Bunning E.: The Physiological Clock. Circadian Rhythms and Biological Chronometry , 3rd ed. Springer-Verlag, New York, 1973
2.
Brown FA, JW Hastings, JD Palmer: The Biological Clock. Two Views. Academic Press , New York, 1970
3.
Binkley S.: A timekeeping enzyme in the pineal gland. Sci Am240:66-71, 1979
4.
Moore RY: Central neural control of carcadian rhythms. IN Frontiers in Neuroendocrinology, Vol 5, WF Ganong and L Martini (eds). Raven Press , New York, 1978, p 185-206
5.
Moore-Ede MC , FM Sulzman: The physiological basis of circadian timekeeping in primates. Physiologist20:17-25, 1977
6.
Wever R.: The circadian multioscillatory system of man. Int J Chronobiol3:19-55, 1975
7.
Fuller CA, FM Sulzman, MC Moore-Ede: Thermoregulation is impaired in an environment without circadian time cues . Science199:794-796, 1978
8.
Schweiger E. , HG Wallraff, HG Schweiger: Endogenous circadian rhythm in citoplasm of acetabularia: influence of the nucleus. Science146: 658-659, 1964
9.
Karakashian MW, HG Schweiger: Circadian properties of the rhythmic system in individual nucleated and ennucleated cells of the Acetabularia Mediterranea . Exp Cell Res97:366-377, 1976
10.
Sweeney BM, CF Tuffli, RH Rubin: The circadian rhythm of photosynthesis in acetabularia in the presence of actinomycin D, puromycin, and chloramphenicol. J General Physiol50:647-659, 1967
11.
Kloppstech R., HG Schweiger: 80S ribosomes from acetabularia . Biochim Biophys Acta324:365-374, 1973
12.
Brok-Simoni F., YE Ashkenazi, B. Ramot, F. Holtzman: The diurnal rhythm of enzymes in human red cells. Br J Hematol32:601-607, 1976
13.
Karakashian MW, HG Schweiger: Evidence of cycloheximide-sensitive component in the biological clock of acetabularia. Exp Cell Res98:303-312, 1976
14.
Feldman JF: Lengthening the period of a biological clock in euglena by cycloheximide, an inhibitor of protein synthesis. Proc Nat Acad Sci USA57:1080-1087, 1967
15.
Brinkman K. : Metabolic control of temperature compensation in the circadian rhythm of Euglena gracilis. IN Biochronometry , M Menaker (ed). National Academy of Sciences , Washington, DC, 1971, p 567-589
16.
Mergenhagen D., HG Schweiger: The effect of different inhibitors of transcription and translation in the expression and control of circadian rhythms in acetabularia. Exp Cell Res94:321-326, 1975
17.
Rothman B., F. Stromwasser: Phase shifting the circadian rhythm of neuronal activity in the isolated eye of aplysia with puromycin and cycloheximide. J General Physiol68:359-384, 1976
18.
Vasquez D.: Inhibitors of protein synthesis. FEBS Lett40:S63-S84, 1974
19.
Jacklet JW: Neuronal circadian rhythm: phase shifting by a protein synthesis inhibitor . Science198:69-71, 1977
20.
Frelinger JG , H. Motulsky, D. Woodward: Effects of chloramphenicol on the circadian rhythm of neurospora crassa. Plant Physiol58:592-594, 1976
21.
Keynan A.: Participation of membranes (group report). IN The Molecular Basis of Circadian Rhythms: Report on the Dahlem Workshop on the Molecular Basis of Circadian Rhythms (Life Sciences Research Report No. 1), JW Hastings and HG Schweiger (eds). Dahlem Konferenzem, Berlin, 1976, pp 239-240
22.
Njus D., FM Sulzman, JW Hastings: Membrane model for the circadian clock. Nature248:116-120, 1974
23.
Njus D.: Experimental approaches to membrane models. IN The Molecular Basis of Circadian Rhythms: Report on the Dahlem Workshop on the Molecular Basis of Circadian Rhythms (Life Sciences Research Report No. 1) , JW Hastings and HG Schweiger (eds). Dahlem Konferenzem, Berlin, 1976, pp 288-289
24.
Brody S., SA Martins: Circadian rhythms in neurospora crassa: effects of unsaturated fatty acids . J Bacteriol137:912-915, 1979
25.
Bruce VG: Environmental entrainment of circadian rhythms. Cold Spring Harbor Symp Quant Biol25:29-48, 1960
26.
