Skip to main content
Erschienen in: European Journal of Applied Physiology 5/2018

26.02.2018 | Invited Review

Foundational insights into the estimation of whole-body metabolic rate

verfasst von: Nigel A. S. Taylor, Roy J. Shephard, Michael I. Lindinger

Erschienen in: European Journal of Applied Physiology | Ausgabe 5/2018

Einloggen, um Zugang zu erhalten

Abstract

Since 2013, this journal has promoted the publication of thematic reviews (Taylor in Eur J Appl Physiol 113:1634, 2013), where leading groups were invited to review the critical literature within each of several sub-topics. The current theme is historically based, and is focussed on estimating the metabolic rate in humans. This review charts the development of our understanding of those methods, from the discovery of oxygen and carbon dioxide, to the introduction of highly sophisticated modern apparatus to examine the composition of expired gas and determine respiratory minute volume. An historical timeline links the six thematic vignettes on this theme. Modern advances have greatly enhanced data collection without significant decrements in measurement accuracy. At the same time, however, conceptual errors, particularly steady-state requirements, are too often ignored. Indeed, it is recognised that we often neglect the past, leading to errors in research design, experimental observations and data interpretation, and this appears to be increasingly prevalent within the open-access literature. Accordingly, the Editorial Board, in recognition of a widening gap between our experimental foundations and contemporary research, embarked on developing a number of thematic review series, of which this series is the first. The intent of each accompanying overview is to introduce and illuminate seminal investigations that led to significant scientific or intellectual breakthroughs, and to thereby whet the appetite of readers to delve more deeply into the historical literature; for it is only when the foundations are understood that we can best understand where we are now, and in which directions we should head.
Literatur
Zurück zum Zitat Alexander L (1945) The treatment of shock from prolonged exposure to cold, especially in water. In: Combined intelligence objectives sub-committee. Target number 24, medical Alexander L (1945) The treatment of shock from prolonged exposure to cold, especially in water. In: Combined intelligence objectives sub-committee. Target number 24, medical
Zurück zum Zitat Archiza B, Welch JF, Sheel AW (2017) Classical experiments in whole-body metabolism: closed-circuit respirometry. Eur J Appl Physiol 117:1929–1937PubMedCrossRef Archiza B, Welch JF, Sheel AW (2017) Classical experiments in whole-body metabolism: closed-circuit respirometry. Eur J Appl Physiol 117:1929–1937PubMedCrossRef
Zurück zum Zitat Åstrand PO, Ryhming I (1954) A nomogram for calculation of aerobic capacity (physical fitness) from pulse rate during sub-maximal work. J Appl Physiol 7:218–221PubMedCrossRef Åstrand PO, Ryhming I (1954) A nomogram for calculation of aerobic capacity (physical fitness) from pulse rate during sub-maximal work. J Appl Physiol 7:218–221PubMedCrossRef
Zurück zum Zitat Atwater WO, Rosa EB (1899) Description of a new respiration calorimeter and experiments on the conservation of energy in the human body. U.S. Department of Agriculture, Bulletin No. 63. Government Printing Office, Washington Atwater WO, Rosa EB (1899) Description of a new respiration calorimeter and experiments on the conservation of energy in the human body. U.S. Department of Agriculture, Bulletin No. 63. Government Printing Office, Washington
Zurück zum Zitat Bartels H, Bücherl E, Hertz CW, Schwab M (1963) Methods in pulmonary physiology. Hafner Publishing Company Inc., New York Bartels H, Bücherl E, Hertz CW, Schwab M (1963) Methods in pulmonary physiology. Hafner Publishing Company Inc., New York
Zurück zum Zitat Beers Y (1953) Introduction to the theory of error. Addison-Wesley Pub. Co., Boston Beers Y (1953) Introduction to the theory of error. Addison-Wesley Pub. Co., Boston
Zurück zum Zitat Black J (1755) Experiments upon magnesia alba, quicklime, and some other alcaline substances. Essays Obs Phys Lit 2:157–225 Black J (1755) Experiments upon magnesia alba, quicklime, and some other alcaline substances. Essays Obs Phys Lit 2:157–225
Zurück zum Zitat Bowes HM, Burdon CA, Taylor NAS (2015) The scaling of human basal metabolic rate in adult males. In: Proceedings of the Australian physiological society, vol 46 Bowes HM, Burdon CA, Taylor NAS (2015) The scaling of human basal metabolic rate in adult males. In: Proceedings of the Australian physiological society, vol 46
