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Titlebook: Electrophysiology; Basics, Modern Appro Jürgen Rettinger,Silvia Schwarz,Wolfgang Schwarz Textbook 20161st edition Springer International Pu

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Textbook 20161st editionunderstanding. Each section also includes references to relevant original literature for further reading. The book offers a valuable resource for students of biology, chemistry and physics with a special interest in biophysics..
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Mitsuo Niinomi,Tomokazu Hattoriphenomena. In this chapter, we will consider “macroscopic” phenomena that, nevertheless, formed a milestone in electrophysiology. Macroscopic means current signals composed of a huge number of single-channel events.
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Theory of Excitability,phenomena. In this chapter, we will consider “macroscopic” phenomena that, nevertheless, formed a milestone in electrophysiology. Macroscopic means current signals composed of a huge number of single-channel events.
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Basics: Theory,iological membranes and the distribution of essential ion activities between extracellular environment and cytoplasm. The basis of the thermodynamical equations is presented for Donnan, Nernst and Goldman-Hodgkin-Katz equations.
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Basics: Theory, presented some theoretical background that is essential for describing electrical phenomena at the cell membrane. In this chapter on ., we want to talk about Basic: Methods that will allow us to gain an understanding of the electrophysiological phenomena. When we discussed the GHK equation for the
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Automated Electrophysiology,eutic targets. The latter makes channels and transporters very interesting for an understanding of physiological dysfunction and for the search for and development of drugs, which interact with ion-channel or transporter function. Although non-electrophysiological methods have been developed to quan
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Ion-Selective Channels,will discuss in more detail channels that are the dominating ion pathways governing the membrane potential. The differences between different channel types are based on characteristics that have been discussed before:.1. Selectivity for ion species.2. Single channel conductance.3. Gating mechanisms.
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