Hartman H., I. Ashkenazi, BL Epel: Circadian changes in membrane properties of human red blood cells in vitro, as measured by a membrane probe. FEBS Lett67:161-163, 1976
27.
Schweiger HG , M. Schweiger: Circadian rhythms in unicellular organisms: an endeavor to explain the molecular mechanisms. Int Rev Cytol51:315-342, 1977
28.
Pavlidis T. : Spatial and temporal organization of populations of interacting oscillators . IN The Molecular Basis of Circadian Rhythms: Report on the Dahlem Workshop on the Molecular Basis of Circadian Rhythms (Life Sciences Research Report No. 1), JW Hastings and HG Schweiger (eds). Dahlem Konferenzem, Berlin, 1976, p 131-148
29.
Pavlidis T. : Populations of biochemical oscillators as circadian clocks. J Theoret Biol33:319-338, 1971
30.
Chance B., K. Pye, J. Higgins: Waveform generation by enzymatic oscillators. IEEE Spectrum4:79-86, 1967
31.
Holaday JW, HM Martinez, BH Natelson: Synchronized ultradian periodicity in monkeys: persistence during corticotropin infusion. Science198:56-58, 1977
32.
Kass D., FM Sulzman, CA Fuller, MC Moore-Ede: Ultradian periodicities in potassium excretion. Chronobiologia7:343-355, 1980
33.
Cummings FW : A biochemical model for the circadian clock . J Theoret Biol55:455-470, 1975
34.
Axelrod J.: The pineal gland: a neurochemical transducer. Science184:1341-1348, 1974
35.
Perlow MJ, B. Festoff, EK Gordon, MH Ebert, DK Johnson, TN Chase: Daily fluctuations in the concentration of C' AMP in the conscious primate brain. Brain Res126:391-396, 1977
36.
Wagner E., L. Stroebele, S. Frosch: Endogenous rhythmicity and energy transduction. V. Rhythmicity in adenine nucleotides and energy change in seedlings of chenopodium rubrum. J Interdisc Cycle Res5:77-88, 1974
37.
Pain VM: Protein synthesis and its regulation. IN Protein Turnover in Mammalian Tissues and in the Whole Body, JC Waterlow, PJ Garlick, DJ Millward (eds). Elsevier/North Holland Biomedical Press, Amsterdam, 1978, pp 15-24
38.
Feigelson P. , M. Beato, P. Colman, M. Kalimi, LA Killewich, G. Schutz: Studies in the hepatic glucocorticoid receptor and on the hormonal modulation of specific mRNA levels during enzyme induction. Recent Prog Horm Res31:213-242, 1975
39.
Stein G., J. Stein: Chromosomal proteins: their role in regulation of gene expression . Bioscience26:488-498, 1976
40.
Wang TY, NC Kostraba: Stimulation and transcription in vitro by non-histone chromosomal proteins . IN Chromosomal Proteins and Their Role in Regulation of Gene Expression, GS Stein, LJ Kleinsmith (eds). Academia Press, London, 1975, pp 35-44
41.
Kleinsmith LJ : Do phosphorylated proteins regulate gene activity? IN Chromosomal Proteins and their Role in Regulation of Gene Expression, GS Stein, LJ Kleinsmith (eds). Academia Press, London, 1975, pp 45-57
42.
Kleinsmith LJ , J. Stein, GS Skin: Direct evidence of a functional relation between non-histone chromosomal protein phosphorylation and gene transcription . IN Chromosomal Proteins and their Role in Regulation of Gene Expression. GS Stein, LJ Kleinsmith (eds). Academic Press, London, 1975, pp 59-66
43.
Limas CJ, C. Chan-Stier: Adenosine 3', 5'-monophosphate-dependent protein kinases of myocardial non-histone nuclear proteins. Biochim Biophys Acta477:404-413, 1977
44.
Gaub J.: Diurnal variations in endogenous RNA polymerase activity and amounts of nuclear non-histone protein, DNA, and cytoplasmic protein in rat liver . Histochemistry49:113-121, 1976
45.
Mikoni M., Y. Saito, T. Koyama, M. Daiguji, I. Yamashita, K. Yamazaki, M. Honna, M Ui: Circadian variations in plasma 3':5'cyclic adenosine monophosphate and 3':5'-cyclic guanosine monophosphate of normal adults. Life Sci22:667-672, 1978
46.