Zurück zum Zitat Cameron JN (1986) Principles of physiological measurement. Academic Press, London Cameron JN (1986) Principles of physiological measurement. Academic Press, London
Zurück zum Zitat Cherniack NS, Longobardo GS (1970) Oxygen and carbon dioxide gas stores of the body. Physiol Rev 50:196–243PubMedCrossRef Cherniack NS, Longobardo GS (1970) Oxygen and carbon dioxide gas stores of the body. Physiol Rev 50:196–243PubMedCrossRef
Zurück zum Zitat Consolazio CF, Johnson RE, Pecora LJ (1963) Physiological measurements of metabolic functions in man. McGraw-Hill Book Company, New York Consolazio CF, Johnson RE, Pecora LJ (1963) Physiological measurements of metabolic functions in man. McGraw-Hill Book Company, New York
Zurück zum Zitat Crawford A (1788) Experiments and observations on animal heat and inflammation of combustible bodies. J. Johnson, London Crawford A (1788) Experiments and observations on animal heat and inflammation of combustible bodies. J. Johnson, London
Zurück zum Zitat dal Monte A, Faina M, Leonardi L, Todaro A, Guidl G, Petrelli G (1989) II consumo massimo di ossígeno in telemetría. Rivista di Cultura Sportiva 15:35–44 dal Monte A, Faina M, Leonardi L, Todaro A, Guidl G, Petrelli G (1989) II consumo massimo di ossígeno in telemetría. Rivista di Cultura Sportiva 15:35–44
Zurück zum Zitat Daynes HA (1920) Theory of the katharometer. Proc R Soc Ser A 97:273–286 Daynes HA (1920) Theory of the katharometer. Proc R Soc Ser A 97:273–286
Zurück zum Zitat Depretz C (1824) Recherches expérimental sur les cause de la chaleur animale. J Phys Exp. 143–159 Depretz C (1824) Recherches expérimental sur les cause de la chaleur animale. J Phys Exp. 143–159
Zurück zum Zitat Douglas CG (1911) A method for determining the total respiratory exchange in man. J Physiol 42:xvii-xviii Douglas CG (1911) A method for determining the total respiratory exchange in man. J Physiol 42:xvii-xviii
Zurück zum Zitat Durnin JVGA, Edwards RG (1955) Pulmonary ventilation as an index of energy expenditure. Q J Exp Physiol Cogn Med Sci 40:370–377PubMed Durnin JVGA, Edwards RG (1955) Pulmonary ventilation as an index of energy expenditure. Q J Exp Physiol Cogn Med Sci 40:370–377PubMed
Zurück zum Zitat Einstein A (1905) Ist die Trägheit eines Körpers von seinem Energieinhalt abhängig? Ann Phys 323:639–641CrossRef Einstein A (1905) Ist die Trägheit eines Körpers von seinem Energieinhalt abhängig? Ann Phys 323:639–641CrossRef
Zurück zum Zitat Fick A (1870) Über die Messung des Blutquantums in der Herzventrikel. Verhandlungen der Physikalischen Gesellschaft zu Würzburg Fick A (1870) Über die Messung des Blutquantums in der Herzventrikel. Verhandlungen der Physikalischen Gesellschaft zu Würzburg
Zurück zum Zitat Fleisch A (1925) Der Pneumotachograph: ein Apparat zur Geschwindigkeitsregistrierung der Atemluft. Pflüger’s Archiv für die gesamte Physiologie des Menschen der Tiere 209:713–722CrossRef Fleisch A (1925) Der Pneumotachograph: ein Apparat zur Geschwindigkeitsregistrierung der Atemluft. Pflüger’s Archiv für die gesamte Physiologie des Menschen der Tiere 209:713–722CrossRef
Zurück zum Zitat Geppert J, Zuntz N (1888) Ueber die regulation der athmung. Pflüg Arch Eur J Physiol 42:189–245CrossRef Geppert J, Zuntz N (1888) Ueber die regulation der athmung. Pflüg Arch Eur J Physiol 42:189–245CrossRef
Zurück zum Zitat Haldane JS (1906) A convenient form of gas analysis apparatus. J Hyg (Lond) 6:74–76CrossRef Haldane JS (1906) A convenient form of gas analysis apparatus. J Hyg (Lond) 6:74–76CrossRef
Zurück zum Zitat Hess GH (1840) Recherches sur les quantités de chaleur dégagées dans les combinaisons chimiques. Comptes Rendus de l’Académie des Sciences 10:759–763 Hess GH (1840) Recherches sur les quantités de chaleur dégagées dans les combinaisons chimiques. Comptes Rendus de l’Académie des Sciences 10:759–763
Zurück zum Zitat Hill AV (1927) Muscular movement in man: the factors governing speed and recovery from fatigue. McGraw-Hill Book Company Inc., New York Hill AV (1927) Muscular movement in man: the factors governing speed and recovery from fatigue. McGraw-Hill Book Company Inc., New York
Zurück zum Zitat Hutchinson J (1844) Contributions to vital statistics, obtained by means of a pneumatic apparatus for valuing the respiratory powers in relation to health. J Stat Soc Lond 7:193–212CrossRef Hutchinson J (1844) Contributions to vital statistics, obtained by means of a pneumatic apparatus for valuing the respiratory powers in relation to health. J Stat Soc Lond 7:193–212CrossRef
