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Cardiac Electrophysiology Without Fluoroscopy / / edited by Riccardo Proietti, Yan Wang, Yan Yao, Guo Qiang Zhong, Shu Lin Wu, Félix Ayala-Paredes
Cardiac Electrophysiology Without Fluoroscopy / / edited by Riccardo Proietti, Yan Wang, Yan Yao, Guo Qiang Zhong, Shu Lin Wu, Félix Ayala-Paredes
Edizione [1st ed. 2019.]
Pubbl/distr/stampa Cham : , : Springer International Publishing : , : Imprint : Springer, , 2019
Descrizione fisica 1 online resource (241 pages)
Disciplina 612.813
Soggetto topico Cardiology
Heart - Imaging
Cardiac Imaging
ISBN 3-030-16992-8
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Clinical Studies of a purely 3D Navigation in Interventional Managements of Tachyarrhythmia -- Radiation exposure and safety for the electrophysiologist -- Ablation Energy Sources-Principles and Utility in Ablation without Fluoroscopy -- 3D mapping and reduction in radiation exposure -- Catheter Placement and Model reconstruction -- Learning curve for zero-fluoroscopic procedure -- Atrioventricular Nodal Reentrant Tachycardia (AVNRT) with zero-fluoroscopic procedure -- AV Nodal re-entrant tachycardia ablation without fluoroscopy -- Non-Fluoroscopic Catheter Ablation of Accessory Pathways -- Focal atrial tachycardia -- Ablation of atrial flutter with zero fluoroscopy approach -- Non-Fluoroscopic Catheter Ablation of Atrial Fibrillation -- Non-Fluoroscopic Catheter Ablation of Idiopathic Ventricular Arrhythmias -- Ventricular Tachycardia with Structural Heart Disease -- Reduction on radiation exposure in pediatric population undergoing ablation procedures -- Complications of RFCA and Prevention Method -- Safety of zero-fluroscopic procedure during pregnancy -- Cost optimization when using 3-D mapping systems for a non fluoro EP lab -- Zero-fluoroscopic implantation of cardiac electronic Device -- Cardiac Resynchronization Therapy (CRT) guided by 3D mapping system -- Transesophageal Electrophysiological Study without fluoroscopy.
Record Nr. UNINA-9910349362403321
Cham : , : Springer International Publishing : , : Imprint : Springer, , 2019
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Electrophysiology : basics, modern approaches, and applications / / Jürgen Rettinger, Silvia Schwarz Linder, Wolfgang Schwarz
Electrophysiology : basics, modern approaches, and applications / / Jürgen Rettinger, Silvia Schwarz Linder, Wolfgang Schwarz
Autore Rettinger Jürgen
Edizione [Second edition.]
Pubbl/distr/stampa Cham, Switzerland : , : Springer, , [2022]
Descrizione fisica 1 online resource (225 pages)
Disciplina 612.813
Soggetto topico Electrophysiology
ISBN 3-030-86482-0
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Intro -- Preface -- Acknowledgements -- About This Book -- Important Physical Units -- Contents -- About the Authors -- Abbreviations -- Chapter 1: Introduction -- 1.1 Basic Background Knowledge -- 1.2 History of Electrophysiology -- Take-Home Messages -- References -- Chapter 2: Basics Theory -- 2.1 Electrical Characteristics of Biological Membranes -- 2.2 Ion Distribution at Biological Membranes -- 2.3 Donnan Distribution and Nernst Equation -- 2.3.1 Donnan Distribution -- 2.3.2 Nernst Equation -- 2.4 Goldman-Hodgkin-Katz Equation -- Take-Home Messages -- References -- Chapter 3: Basics: Methods -- 3.1 Recording Electrical Signals from Body Surface -- 3.2 The Example (ECG) -- 3.2.1 Electrophysiological Basics -- 3.2.2 Activation of the Heart Muscle -- 3.3 Recording Electrical Signals from Tissue -- 3.3.1 Intracardiac Electrograms -- 3.3.2 The Ussing Chamber -- 3.3.3 Recording from the Brain -- 3.3.4 Recording Extracellular Field Potentials with Multielectrode Arrays -- 3.4 Recording Electrical Signals from Single Cells -- 3.4.1 The Ag/AgCl Electrode -- 3.4.2 The Microelectrode -- 3.4.3 Ion-Selective Microelectrodes -- 3.4.3.1 Construction of Ion-Selective Microelectrodes -- 3.4.3.2 Theory of Ion-Selective Microelectrodes -- 3.4.4 The Carbon-Fibre Technique -- 3.4.4.1 Construction of Carbon-Fibre Microelectrodes -- 3.4.4.2 Theory of Carbon-Fibre Microelectrodes -- 3.4.4.3 Amperometric and Cyclic Voltammetric Measurements -- 3.4.5 Basics of Voltage Clamp -- 3.4.5.1 The Ideal Voltage Clamp -- 3.4.5.2 The Real Voltage Clamp -- 3.4.5.3 The Voltage Clamp with Two Electrodes -- 3.4.5.4 One-Electrode Voltage Clamp Used for the Patch-Clamp Technique -- 3.4.5.5 Performing Voltage Clamp -- 3.4.6 Noise in Electrophysiological Measurements -- 3.4.6.1 Thermal Noise -- 3.4.6.2 Shot Noise -- 3.4.6.3 Dielectric Noise -- 3.4.6.4 Digitisation Noise.
3.4.6.5 The Sampling Theorem and Aliasing Noise -- 3.4.6.6 Excess Noise -- Take-Home Messages -- References -- Chapter 4: Application of the Voltage-Clamp Technique -- 4.1 Different Versions of the Voltage-Clamp Technique -- 4.1.1 The Classic Squid Giant Axon -- 4.1.2 The Vaseline- or Sucrose-Gap Voltage Clamp -- 4.1.3 The Two-Microelectrode Voltage Clamp -- 4.1.4 The One-Electrode Voltage Clamp -- 4.1.5 The Open-Oocyte Voltage Clamp -- 4.2 Analysing Current Fluctuations -- 4.3 Analysing Transient Charge Movements (Gating Currents) -- 4.4 The Patch-Clamp Technique -- 4.4.1 Different Versions of Patch Clamp (Patch Conformations) -- 4.4.2 Advantages of the Different Patch Conformations -- 4.4.3 The Single-Channel Current and Conductance -- 4.4.4 The Sniffer-Patch Method -- 4.5 Automated Electrophysiology -- 4.5.1 Automated Patch Clamp -- Take-Home Messages -- References -- Chapter 5: Ion-Selective Channels -- 5.1 General Characteristics of Ion Channels -- 5.1.1 Selectivity of Ion Channels -- 5.1.2 Discrete Movement of Ions through Pores -- 5.2 Specific Ion Channels -- 5.2.1 The Na+ Channel (A Single-Ion Pore) -- 5.2.2 The K+ Channel (A Multi-Ion Pore) -- 5.2.3 The Ca2+ Channel (A Multi-Ion Pore) -- 5.2.4 Anion-Selective Channels -- Take-Home Messages -- References -- Chapter 6: Theory of Excitability -- 6.1 The Hodgkin-Huxley Description of Excitation -- 6.1.1 Experimental Basics -- 6.1.2 The Hodgkin-Huxley (HH) Description of Excitability -- 6.1.2.1 The Hypothetical Channel -- 6.1.2.2 The K+ Channel -- 6.1.2.3 The Na+ Channel -- 6.1.2.4 The HH Description -- 6.1.3 The Action Potential -- 6.1.3.1 Phenomenological Description -- 6.1.3.2 Calculation of Propagated Action Potential. -- 6.2 Continuous and Saltatory Spread of Action Potentials -- 6.2.1 The Electrotonic Potential -- 6.2.2 The Continuous Spread of an Action Potential.