Guillemant S., J. Eurin, J. Guillemant, A. Reinberg: Rhythmes circadiens des nucleotides cycliques (AMP et GMP cycliques) due cortex surrenalien due rat male adulte . Ann d'Endocrinol (Paris)39:49-50, 1978
47.
Lehninger AL : Biochemistry, 2nd ed. Worth Publishers, Inc., New York, 1975, pp 807-828
48.
Rutler WJ, P. Valenzuela, GI Bell, M. Holland, GL Hager, LJ Degennaro, RJ Bishop: The role of DNA dependent RNA polymerases in transcriptive specificity . IN The Organization and Expression of the Eukaryotic Genome , EM Bradbury, K Javaherian (eds). Academic Press, London , 1977, pp 280-283
49.
Yu, F-L. , P. Feigelson: Cortisone stimulation of nucleolar RNA polymerase activity. Proc Nat Acad Sci USA68:2177-2180, 1971
50.
Glasser SR, F. Chytil, TC Spelsberg: Early effects of estradiol-17 on the chromatin and activity of the deoxyribonucleic acid-dependent ribonucleic acid polymerases (I and II) of the rat uterus. Biochem J130:947-957, 1972
51.
Manchester KL: Hormonal control of protein biosynthesis . IN Synthesis of Amino Acids and Proteins, MTP International Review of Science. Biochemistry Series One, Vol 7. HRV Arnstein (ed). Butterworths and Company, London, 1975, pp 329-358
52.
Mertelsmann R. , M. Garbretch, HW Theitbrock: DNA dependent RNA polymerases in normal human and leukemic white blood cells. IN The Molecular Basis of Malignancy, E Deutsch , K MoverH Rainer, A Stacher (eds). George Thieme Verlag , Stuttgart , 1975, pp 25-32
53.
Mertelsmann R., HW Theitbrock, M. Garbretch: Circadian variation of -amanitin sensitive RNA-synthesis in normal human lymphocytes. Haematol Bluttransfus19:485-489, 1976
54.
Neubert D., M. Rautenberg: Circadian fluctuations in the activity of DNA-dependent RNA polymerases I and II in the nuclei isolated from mouse tissues and the significance for pharmacological and toxicological studies on transcription. Arch Toxicol36:217-234, 1976
55.
Henshaw, EC , CA Hirsch, BE Morton, HH Hiatt: Control of protein syhesis in mammalian tissues through changes in ribosome activity. J Biol Chem246:436-446, 1971
56.
Rannels DE, AE Pegg, SR Rannels, LS Jefferson: Glucocorticoid effect on peptide-chain initiation in skeletal muscle and heart . Am J Physiol235:E134-E139, 1978
57.
Wool IG, WS Stirewalt, K. Kurihara, RB Low, P. Bailey, D. Over: Mode of action of insulin in the regulation of protein biosynthesis in muscle . Recent Prog Horm Res24:139-213, 1968
58.
Morgan HE, LS Jefferson, EB Wolpert, DE Rannels: Regulation of protein synthesis in heart muscle. II. Effect of amino acid levels and insulin in ribosomal aggregation. J Biol Chem246:2163-2170, 1971
59.
Waterlow JC , PJ Garlick, DJ Millward: Protein Turnover in Mammalian Tissues and in the Whole Body. Elsevier/ North Holland Biomedical Press , Amsterdam, 1978
60.
Pauly JE, LE Scheving: Circadian rhythms in blood glucose and the effect of different lighting schedules, hypophysectomy, adrenal medullectomy, and starvation. Am J Anat120:627-636, 1967
61.
Bellinger LL , VE Mendel, GP Moberg: Circadian insulin, G.H., prolactin, corticosterone, and glucose rhythms in fed and fasted rats . Horm Metab Res7:132-135, 1975
62.
Faiman C., JA Moorhouse: Diurnal variations in the levels of glucose and related substances in healthy and diabetic subjects during starvation. Clin Sci32:111-126, 1967
63.
Freinkel N. , M. Mager, L. Vinnick: Cyclicity in the interrelationships between plasma insulin and glucose during starvation in normal young men. J Lab Clin Med71:171-178, 1968
64.
Jarret RJ: Rhythms in insulin and glucose. IN Endocrine Rhythms . DT Krieger (ed). Raven Press, New York, 1979, pp 247-258
65.
Hjalmarson AC, DE Rannels, R. Kao , HE Morgan: Effects of hypophysectomy, growth hormone and thyroxine on protein turnover in the heart. J Biol Chem250:4556-4561, 1975
66.