Zurück zum Zitat Kenny GP, Jay O (2013) Thermometry, calorimetry, and mean body temperature during heat stress. Compr Physiol 3:1–31 Kenny GP, Jay O (2013) Thermometry, calorimetry, and mean body temperature during heat stress. Compr Physiol 3:1–31
Zurück zum Zitat Kenny GP, Notley SR, Gagnon D (2017) Direct calorimetry: a brief historical review of its use in the study of human metabolism and thermoregulation. Eur J Appl Physiol 117:1765–1785PubMedCrossRef Kenny GP, Notley SR, Gagnon D (2017) Direct calorimetry: a brief historical review of its use in the study of human metabolism and thermoregulation. Eur J Appl Physiol 117:1765–1785PubMedCrossRef
Zurück zum Zitat Kleiber M (1961) The fire of life: an introduction to animal energetics. Wiley, New York Kleiber M (1961) The fire of life: an introduction to animal energetics. Wiley, New York
Zurück zum Zitat Klein HA (1974) The science of measurement: a historical survey. Dover Publications, Inc., New York Klein HA (1974) The science of measurement: a historical survey. Dover Publications, Inc., New York
Zurück zum Zitat Lavoisier AL (1789) Traité élémentaire de chimie. Chez Cuchet, Paris Lavoisier AL (1789) Traité élémentaire de chimie. Chez Cuchet, Paris
Zurück zum Zitat Lavoisier AL, Laplace PS (1784) Mémoire sur la chaleur. Royal Academy of Sciences, 28 June 1783 Lavoisier AL, Laplace PS (1784) Mémoire sur la chaleur. Royal Academy of Sciences, 28 June 1783
Zurück zum Zitat Lefèvre J (1911) Chaleur animale et bio-énergétique. Masson et Cie, Paris Lefèvre J (1911) Chaleur animale et bio-énergétique. Masson et Cie, Paris
Zurück zum Zitat Lenox JB, Koegel E (1976) Evaluation of a new low resistance valve. J Appl Physiol 37:410–413CrossRef Lenox JB, Koegel E (1976) Evaluation of a new low resistance valve. J Appl Physiol 37:410–413CrossRef
Zurück zum Zitat Lifson N, Gordon GB, Vissscher MB, Nier AO (1949) The fate of utilized molecular oxygen and the source of the oxygen of respiratory carbon dioxide, studied with the aid of heavy oxygen. J Biol Chem 180:803–811PubMedCrossRef Lifson N, Gordon GB, Vissscher MB, Nier AO (1949) The fate of utilized molecular oxygen and the source of the oxygen of respiratory carbon dioxide, studied with the aid of heavy oxygen. J Biol Chem 180:803–811PubMedCrossRef
Zurück zum Zitat Lusk G (1909) The elements of the science of nutrition. W.B. Saunders Co., Philadelphia Lusk G (1909) The elements of the science of nutrition. W.B. Saunders Co., Philadelphia
Zurück zum Zitat Macfarlane DJ (2017) Open-circuit respirometry: a historical review of portable gas analysis systems. Eur J Appl Physiol 117:2369–2386PubMedCrossRef Macfarlane DJ (2017) Open-circuit respirometry: a historical review of portable gas analysis systems. Eur J Appl Physiol 117:2369–2386PubMedCrossRef
Zurück zum Zitat Mayow J (1674) Tractatus quinque medico-physici. E Theatro Sheldoniano, Oxford Mayow J (1674) Tractatus quinque medico-physici. E Theatro Sheldoniano, Oxford
Zurück zum Zitat Newton I (1687) Philosophiae naturalis principia mathematica. Royal Society, LondonCrossRef Newton I (1687) Philosophiae naturalis principia mathematica. Royal Society, LondonCrossRef
Zurück zum Zitat Notley SR, Fullagar HHK, Lee DS, Matsuda-Nakamura M, Peoples GE, Taylor NAS (2014) Revisiting ventilatory and cardiovascular predictions of whole-body metabolic rate. J Occup Environ Med 56:214–223PubMedCrossRef Notley SR, Fullagar HHK, Lee DS, Matsuda-Nakamura M, Peoples GE, Taylor NAS (2014) Revisiting ventilatory and cardiovascular predictions of whole-body metabolic rate. J Occup Environ Med 56:214–223PubMedCrossRef
Zurück zum Zitat Notley SR, Peoples GE, Taylor NAS (2015) The utility of heart rate and minute ventilation as predictors of whole-body metabolic rate during occupational simulations involving load carriage. Ergonomics 58:1671–1681PubMedCrossRef Notley SR, Peoples GE, Taylor NAS (2015) The utility of heart rate and minute ventilation as predictors of whole-body metabolic rate during occupational simulations involving load carriage. Ergonomics 58:1671–1681PubMedCrossRef
Zurück zum Zitat Packard GC, Boardman TJ (1999) The use of percentages and size-specific indices to normalize physiological data for variation in body size: wasted time, wasted effort? Comp Biochem Physiol Part A Mol Integr Physiol 122:37–44CrossRef Packard GC, Boardman TJ (1999) The use of percentages and size-specific indices to normalize physiological data for variation in body size: wasted time, wasted effort? Comp Biochem Physiol Part A Mol Integr Physiol 122:37–44CrossRef