6.2.3 The Saltatory Spread of an Action Potential -- 6.3 Generation and Transmission of Action Potentials -- 6.3.1 Generation -- 6.3.2 Transmission -- 6.4 Summary of the Different Types of Potentials -- 6.4.1 Surface Potential -- 6.5 Action Potential in Non-nerve Cells -- 6.5.1 Skeletal Muscle -- 6.5.2 Smooth Muscle -- 6.5.3 Heart Muscle -- 6.5.4 Plant Cells -- Take-Home Messages -- References -- Chapter 7: Carrier-Mediated Transport -- 7.1 General Characteristics of Carriers -- 7.1.1 Distinction Between Pores and Carriers -- 7.1.2 The Oocytes of Xenopus: A Model System -- 7.1.3 The Anion Exchanger -- 7.1.4 The Sodium Pump -- 7.1.4.1 Steady-State Pump Current -- 7.1.4.2 Transient Pump-Generated Currents -- 7.1.5 The Neurotransmitter Transporter GAT1 -- 7.2 Carriers Are Like Channels with Alternating Gates -- Take-Home Messages -- References -- Chapter 8: Examples of Application of the Voltage-Clamp Technique -- 8.1 Structure-Function Relationships of Carrier Proteins -- 8.1.1 The Na+,K+-ATPase -- 8.1.2 The Na+-Dependent GABA Transporter (GAT1) -- 8.2 Structure-Function Relationships of Ion Channels -- 8.2.1 Families of Various Ion Channels -- 8.2.1.1 The Voltage-Gated Ion Channel (VIC) Superfamily -- 8.2.1.2 The Ligand-Gated Ion Channel (LIC) Family -- 8.2.1.3 The Chloride Channel (ClC) Family -- 8.2.1.4 The Gap Junction-Forming (Connexin) Family -- 8.2.1.5 The Epithelial Na+ Channel (ENaC) Family -- 8.2.1.6 Mechanosensitive Ion Channels -- 8.2.2 ATP-Gated Cation Channel (ACC) Family -- 8.2.2.1 Structure and Classification of P2X Receptors -- 8.2.3 Experimental Results -- 8.2.3.1 The P2X1 Receptor -- 8.2.3.2 The P2X2 Receptor -- 8.2.3.3 Effect of Glycosylation on P2X1 Receptor Function -- 8.3 Viral Ion Channels -- 8.3.1 The 3a Protein of SARS Coronavirus -- 8.3.1.1 Inhibition of 3a-Mediated Current by the Anthrachinon Emodin.
8.3.1.2 Inhibition of 3a-Mediated Current by the Kaempferol Glycoside Juglanin -- 8.3.2 Channel Proteins of SARS Coronavirus-2 -- 8.3.3 The Viral Protein Unit (Vpu) of HIV-1 -- 8.3.4 The M2 (Matrix Protein 2) of Influenza a Virus -- 8.3.4.1 Inhibition of M2-Mediated Current by Kaempferol Triglycoside -- 8.4 Electrophysiology as a Tool in Chinese Medicine Research -- 8.4.1 Mechanisms in Acupuncture Points -- 8.4.1.1 Mast-Cell Degranulation -- 8.4.1.2 Mast-Cell Degranulation Is Initiated by Ion-Channel Activation -- 8.4.2 Mechanisms in Effected Sites -- 8.4.2.1 Co-Expression of Neurotransmitter Transporters and δ-Opioid Receptor -- 8.5 Electrophysiology as a Tool in Pharmacology -- 8.5.1 The Na+,Ca2+ Exchanger -- 8.5.2 Neurotransmitter Transporters -- 8.5.3 Ion Channels -- Take-Home Messages -- References -- Chapter 9: Appendix -- 9.1 Influence of External Electrical and Magnetic Fields on Physiological Function -- 9.1.1 Magnetostatic Fields -- 9.1.2 Electrostatic Fields -- 9.1.3 Electromagnetic Fields -- 9.1.3.1 Low-Frequency Electric Fields (50 Hz) -- 9.1.3.2 High Frequency Electric Fields (kHz - GHz) -- 9.1.3.3 Conclusion -- 9.2 A Laboratory Course: Two-Electrode Voltage Clamp (TEVC) -- 9.2.1 Motivation -- 9.2.2 Background -- 9.2.2.1 Electrical Characteristics of Biological Membranes -- The Membrane Potential -- The Membrane as an Electrical Unit -- Theoretical Background of Voltage Clamp -- The Principle of Voltage Clamp (See Sect. 3.4.5) -- Two-Electrode Voltage Clamp -- 9.2.3 Questions to Be Answered for the Course -- 9.2.4 Set-up and Basic Instructions -- 9.2.4.1 Experimental Set-up (See Fig. 9.6) -- 9.2.4.2 Preparation of Microelectrodes -- 9.2.4.3 Instructions for the Use of CellWorks Program for the Turbo TEC -- 9.2.4.4 Solutions -- 9.2.5 Experiments and Data Analysis -- 9.2.5.1 IV Characteristics -- Procedure -- Tasks.
