Книги з теми "Cellular tests"

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1

Stanley, Lesley A. Molecular and cellular toxicology: An introduction. Chichester, West Sussex, UK: John Wiley & Sons Inc., 2014.

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2

Kajastila, Riitta. Fire tests on coverings with a substrate of cellular plastics. Espoo: Technical Research Centre of Finland, 1989.

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3

International, Conference on Labeled Antibodies (8th 1985 Tokyo Japan). Cellular, molecular, and genetic approaches to immunodiagnosis and immunotherapy. Basel: Karger, 1987.

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4

Verhoeven, G., and U. F. Habenicht, eds. Molecular and Cellular Endocrinology of the Testis. Berlin, Heidelberg: Springer Berlin Heidelberg, 1994. http://dx.doi.org/10.1007/978-3-662-22189-1.

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5

European Workshop on Molecularand Cellular Endocrinology of the Testis (4th 1986 Capri, Italy). Molecular and cellular endocrinology of the testis: Proceedings of the IV European Workshop on Molecular and Cellular Endocrinology of the Testis, Capri, Italy, 9-12April 1986. Edited by Stefanini Mario 1918-. Amsterdam: Excerpta Medica, 1986.

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6

European Workshop on Molecular and Cellular Endocrinology of the Testis. (4th 1986 Capri, Italy). Molecular and cellular endocrinology of the testis: Proceedings of the IV European Workshop on Molecular and Cellular Endocrinology of the Testis, Capri, Italy, 9-12 April 1986. Edited by Stefanini Mario 1916-. Amsterdam: Excerpta Medica, 1986.

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7

European Workshop on Molecular and Cellular Endocrinology of the Testis (11th 2000 Saint-Malo, France). Testis, epididymis, and technologies in the year 2000: 11th European Workshop on Molecular and Cellular Endocrinology of the Testis. Edited by Jégou B. 1951-, Pineau C. 1960-, Sáez J. M, and Ernst Schering Research Foundation. Berlin: Springer, 2000.

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8

Esposito, Franco. Testa alta, due piedi: Storie di calciomercato : quando non c'erano i procuratori e i cellulari non erano i telefonini. Roma: Absolutely free, 2011.

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9

Bain, Barbara J. Blood cells: A practical guide. Philadelphia, Pa: J.B. Lippincott Co., 1989.

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10

Bain, Barbara J. Blood cells: A practical guide. 3rd ed. Oxford: Blackwell Science, 2002.

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11

Bain, Barbara J. Blood cells: A practical guide. 4th ed. Malden, Mass: Blackwell, 2006.

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12

Bain, Barbara J. Blood cells: A practical guide. 2nd ed. Oxford: Blackwell Science, 1995.

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13

Légale, Organisation Internationale de Métrologie. Test report format for the evaluation of load cells: (Annex A toOIML R 60, 1991 edition) = Format du rapport d'essai des cellules de pes'ee : (Annexe A à OIML R 60, édition 1991). Paris: OIML, 1993.

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14

Reese, Andy C. Review questions for microbiology and immunology: A review for the USMLE step 1, 2 and 3 examinations. New York: Parthenon Pub. Group, 2000.

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15

Reese, Andy C. Review questions for microbiology and immunology: A review for the USMLE step 1, 2 and 3 examinations. New York: Parthenon Pub. Group, 2000.

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16

Raghavan, Derek. Germ cell tumors. Hamilton [Ont.]: BC Decker, 2003.

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17

Stanley, Lesley. Molecular and Cellular Toxicology: An Introduction. Wiley & Sons, Incorporated, John, 2014.

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18

J.P. Vanden Heuvel (Editor), W. F. Greenlee (Editor), G. H. Perdew (Editor), and W. B. Mattes (Editor), eds. Comprehensive Toxicology : Cellular and Molecular Toxicology (Comprehensive Toxicology). Pergamon, 2002.

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19

D, Billings Marcus, and Langley Research Center, eds. Dynamic finite element predictions for Mars sample return cellular impact test #4. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 2001.

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20

A Simulation of Interaction Between Cellular Radio Telephones and Motor Vehicle Subsystems by Bench Tests. ERA Technology Ltd, 1992.

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21

(Editor), Kerry S. Campbell, and Marco Colonna (Editor), eds. Natural Killer Cell Protocols: Cellular and Molecular Methods (Methods in Molecular Biology). Humana Press, 2000.

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22

(Editor), I. G. Sipes, Charlene A. McQueen (Editor), and A. J. Gandolfi (Editor), eds. Comprehensive Toxicology : 13 Volume Set (Comprehensive Toxicology). Pergamon, 1997.

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23

(Editor), I. G. Sipes, Charlene A. McQueen (Editor), and A. J. Gandolfi (Editor), eds. Comprehensive Toxicology : 13 Volume Set (Comprehensive Toxicology). Pergamon, 1997.

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24

Glenn, Sipes I., McQueen Charlene A. 1947-, and Gandolfi A. Jay, eds. Comprehensive toxicology. New York: Pergamon, 1997.