Zurück zum Zitat Pepys WH (1807) A new eudiometer, accompanied with experiments, elucidating its application. Philos Trans R Soc Lond 97:247–259 Pepys WH (1807) A new eudiometer, accompanied with experiments, elucidating its application. Philos Trans R Soc Lond 97:247–259
Zurück zum Zitat Pettenkofer M (1862) Ueber die respiration. Annalen der Chemie Pharmacie 123:1–52CrossRef Pettenkofer M (1862) Ueber die respiration. Annalen der Chemie Pharmacie 123:1–52CrossRef
Zurück zum Zitat Priestley J (1774) Experiments and observations on different kinds of air, vol II. J. Johnson, London Priestley J (1774) Experiments and observations on different kinds of air, vol II. J. Johnson, London
Zurück zum Zitat Prout W (1813) Observations on the quantity of carbonic acid gas emitted from the lungs during respiration, at different times, and under different circumstances. Ann Philos 2:328–343 Prout W (1813) Observations on the quantity of carbonic acid gas emitted from the lungs during respiration, at different times, and under different circumstances. Ann Philos 2:328–343
Zurück zum Zitat Regnault HV, Reiset J (1849) Recherches chimiques sur la respiration des animaux des diverses classes. Bachelier, Paris Regnault HV, Reiset J (1849) Recherches chimiques sur la respiration des animaux des diverses classes. Bachelier, Paris
Zurück zum Zitat Richardson HB (1929) The respiratory quotient. Physiol Rev 9:61–125CrossRef Richardson HB (1929) The respiratory quotient. Physiol Rev 9:61–125CrossRef
Zurück zum Zitat Royal Society (1975). Quantities, units, and symbols. Royal Society, London Royal Society (1975). Quantities, units, and symbols. Royal Society, London
Zurück zum Zitat Rübner M (1883) Ueber den Einfluss der Köpergrösse auf Stoff- und Kraftwechsel. Zeitschrift für Biologie 19:535–562 Rübner M (1883) Ueber den Einfluss der Köpergrösse auf Stoff- und Kraftwechsel. Zeitschrift für Biologie 19:535–562
Zurück zum Zitat Rübner M (1894) Die quelle de thierschen warme. Zeitschrift für Biologie 30:73–142 Rübner M (1894) Die quelle de thierschen warme. Zeitschrift für Biologie 30:73–142
Zurück zum Zitat Scheele CW (1777) Chemische Abhandlung von der Luft und dem Feuer. W. Engelmann, Leipzig Scheele CW (1777) Chemische Abhandlung von der Luft und dem Feuer. W. Engelmann, Leipzig
Zurück zum Zitat Schmidt-Nielsen K (1984) Scaling: why is animal size so important? Cambridge University Press, CambridgeCrossRef Schmidt-Nielsen K (1984) Scaling: why is animal size so important? Cambridge University Press, CambridgeCrossRef
Zurück zum Zitat Schoeller DA, van Santen E (1982) Measurement of energy expenditure in humans by doubly labelled water. J Appl Physiol 53:955–959PubMedCrossRef Schoeller DA, van Santen E (1982) Measurement of energy expenditure in humans by doubly labelled water. J Appl Physiol 53:955–959PubMedCrossRef
Zurück zum Zitat Schoffelen PFM, Plasqui G (2018) Classical experiments in whole-body metabolism: open-circuit respirometry-diluted flow chamber, hood, or facemask systems. Eur J Appl Physiol 118:33–49PubMedCrossRef Schoffelen PFM, Plasqui G (2018) Classical experiments in whole-body metabolism: open-circuit respirometry-diluted flow chamber, hood, or facemask systems. Eur J Appl Physiol 118:33–49PubMedCrossRef
Zurück zum Zitat Severinghaus JW (1963) High-temperature operation of oxygen electrode giving fast response for respiratory gas sampling. Clin Chem 9:727–733CrossRef Severinghaus JW (1963) High-temperature operation of oxygen electrode giving fast response for respiratory gas sampling. Clin Chem 9:727–733CrossRef
Zurück zum Zitat Shaw GB (1945) Back to Methuselah. Oxford University Press, Oxford Shaw GB (1945) Back to Methuselah. Oxford University Press, Oxford
Zurück zum Zitat Shephard RJ (2015) An illustrated history of health and fitness, from pre-history to our post-modern world. Studies in history and philosophy of science, vol 39. Springer, Switzerland Shephard RJ (2015) An illustrated history of health and fitness, from pre-history to our post-modern world. Studies in history and philosophy of science, vol 39. Springer, Switzerland
Zurück zum Zitat Shephard RJ (2017) Open-circuit respirometry: a brief historical review of the use of Douglas bags and chemical analyzers. Eur J Appl Physiol 117:381–387PubMedCrossRef Shephard RJ (2017) Open-circuit respirometry: a brief historical review of the use of Douglas bags and chemical analyzers. Eur J Appl Physiol 117:381–387PubMedCrossRef