9.2.5.2 Hypothesis Testing - the Paired-Sample T-Test -- 9.2.5.3 Determination of the Membrane Capacitance -- Procedure -- Tasks -- References -- Index.
Record Nr. UNINA-9910544846703321
Rettinger Jürgen  
Cham, Switzerland : , : Springer, , [2022]
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Electrophysiology : Basics, Modern Approaches and Applications / / by Jürgen Rettinger, Silvia Schwarz, Wolfgang Schwarz
Electrophysiology : Basics, Modern Approaches and Applications / / by Jürgen Rettinger, Silvia Schwarz, Wolfgang Schwarz
Autore Rettinger Jürgen
Edizione [1st ed. 2016.]
Pubbl/distr/stampa Cham : , : Springer International Publishing : , : Imprint : Springer, , 2016
Descrizione fisica 1 online resource (XIII, 162 p. 158 illus. in color.)
Disciplina 612.813
Soggetto topico Human physiology
Biophysics
Human Physiology
Biological and Medical Physics, Biophysics
ISBN 3-319-30012-1
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto 1. Introduction -- 2. Basics: Theory -- 3. Basics: Methods -- 4. Automated Electrophysiology -- 5. Ion-selective Channels -- 6. Theory of Excitability -- 7. Carrier-mediated Transport -- 8. Example of Application of Electrophysiology -- Appendix -- Index.
Record Nr. UNINA-9910253887103321
Rettinger Jürgen  
Cham : , : Springer International Publishing : , : Imprint : Springer, , 2016
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Electrophysiology of Unconventional Channels and Pores / / edited by Anne H. Delcour
Electrophysiology of Unconventional Channels and Pores / / edited by Anne H. Delcour
Edizione [1st ed. 2015.]
Pubbl/distr/stampa Cham : , : Springer International Publishing : , : Imprint : Springer, , 2015
Descrizione fisica 1 online resource (387 p.)
Disciplina 612.813
Collana Springer Series in Biophysics
Soggetto topico Biological transport
Cell membranes
Proteins
Biophysics
Biology - Technique
Membrane Trafficking
Biological Techniques
ISBN 3-319-20149-2
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Part I Mitochondria -- Function and regulation of mitochondrial voltage-dependent anion channel -- Mitochondrial Protein Import Channels -- Electrophysiology of the mitochondrial apoptosis-induced channel, MAC -- Ceramide Channels -- Part II Bacteria and viruses -- Bacterial Porins -- Electrophysiology of Bacterial Translocons -- Viroporins -- Part III Toxins and antimicrobial peptides -- Pore-forming colicins- unusual ion channels -unusually regulated -- Anthrax Toxin Protective Antigen Forms an Unusual Channel that Unfolds and Translocates Proteins Across Membranes -- Staphylococcal b-barrel Pore-forming Toxins: Mushrooms That Breach the Greasy Barrier -- Properties of pores formed by cholesterol-dependent cytolysins and actinoporins -- Part IV Other unconventional channels -- Perforins -- Gap Junction Channels: The electrical conduit of the intercellular world -- Amyloid Peptide Channels -- From phototaxis to biomedical applications: Investigating the molecular mechanism of channelrhodopsins.
