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1

Sannes, Lucy J. New strategies in In vitro cancer diagnostics. Decision Resources, Inc., 1996.

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2

Regulating pre-implantation genetic diagnosis: A comparative and theoretical analysis. Routledge, 2012.

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3

Welch, Mary F., Margaret K. Strekal, Carol G. Bowman, and Dawn J. Trebec. In vitro diagnostics. Freedonia Group, 2000.

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4

Cheng, Chao-Min, Chen-Meng Kuan, and Chien-Fu Chen. In-Vitro Diagnostic Devices. Springer International Publishing, 2016. http://dx.doi.org/10.1007/978-3-319-19737-1.

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5

Heffner, Steven. Asian in vitro diagnostic markets. Kalorama Information, 2002.

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6

Maassen, Bernhard, Robin Whaite, Wilhelm Kewenig, Giovanni Forlani, Jeremy Marriage, and Gonzalo Ulloa. In vitro Diagnostic Medical Devices. Edited by Bernhard Maassen and Robin Whaite. Springer Netherlands, 1994. http://dx.doi.org/10.1007/978-94-015-8319-0.

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7

Song, Haibo, and Jian'er Yao, eds. In Vitro Diagnostic Industry in China. Springer Singapore, 2021. http://dx.doi.org/10.1007/978-981-16-2316-5.

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8

Sannes, Lucy J. New strategies in in vitro cardiovascular diagnostics. Decision Resources, 1998.

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9

Handbook of vitreo-retinal disorder management: A practical reference guide. World Scientific, 2015.

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10

Rosen, Shara. The worldwide market for in vitro diagnostic tests. 4th ed. Edited by Heffner Steven and Kalorama Information LLC. Kalorama Information, 2004.

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11

Information, LLC Kalorama. The worldwide market for in vitro diagnostic test. Kalorama Information, 2002.

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12

Hölzle, Christina. In-vitro-Fertilisation: Ein umstrittenes Experiment : Fakten, Leiden, Diagnosen, Ethik. Springer-Verlag, 1991.

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13

Singh, Nidhi. Challenge of in-vitro diagnostics for resource poor settings: An assessment. Institute for Studies in Industrial Development, 2014.

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14

Whiting, Tim. Survival in the 'in-vitro' diagnostics industry: a strategic analysis and business plan for Astrazeneca Diagnostics. Oxford Brookes University, 1999.

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15

Rosen, Shara. In vitro diagnostic tests and systems: The world outside the United States. Kalorama Information, 2003.

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16

Bracey, Alfred. In vitro diagnostic devices: Guidance for the preparation of 510(k) submissions. U.S. Dept. of Health and Human Services, Public Health Service, Food and Drug Administration, Center for Devices and Radiological Health, 1987.

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17

Gagnon, Francine. Quand la technologie transforme la maternité. Les Publications du Québec, 1987.

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18

Wattiaux, Henri. Génétique et fécondité humaines: Contraception, stérilisation, diagnostic prénatal, malformations congénitales, insémination artificielle, fécondation in vitro. Publications de la Faculté de théologie, 1986.

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19

Wattiaux, Henri. Génétique et fécondité humaines: Contraception, stérilisation, diagnostic prénatal, malformations congénitales, insémination artificielle, fécondation in vitro. Faculté de théologie, 1986.

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20

Wattiaux, Henri. Génétique et fécondité humaines: Contraception, stérilisation, diagnostic prénatal, malformations congénitales, insémination artificielle, fécondation in vitro. Publications de la Faculté de théologie, 1986.

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21

Williamson, Charles A. Studies on the rapid and quantitative sub-band separation and characterization of creatine kinase for in vitro diagnostic use. Laurentian University, 1987.

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22

Human embryogenesis: Methods and protocols. Humana Press, 2009.

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23

A, Emanuel Ivor, ed. In vitro testing. Thieme Medical Publishers, 1994.