Zurück zum Zitat Shiltsev VD (2011) This month in physics history. Nov. 19, 1711: Birth of Mikhail Lomonosov, Russia’s first modern scientist. Am Phys Soc News 20:2 Shiltsev VD (2011) This month in physics history. Nov. 19, 1711: Birth of Mikhail Lomonosov, Russia’s first modern scientist. Am Phys Soc News 20:2
Zurück zum Zitat Simonson E (1928) Ein neuer respirationsapparat. Arbeitsphysiologie 1:224–257 Simonson E (1928) Ein neuer respirationsapparat. Arbeitsphysiologie 1:224–257
Zurück zum Zitat Smith E (1859) Experimental inquiries into the chemical and other phenomena of respiration, and their modifications by various physical agencies. Philos Trans R Soc Lond 149:681–714 Smith E (1859) Experimental inquiries into the chemical and other phenomena of respiration, and their modifications by various physical agencies. Philos Trans R Soc Lond 149:681–714
Zurück zum Zitat Smith CM (2005) Origin and uses of primum non nocere—above all, do no harm! J Clin Pharmacol 45:371–377PubMedCrossRef Smith CM (2005) Origin and uses of primum non nocere—above all, do no harm! J Clin Pharmacol 45:371–377PubMedCrossRef
Zurück zum Zitat Speakman JR (1997) Doubly labelled water: theory and practice. Chapman & Hall, London Speakman JR (1997) Doubly labelled water: theory and practice. Chapman & Hall, London
Zurück zum Zitat Tanner JM (1949) Fallacy of per-weight and per-surface area standards, and their relation to spurious correlation. J Appl Physiol 2:1–15PubMedCrossRef Tanner JM (1949) Fallacy of per-weight and per-surface area standards, and their relation to spurious correlation. J Appl Physiol 2:1–15PubMedCrossRef
Zurück zum Zitat Taylor NAS (2013) Thematic reviews. Series I: space physiology. Eur J Appl Physiol 113:1634 Taylor NAS (2013) Thematic reviews. Series I: space physiology. Eur J Appl Physiol 113:1634
Zurück zum Zitat Taylor CR, Maloiy GMO, Weibel ER, Langman VA, Kamau JMZ, Seeherman HJ, Heglund NC (1981) Design of the mammalian respiratory system. III. Scaling maximum aerobic capacity to body mass: wild and domestic mammals. Respir Physiol 44:25–37PubMedCrossRef Taylor CR, Maloiy GMO, Weibel ER, Langman VA, Kamau JMZ, Seeherman HJ, Heglund NC (1981) Design of the mammalian respiratory system. III. Scaling maximum aerobic capacity to body mass: wild and domestic mammals. Respir Physiol 44:25–37PubMedCrossRef
Zurück zum Zitat Taylor NAS, Peoples GE, Petersen SR (2016) Load carriage, human performance and employment standards. Appl Physiol Nutr Metab 41:S133-S147 Taylor NAS, Peoples GE, Petersen SR (2016) Load carriage, human performance and employment standards. Appl Physiol Nutr Metab 41:S133-S147
Zurück zum Zitat Tipton CM (2014) History of exercise physiology. Human Kinetics Publishers, ChampaignCrossRef Tipton CM (2014) History of exercise physiology. Human Kinetics Publishers, ChampaignCrossRef
Zurück zum Zitat Tissot J (1904) Nouvelle méthode de mesure et d’inscription du débit et des mouvements respiratoires de l’homme et des animaux. Journal de Physiologie et de Pathologie Générale 6:688–700 Tissot J (1904) Nouvelle méthode de mesure et d’inscription du débit et des mouvements respiratoires de l’homme et des animaux. Journal de Physiologie et de Pathologie Générale 6:688–700
Zurück zum Zitat von Mayer JR (1845) Die organische Bewegung in ihrem Zusammenhange mit dem Stoffwechsel. Ein Beitrag zur Naturkunde, Dechsler von Mayer JR (1845) Die organische Bewegung in ihrem Zusammenhange mit dem Stoffwechsel. Ein Beitrag zur Naturkunde, Dechsler
Zurück zum Zitat Ward RM (2015) The criminal corpse, anatomists and the criminal law: parliamentary attempts to extend the dissection of offenders in late eighteenth-century England. J Br Stud 54:63–87PubMedPubMedCentralCrossRef Ward RM (2015) The criminal corpse, anatomists and the criminal law: parliamentary attempts to extend the dissection of offenders in late eighteenth-century England. J Br Stud 54:63–87PubMedPubMedCentralCrossRef
Zurück zum Zitat Ward SA (2018) Open-circuit respirometry: real-time, laboratory-based systems. Eur J Appl Physiol 118 Ward SA (2018) Open-circuit respirometry: real-time, laboratory-based systems. Eur J Appl Physiol 118
Zurück zum Zitat Weir JB (1948) New methods for calculating metabolic rate with special reference to protein metabolism. J Physiol 109:1–9CrossRef Weir JB (1948) New methods for calculating metabolic rate with special reference to protein metabolism. J Physiol 109:1–9CrossRef
Zurück zum Zitat Westerterp KR (2017) Doubly labelled water assessment of energy expenditure: principle, practice, and promise. Eur J Appl Physiol 117:1277–1285PubMedPubMedCentralCrossRef Westerterp KR (2017) Doubly labelled water assessment of energy expenditure: principle, practice, and promise. Eur J Appl Physiol 117:1277–1285PubMedPubMedCentralCrossRef