Parker DC, LG Rossman, DF Kripke, W. Gibson, K. Wilson: Rhythmicities in human growth hormone concentrations in plasma. IN Endocrine Rhythms, DT Krieger (ed). Raven Press, New York, 1979, pp 143-173
67.
Cohen ME, TH Hamilton: Effect of estradiol-17 on the synthesis of specific uterine non-histone chromosomal proteins. Proc Nat Acad Sci USA72:4346, 1975
68.
Rebar RW, SSC Yen: Endocrine rhythms in gonadotropins and ovarian steroids with reference to reproductive processes. IN Endocrine Rhythms, DT Krieger (ed). Raven Press, New York, 1979, pp 259-298
69.
Manchester KL : Sites of hormone regulation. IN Mammalian Protein Metabolism, HN Munro (ed). Academic Press, New York , 1970, pp 229-298
70.
Young VR, SD Alexis: In vitro activity of ribosomes and RNA content of skeletal muscle in young rats fed adequate or low protein. J Nutr96:255-262, 1968
71.
Krieger DT: Rhythms in CRF, ACTH, and corticosteroids. IN Endocrine Rhythms . Raven Press, New York , 1979, pp 123-142
72.
Shiotsuka R. , J. Jovonovich, JA Jovonovich: Circadian and ultradian corticosteroid rhythms in adrenal organ cultures. IN Chronological Aspects of Endocrinology, FK Schattauer (ed). Springer-Verlag, New York, 1974, pp 255-267
73.
O'Hare MJ, PJ Hornsby: Absence of a circadian rhythm of corticosterone secretion in monolayer cultures of adult rat adrenocortical cells. Experientia31:378-380, 1975
74.
Krieger DT, GP Gewirtz: The nature of the circadian periodicity and suppressibility of immunoreactive ACTH levels in Addison's disease. J Clin Endocrinol Metab39:46-52, 1974
75.
De Loecker W.: The effects of cortisol on glycine and leucine incorporation in vivo and in vitro in strips of skeletal rat muscle. , Acta Endocrinol52:416-424, 1966
76.
Van Venrooij WJW , EC Henshaw, CA Hirsch: Effects of deprival of glucose or individual amino acids on polyribosome distribution and rate of protein synthesis in cultured mammalian cells. Biochim Biophys Acta259:127-137, 1972
77.
Enwonwu CO: Protein synthesis in the perfused liver: comparative evaluation of the influence of amino acid supply on intact and isolated perfused rat liver . IN Plasma Protein Turnover, R Bianchi, G Mariani, AS McFarlane (eds). University Park Press, Baltimore, 1976, pp 191-217
78.
Feigin RD, AS Klainer, WR Beisel: Circadian periodicity of blood amino acids in adult men. Nature215:512-514, 1967
79.
Wurtmann RJ , CM Rose, C. Chou, FF Larin: Daily rhythms in the concentrations of various amino acids in the human plasma . N Engl J Med279:171-175, 1968
80.
Feigin RD, AS Klainer, WR Beisel: Factors affecting circadian periodicity of blood amino acids in man . Metabolism17:764-765, 1968
81.
Feigin RD, MW Haymond: Circadian periodicity of blood amino acids in the neonate. Pediatrics45:782-791, 1970
82.
Hussein MA, VR Young, E. Murray, NS Scrimshaw: Daily fluctuation of plasma amino acid levels in adult men: effect of dietary tryptophan intake and distribution of meals. J Nutr101:61-69, 1971
83.
Palmer T., MA Rossiter, B. Levin, VG Oberholzer: The effects of protein loads in plasma amino acid levels. Clin Sci Mole Med45:827-832, 1973
84.
Nilson JP, M. Morgan, S. Sherlock: Factors affecting amino acid concentrations in control subjects. Metabolism28:313-319, 1979
85.
Munro HM: Free amino acid pools and their role in regulation. IN Mammalian Protein Metabolism . Academic Press, New York, 1970, pp 299-386
86.
Fernstrom JD : The influence of circadian variations in plasma amino acid concentrations in monoamine synthesis in the brain. IN Endocrine Rhythms, DT Krieger (ed). Raven Press, New York, 1978, pp 89-122
87.
Ross DS, JD Fernstrom, RJ Wurtmann: The role of dietary protein in generating daily rhythms in rat liver tryptophan pyrrolase and tyrosine transaminase. Metabolism22:1175-1184, 1973
88.
