Bioelectromagnetism: principles and applications of bioelectric and biomagnetic fields
Gespeichert in:
Hauptverfasser: | , |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
New York [u.a]
Oxford Univ. Press
1995
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Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XXII, 482 S. graph. Darst. |
ISBN: | 0195058232 |
Internformat
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100 | 1 | |a Malmivuo, Jaakko |e Verfasser |4 aut | |
245 | 1 | 0 | |a Bioelectromagnetism |b principles and applications of bioelectric and biomagnetic fields |c Jaakko Malmivuo ; Robert Plonsey |
264 | 1 | |a New York [u.a] |b Oxford Univ. Press |c 1995 | |
300 | |a XXII, 482 S. |b graph. Darst. | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
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650 | 7 | |a Eletrofisiologia |2 larpcal | |
650 | 7 | |a biologie |2 inriac | |
650 | 7 | |a cardiologie |2 inriac | |
650 | 2 | |a Électrophysiologie | |
650 | 7 | |a électromagnétisme |2 inriac | |
650 | 7 | |a électrophysiologie |2 inriac | |
650 | 4 | |a Biomagnetism | |
650 | 4 | |a Electromagnetic Phenomena | |
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adam_text | CONTENTS SYMBOLS AND UNITS, XV ABBREIATIONS, XXI PHYSLCAL CONSTANTS,
DII 1. INTRODUCTION, 3 1.1 THE CONCEPT OF BIOELECTROMAGNETISM. 3 1.2
SUBDIVISIONS OF BIOELECTROMAGNETISM, 4 1.3 IMPORTANCE OF
BIOELECTROMAGNETISM, 10 1.4 SHORT HISTORY OF BIOELECTROMAGNETISM, 1 1
1.5 NOBEL PRIZES IN BIOELECTROMAGNETISM. 25 I ANATOMICAL AND
PHYSIOLOGICAL BASIS OF BIOELECTROMAGNETISM 2. NERVE AND MUSCLE CELLS, 33
2.1 INTRODUCTION, 33 2.2 NERVE CELL, 33 2.3 MUSCLE CELL. 36 2.4
BIOELECTRIC FUNCTION OF THE NERVE CELL, 37 2.5 EXCITABILITY OF NERVE
CELL. 38 2.6 THE GENERATION OF THE ACTIVATION. 39 2.7 CONCEPTS
ASSOCIATED WITH THE ACTIVATION PROCESS, 39 2.8 CONDUCTION OF THE NERVE
IMPULSE IN AN AXON, 42 3. SUBTHRESHOLD MEMBRANE PHENOMENA, 44 3.1
INTRODUCTION. 44 3.2 NEMST EQUATION, 45 3.3 ORIGIN OF THE RESTING
VOLTAGE, 50 3.4 MEMBRANE WITH MULTI-ION PENNEABILITY, 51 3.5 ION FLOW
THROUGH THE MEMBRANE, 54 3.6 CABLE EQUATION OF THE AXON. 56 3.7
STRENGTH-DURATION RELATION. 62 4. ACTIVE BEHAVIOR OF THE MEMBRANE, 66
4.1 INTRODUCTION, 66 4.2 VOLTAGE CLAMP METHOD, 67 4.3 EXAMPLES OF
RESULTS OBTAINED WIUI UIE VOLTAGE CLAMP METHOD, 70 4.4 HODGKIN-HUXLEY
MEMBRANE MODEL. 74 4.5 PATCH CLAMP METHOD. 93 4.6 MODEM UNDERSTANDING OF
THE IONIC CHANNELS, 97 5. SYNAPSE, RECEPTOR CELLS, AND BRAIN, 106 5.1
INTRODUCTION, 106 5.2 SYNAPSES. 107 5.3 RECEPTOR CELLS, 11 1 5.4 ANATOMY
AND PHYSIOLOGY OF UIE BRAIN, 113 5.5 CRANIAL NERVES, 117 XII CONTENTS 6.
THE HEART, 119 6.1 ANATOMY AND PHYSIOLOGY OF THE HEART, 119 6.2 ELECTRIC
ACTIVATION OF THE HEART, 121 6.3 THE GENESIS OF THE ELECTROCARDIOGRAM.
124 I1 BIOELECTRIC SOURCES AND CONDUCTORS AND THEIR MODELING 7. VOLUME
SOURCE AND VOLUME CONDUCTOR, 133 7.1 CONCEPTS OF VOLUME SOURCE AND
VOLUME CONDUCTOR, 133 7.2 BIOELECTRIC SOURCE AND ITS ELECTRIC FIELD, 134
7.3 THE CONCEPT OF MODELING, 136 7.4 THE HUMAN BODY AS A VOLUME
CONDUCTOR, 140 7.5 FORWARD AND INVERSE PROBLEMS. 143 8. SOURCE-FIELD
MODELS, 148 8.1 INTRODUCTION, 148 8.2 SOURCE MODELS. 148 8.3 EQUIVALENT
VOLUME SOURCE DENSITY, 152 8.4 RIGOROUS FORMULATION, 155 8.5
MATHERNATICAL BASIS FOR MACROSCOPIC VOLUME SOURCE DENSITY (FLOW SOURCE
DENSITY) AND IMPRESSED CURRENT DENSITY, 156 8.6 SUMMARY OF THE
SOURCE-FIELD MODELS, 158 9. BIDOMAIN MODEL OF MULTICELLULAR VOLUME
CONDUCTORS, 159 9.1 INTRODUCTION, 159 9.2 CARDIAC MUSCLE CONSIDERED AS A
CONTINUUM. 159 9.3 MATHEMATICAL DESCRIPTION OF THE BIDORNAIN AND
ANISOTROPY. 161 9.4 ONE-DIMENSIONAL CABLE: A ONE- DIMENSIONAL BIDOMAIN,
162 9.5 SOLUTION FOR POINT-CURRENT SOURCE IN A THREE-DIMENSIONAL,
ISOTROPIC BIDOMAIN. 164 9.6 FOUR-ELECTRODE IMPEDANCE METHOD APPLIED TO
AN ISOTROPIC BIDOMAIN. 167 10. ELECTRONIC NEURON MODELS, 169 10.1
INTRODUCTION. 169 10.2 CLASSIFICATION OF NEURON MODELS. 171 10.3 MODELS
DESCRIBING THE FUNCTION OF THE MEMBRANE. 171 10.4 MODELS DESCRIBING THE
CE11 AS AN INDEPENDENT UNIT, 174 10.5 A MODEL DESCRIBING THE PROPAGATION
OF ACTION PULSE IN AXON, 179 10.6 INTEGRATED CIRCUIT REALIZATIONS, 180
111 THEORETICAL METHODS IN BIOELECTROMAGNETISM 11. THEORETICAL METHODS
FOR ANALYZING VOLUME SOURCES AND VOLURNE CONDUCTORS, 185 1 1.1
INTRODUCTION, 185 1 1.2 SOLID-ANGLE THEOREM. 185 1 1.3 MILLER-GESELOWITZ
MODEL, 188 1 1.4 LEAD VECTOR, 190 1 1.5 IMAGE SURFACE. 195 1 1.6 LEAD
FIELD, 20 1 1 1.7 GABOR-NELSON THEOREM, 22 1 1 1.8 SUMMARY OF THE
THEORETICAL METHODS FOR ANALYZING VOLUME SOURCES AND VOLUME CONDUCTORS.
224 12. THEORY OF BIOMAGNETIC MEASUREMENTS, 227 12.1 BIOMAGNETIC FIELD.
227 12.2 NATURE OF THE BIOMAGNETIC SOURCES. 228 12.3 RECIPROCITY THEOREM
FOR MAGNETIC FIELDS. 230 12.4 THE MAGNETIC DIPOLE MOMENT OF A VOLUME
SOURCE. 235 12.5 IDEAL LEAD FIELD OF A LEAD DETECTING THE EQUIVALENT
MAGNETIC DIPOLE OF A VOLURNE SOURCE. 236 12.6 SYNTHESIZATION OF THE
IDEAL LEAD FIELD FOR THE DETECTION OF THE MAGNETIC DIPOLE MOMENT OF A
VOLUME SWRCE. 237 12.7 COMPARISON OF THE LEAD FIELDS OF IDEAL LEADS FOR
DETECTING THE ELECTRIC AND MAGNETIC DIPOLE MOMENTS OF A VOLUME SOURCE.
240 12.8 THE RADIAL AND TANGENTIAL SENSITIVITIES OF THE LEAD SYSTEMS
DETECTING THE ELECTRIC AND MAGNETIC DIPOLE MOMENTS OF A VOLUME SOURCE.
242 12.9 SPECIAL PROPERTIES OF THE MAGNETIC LEAD FIELDS. 243 12.10 THE
INDEPENDENCE OF BIOELECTRIC AND BIORNAGNETIC FIELDS AND MEASUREMENTS.
244 12.1 1 SENSITIVITY DISTRIBUTION OF BASIC MAGNETIC LEADS. 247 IV
ELECTRIC AND MAGNETIC MEASUREMENT OF THE ELECTRIC ACTIVITY OF NEURAL
TISSUE 13. ELECTROENCEPHALOGRAPHY, 257 1 3.1 INTRODUCTION, 257 13.2 THE
BRAIN AS A BIOELECTRIC GENERATOR. 257 13.3 EEG LEAD SYSTEMS, 258 13.4
SENSITIVITY DISTRIBUTION OF EEG ELECTRODES, 260 . . . TENTS XLLL 13.5
THE BEHAVIOR OF THE EEG SIGNAL, 263 13.6 THE BASIC PRINCIPLES OF EEG
DIAGNOSIS, 264 14. MAGNETOENCEPHALOGRAPHY, 265 14.1 THE BRAIN AS A
BIOMAGNETIC GENERATOR, 265 14.2 SENSITIVITY DISTRIBUTION OF MEG LEADS.
266 14.3 COMPARISON OF THE EEG AND MEG HALF- SENSITIVITY VOLUMES. 270
14.4 SUMMARY, 272 V ELECTRIC AND MAGNETIC MEASUREMENT OF THE ELECTRIC
ACTIVITY OF THE HEART 15. 12-LEAD ECG SYSTEM, 277 15.1 LIMB LEADS. 277
15.2 ECG SIGNAL, 278 15.3 WILSON CENTRAL TERMINAL, 284 15.4 GOLDBERGER
AUGMENTED LEADS, 285 15.5 PRECORDIAL LEADS, 286 15.6 MODIFICATIONS OF
THE 12-LEAD SYSTEM, 286 15.7 THE INFORMATION CONTENT OF THE 12-LEAD
SYSTEM, 288 16. VECTORCARDIOGRAPHIC LEAD SYSTEMS, 290 16.1 INTRODUCTION.
290 16.2 UNCORRECTED VECTORCARDIOGRAPHIC LEAD SYSTEMS, 292 16.3
CORRECTED VECTORCARDIOGRAPHIC LEAD SYSTEMS, 296 16.4 DISCUSSION OF
VECTORCARDIOGRAPHIC LEADS, 303 17. OTHER ECG LEAD SYSTEMS, 307 17.1
MOVING DIPOLE, 307 17.2 MULTIPLE DIPOLES, 307 17.3 MULTIPOLE. 308 17.4
SUMMARY OF THE ECG LEAD SYSTEMS, 309 18. DISTORTION FACTORS IN THE ECG,
313 18.1 INTRODUCTION. 3 13 18.2 EFFECT OF THE INHOMOGENEITY OF THE
THORAX, 3 13 18.3 BRODY EFFECT, 314 18.4 EFFECT OF RESPIRATION, 3 16
18.5 EFFECT OF ELECTRODE LOCATION. 3 18 19. THE BASIS OF ECG DIAGNOSIS,
320 19.1 PRINCIPLE OF THE ECG DIAGNOSIS, 320 19.2 APPLICATION AREAS OF
ECG DIAGNOSIS. 321 19.3 DETERMINATION OF THE ELECTRIC AXIS OF THE HEART,
322 19.4 CARDIAC RHYTHM DIAGNOSIS, 323 19.5 DISORDERS IN THE ACTIVATION
SEQUENCE, 328 19.6 INCREASE IN WALL THICKNESS OR SIZE OF ATRIA AND
VENTRICLES, 332 19.7 MYOCARDIAL ISCHEMIA AND INFARCTION, 334 20.
MAGNETOCARDIOGRAPHY, 336 20.1 INTRODUCTION, 336 20.2 BASIC METHODS IN
MAGNETOCARDIOGRAPHY, 336 20.3 METHODS FOR DETECTING THE MAGNETIC HEART
VECTOR, 339 20.4 SENSITIVITY DISTRIBUTION OF BASIC MCG LEADS, 346 20.5
GENERATION OF THE MCG SIGNAL FROM THE ELECTRIC ACTIVATION OF THE HEART,
348 20.6 ECG-MCG RELATIONSHIP, 353 20.7 CLINICAL APPLICATION OF
MAGNETOCARDIOGRAPHY, 354 V1 ELECTRIC AND MAGNETIC STIMULATION OF NEURAL
TISSUE 21. FUNCTIONAL ELECTRIC STIMULATION, 363 2 1.1 INTRODUCTION, 363
21.2 SIMULATION OF EXCITATION OF A MYELINATED FIBER. 363 21.3
STIMULATION OF AN UNMYELINATED AXON, 368 21.4 MUSCLE RECMITMENT, 370 2
1.5 ELECTRODE-TISSUE INTERFACE, 372 2 1.6 ELECTRODE MATERIALS AND
SHAPES, 373 22. MAGNETIC STIMULATION OF NEURAL TISSUE, 375 22.1
INTRODUCTION, 375 22.2 THE DESIGN OF STIMULATOR COILS, 376 22.3 CURRENT
DISTRIBUTION IN MAGNETIC STIMULATION, 377 22.4 STIMULUS PULSE, 379 22.5
ACTIVATION OF EXCITABLE TISSUE BY TIME- VARYING MAGNETIC FIELDS, 379
22.6 APPLICATION AREAS OF MAGNETIC STIMULATION OF NEURAL TISSUE, 380 V11
ELECTRIC AND MAGNETIC STIMULATION OF THE HEART 23. CARDIAC PACING, 385
23.1 STIMULATION OF CARDIAC MUSCLE, 385 23.2 INDICATIONS FOR CARDIAC
PACING, 385 23.3 CARDIAC PACEMAKER, 386 23.4 SITE OF STIMULATION, 389
23.5 EXCITATION PARAMETERS AND CONFIGURATION, 389 XIV CONTENTS 23.6
IMPLANTABLE ENERGY SOURCES, 391 28.1 INTRODUCTION. 437 23.7 ELECTRODES.
391 28.2 ANATOMY AND PHYSIOLOGY OF THE EYE AND 23.8 MAGNETIC STIMULATION
OF CDAC ITS NEURAI PATHWAYS. 437 MUSCLE. 392 28.3 ELECM-OCULOGRAM, 440
28.4 ELECIRORETINOGRAM. 442 24. CARDIAC DEFIBRILLATION, 393 24.1
INTRODUCTION, 393 24.2 MECHANISMS OF FIBRILLATION. 393 24.3 THEONES OF
UEEFIBRILLATION. 396 24.4 UEEFIBRILLATOR DEVICES, 400 APPENDIXES A.
CONSISTENT SYSTEM OF RECTANGULAR V111 MEASUREMENT OF THE INTRINSIC
ELECTRIC PROPERTIES OF BIOLOGICAL TISSUES 25. IMPEDANCE PLETHYSMOGRAPHY,
405 25.1 INTRODUCTION, 405 25.2 BIOELECIRIC BASIS OF IMPEDANCE
PLETHYSMOGRAPHY. 405 25.3 IMPEDANCE CARDIOGRAPHY. 408 25.4 ORIGIN OF
IMPEDANCE SIGNAL IN IMPEDANCE CDOGRAPHY. 412 25.5 OTHER APPLICAIIONS OF
IMPEDANCE PLETHYSMOGRAPHY. 41 6 25.6 DISCUSSION. 417 26. IMPECLANCE
TOMOGRAPHY, 420 26.1 INTRODUCTION. 420 26.2 IMPEDANCE MEASUREMENT
METHODS. 421 26.3 IMAGE RECONSTRUCTION, 426 27. THE ELECTRODERMAL
RESPONSE, 428 27.1 INTRODUCTION, 428 27.2 PHYSIOLOGY OF THE SKIN, 428
27.3 ELECTRODERMAL MEASURES, 430 27.4 MEASUREMENT SITES AND
CHARACTERISTIC SIGNALS, 430 27.5 THEORY OF EDR, 432 27.6 APPLICATIONS,
434 IX OTHER BIOELECTROMAGNETIC PHENOMENA 28. THE ELECTRIC SIGNALS
ORIGINATING IN THE EYE, 437 AND SPHERICAL COORDINATES FOR
ELECTROCARDIOLOGY AND MAGNETOCARDIOLOGY, 449 A.L INTRODUCTION, 449 A.2
REQUIREMENTS FOR A CONSISTENT SYSTEM OF COORDINATES. 450 A.3 ALIGNMENT
OF THE COORDINATE SYSTEM WITH THE BODY. 450 A.4 CONSISTENT SPHENCAL
HRDINATE SYSTEMS. 45 1 A.5 COMPARISON OF THE CONSISTENT COORDINATE
SYSTEM AND THE AHA-SYSTEM. 452 A.6 RECTANGULAR ABC COORDINATES. 453 B.
APPLICATION OF MAXWELL S EQUATIONS IN BIOELECTROMAGNETISM, 455 B.L
INTRODUCTION, 455 B.2 MAXWELL S EQUATIONS UNDER FREE SPACE CONDITIONS.
455 B.3 MAXWELL S EQUATIONS FOR FINITE CONDUCTING MEDIA, 456 B.4
SIMPLIFICATION OF MAXWELL S EQUATIONS IN PHYSIOLOGICAI REPARATIONS, 457
B.5 MAGNETIC VECTOR POTENTIAL AND ELECTRIC SCALAR POTENTIAL IN THE
REGION OUTSIDE THE SOURCES. 458 B.6 STIMULATION WITH ELECTRIC AND
MAGNETIC FIELDS, 460 B.7 SIMPLIFIED MAXWELL S EQUATIONS IN PHYSIOLOGICAL
REPARATIONS IN THE REGION OUTSIDE THE SOURCES. 461 NAME INDEX, 463
SUBJECT INDEX, 471
|
any_adam_object | 1 |
author | Malmivuo, Jaakko Plonsey, Robert |
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callnumber-first | Q - Science |
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dewey-full | 612/.01442 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 612 - Human physiology |
dewey-raw | 612/.01442 |
dewey-search | 612/.01442 |
dewey-sort | 3612 41442 |
dewey-tens | 610 - Medicine and health |
discipline | Biologie Medizin |
format | Book |
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id | DE-604.BV012345898 |
illustrated | Illustrated |
indexdate | 2024-08-01T11:27:01Z |
institution | BVB |
isbn | 0195058232 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-008370866 |
oclc_num | 29478519 |
open_access_boolean | |
owner | DE-634 DE-83 DE-862 DE-BY-FWS |
owner_facet | DE-634 DE-83 DE-862 DE-BY-FWS |
physical | XXII, 482 S. graph. Darst. |
publishDate | 1995 |
publishDateSearch | 1995 |
publishDateSort | 1995 |
publisher | Oxford Univ. Press |
record_format | marc |
spellingShingle | Malmivuo, Jaakko Plonsey, Robert Bioelectromagnetism principles and applications of bioelectric and biomagnetic fields Bio-elektriciteit gtt Biomagnetisme gtt Elektro-encefalografie gtt Eletrofisiologia larpcal biologie inriac cardiologie inriac Électrophysiologie électromagnétisme inriac électrophysiologie inriac Biomagnetism Electromagnetic Phenomena Electrophysiology Bioelektrizität (DE-588)4006787-7 gnd Biomagnetismus (DE-588)4006876-6 gnd |
subject_GND | (DE-588)4006787-7 (DE-588)4006876-6 |
title | Bioelectromagnetism principles and applications of bioelectric and biomagnetic fields |
title_auth | Bioelectromagnetism principles and applications of bioelectric and biomagnetic fields |
title_exact_search | Bioelectromagnetism principles and applications of bioelectric and biomagnetic fields |
title_full | Bioelectromagnetism principles and applications of bioelectric and biomagnetic fields Jaakko Malmivuo ; Robert Plonsey |
title_fullStr | Bioelectromagnetism principles and applications of bioelectric and biomagnetic fields Jaakko Malmivuo ; Robert Plonsey |
title_full_unstemmed | Bioelectromagnetism principles and applications of bioelectric and biomagnetic fields Jaakko Malmivuo ; Robert Plonsey |
title_short | Bioelectromagnetism |
title_sort | bioelectromagnetism principles and applications of bioelectric and biomagnetic fields |
title_sub | principles and applications of bioelectric and biomagnetic fields |
topic | Bio-elektriciteit gtt Biomagnetisme gtt Elektro-encefalografie gtt Eletrofisiologia larpcal biologie inriac cardiologie inriac Électrophysiologie électromagnétisme inriac électrophysiologie inriac Biomagnetism Electromagnetic Phenomena Electrophysiology Bioelektrizität (DE-588)4006787-7 gnd Biomagnetismus (DE-588)4006876-6 gnd |
topic_facet | Bio-elektriciteit Biomagnetisme Elektro-encefalografie Eletrofisiologia biologie cardiologie Électrophysiologie électromagnétisme électrophysiologie Biomagnetism Electromagnetic Phenomena Electrophysiology Bioelektrizität Biomagnetismus |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=008370866&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT malmivuojaakko bioelectromagnetismprinciplesandapplicationsofbioelectricandbiomagneticfields AT plonseyrobert bioelectromagnetismprinciplesandapplicationsofbioelectricandbiomagneticfields |
Inhaltsverzeichnis
THWS Schweinfurt Zentralbibliothek Lesesaal
Signatur: |
2000 WD 2600 M256 |
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Exemplar 1 | ausleihbar Verfügbar Bestellen |