Zurück zum Zitat Wilmore JH, Costill DL (1974) Semiautomated systems approach to the assessment of oxygen uptake during exercise. J Appl Physiol 36:618–620PubMedCrossRef Wilmore JH, Costill DL (1974) Semiautomated systems approach to the assessment of oxygen uptake during exercise. J Appl Physiol 36:618–620PubMedCrossRef
Zurück zum Zitat Wolff HS (1958) The integrating motor pneumotachograph: a new instrument for the measurement of energy expenditure by indirect calorimetry. Q J Exp Physiol Cogn Med Sci 43:270–283PubMed Wolff HS (1958) The integrating motor pneumotachograph: a new instrument for the measurement of energy expenditure by indirect calorimetry. Q J Exp Physiol Cogn Med Sci 43:270–283PubMed
Zurück zum Zitat Zuntz N (1901) Ueber die Bedeutung der verschiedenen Nahrstoffe als Erzeuger der Muskelkraft. Pflüg Arch Eur J Physiol 83:557–571CrossRef Zuntz N (1901) Ueber die Bedeutung der verschiedenen Nahrstoffe als Erzeuger der Muskelkraft. Pflüg Arch Eur J Physiol 83:557–571CrossRef
Zurück zum Zitat Zuntz N, Schumburg W (1901) Studien zu einer Physiologie des Marsches. Verlag von August Hirschwald, Berlin Zuntz N, Schumburg W (1901) Studien zu einer Physiologie des Marsches. Verlag von August Hirschwald, Berlin
Zurück zum Zitat Zuntz N, Loewy A, Müller F, Caspari W (1906) Höhenklima und Bergwanderungen: in ihrer Wirkung auf den manschen. Deutsches Verlagshaus Bong, Berlin Zuntz N, Loewy A, Müller F, Caspari W (1906) Höhenklima und Bergwanderungen: in ihrer Wirkung auf den manschen. Deutsches Verlagshaus Bong, Berlin
Zurück zum Zitat Allen W, Pepys WH (1808) On changes produced in atmospheric air, and oxygen gas, by respiration. Philos Trans R Soc Lond 1:305–308 Allen W, Pepys WH (1808) On changes produced in atmospheric air, and oxygen gas, by respiration. Philos Trans R Soc Lond 1:305–308
Zurück zum Zitat Atchley WR (1978) Ratios, regression intercepts, and the scaling of data. Syst Zool 27:78–83CrossRef Atchley WR (1978) Ratios, regression intercepts, and the scaling of data. Syst Zool 27:78–83CrossRef
Zurück zum Zitat Atwater WO, Benedict FG (1905) A respiration calorimeter with the appliances for the direct determination of oxygen. Carnegie Institution of Washington publication no. 42. Carnegie Institution of Washington, Washington Atwater WO, Benedict FG (1905) A respiration calorimeter with the appliances for the direct determination of oxygen. Carnegie Institution of Washington publication no. 42. Carnegie Institution of Washington, Washington
Zurück zum Zitat Boothby WM, Sandiford I (1924) Basal metabolism. Physiol Rev 4:69–162CrossRef Boothby WM, Sandiford I (1924) Basal metabolism. Physiol Rev 4:69–162CrossRef
Zurück zum Zitat Douglas CG (1956) The development of experimental methods for determining the energy expenditure of man. Proc Nutr Soc 15:72–77PubMedCrossRef Douglas CG (1956) The development of experimental methods for determining the energy expenditure of man. Proc Nutr Soc 15:72–77PubMedCrossRef
Zurück zum Zitat Durnin JVGA, Passmore R (1967) Energy, work and leisure. Heinemann Educational Books, London Durnin JVGA, Passmore R (1967) Energy, work and leisure. Heinemann Educational Books, London
Zurück zum Zitat Fowler WS, Blackburn CM, Helmholz HF (1957) Determination of basal rate of oxygen consumption by open and closed-circuit methods. J Clin Endocrinol Metab 17:786–796PubMedCrossRef Fowler WS, Blackburn CM, Helmholz HF (1957) Determination of basal rate of oxygen consumption by open and closed-circuit methods. J Clin Endocrinol Metab 17:786–796PubMedCrossRef
Zurück zum Zitat Guerlac H (1957a) Joseph Black and fixed air a bicentenary retrospective, with some new or little known material. Isis 48:124–151CrossRef Guerlac H (1957a) Joseph Black and fixed air a bicentenary retrospective, with some new or little known material. Isis 48:124–151CrossRef
Zurück zum Zitat Gunga H-C (2009) Nathan Zuntz: his life and work in the fields of high altitude physiology and aviation medicine. Academic Press, Burlington Gunga H-C (2009) Nathan Zuntz: his life and work in the fields of high altitude physiology and aviation medicine. Academic Press, Burlington
Zurück zum Zitat Haldane JS (1918) Methods of air analysis. Charles Griffin, London Haldane JS (1918) Methods of air analysis. Charles Griffin, London
Zurück zum Zitat Haldane JS, Priestley JG (1935) Respiration. Oxford University Press, New York Haldane JS, Priestley JG (1935) Respiration. Oxford University Press, New York