Saito M., Y. Sato, M. Suda: Circadian rhythm and dietary response of disaccharidase activities in isolated rat jejunum. Gastroenterology75:828-831, 1978
89.
Stevenson NR , F. Ferrigni, K. Parnicky, S. Day , JS Fierstein: Effects of changes in feeding schedule on the diurnal rhythms and daily activity levels of intestinal brush border enzymes and transport systems. Biochim Biophys Acta406:131-145, 1975
90.
Clemens MJ, JR Tata: An analysis of the effects of oestrogen treatment in vivo on the protein-synthetic activity of male xenopus liver cell-free systems. Eur J Biochem33:71-80, 1973
91.
Lucke C., R. Hehrmann, K von Mayersbach, A von zur Mullen: Studies on circadian variations of plasma TSH, thyroxine, and tricodothyronine in man. Acta Endocrinol86:81-88, 1977
92.
de Costre P. , U. Buhler, LJ DeGroot, S. Refetoff: Diurnal rhythms in serum thyroxine levels . Metabolism20:782-791, 1971
93.
Millward DJ , DO Nnanyelugo, WP James, PJ Garlock: Protein metabolism in skeletal muscle: the effect of feeding and fasting on muscle RNA free amino acids and plasma insulin concentrations. Br J Nutr32:127-142, 1974
94.
Segal HL, GA Drumway, JR Winkler: The role of lysosomes in protein turnover. IN Proteolysis and Physiological Regulation (Miami Winter Symposium; Vol 11), K Brew, DW Ribbons (eds). Academic Press, New York, 1976, pp 287-308
95.
Neeley AN, PB Nelson, GE Mortimore: Osmotic alterations of the lysosomal system during rat liver perfusion: reversible suppression by insulin and amino acids. Biochim Biophys Acta338:458-472, 1974
96.
Fulks RM, JB Li, AL Goldberg: Effects of insulin, glucose, and amino acids on protein turnover of fat diaphragm . J Biol Chem250:290-298, 1975
97.
Moore FD: Homeostasis: bodily changes in trauma and surgery. IN Textbook of Surgery. Sabiston DC, (ed). W.B. Saunders, Philadelphia, 1977 , pp 27-64
98.
Bloom B.: A role for night and day in evolution. Perspect Biol Med10:269-271, 1969
99.
Moore FD: Energy and the maintenance of the body cell mass. (The Jonathan Rhoads Lecture to the American Society of Enteral and Parenteral Nutrition, February 1, 1980.) J Parenteral Enteral Nutr4:228-260, 1980
100.
Neuberger A. , FF Richards: Protein biosynthesis in mammalian tissues. II. Studies on turnover in the whole animal. IN Mammalian Protein Metabolism, Vol I. HN Munro, JB Allison (ed). Academic Press, New York , 1964, pp 243-296
101.
Picou D., T. Taylor-Roberts: The measurement of total protein synthesis and catabolism and nitrogen turnover in infants in different nutritional states and receiving different amounts of dietary protein. Clin Sci36:283-296, 1969
102.
Garlick PJ , GA Clugston, RW Swick, JC Waterlow: Diurnal pattern of protein and energy metabolism in man. Am J Clin Nutr33:1983-1986, 1980
103.
Buckley WT , RR Marquardt: Diurnal variation of L-[L-14C] leucine and L-[L-14C] lysine in rats. J Nutr110:974-981, 1980
104.
Golden MHN , JC Waterlow: Total protein synthesis in elderly people: a comparison of results with (15N) glycine and (14C) leucine . Clin Sci Mole Med53:277-288, 1977
105.
Kim C.-W. , A. Okada, H. Konishi, T. Nakajima: Urinary excretion of amino acids in patients receiving intravenous hyperalimentation. Clin Chim Acta83:151-159, 1978
106.
Moore-Ede MC, JA Herd: Renal electrolyte circadian rhythms: independence from feeding and activity patterns. Am J Physiol232:F128-F135, 1977
107.
Sulzman FM , CA Fuller, MC Moore-Ede: Comparison of synchronization of primate circadian rhythms by light and food. Am J Physiol234:R130-R135, 1978
108.
Finn MC, LD Berrizbeitia, M. Colpoys, MC Moore-Ede, FD Moore: Circadian timing of intravenous feeding. Day-night contrasts of infusion effectiveness in the squirrel monkey. J Clin Surg1:236-241, 1982
109.
Hardeland R., L. Rensing: Circadian oscillation in rat liver tryptophan pyrrolase and its analysis by substrate and hormone induction . Nature219:619-621, 1968
110.