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24

1940-, Kupchik Herbert Z., ed. Cancer diagnosis in vitro using monoclonal antibodies. Dekker, 1988.

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25

E, Cohn Gerald, International Biomedical Optics Society, and Society of Photo-optical Instrumentation Engineers., eds. In-vitro diagnostic instrumentation: 26-27 January 2000, San Jose, California. SPIE, 2000.

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26

Cheng, Chao-Min, Chen-Meng Kuan, and Chien-Fu Chen. In-Vitro Diagnostic Devices: Introduction to Current Point-of-Care Diagnostic Devices. Springer, 2016.

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27

Cheng, Chao-Min, Chen-Meng Kuan, and Chien-Fu Chen. In-Vitro Diagnostic Devices: Introduction to Current Point-of-Care Diagnostic Devices. Springer, 2015.

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28

McKinlay Gardner, R. J., and David J. Amor. Preimplantation Genetic Diagnosis. Edited by R. J. McKinlay Gardner and David J. Amor. Oxford University Press, 2018. http://dx.doi.org/10.1093/med/9780199329007.003.0022.

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Preimplantation genetic diagnosis allows recognition of a genetically abnormal embryo in the laboratory, and enables the choice, in principle, of selecting a normal embryo for transfer to the uterus. The methodologies are outlined in this chapter, noting the move toward day-5 blastocyst biopsy as the preferred time/stage. Next-generation sequencing is also discussed. The distinction is made between targeted diagnosis, as for example in the setting of a parental rearrangement, and preimplantation genetic screening, which may be offered to older women or those who, in any event, need recourse to
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29

Inc, Medical Data International, ed. Emerging markets for microminiature analytical technology in in vitro clinical diagnosis. Medical Data International, 1994.

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30

The Implications of AIDS for the in vitro diagnostic products industry: Stouffer's National Conference Center, Crystal City, Virginia, November 13, 1985. Health Industry Manufacturers Association, 1987.

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31

(Editor), B. Maassen, and R. Whaite (Editor), eds. In vitro Diagnostic Medical Devices: Law and Practice in Five EU Member States. Springer, 1994.

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32

Gardner, David K., Dagan Wells, Emre Seli, and Denny Sakkas. Human Gametes and Preimplantation Embryos: Assessment and Diagnosis. Springer, 2013.

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33

De, Jonge Christopher J., and Barratt C. L. R, eds. Assisted reproductive technology: Accomplishments and new horizons. Cambridge University Press, 2002.

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34

Elliston, Sarah, and Sheila A. M. McLean. Regulating Pre-Implantation Genetic Diagnosis: A Comparative and Theoretical Analysis. Taylor & Francis Group, 2014.

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35

Germany (West). Bundesministerium für Forschung und Technologie. and Germany (West). Bundesministerium der Justiz., eds. Fécondation in vitro: Analyse du génome et thérapie génétique : rapport du groupe de travail constitué en commun par le Ministère fédéral de la recherche et de la technologie et le Ministère fédéral de la justice. Documentation française, 1987.

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36

Bernhard, Maassen, and Whaite Robin, eds. In vitro diagnostic medical devices: Law and practice in five EU member states : France, Germany, Italy, Spain, and the United Kingdom. Kluwer Academic Publishers, 1994.

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37

Dukhovny, Stephanie. Prenatal Genetics for Women with Neurology Disease. Edited by Emma Ciafaloni, Cheryl Bushnell, and Loralei L. Thornburg. Oxford University Press, 2018. http://dx.doi.org/10.1093/med/9780190667351.003.0006.

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The genetic evaluation of heritability of genetic disease, as well as screening of the fetus for neurologic diseases, have evolved a great deal since the 1970s. Screening and diagnostic evaluation now includes the ability to detect fetuses with anatomic abnormalities of the central nervous system and rare autosomal recessive disorders with neurologic features. Preimplantation genetic diagnosis now allows families with confirmed genetic abnormalities to utilize in vitro fertilization technologies to avoid affected pregnancies. For families that have not received a prenatal diagnosis, newborn sc
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38

Firth, Helen V., Jane A. Hurst, and Judith G. Hall. Pregnancy and fertility. Oxford University Press, 2011. http://dx.doi.org/10.1093/med/9780192628961.003.0203.