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25

Tasan, Ramon, and Nicolas Singewald. Animal Models and Assays Probing Anxiety Related Behaviors and Neural Circuits. Edited by Dennis S. Charney, Eric J. Nestler, Pamela Sklar, and Joseph D. Buxbaum. Oxford University Press, 2017. http://dx.doi.org/10.1093/med/9780190681425.003.0035.

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Анотація:
Anxiety tests and models in rodents are useful tools to reveal neurochemical, cellular, and molecular underpinnings of normal and pathological anxiety-related behaviors, as well as novel treatment targets. While anxiety models are generated by various approaches such as selective breeding, anxiety tests most commonly involve unconditioned approach avoidance tasks and conditioned learning paradigms, both characterized by inherent advantages and limitations, in particular their predictive value for specific anxiety disorders. To further improve the validity and translatability of preclinical anxiety testing, it is promising that some anxiety-relevant endophenotypes have now been investigated using similar tests in rodents and humans and that the involved neural pathways and mechanisms overlap considerably in both species.
26

G, Verhoeven, and U. F. Habenicht. Molecular and Cellular Endocrinology of the Testis. Springer, 2014.

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27

Molecular and cellular endocrinology of the testis. Berlin: Springer-Verlag, 1994.

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28

G, Verhoeven, and U. F. Habenicht. Molecular and Cellular Endocrinology of the Testis. Springer, 2013.

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29

A, Cooke Brian, Sharpe R. M, and European Workshop on Molecular and Cellular Endocrinology of the Testis (5th : 1988 : Brighton, England), eds. The Molecular and cellular endocrinology of the testis. New York: Raven Press, 1988.

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30

Graves, Tracey. Neurogenetic disease. Edited by Patrick Davey and David Sprigings. Oxford University Press, 2018. http://dx.doi.org/10.1093/med/9780199568741.003.0223.

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Анотація:
There are many genetic diseases which affect the nervous system. Although some of these are extremely rare, several are quite common and, as a group, they comprise a significant proportion of neurological disease. Almost all clinical neurological syndromes can have a genetic cause. Not all of these have been genetically elucidated, but some have been extensively characterized in terms of clinical phenotype, molecular genetics, and cellular pathophysiology. Given the improvement in laboratory techniques and subsequent reduction in the cost of direct DNA sequencing, there is likely to be a rapid expansion over the next decade in the identification of causative genes and hence the availability of genetic tests. Thus, all clinicians should have a basic understanding about genetic disease; inheritance patterns; availability of genetic tests; genetic counselling; and ethics. Particular subspeciality areas where neurogenetic disease is common include neuromuscular disease and movement disorders.
31

Heldin, C. h. Signal Transduction (Modular Texts in Molecular and Cell Biology). Garland Science, 1996.

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32

Cellular And Molecular Regulation Of Testicular Cells. Springer, 2012.

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33

1938-, Desjardins Claude, Serono Symposia USA, and Testis Workshop on Cellular and Molecular Regulation of Testicular Cells (13th : 1995 : Raleigh, N.C.), eds. Cellular and molecular regulation of testicular cells. New York: Springer, 1996.

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34

1947-, Nijkamp Franciscus Petrus, and Parnham Michael J. 1951-, eds. Principles of immunopharmacology. Basel: Birkhäuser Verlag, 1999.

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35

Huang, Jing, and Fabrizo Lombardi. Design and Test of Digital Circuits by Quantum-Dot Cellular Automata. Artech House Publishers, 2007.

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36

Inc, Biomedical Business International, ed. The Clinical immunology and cellular diagnostics reagents market. Tustin, CA, U.S.A. (17711 Irvine Blvd., Tustin 92680): Biomedical Business International, 1989.

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37

Qian, Hong, and Daniel A. Beard. Chemical Biophysics: Quantitative Analysis of Cellular Systems (Cambridge Texts in Biomedical Engineering). Cambridge University Press, 2008.

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38

Rommerts, F. F. G., and K. J. Teerds. Testicular Tangrams: 12th European Workshop on Molecular and Cellular Endocrinology of the Testis. Springer, 2013.

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39

United States. National Aeronautics and Space Administration., ed. Morphometrics of cellular damage in mice testis receiving x-ray and high-energy particle irradiation. [Washington, DC: National Aeronautics and Space Administration, 1987.

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40

Droz, Michel, and Bastien Chopard. Cellular Automata Modeling of Physical Systems (Collection Alea-Saclay: Monographs and Texts in Statistical Physics). Cambridge University Press, 2005.

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41

Développements récents de l'endocrinologie du testicule: Recent progress in cellular endocrinology of the testis / edited by J.M. Saez ... [et al.]. Paris: Éditions INSERM, 1985.

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42

Testicular Tangrams: 12th European Workshop on Molecular and Cellular Endocrinology of the Testis (Ernst Schering Research Foundation Workshop / Schering Foundat.Workshop Suppl). Springer, 2002.

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43

Zaleski, Stiphane, and Daniel H. Rothman. Lattice-Gas Cellular Automata: Simple Models of Complex Hydrodynamics (Collection Alea-Saclay: Monographs and Texts in Statistical Physics). Cambridge University Press, 2004.

