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1

International Congress of Neuroendocrinology (1st 1986 San Francisco, Calif.). Integrative neuroendocrinology: Molecular, cellular, and clinical aspects. Edited by McCann S. M. 1925- and Weiner Richard I. Karger, 1987.

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2

Endocrine pathology. Springer-Verlag, 1990.

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3

Konopli͡a, E. F. Gormony i starenie: Membrannye mekhanizmy gormonalʹnoĭ reguli͡at͡sii. Navuka i tėkhnika, 1991.

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4

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-. Excerpta Medica, 1986.

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5

National Institute of Child Health & Human Development Research Planning Workshop (1987 Bethesda, Md.). The onset of labor: Cellular and integrative mechanisms : a National Institute of Child Health & Human Development Research Planning Workshop, November 29-December 1, 1987. Publisher and sole distributor, Perinatology Press, 1988.

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6

Facchinetti, F. Cellular Communication in Reproduction (Endocrine Updates). Society for Endocrinology, 1993.

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7

Lucia, Stefaneanu, Sasano Hironobu, and Kovács Kálmán 1926-, eds. Molecular and cellular endocrine pathology. Arnold, 2000.

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8

(Editor), Lucia Stefaneanu, Hironobu Sasano (Editor), and Kalman Kovacs (Editor), eds. Moleclar and Cellular Endocrine Pathology. A Hodder Arnold Publication, 2000.

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9

Lucia, Stefaneanu, Sasano Hironobu, and Kovács Kálmán 1926-, eds. Molecular and cellular endocrine pathology. Chapman & Hall, 1998.

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10

Conn, P. Michael, and Alfredo Ulloa-Aguirre. Cellular Endocrinology in Health and Disease. Elsevier Science & Technology Books, 2014.

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11

Cellular Endocrinology in Health and Disease. Elsevier Science & Technology Books, 2014.

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12

Edward, Bittar E., and Bittar Neville, eds. Molecular and cellular endocrinology. JAI Press, 1997.

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13

Handwerger, Stuart. Molecular and Cellular Pediatric Endocrinology. Humana Press, 2013.

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14

Stuart, Handwerger, ed. Molecular and cellular pediatric endocrinology. Humana Press, 1999.

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15

Lloyd, Ricardo V. Endocrine Pathology. Springer, 2011.

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16

Endocrine Pathology. Springer, 2011.

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17

Hormone Signaling (Endocrine Updates, Volume 17) (Endocrine Updates). Springer, 2002.

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18

Endocrine Pathology: Differential Diagnosis and Molecular Advances. Humana Press, 2003.

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19

Lloyd, Ricardo V. Endocrine Pathology : : Differential Diagnosis and Molecular Advances. Springer, 2016.

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20

Lloyd, Ricardo V. Endocrine Pathology : : Differential Diagnosis and Molecular Advances. Springer, 2011.

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21

Lloyd, Ricardo V. Endocrine Pathology: Differential Diagnosis and Molecular Advances. Humana Pr, 2004.

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22

(Editor), P. Michael Conn, and H. Maurice Goodman (Editor), eds. Handbook of Physiology Sect 7: Rev Ed Endocrinology Vol 1: Cellular Endocrinology. An American Physiological Society Book, 1998.

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23

Baudouin, Simon, and Steve Ball. Normal physiology of the endocrine system. Oxford University Press, 2016. http://dx.doi.org/10.1093/med/9780199600830.003.0249.

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The endocrine system describes an array of chemical signals (hormones). Working in concert with the nervous system, the endocrine system forms a complex neurohumoral network, communicating changes in the environment to facilitate adaptive responses and serving to integrate those responses in a coherent, coordinated manner. The endocrine system has inherent rhythmicity, which has important implications for the integration and coordination of metabolism, and how we measure endocrine signals in clinical settings. At a cellular level, hormone action is mediated through a series of discrete, but interacting signal transduction pathways. This chapter outlines a functional design approach to endocrinology; providing a framework covering the principles of hormone regulation and hormone action—critical for understanding the role of the endocrine system in physiology and pathophysiology.
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24

Phillip, Hardy Matthew, and Griswold Michael D, eds. Testicular cell dynamics and endocrine signaling. New York Academy of Sciences, 2005.

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25

Friedman, Jacob E. New Transcription Factors and Their Role in Diabetes and Therapy, Volume 5: Advances in Molecular and Cellular Endocrinology. Elsevier Science, 2006.

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26

Nieschlag, E. Spermatogenesis - Fertilization - Contraception: Molecular, Cellular and Endocrine Events in Male Reproduction (Schering Foundation Workshop, Vol 4). Springer, 1992.

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27

U, Eppenberger, Goldhirsch A, and SAKK-Educational Symposium (1987 : Lucerne, Switzerland), eds. Endocrine therapy and growth regulation of breast cancer. Springer-Verlag, 1989.

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28

G, Parker Malcolm, ed. Nuclear hormone receptors: Molecular mechanisms, cellular functions, clinical abnormalities. Academic, 1991.

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29

Parker, Malcolm G. Nuclear Hormone Receptors: Molecular Mechanisms, Cellular Functions, Clinical Abnormalities. Academic Press, 1991.

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30

G, Parker Malcolm, ed. Nuclear hormone receptors: Molecular mechanisms, cellular functions, and clinical abnormalities. Academic Press, 1991.

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31

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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32

(Editor), George P. Chrousos, Richard McCarty (Editor), Karel Pacak (Editor), et al., eds. Stress: Basic Mechanisms and Clinical Implications (Annals of the New York Academy of Sciences). New York Academy of Sciences, 1996.

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33

P, Chrousos George, and World Congress on Stress (1st : 1994 : Bethesda, Md.), eds. Stress: Basic mechanisms and clinical implications. New York Academy of Sciences, 1995.

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34

D’Mello, Ajay. Mitochondrial Disease. Edited by Kirk Lalwani, Ira Todd Cohen, Ellen Y. Choi, and Vidya T. Raman. Oxford University Press, 2018. http://dx.doi.org/10.1093/med/9780190685157.003.0047.

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Mitochondrial disease is now considered to be an important cause for a diverse range of neurological, muscular, cardiac and endocrine disorders. Initially thought to be a rare group of disorders, it is now increasingly common for children with mitochondrial disease to present for a surgical procedure. While the mitochondrial respiratory chain is the essential finally common pathway for aerobic metabolism, mitochondria also play a role in a several important cellular processes. A variety of anesthetic techniques have been successfully used for this group of patients. However, the possibility of complications due to inhibition of mitochondrial function by anesthetic agents and surgical stress is a worry for the physician managing these patients. Anesthetic management focuses on disease symptoms at presentation, maintaining normoglycemia, while preventing further metabolic stress and complications that worsen lactic acidosis.
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35

G Proteins, Receptors, and Disease. Humana Press, 2011.

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36

Spiegel, Allen M. G Proteins, Receptors, and Disease. Humana, 1998.

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37

M, Spiegel Allen, ed. G proteins, receptors, and disease. Humana Press, 1998.

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38

(Editor), V. Hansson, F. O. Levy (Editor), and K. Tasken (Editor), eds. Signal Transduction in Testicular Cells: Basic and Clinical Aspects (Ernst Schering Research Foundation Workshop, Supplement, 2). Springer, 1996.

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39

David, Evered, Nugent Jonathan, and Whelan Julie, eds. Growth factors in biology and medicine. Pitman, 1985.

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