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Livros sobre o tema "Neuromuscular transmission"

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1

C, Sellin Lawrence, Libelius Rolf, Thesleff S, Lunds universitet. Dept. of Pharmacology., Eric K. Fernström Foundation, Lunds universitet Medical Faculty e Eric K. Fernström Symposium (13th : 1988 : Örenäs Castle), eds. Neuromuscular junction. Amsterdam: Elsevier, 1989.

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2

Angela, Vincent, e W. Wray Dennis, eds. Neuromuscular transmission: Basic and applied aspects. Manchester, UK: Manchester University Press, 1990.

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3

Angela, Vincent, e W. Wray Dennis, eds. Neuromuscular transmission: Basic and applied aspects. Oxford: Pergamon Press, 1992.

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4

David, Evered, e Whelan Julie, eds. Placticity of the neuromuscular system. Chichester, N.Y: Wiley, 1988.

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5

Morgan, Gareth Philip. Neuromuscular transmission in murine muscular dystrophy (129 ReJ strain). Birmingham: University of Aston. Department of Pharmaceutical Sciences, 1985.

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6

David, Evered, e Whelan Julie, eds. Plasticity of the neuromuscular system. Chichester: Wiley, 1988.

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7

V, Evarts Edward, Wise Steven P e Bousfield David, eds. The motor system in neurobiology. Amsterdam: Elsevier Biomedical Press, 1985.

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8

Keynes, R. D. Nerve and muscle. 4a ed. Cambridge: Cambridge University Press, 2011.

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9

Chalisova, N. I. (Natalʹi͡a Iosifovna), ed. Neĭrotroficheskai͡a reguli͡at͡sii͡a nervnoĭ tkani. Sankt-Peterburg: Nauka, 1997.

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10

A, Nasledov G., e Institut ėvoli͡u︡t͡s︡ionnoĭ fiziologii i biokhimii im. I.M. Sechenova., eds. Mekhanizmy neĭronalʹnoĭ reguli͡a︡t͡s︡ii myshechnoĭ funkt͡s︡ii. Leningrad: Izd-vo "Nauka," Leningradskoe otd-nie, 1988.

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11

S, Agoston, e Bowman W. C, eds. Muscle relaxants. 2a ed. Amsterdam: Elsevier, 1990.

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12

Johnson, D. E. Investigation of interactions between limb-manipulator dynamics and effective vehicle roll control characteristics. Edwards, Calif: Ames Research Center, 1986.

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13

Ron, Jacobs, e Rikkert Walther E. I, eds. Movement control: An interdisciplinary forum. Amsterdam: VU University Press, 1991.

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14

Kimura, Jun. Electrodiagnosis in diseases of nerve and muscle: Principles and practice. 4a ed. New York: Oxford University Press, 2013.

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15

Swain, James Edward. The effects of okaidic acid, a protein phosphatase inhibitor, on synaptic transmission at the crayfish neuromuscular junction. Ottawa: National Library of Canada, 1990.

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16

Andrea, Melandri Bruno, Milazzo Giulio, Blank Martin 1933-, North Atlantic Treaty Organization. Scientific Affairs Division. e International School of Biophysics (20th : 1991 : Erice, Italy), eds. Bioelectrochemistry IV: Nerve muscle function : bioelectrochemistry, mechanisms, bioenergetics, and control. New York: Plenum Press, 1994.

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17

Francesco, Lacquaniti, Viviani Paolo, North Atlantic Treaty Organization. Scientific Affairs Division. e NATO Advanced Study Institute on Multi-Sensory Control of Movement (1994 : Trieste, Italy), eds. Neural bases of motor behaviour. Dordrecht: Kluwer Academic, 1996.

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18

C, Bakker C. M., e Vrije Universiteit te Amsterdam. Faculty of Human Movement Sciences., eds. Neural aspects of human movement: Implications for control and coordination. Amsterdam: Swets & Zeitlinger, 1993.

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19

A, Wernig, ed. Plasticity of motoneuronal connections. Amsterdam: Elsevier, 1991.

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20

Jean, Requin, Stelmach George E, North Atlantic Treaty Organization. Scientific Affairs Division. e NATO Advanced Study Institute on Tutorials in Motor Neuroscience (1990 : Calcatoggio, France), eds. Tutorials in motor neuroscience. Dordrecht: Kluwer Academic Publishers, 1991.

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21

-C, Hepp-Reymond M., e Marini Gabriella, eds. Perspectives of motor behavior and its neural basis. Basel: Karger, 1997.

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22

G, Stein Paul S., ed. Neurons, networks, and motor behavior. Cambridge, Mass: MIT Press, 1997.

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23

Dorgan, Stephen Joseph. Mathematical modelling, analysis and control of artificially activated skeletal muscle. Dublin: University College Dublin, 1997.

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24

Vrbová, Gerta. Nerve-muscle interaction. 2a ed. London: Chapman & Hall, 1995.

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25

Fernando, D'Amelio, Eng Lawrence F e United States. National Aeronautics and Space Administration., eds. Effects of artificial gravity: Central nervous system neurochemical studies : finalReport [sic] for NASA agreement NAGW-4480 (SJSU foundation no. 21-1614-7083) period 1 May 94 through 31 Mar 97. [Washington, DC: National Aeronautics and Space Administration, 1997.

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26

Nobel Symposium (76th 1989 Lidingö, Sweden). Cholinergic neurotransmission: Functional and clinical aspects : proceedings of Nobel Symposium 76. Amsterdam: Elsevier, 1990.