Record Nr. UNINA-9910298454803321
Cham : , : Springer International Publishing : , : Imprint : Springer, , 2015
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Humans and Electricity : Understanding Body Electricity and Applications / / by Kwang Suk Park
Humans and Electricity : Understanding Body Electricity and Applications / / by Kwang Suk Park
Autore Park Kwang Suk
Edizione [1st ed. 2023.]
Pubbl/distr/stampa Cham : , : Springer International Publishing : , : Imprint : Springer, , 2023
Descrizione fisica 1 online resource (412 pages)
Disciplina 610.28
612.813
Soggetto topico Biomedical engineering
Neurotechnology (Bioengineering)
Biophysics
Electrical engineering
Biomedical Engineering and Bioengineering
Neuroengineering
Electrical and Electronic Engineering
ISBN 9783031207846
9783031207839
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Introduction -- Part I: Electricity Within Humans -- Basic Unit of Human Electricity -- Electric Potential at Rest -- Electrical Potential at Action -- Receptor Potentials -- Conduction and Control of Electrical Potentials -- Part II: Electricity From Humans -- Electrical Signal From the Heart -- Electrical Signal From the Brain -- Electrical Signals From Other Muscles and Neurons -- Brain-Computer Interface -- Electrical Signals for Human Identification and Authentication -- Part III: Electricity Toward Humans -- Electrical Stimulation for the Heart -- Electrical Stimulation for the Brain -- Electrical Stimulation for the Hearing and Vision Disabled -- Electrical Stimulation of Nerves and Muscles -- Health-Related Effects of Electricity.
Record Nr. UNINA-9910686785103321
Park Kwang Suk  
Cham : , : Springer International Publishing : , : Imprint : Springer, , 2023
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Introduction to electrophysiological methods and instrumentation [[electronic resource] /] / Franklin Bretschneider, Jan R. de Weille
Introduction to electrophysiological methods and instrumentation [[electronic resource] /] / Franklin Bretschneider, Jan R. de Weille
Autore Bretschneider Franklin <1947->
Edizione [1st ed.]
Pubbl/distr/stampa Amsterdam, : Elsevier/ Academic Press, c2006
Descrizione fisica 1 online resource (267 p.)
Disciplina 612.01427
612.813
616.807547
Altri autori (Persone) De WeilleJan R
Soggetto topico Electrophysiology - Equipment and supplies
Electronics
Soggetto genere / forma Electronic books.
