry. CRC, Lewis Publishers, 1995.

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23

Cristofre, Martin C., ed. Environmental genomics. Humana, 2007.

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24

Associates, Inc ADM. Adjustable-speed drives project: Generic monitoring plan. Wisconsin Center for Demand-Side Research, 1993.

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25

Boyle, Timothy James Butler, 1957-, Boontawee B, International Union of Forest Research Organizations., and Center for International Forestry Research., eds. Measuring and monitoring biodiversity in tropical and temperate forests: Proceedings of a IUFRO symposium held at Chiang Mai, Thailand, August 27th - September 2nd, 1994. Center for International Forestry Research, 1995.

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26

V, Bazarov B., ред. Problemnye regiony resursnogo tipa: Aziatskai︠a︡ chastʹ Rossii. Izd-vo Sibirskogo otd-nii︠a︡ Rossiĭskoĭ akademii nauk, 2005.

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27

Bajc, Marko, ed. Manual for forest genetic monitoring. Slovenian Forestry Institute, Silva Slovenica Publishing Centre, 2020. http://dx.doi.org/10.20315/sfs.167.

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28

Ganguli, Ranjan, and Prashant M. M. Pawar. Structural Health Monitoring Using Genetic Fuzzy Systems. Springer, 2014.

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29

Surveying and monitoring of animal genetic resources. Commission on Genetic Resources for Food and Agriculture, Food and Agriculture Organization of the United Nations, 2011.

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30

Ganguli, Ranjan, and Prashant M. Pawar. Structural Health Monitoring Using Genetic Fuzzy Systems. Springer, 2011.

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31

Altukhov, Yuri Petrovich. Intraspecific Genetic Diversity: Monitoring, Conservation, and Management. Springer London, Limited, 2006.

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32

Altukhov, Yuri Petrovich P. Intraspecific Genetic Diversity: Monitoring, Conservation, and Management. Springer, 2010.

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33

Intraspecific Genetic Diversity: Monitoring, Conservation, and Management. Springer, 2005.

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34

Genetic monitoring and screening in the workplace: Summary. Congress of the U.S., Office of Technology Assessment, 1990.

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35

Genetic monitoring and screening in the workplace: Contractor documents. Technology Assessment Office, 1990.

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36

Hedrich, Hans J. Genetic Monitoring of Inbred Strains of Rats: A Manual on Colony Management, Basic Monitoring Techniques, and Genetic Variants of the Laboratory Rat. Gustav Fischer, 1991.

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37

Esnayra, Joan, Board on Biology, Board on Agriculture and Natural Resources, Robert Pool, and National Research Council. Ecological Monitoring of Genetically Modified Crops: A Workshop Summary. National Academies Press, 2000.

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38

Esnayra, Joan, Board on Biology, Board on Agriculture and Natural Resources, Robert Pool, and National Research Council. Ecological Monitoring of Genetically Modified Crops: A Workshop Summary. National Academies Press, 2000.

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39

Esnayra, Joan, Board on Biology, Board on Agriculture and Natural Resources, Robert Pool, and National Research Council. Ecological Monitoring of Genetically Modified Crops: A Workshop Summary. National Academies Press, 2000.

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40

Monitoring recombinant DNA technology: A five year review. Australian Government Pub. Service, 1986.

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41

Wang, Chunlai. Evolution, Monitoring and Predicting Models of Rockburst: Precursor Information for Rock Failure. Springer, 2018.

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42

Wang, Chunlai. Evolution, Monitoring and Predicting Models of Rockburst: Precursor Information for Rock Failure. Springer, 2019.

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43

Ruiz Muller, Manuel, and Isabel Lapeña,. A moving target : genetic resources and options for tracking and monitoring their international flows. IUCN, 2007. http://dx.doi.org/10.2305/iucn.ch.2007.eplp.67/3.en.

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44

Conserving Plant Genetic Diversity Prote. Cabi Publishing, 2008.

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45

Hu, Yibo, Dunwu Qi, and Fuwen Wei. Conservation genetics of red pandas in the wild. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198759805.003.0029.

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The red panda is listed on the 2016 IUCN red list as Endangered. It is now distributed only in China, Myanmar, India, Bhutan and Nepal. Human activities such as poaching and large-scale deforestation have caused serious declines in this forest-dwelling species. Although its ecological research has made much progress in the past decades, only recently witnessed the population genetic research advances of this species. This chapter reviews the advances in wild red panda conservation genetics from non-invasive genetics, genetic diversity, phylogeographic structure, population genetic structure, d
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46

Thematic Background Study - Incorporating genetic diversity and indicators into statistics and monitoring of farmed aquatic species and their wild relatives. FAO, 2021. http://dx.doi.org/10.4060/cb7951en.

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47

Kappas, A. Mechanisms of Environmental Mutagenesis-Carcinogenesis. Springer, 2012.

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48

Kappas, A. Mechanisms of Environmental Mutagenesis-Carcinogenesis. Springer London, Limited, 2012.

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49

Allendorf, Fred W., W. Chris Funk, Sally N. Aitken, Margaret Byrne, Gordon Luikart, and Agostinho Antunes. Conservation and the Genomics of Populations. 3rd ed. Oxford University Press, 2022. http://dx.doi.org/10.1093/oso/9780198856566.001.0001.

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Loss of biodiversity is among the greatest problems facing the world today. Conservation and the Genomics of Populations gives a comprehensive overview of the essential background, concepts, and tools needed to understand how genetic information can be used to conserve species threatened with extinction, and to manage species of ecological or commercial importance. New molecular techniques, statistical methods, and computer programs, genetic principles, and methods are becoming increasingly useful in the conservation of biological diversity. Using a balance of data and theory, coupled with bas
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50

S, Sandhu Shahbeg, ed. Short-termbioassays in the analysis of complex environmental mixtures V. Plenum, 1987.

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