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27

D, Binder Marc, ed. Peripheral and spinal mechanisms in the neural control of movement. Amsterdam: Elsevier, 1999.

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28

Electromyography: Neuromuscular transmission studies. Baltimore: Williams & Wilkins, 1988.

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29

Fuchs-Buder, Thomas. Neuromuscular Monitoring. Springer, 2011.

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30

Hobler, Scott C. Effects of progesterone on neuromuscular transmission. 1989.

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31

Gydikov, Alexander. Motor Control. Springer, 2014.

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32

Gydikov, Alexander. Motor Control. Springer London, Limited, 2012.

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33

Neuromuscular Transmission (Fundamentals of Anaesthesia and Acute Medicine). Blackwell Publishing Limited, 1996.

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34

Kuhn, Andrew L. Effects of prednisolone on neuromusclar transmission. 1986.

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35

Enfermedades de la neurona motora. Bethesda, Md: National institutes of Health, National Institute of Neurological Diseases and Stroke, 2007.

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36

Kaplan, Tamara, e Tracey Milligan. Neuromuscular Junction Disease (DRAFT). Oxford University Press, 2018. http://dx.doi.org/10.1093/med/9780190650261.003.0015.

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The video in this chapter explores neuromuscular junction disease. It outlines the steps in neuromuscular transmission, as well as the symptoms, causes, and treatments for Myasthenia Gravis, and Lambert Eaton Syndrome
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37

Jaberzadeh, Shapour. Closer Look at Motor-Evoked Potential. Nova Science Publishers, Incorporated, 2018.

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38

Gant, Daniel B. A comparative investigation of the pharmacology of fish and mammalian neuromuscular systems. 1985.

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39

Barker, D. Muscle Receptors. Springer, 2011.

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40

Lacquaniti, F., e P. Viviani. Neural Bases of Motor Behaviour. Springer London, Limited, 2013.

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41

Morgan, James L. M. Peptidergic regulation of visceral motor circuits in the Sea Hare, Aplysia californica. 1991.

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42

Hunt, C. C., A. K. McIntyre e D. Barker. Muscle Receptors. Springer London, Limited, 2012.

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43

Lacquaniti, F., e P. Viviani. Neural Bases of Motor Behaviour. Springer Netherlands, 2010.

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44

Vincent, Angela. Neuromuscular Transmission: Basic and Applied Aspects (Studies in Neuroscience, No. 12). Manchester University Press, 1991.

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45

Sajgalikova, Katerina, Erik K. St Louis e Peter Gay. Neuromuscular disorders and sleep. Editado por Sudhansu Chokroverty, Luigi Ferini-Strambi e Christopher Kennard. Oxford University Press, 2017. http://dx.doi.org/10.1093/med/9780199682003.003.0030.

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This chapter examines the range of sleep disturbances seen in patients with neuromuscular disorders, particularly emphasizing sleep-related breathing disorders which may be a presenting manifestation of neuromuscular disorders, and which significantly contribute to morbidity and mortality in this patient population. It provides an overview of physiological and pathological alterations in neuromuscular breathing mechanisms and control during sleep. The symptoms and forms of sleep disordered breathing (SDB) seen in specific neuromuscular disorders such as amyotrophic lateral sclerosis, myopathies, and disorders of neuromuscular junction transmission are reviewed. The chapter concludes with a discussion of management strategies for neuromuscular disorder patients with SDB, which is common in such patients, requiring generalists, neurologists, and sleep physicians to work together toward prompt diagnosis and optimal treatment approaches.
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46

Motor Control: The International Journal for the Multidisciplinary Study of Voluntary Movement. Human Kinetics, 2005.

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47

(Editor), S. P. Wise, D. Bousfield (Editor) e Edward V. Evarts (Editor), eds. The Motor System in Neurobiology: A Collection of Articles from Trends in Neurosciences. Elsevier Science Publishing Company, 1986.

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48

Fernandez, Hugo L. Nerve-Muscle Cell Trophic Communication. Taylor & Francis Group, 2019.

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49

Hopkins, Philip M. Neuromuscular physiology in anaesthetic practice. Editado por Jonathan G. Hardman. Oxford University Press, 2017. http://dx.doi.org/10.1093/med/9780199642045.003.0007.

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The pharmacological interventions that constitute general anaesthesia are targeted at producing unconsciousness and an immobile patient even in response to noxious stimuli. Surgical anaesthesia also requires skeletal muscle relaxation, the degree of which depends on the site and nature of the surgical procedure. The anaesthetist therefore needs an advanced level of knowledge and understanding of the function of nerves, synapses, and muscle in order to understand, from first principles, how the drugs they use every day mediate their effects. Nerves and muscle cells are termed excitable cells because the electrical potential across their cell membranes (membrane potential) can be rapidly and profoundly altered because of the presence of specialized ion channels. Some drugs, such as local anaesthetics, act on ion channels involved in nerve conduction while many others act on synaptic transmission, the neurochemical communication between neurons or between a neuron and its effector organ. The neuromuscular junction is a synapse of specific interest to anaesthetists because it is the site of action of neuromuscular blocking drugs. This chapter covers the fundamentals of cellular electrophysiology, structure and function of key ion channels, and the physiology of nerves, synapses, and skeletal muscle.
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50

Binder. Peripheral and Spinal Mechanisms in the Neural Control of Movement. Elsevier Science & Technology Books, 1999.

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