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44

Verhoeven, G. Ernst Schering Research Foundation Workshop Schering Foundat.Workshop Molecular and Cellular Endocrinology of the Testis (Ernst Schering Research Foundation Workshop). Springer, 1994.

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45

Hill, Geoffrey E. Mitonuclear Ecology. Oxford University Press, 2019. http://dx.doi.org/10.1093/oso/9780198818250.001.0001.

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Анотація:
Eukaryotes were born of a chimeric union of two prokaryotes. The legacy of this fusion is organisms with both a nuclear and mitochondrial genome that must work in a coordinated fashion to enable cellular respiration. The coexistence of two genomes in a single organism requires tight coadaptation to enable function. The need for coadaptation, the challenge of co-transmission, and the possibility of genomic conflict between mitochondrial and nuclear genes have profound consequences for the ecology and evolution of eukaryotic life. This book defines mitonuclear ecology as an emerging field that reassesses core concepts in evolutionary ecology in light of the necessity of mitonuclear coadaptation. I discuss and summarize research that tests new mitonuclear-based theories for the evolution of sex, two sexes, senescence, a sequestered germ line, speciation, sexual selection, and adaptation. The ideas presented in this book represent a paradigm shift for evolutionary ecology. Through the twentieth century, mitochondrial genomes were dismissed as unimportant to the evolution of complex life because variation within mitochondrial genomes was proposed to be functionally neutral. These conceptions about mitochondrial genomes and mitonuclear genomic interactions have been changing rapidly, and a growing literature in top journals is making it increasingly clear that the interactions of the mitochondrial and nuclear genomes over the past 2 billion years have played a major role in shaping the evolution of eukaryotes. These new hypotheses for the evolution of quintessential characteristics of complex life hold the potential to fundamentally reshape the field of evolutionary ecology and to inform the emerging fields of mitochondrial medicine and mitochondrial-based reproductive therapies.
46

Test No. 319B: Determination of in vitro intrinsic clearance using rainbow trout liver S9 sub-cellular fraction (RT-S9). OECD, 2018. http://dx.doi.org/10.1787/9789264303232-en.

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47

Guraya, Sardul S. Comparative Cellular and Molecular Biology of Testis in Vertebrates: Trends in Endocrine, Paracrine and Autocrine Regulation of Structure and Functions. Science Publishers, 2001.

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48

Essai n° 489 : Test des Comètes In Vivo en Conditions Alcalines sur Cellules de Mammifères. Éditions OCDE, 2014. http://dx.doi.org/10.1787/9789264224186-fr.

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49

Essai n° 489 : Test des Comètes In Vivo en Conditions Alcalines sur Cellules de Mammifères. OECD, 2016. http://dx.doi.org/10.1787/9789264264892-fr.

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50

Vaheri, Antti, James N. Mills, Christina F. Spiropoulou, and Brian Hjelle. Hantaviruses. Oxford University Press, 2011. http://dx.doi.org/10.1093/med/9780198570028.003.0035.

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Анотація:
Hantaviruses (genus Hantavirus, family Bunyaviridae) are rodent- and insectivore-borne zoonotic viruses. Several hantaviruses are human pathogens, some with 10-35% mortality, and cause two diseases: hemorrhagic fever with renal syndrome (HFRS) in Eurasia, and hantavirus cardiopulmonary syndrome (HCPS) in the Americas. Hantaviruses are enveloped and have a three-segmented, single-stranded, negative-sense RNA genome. The L gene encodes an RNA-dependent RNA polymerase, the M gene encodes two glycoproteins (Gn and Gc), and the S gene encodes a nucleocapsid protein. In addition, the S genes of some hantaviruses have an NSs open reading frame that can act as an interferon antagonist. Similarities between phylogenies have suggested ancient codivergence of the viruses and their hosts to many authors, but increasing evidence for frequent, recent host switching and local adaptation has led to questioning of this model. Infected rodents establish persistent infections with little or no effect on the host. Humans are infected from aerosols of rodent excreta, direct contact of broken skin or mucous membranes with infectious virus, or rodent bite. One hantavirus, Andes virus, is unique in that it is known to be transmitted from person-to-person. HFRS and HCPS, although primarily affecting kidneys and lungs, respectively, share a number of clinical features, such as capillary leakage, TNF-, and thrombocytopenia; notably, hemorrhages and alterations in renal function also occur in HCPS and cardiac and pulmonary involvement are not rare in HFRS. Of the four structural proteins, both in humoral and cellular immunity, the nucleocapsid protein appears to be the principal immunogen. Cytotoxic T-lymphocyte responses are seen in both HFRS and HCPS and may be important for both protective immunity and pathogenesis. Diagnosis is mainly based on detection of IgM antibodies although viral RNA (vRNA) may be readily, although not invariably, detected in blood, urine and saliva. For sero/genotyping neutralization tests/RNA sequencing are required. Formalin-inactivated vaccines have been widely used in China and Korea but not outside Asia. Hantaviruses are prime examples of emerging and re-emerging infections and, given the limited number of rodents and insectivores thus far studied, it is likely that many new hantaviruses will be detected in the near future.

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