Ishikawa K. , T. Shimazu: Daily rhythms in glycogen synthetase and phosphorylase activities in rat liver: influences of food and light. Life Sci19:1873-1878, 1976
111.
Rebolledo OR, JJ Gagliardino: Circadian variations of the protein metabolism in muscle. J Interdisc Cycle Res2:101-108, 1971
112.
Lebouton AV and SD Handler: Diurnal incorporation of 3H-leucine into liver protein. FEBS Lett10:78-80, 1970
113.
Kato H., M. Mizutani-Funahashi, S. Shiosaka, H. Nakagawa: Circadian rhythms of urea formation and arginosuccinate synthetase activity in rat liver. J Nutr108:1071-1077, 1978
114.
Hardeland R.: Circadian rhythmicity in cultured liver cells. I. Rhythms in tyrosine amino transferase activity and inducibility and in (3H)-leucine incorporation. Int J Biochem4:581-590, 1973
115.
Hardeland R.: Circadian rhythmicity in cultured liver cells. II. Re-induction of rhythmicity in tyrosine amino transferase activity. Int J Biochem4:591-595, 1973
116.
Stevenson NR, F. Ferrigni, K. Parnicky, S. Day , JS Fierstein: Effect of changes in feeding schedule on the diurnal rhythms and daily activity levels of intestinal brush border enzymes and transport systems. Biochim Biophys Acta406:131-145, 1975
117.
Pocknee RC , FW Heaton: Changes in organ growths with feeding pattern. The influence of feeding frequency on the circadian rhythm of protein synthesis in the rat. J Nutr108:1266-1273, 1978
118.
Lardeux B. , G. Bourdel, A. Girard-Globa: Regulation of hepatic synthesis of proteins by the chronology of protein ingestion. Biochim Biophys Acta518:113-1241978
119.
Peret J., M. Chanez, G. Pascal: Schedule of protein ingestion and circadian rhythms of certain hepatic enzyme activities involved in glucose metabolism in the rat. Nutr Metab20:143-157, 1976
120.
Perez J., I. Macaire, M. Chanez: Schedule of protein ingestion, nitrogen, and energy utilization, and circadian rhythms of hepatic glycogen, plasma corticosterone, and insulin in rats. J Nutr103:866-874, 1973
121.
Felig P., J. Wahren, R. Sherwin, R. Hendler: Insulin, glucagon, somatostatrin in normal physiology and diabetes mellitus . Diabetes25:1091-1099, 1976
122.
Reichlin S. : Regulation of somatotropic hormone secretion . IN Handbook of Physiology, Vol 4, E Knobil, WH Sawyer (ed). American Physiological Society, Washington, D.C., 1974, pp 405-447
123.
Jarret RJ, H. Keen: Further observations on the diurnal variations in oral glucose tolerance . Br Med J4:334-337, 1970
124.
Marliss EB, TT Aoki, RH Unger, JS Soeldner, GE Cahill: Glucagon levels and metabolic effects in fasting man. J Clin Invest49:2256-2270, 1970
125.
Meier AH: Daily variations in concentration of plasma corticosteroid in hypophysectomized rats. Endocrinology98:1475-1479, 1976
126.
Dudrick SJ, DW Wilmore, HM Vars: Longterm total parenteral nutrition with growth in puppies and positive nitrogen balance in patients. Surg Forum18:356-357, 1967
127.
Hirsch E., E. Halberg, F. Halbert, et al: Body weight change during one week on a single daily 2,000-calorie meal consumed as breakfast (B) or dinner (D). Chronobiologia2(suppl. 1):31-32, 1975
128.
Maini B., GL Blackburn, BR Bistrian, JP Flatt, JG Page, A. Bothe, P. Benotti, HY Rienhoff: Cycle hyperalimentation : an optimal technique for the preservation of visceral protein. J Surg Res20:515-525, 1976
129.
Houk JC: Homeostasis and control principles. IN Medical Physiology , 4th ed, Vol 1, VB Mountcastle (ed). The CV Mosby Company, St. Louis: 1980, pp 246-267
130.
Ritcher PH , J. Ross: Concentration oscillations and efficiency: glycolysis. Science211:715-717, 1981
131.
Adam K.: Sleep as a restorative process and a theory to explain why. Prog Brain Res53:289-305, 1980
132.
Gadian DG, GK Radda: NMR studies of tissue metabolism. Ann Rev Biochem50:69-83, 1981