Zurück zum Zitat Harris JA, Benedict FG (1919) A biometric study of basal metabolism. Carnegie Institution of Washington, Publication No. 279. J.B. Lippincott, Philadelphia Harris JA, Benedict FG (1919) A biometric study of basal metabolism. Carnegie Institution of Washington, Publication No. 279. J.B. Lippincott, Philadelphia
Zurück zum Zitat Kofranyi E, Michaelis HF (1940) Ein tragbarer apparat zur bestimmung des gasstoffwechsels. Arbeitsphysiologie 11:148–150 Kofranyi E, Michaelis HF (1940) Ein tragbarer apparat zur bestimmung des gasstoffwechsels. Arbeitsphysiologie 11:148–150
Zurück zum Zitat Krogh A (1916) The respiratory exchange of animals and man. Longmans, Green and Co., LondonCrossRef Krogh A (1916) The respiratory exchange of animals and man. Longmans, Green and Co., LondonCrossRef
Zurück zum Zitat Lodwig TH (1974) The ice calorimeter of Lavoisier and Laplace and some of its critics. Ann Sci 31:1–18CrossRef Lodwig TH (1974) The ice calorimeter of Lavoisier and Laplace and some of its critics. Ann Sci 31:1–18CrossRef
Zurück zum Zitat Lusk G (1922) A history of metabolism. In: Barker LF Endocrinology and metabolism, vol 3. D. Appleton and Company, New York, pp 3–38 Lusk G (1922) A history of metabolism. In: Barker LF Endocrinology and metabolism, vol 3. D. Appleton and Company, New York, pp 3–38
Zurück zum Zitat McKie D (1952) Antoine Lavoisier: scientist, economist, social reformer. Herny Schuman, New York McKie D (1952) Antoine Lavoisier: scientist, economist, social reformer. Herny Schuman, New York
Zurück zum Zitat McLean JA, Tobin G (1987) Animal and human calorimetry. Cambridge University Press, New York McLean JA, Tobin G (1987) Animal and human calorimetry. Cambridge University Press, New York
Zurück zum Zitat Michaelis H, Müller EA (1942) Die Bedeutung des alveolaren CO2-Druckes für die Bestimmung des auf die Atmung entfallenden Energieverbrauches. Arbeitsphysiologie 12:85–91 Michaelis H, Müller EA (1942) Die Bedeutung des alveolaren CO2-Druckes für die Bestimmung des auf die Atmung entfallenden Energieverbrauches. Arbeitsphysiologie 12:85–91
Zurück zum Zitat Partington JR (1962) The discovery of oxygen. J Chem Educ 39:123–125CrossRef Partington JR (1962) The discovery of oxygen. J Chem Educ 39:123–125CrossRef
Zurück zum Zitat Riedman SR (1957) Antoine Lavoisier: scientist and citizen. Thomas Nelson & Sons, New York Riedman SR (1957) Antoine Lavoisier: scientist and citizen. Thomas Nelson & Sons, New York
Zurück zum Zitat Shephard RJ, Aoyagi Y (2012) Measurement of human energy expenditure, with particular reference to field studies: an historical perspective. Eur J Appl Physiol 112:2785–2815PubMedCrossRef Shephard RJ, Aoyagi Y (2012) Measurement of human energy expenditure, with particular reference to field studies: an historical perspective. Eur J Appl Physiol 112:2785–2815PubMedCrossRef
Zurück zum Zitat Speakman JR (1990) Principles, problems and a paradox with the measurement of energy expenditure of free-living subjects using doubly-labelled water. Stat Med 9:1365–1380PubMedCrossRef Speakman JR (1990) Principles, problems and a paradox with the measurement of energy expenditure of free-living subjects using doubly-labelled water. Stat Med 9:1365–1380PubMedCrossRef
Zurück zum Zitat Spriggs EA (1977) John Hutchinson, the inventor of the spirometer—his north country background, life in London, and scientific achievements. Med Hist 21:357–364PubMedPubMedCentralCrossRef Spriggs EA (1977) John Hutchinson, the inventor of the spirometer—his north country background, life in London, and scientific achievements. Med Hist 21:357–364PubMedPubMedCentralCrossRef
Zurück zum Zitat Webb P (1985) Human calorimeters. Praeger, New York Webb P (1985) Human calorimeters. Praeger, New York
Zurück zum Zitat West JB (2015) Joseph Black, carbon dioxide, latent heat, and the beginnings of the discovery of the respiratory gases. In: Essays on the history of respiratory physiology. Perspectives in physiology. Springer, New York, pp 99–112 West JB (2015) Joseph Black, carbon dioxide, latent heat, and the beginnings of the discovery of the respiratory gases. In: Essays on the history of respiratory physiology. Perspectives in physiology. Springer, New York, pp 99–112
Metadaten
Titel
Foundational insights into the estimation of whole-body metabolic rate
verfasst von
Nigel A. S. Taylor
Roy J. Shephard
Michael I. Lindinger
Publikationsdatum
26.02.2018
Verlag
Springer Berlin Heidelberg
Erschienen in
European Journal of Applied Physiology / Ausgabe 5/2018
Print ISSN: 1439-6319
Elektronische ISSN: 1439-6327
DOI
https://doi.org/10.1007/s00421-018-3828-9