ISBN 1-280-64144-4
9786610641444
0-08-046224-3
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Front cover; Title page; Copyright page; Table of contents; Preface; 1 Electricity; Electrical Quantities; Electric Charge, Current and Potential; Resistance; Capacitance; Magnetism; Self-Inductance; Direct and Alternating Current; Frequency; Reactance; Current and Voltage Sources; Components, Unwanted Properties; Unwanted Properties, Impedance; Cables; Circuits, Schematics, Kirchoff's Laws; Composition of Similar Components: Attenuators; Practical Voltage Sources and Current Sources; Voltage and Current Measurement; Composition of Unequal Components: Filters; Integration and Differentiation
LC Filters2 Electronics; Active Elements; Vacuum Tubes and Semiconductors; Semiconductor Devices; Diodes and Transistors; Other Semiconductor Types; Amplifiers, Gain, Decibels and Saturation; Gain; Bandwidth; Input and Output Impedances; Maximum Signal Strength, Distortion; Noise, Hum Interference and Grounding; Differential Amplifiers, Block Diagrams; Operational Amplifiers, Feedback; Electronic Filters; Electrophysiological Preamplifiers; Amplifier for Extracellular Recording; Amplifier for Intracellular Recording; Patch-Clamp Amplifier; Two-Electrode Voltage-Clamp Amplifier
Measurement of Membrane Capacitance in Voltage-ClampRecording of Secretory Events; Power Supplies and Signal Sources; Electronic Voltmeters; Electrometers; The Cathode Ray Oscilloscope; LCD Screen Oscilloscopes; Important Properties of Oscilloscopes; Digital Electronics, Logic; A/D and D/A Conversions; Computers; 3 Electrochemistry; Introduction, Properties of Electrolytes; Electrolytes; The Metal/Electrolyte Interface; Capacitance of Polarized Electrodes; Faradaic Processes; Practical Electrodes; Electrochemical Cells, Measuring Electrodes; The Silver/Silver Chloride Electrode
Non-Faradaic ProcessesElectrokinetic Processes; Liquid Junction Potentials; Membrane Potentials; Derivation of the Equilibrium Potential; The Reversal Potential; Ion Selectivity; Electrodes Sensitive to pH and Other Ions; Electrodes: Practical Aspects; The Glass Micropipette; Patch Electrodes; The Semi-Permeable Patch; Ground Electrodes; Volume Conduction: Electric Fields in Electrolyte Solutions; Homogeneous Electric Field; Monopole Field; Dipole Field; 4 Signal Analysis; Introduction; Analysis of Analogue Potentials; Systems Analysis; Convolution; The Laplace Transform
The Fourier TransformOdd and Even Functions; Linearity; Analogue-to-Digital and Digital-to-Analogue Conversions; Signal Windowing; Digital Signal Processing; Signal Averaging; Autocorrelation; Crosscorrelation; The Discrete Fourier Transform; The Detection of Signals of Known Shape; Digital Filters; Fourier Filters and Non-Causal Filters; Non-Linear Systems Analysis; The Formal Method: Wiener Kernel Analysis; The Informal Method: Output Shape Analysis; The Importance of Non-Linearity; Analysis of Action Potential Signals; Population Spike and Gross Activity; Recording from the Skin Surface
The Electrocardiogram
Record Nr. UNINA-9910458608003321
Bretschneider Franklin <1947->  
Amsterdam, : Elsevier/ Academic Press, c2006
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Introduction to electrophysiological methods and instrumentation [[electronic resource] /] / Franklin Bretschneider, Jan R. de Weille
Introduction to electrophysiological methods and instrumentation [[electronic resource] /] / Franklin Bretschneider, Jan R. de Weille
Autore Bretschneider Franklin <1947->
Edizione [1st ed.]
Pubbl/distr/stampa Amsterdam, : Elsevier/ Academic Press, c2006
Descrizione fisica 1 online resource (267 p.)
