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1

Channel firing: The tragedy of Exercise Tiger. London, England: Viking, 1989.

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2

Lewis, Nigel. Channel firing: The tragedy of Exercise Tiger. London: Viking, 1989.

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3

Channel firing: The tragedy of Exercise Tiger. London: Penguin, 1990.

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4

Iyer, Meenakshi Balkrishna. Firing behavior of human motor units during quasi-sinusoidal isometric muscle contractions. [New York]: Columbia University, 1993.

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5

Mānnā, Diwān. Indo-French glances, Chandigarh-Firminy: Exhibition being held at the Unité d'habitation, Firminy, France, the Art Gallery of the Alliance Franç̆aise le Corbusier de Chandigarh, India and in the Alliance Française network in India. Chandigarh: Alliance Francaise Le Corbusier de Chandigarh-India, 2007.

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6

Le Corbusier: L'Unité d'habitation de Marseille et les autres unités d'habitation à Rezé-les-Nantes, Berlin, Briey en Forêt et Firminy = the Unité d'Habitation in Marseilles and the four other unité blocks in Rezé-les-Nantes, Berlin, Briey en Forêt and Firminy. Paris: Fondation Le Corbusier, 2004.

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7

Linden, Darl W. Vander. Effect of muscle length on motor unit firing behavior in human tibialis anterior muscle. 1989.

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8

Pitt, Matthew. Motor unit anatomy and physiology. Oxford University Press, 2017. http://dx.doi.org/10.1093/med/9780198754596.003.0006.

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This chapter focuses on the signals recorded with needle electromyography (EMG) and the measurement of their specific parameters. These parameters include duration, amplitude, number of phases, and stability. The concept of the electrophysiologic biopsy and the explanation of unusual findings seen on EMG are introduced. In relation to the interference pattern, discussions of the firing rate, recruitment order, and interference pattern are given. Moving from the theoretical explanation of the findings, the problems of the accurate quantitative analysis of the motor unit potential are discussed and measures to improve quantification, particularly in children, are highlighted. The importance of filter settings, the storage of signals, and the different ways of collecting and analysing the potentials are all covered. This section finishes with discussion of the normative range for motor unit duration, and concludes with the automatic analysis of the interference pattern, including turns/amplitude analysis, number of short segments measurement, and envelope analysis.
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9

Shaibani, Aziz. Electromyogram (EMG) Findings. Oxford University Press, 2018. http://dx.doi.org/10.1093/med/9780190661304.003.0028.

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While this chapter, and even this book, are not intended to be a textbook in electrodiagnosis, we have chosen video samples of typical abnormal discharges that often are faced by neuromuscular specialists, such as myopathic units, myotonic discharges, myokymia, fibrillation, and neurogenic firing. Other electromyogram (EMG) clips are embedded in other chapters. Firing frequency of the motor unit potentials can be calculated and it is increased in denervation. Observation for 40–60 seconds may be needed to detect infrequent fasciculations after needle placement. Mixed short and long duration is a features of chronic myopathy and can be confused with chronic denervation.
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10

Lewis, Nigel. Channel Firing. Harbour Books, 1998.

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11

Lewis, Nigel. Channel Firing. Penguin Books Ltd, 1990.

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12

Lewis, Nigel. Channel Firing. Viking, 1989.

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13

Ottmann, Peter. Corbusier - 5 × Unité: Marseille, Nantes, Berlin, Briey, Firminy. Dreen, Markus, Anne König u. Jan Wenzel. Spectormag GbR, 2019.

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14

Shaibani, Aziz. EMG Findings. Oxford University Press, 2015. http://dx.doi.org/10.1093/med/9780199898152.003.0028.

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While this chapter and even this book are not intended to be a textbook in electrodiagnosis, we have chosen video samples of typical abnormal discharges that neuromuscular specialists often face, such as myopathic units, myotonic discharges, myokymia, fibrillations, and neurogenic firing. Other EMG clips are embedded in other chapters. It is not unusual for referred neuromuscular patients to carry an erroneous clinical diagnosis based on incidental EMG discharges such as myotonic discharges. On the other hand, voluntary activity may be reported as abnormal discharges and a diagnosis of denervation is erroneously given. Knowledge of anatomy, physiology, and clinical neuromuscular medicine are important for an EMG to be useful in the diagnosis.
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15

Koch, Christof. Biophysics of Computation. Oxford University Press, 1998. http://dx.doi.org/10.1093/oso/9780195104912.001.0001.

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Neural network research often builds on the fiction that neurons are simple linear threshold units, completely neglecting the highly dynamic and complex nature of synapses, dendrites, and voltage-dependent ionic currents. Biophysics of Computation: Information Processing in Single Neurons challenges this notion, using richly detailed experimental and theoretical findings from cellular biophysics to explain the repertoire of computational functions available to single neurons. The author shows how individual nerve cells can multiply, integrate, or delay synaptic inputs and how information can be encoded in the voltage across the membrane, in the intracellular calcium concentration, or in the timing of individual spikes. Key topics covered include the linear cable equation; cable theory as applied to passive dendritic trees and dendritic spines; chemical and electrical synapses and how to treat them from a computational point of view; nonlinear interactions of synaptic input in passive and active dendritic trees; the Hodgkin-Huxley model of action potential generation and propagation; phase space analysis; linking stochastic ionic channels to membrane-dependent currents; calcium and potassium currents and their role in information processing; the role of diffusion, buffering and binding of calcium, and other messenger systems in information processing and storage; short- and long-term models of synaptic plasticity; simplified models of single cells; stochastic aspects of neuronal firing; the nature of the neuronal code; and unconventional models of sub-cellular computation. Biophysics of Computation: Information Processing in Single Neurons serves as an ideal text for advanced undergraduate and graduate courses in cellular biophysics, computational neuroscience, and neural networks, and will appeal to students and professionals in neuroscience, electrical and computer engineering, and physics.
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16

Sbriglio, Jacques. Corbusier - l'Unité d Habitation de Marseille / the Unité d Habitation in Marseilles: Et les Autres Unités d'habitation à Rezé-Les-Nantes, Berlin, Briey en forêt et Firminy / and the Four Other Unité Blocks. de Gruyter GmbH, Walter, 2015.

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