Weitere Artikel der Ausgabe 5/2018

European Journal of Applied Physiology 5/2018 Zur Ausgabe

Neu im Fachgebiet Arbeitsmedizin

Elterliches Belastungserleben, Unaufmerksamkeits‑/Hyperaktivitätssymptome und elternberichtete ADHS bei Kindern und Jugendlichen: Ergebnisse aus der KiGGS-Studie

Open Access ADHS Leitthema

Die Aufmerksamkeitsdefizit‑/Hyperaktivitätsstörung (ADHS) ist eine der häufigsten psychischen Störungen im Kindes- und Jugendalter [ 1 ]. In Deutschland beträgt die Prävalenz einer elternberichteten ADHS-Diagnose bei Kindern und Jugendlichen 4,4 % …

Substanzkonsum und Nutzung von sozialen Medien, Computerspielen und Glücksspielen unter Auszubildenden an beruflichen Schulen

Open Access Leitthema

Die Begrenzung von Schäden durch Substanzkonsum und andere abhängige Verhaltensweisen von Jugendlichen und jungen Erwachsenen ist ein wichtiges Anliegen der öffentlichen Gesundheit. Der Übergang von der Adoleszenz zum jungen Erwachsenenalter ist …

Berufsbelastung und Stressbewältigung von weiblichen und männlichen Auszubildenden

Leitthema

In der Öffentlichkeit wird die berufliche Ausbildung oftmals unter ökonomischen Gesichtspunkten diskutiert: Mit den geburtenstarken Jahrgängen gehen erfahrene Fachkräfte in Rente und von nachfolgenden Generationen rücken zu wenige Arbeitskräfte …

Rauschtrinken in der frühen Adoleszenz

COVID-19 Leitthema

Alkohol ist in Deutschland die mit Abstand am häufigsten konsumierte psychoaktive Substanz. Mehr als 2 Drittel aller Erwachsenen im Alter von 18 bis 64 Jahren (70,5 %) hat 2021 in den letzten 30 Tagen Alkohol konsumiert [ 1 ]. Von diesen …