Disciplina 612.01427
612.813
616.807547
Altri autori (Persone) De WeilleJan R
Soggetto topico Electrophysiology - Equipment and supplies
Electronics
ISBN 1-280-64144-4
9786610641444
0-08-046224-3
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Front cover; Title page; Copyright page; Table of contents; Preface; 1 Electricity; Electrical Quantities; Electric Charge, Current and Potential; Resistance; Capacitance; Magnetism; Self-Inductance; Direct and Alternating Current; Frequency; Reactance; Current and Voltage Sources; Components, Unwanted Properties; Unwanted Properties, Impedance; Cables; Circuits, Schematics, Kirchoff's Laws; Composition of Similar Components: Attenuators; Practical Voltage Sources and Current Sources; Voltage and Current Measurement; Composition of Unequal Components: Filters; Integration and Differentiation
LC Filters2 Electronics; Active Elements; Vacuum Tubes and Semiconductors; Semiconductor Devices; Diodes and Transistors; Other Semiconductor Types; Amplifiers, Gain, Decibels and Saturation; Gain; Bandwidth; Input and Output Impedances; Maximum Signal Strength, Distortion; Noise, Hum Interference and Grounding; Differential Amplifiers, Block Diagrams; Operational Amplifiers, Feedback; Electronic Filters; Electrophysiological Preamplifiers; Amplifier for Extracellular Recording; Amplifier for Intracellular Recording; Patch-Clamp Amplifier; Two-Electrode Voltage-Clamp Amplifier
Measurement of Membrane Capacitance in Voltage-ClampRecording of Secretory Events; Power Supplies and Signal Sources; Electronic Voltmeters; Electrometers; The Cathode Ray Oscilloscope; LCD Screen Oscilloscopes; Important Properties of Oscilloscopes; Digital Electronics, Logic; A/D and D/A Conversions; Computers; 3 Electrochemistry; Introduction, Properties of Electrolytes; Electrolytes; The Metal/Electrolyte Interface; Capacitance of Polarized Electrodes; Faradaic Processes; Practical Electrodes; Electrochemical Cells, Measuring Electrodes; The Silver/Silver Chloride Electrode
Non-Faradaic ProcessesElectrokinetic Processes; Liquid Junction Potentials; Membrane Potentials; Derivation of the Equilibrium Potential; The Reversal Potential; Ion Selectivity; Electrodes Sensitive to pH and Other Ions; Electrodes: Practical Aspects; The Glass Micropipette; Patch Electrodes; The Semi-Permeable Patch; Ground Electrodes; Volume Conduction: Electric Fields in Electrolyte Solutions; Homogeneous Electric Field; Monopole Field; Dipole Field; 4 Signal Analysis; Introduction; Analysis of Analogue Potentials; Systems Analysis; Convolution; The Laplace Transform
The Fourier TransformOdd and Even Functions; Linearity; Analogue-to-Digital and Digital-to-Analogue Conversions; Signal Windowing; Digital Signal Processing; Signal Averaging; Autocorrelation; Crosscorrelation; The Discrete Fourier Transform; The Detection of Signals of Known Shape; Digital Filters; Fourier Filters and Non-Causal Filters; Non-Linear Systems Analysis; The Formal Method: Wiener Kernel Analysis; The Informal Method: Output Shape Analysis; The Importance of Non-Linearity; Analysis of Action Potential Signals; Population Spike and Gross Activity; Recording from the Skin Surface
The Electrocardiogram
Record Nr. UNINA-9910784652103321
Bretschneider Franklin <1947->  
Amsterdam, : Elsevier/ Academic Press, c2006
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Introduction to electrophysiological methods and instrumentation / / Franklin Bretschneider, Jan R. de Weille
Introduction to electrophysiological methods and instrumentation / / Franklin Bretschneider, Jan R. de Weille
Autore Bretschneider Franklin <1947->
Edizione [1st ed.]
Pubbl/distr/stampa Amsterdam, : Elsevier/ Academic Press, c2006
Descrizione fisica 1 online resource (267 p.)