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Anterior abdominal wall defects 566Assisted reproductive technology: in vitro fertilization (IVF), intracytoplasmic sperm injection (ICSI), and pre-implantation genetic diagnosis (PGD) 568Bowed limbs 572Club-foot (talipes) 574Congenital cystic lung lesions, Currarino syndrome, and sacrococcygeal teratoma 576Congenital diaphragmatic hernia 578Cytomegalovirus (CMV) 580...
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39

Mathiesen, Amber, and Kali Roy. Assisted Reproductive Technology and Reproductive Options for the At-Risk Couple. Oxford University Press, 2018. http://dx.doi.org/10.1093/med/9780190681098.003.0008.

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For those with an increased risk of having a child with a genetic condition, reproductive options include avoiding pregnancy altogether, undertaking prenatal diagnosis in a current pregnancy, and preventing the transmission of the genetic changes responsible for the condition to a child. This chapter on assisted reproductive technology and reproductive options for the at-risk couple describes the basic techniques of assisted reproductive technologies as well as reproductive testing options prior to in vitro fertilization, including preimplantation genetic screening (PGS) and preimplantation ge
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40

In Vitro Diagnostics [Working Title]. IntechOpen, 2021. http://dx.doi.org/10.5772/intechopen.87299.

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41

(Editor), Kay Elder, and Jacques Cohen (Editor), eds. Human Preimplantation Embryo Selection (Reproductive Medicine & Assisted Reproductive Techniques). Informa Healthcare, 2007.

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42

Human preimplantation embryo selection. Informa Healthcare, 2007.

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43

Gamete and Embryo Micromanipulation in Human Reproduction. Arnold, 1993.

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44

Rei, Marc. Richtliche Aspekte Der Praimplantationsdiagnostik: Unter Besonderer Berucksichtigung Der Rechte Der Von Einem Verbot Betroffenen Paare (Frankfurter Kriminalwissenschaftliche Studien). Peter Lang Publishing, 2006.

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45

Agency, Medical Devices, ed. Management of in vitro diagnostic medical devices. Medical Devices Agency, 2002.

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46

Agency, Medical Devices, and Northern Ireland Adverse Incident Centre., eds. Management of in vitro diagnostic medical devices. DHSSPS, 2002.

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47

de Melo-Martín, Inmaculada. Reprogenetic Technologies. Oxford University Press, 2016. http://dx.doi.org/10.1093/med/9780190460204.003.0002.

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This chapter offers a brief description of the main reprogenetic technologies in use today as well as some of the most significant ones being developed. Because of their relevance in the field, particular attention is given to in vitro fertilization (IVF) and preimplantation genetic diagnosis (PGD). The chapter discusses the differences between somatic and germline modifications, the most common uses of reprogenetic technologies today, and some possible and likely future uses. It also includes a description of recent technological advances such as mitochondrial transfer and gene editing techni
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48

(Firm), Find/SVP, ed. The market for rapid in vitro diagnostic tests. Find/SVP, 1997.

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49

The market for rapid in vitro diagnostic tests. Find/SVP, 1999.

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50

Alam, Saima, and Christopher Corrigan. Allergy. Oxford University Press, 2017. http://dx.doi.org/10.1093/med/9780199657742.003.0001.

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Allergic disorders are on the increase. This chapter covers a range of common allergic problems encountered in patients with severe asthma which may contribute to symptomatology and exacerbations, including genetic and environmental factors, affecting the airways, and the diagnosis and management of atopic asthma in association with seasonal and perennial allergic rhinitis. The account elucidates the basic principles behind simple investigations, such as skin prick testing and in vitro allergen-specific IgE assays, as well as relatively novel tests, including component resolved diagnosis. Also
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