Energy metabolism in animals and man:
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Cambridge [u.a.]
Cambridge Univ. Press
1989
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Ausgabe: | 1. publ. |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | Literaturverz. S. [298] - 329 |
Beschreibung: | XIII, 336 S. graph. Darst. |
ISBN: | 0521360943 0521369312 |
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Datensatz im Suchindex
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adam_text | IMAGE 1
ENERGY METABOLISM IN
ANIMALS AND MAN
KENNETH BLAXTER KT FRS FORMER DIRECTOR, ROWETT RESEARCH INSTITUTE,,
ABERDEEN, SCOTLAND
THE RI$HL OF THE UNIVERSITY OF CAMBRIDGE TO PRINT AND SETT ALL MANNER OF
BOOKS
WAS GRANTED BY HENRY VIII IN 1514. THE UNIVERSITY HAS PRINTED AND
PUBLISHED CONTINUOUSLY
SINALITI.
CAMBRIDGE UNIVERSITY PRESS
CAMBRIDGE NEW YORK NEW ROCHELLE MELBOURNE SYDNEY
IMAGE 2
CONTENTS
1
1.1 1.2 1.3
1.3.1 1.4
ACKNOWLEDGEMENTS INTRODUCTION THE BEGINNINGS ANIMALS AND MAN UNITS AND
SYMBOLS
CALORIES AND JOULES PRESENTATION
XLL 1
1 3
3
4
5
2 GENERAL PRINCIPLES 6
2.1 BIOENERGETICS AND THERMODYNAMICS 6
2.1.1 .THE DISCOVERY OF THE FIRST LAW OF THERMODYNAMICS 6
2.1.2 HEAT, WORK AND ENTHALPY 7
2.1.3 ENTHALPIES OF REACTION 9
2.1.4 ENTHALPY OF COMBUSTION AND BOMB CALORIMETRY 10
2.1.5 EFFECTS OF TEMPERATURE ON THE ENTHALPY OF REACTION 11
2.1.6 PROTEIN OXIDATION 12
2.2 ESTIMATING HEAT FROM THE GASEOUS EXCHANGE 13
2.2.1 SYNTHESIS OF FAT FROM CARBOHYDRATE IS
2.2.2 ESTIMATION OF THE HEAT OF REACTION FROM OXYGEN CONSUMPTION ALONE
16 2.2.3 ESTIMATION OF THE HEAT OF REACTION FROM CARBON DIOXIDE
PRODUCTION ALONE 17
2.3 NOMENCLATURE IN BIOENERGETICS AND THERMOCHEMISTRY 18
2.4 THE FORMAL FRAMEWORK FOR THE STUDY OF THE ENERGY EXCHANGES OF
ANIMALS AND MAN 19
3 COMPONENTS OF THE ENERGY BUDGET: METABOLISABLE ENERGY 23 3.1 ENERGY
BUDGET AND ENERGY BALANCE 23
3.2 METHODS OF DETERMINING ENERGY BUDGETS 25
IMAGE 3
VI CONTENTS
3.3 MEASUREMENT OF METABOLISABIE ENERGY INTAKE IN THE LABORATORY 25 3.4
ESTIMATION OF METABOLISABLE ENERGY IN FREE-RANGING ANIMALS 27 3.5 THE
METABOLISABLE ENERGY INTAKE OF MAN 27
5.5.7 METABOLISABLE ENERGY FACTORS FOR HUMAN DIETS 29
3.5.2 THE UNIQUENESS OF THE METABOLISABLE ENERGY FACTORS 31
3.6 METABOLISABILITY 33
3.6.1 THE RATIO OF ENERGY TO NITROGEN IN URINE 34
3.6.2 METHANE AND HYDROGEN PRODUCTION 35
3.6.3 FERMENTATION HEAT 36
4 COMPONENTS OF THE ENERGY BUDGET: HEAT PRODUCTION 38
4.1 DIRECT CALORIMETRY 38
4.1.1 HEAT STORAGE IN THE BODY 39
4.1.2 THE SPECIFIC HEAT OF THE BODY 40
4.1.3 THE AVERAGE TEMPERATURE OF THE BODY 40
4.1.4 HEAT OF WARMING FOOD AND WATER AND COOLING OF EXCRETA 41
4.2 INDIRECT CALORIMETRY 41
4.2.1 THE WHOLE BODY AND PULMONARY GAS EXCHANGE 42
4.2.2 ISOTOPIC METHODS OF ESTIMATING CARBON DIOXIDE PRODUCTION 43 4.3
PULSE RATE AND OXYGEN CONSUMPTION 45
4.4 VENTILATION RATE AND HEAT PRODUCTION 46
4.5 INSENSIBLE LOSS OF WEIGHT AND HEAT PRODUCTION 47
5 COMPONENTS OF DIE ENERGY BUDGET: ENERGY RETENTION 49
5.1 COMPARATIVE SLAUGHTER METHODS 49
5.1.1 INDIRECT METHODS BASED ON CHANGES IN BODY COMPOSITION 50 5.1.2 THE
COMPOSITION OF THE FAT-FREE BODY 52
5.7.5 ACCEPTED METHODS FOR ESTIMATING BODY COMPOSITION 54
5.1.4 OTHER TECHNIQUES FOR DETERMINING BODY COMPOSITION 56
5.2 METABOLIC BALANCE METHODS OF ESTIMATING ENERGY RETENTION 57 5.3
CHANGE IN BODY WEIGHT AS AN INDEX OF ENERGY RETENTION 59
5.4 THE CONSERVATION OF MASS AND ENERGY IN ANIMALS 60
5.4.1 RUBNER S AND OTHER DEMONSTRATIONS OF ENERGY CONSERVATION 61 5.4.2
VALIDATION OF INDIRECT METHODS 63
6 INTERMEDIARY METABOLISM AND ENERGY EXCHANGES 66
6.1 THE SECOND LAW OF THERMODYNAMICS 66
6.1.1 FREE ENERGY OF FORMATION AND ENTROPY OF FORMATION 67
6.1.2 FREE ENERGY AND CHEMICAL EQUILIBRIA 68
6.1.3 FREE ENERGY CHANGES IN THE DISSIMILATION OF CARBOHYDRATE 69 6.1.4
OXIDATIVE PHOSPHORYLATION 72
IMAGE 4
CONTENTS * V II
6.7.5 THE HIGH ENERGY PHOSPHATE BOND CONCEPT 6.2 THE YIELD OF ATP FROM
OXIDATIONS 6.2.1 THE OXIDATION OF LONG-CHAIN FATTY ACIDS 6.2.2 THE
OXIDATION OFAMINO ACIDS
6.3 SYNTHESIS OF BODY CONSTITUENTS 6.5.7 GLYCOGEN SYNTHESIS 6.3.2
SYNTHESIS OF FAT FROM CARBOHYDRATE 6.3.3 SYNTHESIS OF PROTEIN 6.3.4
GLUCONEOGENESIS
6.4 THE TURNOVER OF BODY CONSTITUENTS 6.5 SUBSTRATE CYCLES
7 FNPNNR PYPHFLNOPS HV RNDINRINN CNNVPRTINN CNNDNPFINN AND 1 U W I GJ
CAWIILLLGCJ VJ LUIUTTUULLY U I U T C V I I U U) UIUIIULUUII AUU
EVAPORATION
7.1 RADIATION 7.7.7 INFRA-RED RADIATION 7.1.2 RADIATION OUT-OF-DOORS A.
THE AMOUNT OF SOLAR RADIATION
B. THE SOLAR RADIATION INCIDENT ON ANIMALS 7.1.3 INCOMING LONG WAVE
RADIATION 7.1.4 FIRST POWER AND RADIANT HEAT TRANSFER COEFFICIENTS 7.1.5
RADIATION BALANCES OF ANIMALS
7.2 CONVECTION 7.2.7 THE PHYSICS OF CONVECTIVE HEAT TRANSFER A. FORCED
CONVECTION B. NATURAL OR FREE CONVECTION
7.3 CONDUCTION 7.5.7 THE NON-STEADY STATE PROBLEM 7.3.2 EQUIVALENT
ENVIRONMENTS 1A VAPORISATION OF WATER 7..7 THE PHYSICS OF HEAT LOSS BY
VAPORISING WATER
A. THE HEAT EQUIVALENT OF VAPORISED WATER 7.4.2 HEAT LOSS IN RESPIRATION
A. PANTING 7.4.3 INSENSIBLE PERSPIRATION 7.4.4 SWEATING T
7.4.5 SALIVATION AND WALLOWING
8 THE MINIMAL METABOLISM 8.1 TERMINOLOGY 8.1.1 BASAL METABOLISM
73 74 75 76 78 78
79 80 82 83
84
86 87 87 91 92 94
95 97 99 99 100 101
104 106 107 109
110 111 112
114 115 116 117
119
120 120 120
IMAGE 5
VIII CONTENTS
8.1.2 THE PROBLEMS WITH ANIMALS 121
8.1.3 THE POST-ABSORPTIVE STATE 122
*8.1.4 RESTING METABOLISM 123
8.2 EFFECTS OF BODY SIZE 123
8.2.1 BASAL METABOLISM OF MATURE ANIMALS 126
8.2.2 THE ARRHENIUS AND VAN T HOFF RELATIONSHIPS 128
8.2.3 BODY TEMPERATURE AND MINIMAL METABOLISM 129
8.2.4 THE MINIMAL METABOLISM OF DIFFERENT SPECIES 130
8.2.5 WHY THE THREE-QUARTERS POWER OF WEIGHT? . 131
8.3 TIME OF DAY, TIME OF YEAR AND MINIMAL METABOLISM 133
8.4 THE EFFECT OF AGE 134
8.5 NUTRITIONAL STATUS AND MINIMAL METABOLISM 135
8.6 BODY COMPOSITION AND METABOLISM 137
8.7 ORGAN AND TISSUE METABOLISM AND BODY SIZE 139
8.8 FUNCTIONAL EXPLANATIONS OF METABOLIC RATE 140
8.9 VARIATION IN MINIMAL METABOLISM WITHIN A SPECIES 142
8.9.1 PREDICTION OF THE BASAL METABOLISM OF MAN 143
8.9.2 MINIMAL METABOLISM IN OTHER SPECIES 144
8.10 THEORIES AND CONJECTURES 145
9 MUSCULAR WORK 147
9.1 THE PHYSIOLOGY AND BIOCHEMISTRY OF MUSCLE 147
9.7.7 THE STRUCTURE OF MUSCLE 147
9.7.2 THE CONTRACTION PROCESS 148
9.7.5 ENERGY TRANSDUCTION IN MUSCLE 149
9.1.4 MUSCLE AND THE FIRST LAW OF THERMODYNAMICS 150
9.2 MUSCULAR WORK IN THE WHOLE ANIMAL 151
9.2.7 METHODS OF MEASUREMENT AND EXPRESSION 152
9.2.2 STANDING 152
9.2.3 WALKING AND RUNNING 154
A. GENERALISATIONS ABOUT WALKING AND RUNNING 157
B. HOPPING AND WADDLING 160
C. THE EFFECT OF THE TERRAIN ON THE ENERGY COST OF LOCOMOTION 161 D. THE
MECHANICS OF LOCOMOTION AND ITS ENERGETIC EFFICIENCY 161 E. WALKING AND
RUNNING ON GRADIENTS 163
/. WIND RESISTANCE AND MOVEMENT 164
9.2.4 LOAD CARRYING AND DRAUGHT 165
9.2.5 HOVERING, FLYING, GLIDING AND SOARING 166
9.2.6 SWIMMING . 169
9.2.7 OTHER ACTIVITIES 171
9.3 INTERPRETATION OF METABOLIC RATES DURING EXERCISE 172
IMAGE 6
CONTENTS IX
9.5.7 THE CONTRIBUTION OF MUSCULAR ACTIVITY TO TOTAL HEAT PRODUCTION 173
9.3.2 FIELD METABOLIC RATE AS AN INDEX OF MUSCULAR WORK 175
9.3.3 MAXIMAL METABOLISM BY SUSTAINED MUSCULAR WORK 177
9.4 THE FUEL FOR MUSCULAR EXERCISE 178
10 METABOLIC EFFECTS OF THE PHYSICAL ENVIRONMENT 180
10.1 HEAT PRODUCTION IN DEFINED 1 ENVIRONMENTS 180
70.7.7 NUTRITION AND THE AVENUES OF HEAT LOSS 183
70.7.2 NON-EVAPORATIVE HEAT LOSS 186
10.2 THERMAL INSULATION 187
70.2.7 AIR INSULATION 188
70.2.2 INSULATION OF HAIR COATS AND CLOTHING 189
70.2.5 EXTERNAL INSULATION 190
10.2.4 TISSUE INSULATION 194
70.2.5 TOTAL CONDUCTANCE AND THE INSULATION TERMS 198
A. SPECIES DIFFERENCES IN CONDUCTANCE 199
10.3 RESPONSES TO COLD ENVIRONMENTS 200
70.5.7 ESTIMATION OF CRITICAL TEMPERATURE 200
70.5.2 CLIMATE AND SPECIES DISTRIBUTION 202
70.5.5 EXERCISE TO KEEP WARM 203
70.5.4 HEAT PRODUCTION BELOW THE CRITICAL TEMPERATURE AND THE EFFECT OF
FOOD 204
70.5.5 INTERPRETATION OF CRITICAL TEMPERATURES 206
70.5.6 INTEGRATING MODELS 207
70.5.7 SUMMIT METABOLISM 209
7O.5.S SHIVERING 210
70.5.9 NON-SHIVERING THERMOGENESIS 211
A. BROWN ADIPOSE TISSUE 212
10.4 RESPONSES TO HOT ENVIRONMENTS 213
10.4.1 MEASUREMENT OF THE TEMPERATURE OF HYPERTHERMAL RISE 213 10.4.2
THE PROBLEMS OF HOT ENVIRONMENTS 215
10.4.3 BEHAVIOURAL STRATEGIES OF ANIMALS IN HOT ENVIRONMENTS 216 10.4.4
FEVER 217
11 REPRODUCTION AND GROWTH 219
11.1 STRATEGIES OF REPRODUCTION 219
11.2 PRE-MATING BEHAVIOUR AND ENERGY METABOLISM 221
11.3 EGG PRODUCTION AND INCUBATION IN BIRDS 222
77.5.7 EGG PRODUCTION BY DIFFERENT SPECIES OF BIRD 222
77.5.2 INCUBATION 224
77.5.5 THE DEVELOPMENT OF THE EGG 225
IMAGE 7
X CONTENTS
11.3.4 THE ENERGY COST OF FEEDING THE YOUNG 226
11.4 PREGNANCY 226
11.4.1 THE BIRTH WEIGHT OFPLACENTAL MAMMALS 226
11.4.2 THE DURATION OF PREGNANCY 227
11.4.3 THE ENTHALPY OF COMBUSTION OF THE NEONATE 228
11.4.4 RATES OF GROWTH OF THE FOETUS AND OTHER TISSUES DURING PREGNANCY
229 11.4.5 HEAT PRODUCTION DURING PREGNANCY 232
11.5 LACTATION 234
77.5.7 THE COMPOSITION OF MILK 234
77.5.2 THE RATE OF SECRETION OF THE ENERGY-YIELDING CONSTITUENTS OF MILK
236 77.5.5 MATERNAL HEAT PRODUCTION DURING LACTATION 239
11.5.4 THE ENERGETICS OF HUMAN PREGNANCY AND LACTATION 239
77.5.5 FOOD ENERGY SUPPLY AND REPRODUCTION 241
11.6 POST-NATAL GROWTH 242
77.6.7 THE DESCRIPTION OF GROWTH IN WEIGHT 242
A. PARKS THEORY OF GROWTH 243
B. A GENERAL DIFFERENTIAL EQUATION DESCRIBING GROWTH 244
C. GROWTH IN DIFFERENT SPECIES AND TAYLOR S GENERALISATION 245 77.6.2
THE COMPOSITION AND ENTHALPY OF COMBUSTION OF GAINS IN WEIGHT 247 A. THE
COMPOSITION OF GAINS IN WEIGHT IN ADULT MAN 249
B. DIETARY AND OTHER FACTORS AFFECTING THE COMPOSITION OF WEIGHT GAIN
250
77.6.5 COMPENSATORY GROWTH 253
12 THE UTILISATION OF THE ENERGY OF FOOD 254
12.1 EFFICIENCES OF UTILISATION OF METABOLISABLE ENERGY 254
72.7.7 INCREMENTS OF HEAT ASSOCIATED WITH FOOD INGESTION 256
72.7.2 MEASUREMENT OF EFFICIENCY OR HEAT INCREMENT 256
12.2 THE DETERMINANTS OF THE HEAT INCREMENT 260
72.2.7 THE ORIGIN OF THE HEAT INCREMENT . 260
A. HEAT RELATED TO THE ACT OF EATING 260
B. HEAT ARISING FROM EVENTS IN THE LUMEN OF THE GUT 262
C. HEAT ARISING FROM THE ABSORPTION OF NUTRIENTS 264
D. HEAT ASSOCIATED WITH THE EFFECTS OF FOOD ON CELLULAR ACTIVITY 265 E.
HEAT ARISING FROMTTHE SUBSTITUTION OF ENDOGENOUS ENERGY SOURCES BY
NUTRIENTS 267
/. INTERMEDIATE STORAGE AND THE INCREMENT OF HEAT AT MAINTENANCE 269 G.
HEAT ASSOCIATED WITH NET SYNTHESIS OF FAT AND PROTEIN 271
H. THE CAUSE OF THE HEAT INCREMENT 274
12.2.2 HEAT INCREMENTS IN RUMINANT ANIMALS 275
A. THE UTILISATION OF ACETIC ACID AS AN ENERGY SOURCE 278
IMAGE 8
CONTENTS XI
72.2.5 12.3 72.5.7
72.5.2 72.5.5 12.3.4 12.4 12.4.1
13
BIOCHEMICAL MODELS OF METABOLISM REGULATORY HEAT PRODUCTION
LUXUSKONSUMPTION LOW PROTEIN DIETS AND HEAT PRODUCTION OVER-NUTRITION
AND CAFETERIA DIETS FOR RATS INDIVIDUAL DIFFERENCES IN METABOLISM HEAT
INCREMENTS OF FOOD IN REPRODUCTION
THE PROBLEM OF ESTIMATION A. EFFICIENCY OF UTILISATION OF ENERGY IN
PREGNANCY B. ENERGY UTILISATION IN LACTATION C. ENERGY UTILISATION FOR
EGG PRODUCTION
THE APPLICATION OF STUDIES OF THE ENERGY EXCHANGE APPENDIX: ENTHALPIES
(BEATS) OF COMBUSTION REFERENCES ,
INDEX OF ANIMAL SPECIES SUBJECT INDEX
278 280 280
281 282 284 285
285 286 288
288
290 295 298 330
332
|
any_adam_object | 1 |
author | Blaxter, Kenneth L. |
author_facet | Blaxter, Kenneth L. |
author_role | aut |
author_sort | Blaxter, Kenneth L. |
author_variant | k l b kl klb |
building | Verbundindex |
bvnumber | BV002215412 |
callnumber-first | Q - Science |
callnumber-label | QP176 |
callnumber-raw | QP176 |
callnumber-search | QP176 |
callnumber-sort | QP 3176 |
callnumber-subject | QP - Physiology |
classification_rvk | WX 3400 WX 3500 |
ctrlnum | (OCoLC)18414850 (DE-599)BVBBV002215412 |
dewey-full | 591.1/33 612 |
dewey-hundreds | 500 - Natural sciences and mathematics 600 - Technology (Applied sciences) |
dewey-ones | 591 - Specific topics in natural history of animals 612 - Human physiology |
dewey-raw | 591.1/33 612 |
dewey-search | 591.1/33 612 |
dewey-sort | 3591.1 233 |
dewey-tens | 590 - Animals 610 - Medicine and health |
discipline | Biologie Medizin |
edition | 1. publ. |
format | Book |
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id | DE-604.BV002215412 |
illustrated | Illustrated |
indexdate | 2024-07-09T15:42:11Z |
institution | BVB |
isbn | 0521360943 0521369312 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-001455195 |
oclc_num | 18414850 |
open_access_boolean | |
owner | DE-12 DE-19 DE-BY-UBM DE-29T DE-83 DE-11 DE-188 |
owner_facet | DE-12 DE-19 DE-BY-UBM DE-29T DE-83 DE-11 DE-188 |
physical | XIII, 336 S. graph. Darst. |
psigel | TUB-nveb |
publishDate | 1989 |
publishDateSearch | 1989 |
publishDateSort | 1989 |
publisher | Cambridge Univ. Press |
record_format | marc |
spelling | Blaxter, Kenneth L. Verfasser aut Energy metabolism in animals and man Kenneth Blaxter 1. publ. Cambridge [u.a.] Cambridge Univ. Press 1989 XIII, 336 S. graph. Darst. txt rdacontent n rdamedia nc rdacarrier Literaturverz. S. [298] - 329 Energy Metabolism cabt Métabolisme énergétique Energy Metabolism physiology Energy metabolism Tiere (DE-588)4060087-7 gnd rswk-swf Energiestoffwechsel (DE-588)4125217-2 gnd rswk-swf Mensch (DE-588)4038639-9 gnd rswk-swf Energiestoffwechsel (DE-588)4125217-2 s DE-604 Mensch (DE-588)4038639-9 s Tiere (DE-588)4060087-7 s HEBIS Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=001455195&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Blaxter, Kenneth L. Energy metabolism in animals and man Energy Metabolism cabt Métabolisme énergétique Energy Metabolism physiology Energy metabolism Tiere (DE-588)4060087-7 gnd Energiestoffwechsel (DE-588)4125217-2 gnd Mensch (DE-588)4038639-9 gnd |
subject_GND | (DE-588)4060087-7 (DE-588)4125217-2 (DE-588)4038639-9 |
title | Energy metabolism in animals and man |
title_auth | Energy metabolism in animals and man |
title_exact_search | Energy metabolism in animals and man |
title_full | Energy metabolism in animals and man Kenneth Blaxter |
title_fullStr | Energy metabolism in animals and man Kenneth Blaxter |
title_full_unstemmed | Energy metabolism in animals and man Kenneth Blaxter |
title_short | Energy metabolism in animals and man |
title_sort | energy metabolism in animals and man |
topic | Energy Metabolism cabt Métabolisme énergétique Energy Metabolism physiology Energy metabolism Tiere (DE-588)4060087-7 gnd Energiestoffwechsel (DE-588)4125217-2 gnd Mensch (DE-588)4038639-9 gnd |
topic_facet | Energy Metabolism Métabolisme énergétique Energy Metabolism physiology Energy metabolism Tiere Energiestoffwechsel Mensch |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=001455195&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT blaxterkennethl energymetabolisminanimalsandman |