Disciplina 612.01427
612.813
616.807547
Altri autori (Persone) De WeilleJan R
Soggetto topico Electrophysiology - Equipment and supplies
Electronics
ISBN 1-280-64144-4
9786610641444
0-08-046224-3
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Front cover; Title page; Copyright page; Table of contents; Preface; 1 Electricity; Electrical Quantities; Electric Charge, Current and Potential; Resistance; Capacitance; Magnetism; Self-Inductance; Direct and Alternating Current; Frequency; Reactance; Current and Voltage Sources; Components, Unwanted Properties; Unwanted Properties, Impedance; Cables; Circuits, Schematics, Kirchoff's Laws; Composition of Similar Components: Attenuators; Practical Voltage Sources and Current Sources; Voltage and Current Measurement; Composition of Unequal Components: Filters; Integration and Differentiation
LC Filters2 Electronics; Active Elements; Vacuum Tubes and Semiconductors; Semiconductor Devices; Diodes and Transistors; Other Semiconductor Types; Amplifiers, Gain, Decibels and Saturation; Gain; Bandwidth; Input and Output Impedances; Maximum Signal Strength, Distortion; Noise, Hum Interference and Grounding; Differential Amplifiers, Block Diagrams; Operational Amplifiers, Feedback; Electronic Filters; Electrophysiological Preamplifiers; Amplifier for Extracellular Recording; Amplifier for Intracellular Recording; Patch-Clamp Amplifier; Two-Electrode Voltage-Clamp Amplifier
Measurement of Membrane Capacitance in Voltage-ClampRecording of Secretory Events; Power Supplies and Signal Sources; Electronic Voltmeters; Electrometers; The Cathode Ray Oscilloscope; LCD Screen Oscilloscopes; Important Properties of Oscilloscopes; Digital Electronics, Logic; A/D and D/A Conversions; Computers; 3 Electrochemistry; Introduction, Properties of Electrolytes; Electrolytes; The Metal/Electrolyte Interface; Capacitance of Polarized Electrodes; Faradaic Processes; Practical Electrodes; Electrochemical Cells, Measuring Electrodes; The Silver/Silver Chloride Electrode
Non-Faradaic ProcessesElectrokinetic Processes; Liquid Junction Potentials; Membrane Potentials; Derivation of the Equilibrium Potential; The Reversal Potential; Ion Selectivity; Electrodes Sensitive to pH and Other Ions; Electrodes: Practical Aspects; The Glass Micropipette; Patch Electrodes; The Semi-Permeable Patch; Ground Electrodes; Volume Conduction: Electric Fields in Electrolyte Solutions; Homogeneous Electric Field; Monopole Field; Dipole Field; 4 Signal Analysis; Introduction; Analysis of Analogue Potentials; Systems Analysis; Convolution; The Laplace Transform
The Fourier TransformOdd and Even Functions; Linearity; Analogue-to-Digital and Digital-to-Analogue Conversions; Signal Windowing; Digital Signal Processing; Signal Averaging; Autocorrelation; Crosscorrelation; The Discrete Fourier Transform; The Detection of Signals of Known Shape; Digital Filters; Fourier Filters and Non-Causal Filters; Non-Linear Systems Analysis; The Formal Method: Wiener Kernel Analysis; The Informal Method: Output Shape Analysis; The Importance of Non-Linearity; Analysis of Action Potential Signals; Population Spike and Gross Activity; Recording from the Skin Surface
The Electrocardiogram
Altri titoli varianti Electrophysiological methods and instrumentation
Record Nr. UNINA-9910960943403321
Bretschneider Franklin <1947->  
Amsterdam, : Elsevier/ Academic Press, c2006
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Microbial electrochemical technology : sustainable platform for fuels, chemicals and remediation / / edited by S. Venkata Mohan, Sunita Varjani, Ashok Pandey
Microbial electrochemical technology : sustainable platform for fuels, chemicals and remediation / / edited by S. Venkata Mohan, Sunita Varjani, Ashok Pandey
Pubbl/distr/stampa Amsterdam, Netherlands : , : Elsevier, , [2019]
Descrizione fisica 1 online resource (1,148 pages)
Disciplina 612.813
Collana Biomass, Biofuels and Biochemicals
Soggetto topico Electrophysiology
Microorganisms
Bioelectrochemistry
ISBN 0-444-64053-3
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9910583304503321
Amsterdam, Netherlands : , : Elsevier, , [2019]
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Modeling of electrophysiology and tension development in the human heart / / Gunnar Seemann
Modeling of electrophysiology and tension development in the human heart / / Gunnar Seemann
Autore Seemann Gunnar
Pubbl/distr/stampa [Place of publication not identified] : , : KIT Scientific Publishing, , 2005
Descrizione fisica 1 online resource
Disciplina 612.813
Soggetto topico Electrophysiology
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9910688438103321
Seemann Gunnar  
[Place of publication not identified] : , : KIT Scientific Publishing, , 2005
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui