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1.
  • 1.1. The in trarumen pressure (IRP) of eight calves was elevated for 10 min by nitrogen insufflation to pressures of 5, 10, 15 and 20 cm H2O.
  • 2.2. Rumen motility was evaluated by recording reticulorumen myoelectrical activity and changes in luminal pressure, while eructation was determined from anterior tracheal and face mask gas expulsion.
  • 3.3. The elevation of IRP increased primary rumen contraction frequency slightly and secondary rumen contraction frequency as much as 3-fold.
  • 4.4. Rumen gas was expelled only during rumen contractions and virtually always during secondary rumen contractions.
  • 5.5. Cattle do not exhibit the primary-secondary contraction previously identified in sheep and their rumen motility appears to be less sensitive than sheep to increases in IRP.
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2.
  • 1.1. Exposure to hypoxic sea water (pO2 = 50mm Hg) and hyposalinity (20%.) caused the heart rate of Patella granularis to decline rapidly. This was particularly marked in hypoxia where normal heart rate (50 beats/min) fell initially to between 15–30 beats/min, and later (after 2 hr) cardiac arrest occurred. When oxygen tension and salinity were eventually normalized, heart rate became significantly elevated, above the normal rate.
  • 2.2. In Siphonaria capensis, exposure to reduced oxygen tension and salinity usually induced a regular, although often delayed (after 2 hr) bradycardia (< 10 beats/min). No significant cardiac overshoot was observed for this limpet species.
  • 3.3. The significance of the different heart beat patterns by the limpet species, which may be linked with respiratory/metabolic responses, is discussed with regard to the respective capacities of the species for colonization of upper-shore pools.
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3.
  • 1.1. The ECG of aquatic Amhystoma tigrinum from the Colorado Rocky Mountains was recorded while the animals submerged and emerged in water. Older larvae and metamorphosed adults were compared.
  • 2.2. Free-swimming animals of both types showed slight emergence tachycardia when taking a “gulp” of air.
  • 3.3. Preventing access to air for 30 min or more resulted in a slight bradycardia in larvae. Some adults responded with increased, others with decreased, heart rate depending on their level of excitement.
  • 4.4. Restraining the animals before forced submergence caused a greater bradycardia than when unrestrained.
  • 5.5. Low dissolved oxygen accentuated the cardiac responses of larvae to submergence but not in adults.
  • 6.6. Atropine only partially blocked the diving responses of both forms.
  • 7.7. The degree of submergence bradycardia seems to be a function of the ability to extract oxygen from water. It probably is not an adaptation to diving in these forms. Instead the submerged heart rate in these predominantly aquatic salamanders may be the “normal” rate with emergence tachycardias for breaths of air.
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4.
  • 1.1. The effect of regular handling on fear reactions was investigated in mallard (Anas platyrhynchos) by exposing six hand-reared and four wild ducks to an approaching human being and recording heart rates with an external ECG device.
  • 2.2. All ducks reacted to the approach with tachycardia, but the response was significantly less in tame birds.
  • 3.3. Hand-reared females showed less response than males. No sex-linked differences were apparent in the wild ducks.
  • 4.4. Decreasing responses throughout the experiments were only found in tame birds.
  • 5.5. Fear or stress reactions can apparently be diminished through habituation induced by regular handling.
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5.
  • 1.1. The pharyngeal movements of Trionyx sinensis during submersion where recorded with physiological instruments.
  • 2.2. Anoxia or hypercapnia caused a marked increase in breathing rate of tested turtles during voluntary diving, and in anoxia there was a significant increase in the frequency of aquatic pharyngeal movements while hypercapnia had a slight or no effect on the frequency of these movements.
  • 3.3. During voluntary diving when turtles could easily extend their heads out of water to breathe air, the frequency of rhythmic pharyngeal movements was lower; but during forced submersion, the frequency was higher and the movements were continuous.
  • 4.4. The frequency increased more rapidly and greatly when turtles were in forced submersion than when they dived freely and could easily surface to breathe in N2.
  • 5.5. The frequency of pharyngeal movements of T. sinensis during diving in an aquarium with water depth of 30 or 45 cm was markedly higher than that at a water depth of 15 cm. Disturbing stimuli also influenced the aquatic rhythmic pharyngeal movements of T. sinensis.
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6.
  • 1.1. Some aspects of the gas exchange system of a diving lizard, Physignathus lesuewii were studied.
  • 2.2. Breathing patterns were analysed.
  • 3.3. Breathing rate increases logarithmically with temperature and Q10 = 1.8. LogBR = −0.237 + 0.0256 T.
  • 4.4. Gas tensions in lung air and arterial and venous blood were measured. Arterial pH declines with increasing temperature.
  • 5.5. Temperature has a marked effect on oxygen affinity of the blood (ΔH = −10.1 kcal mol). A Bohr effect was also noted.
  • 6.6. CO2 equilibrium curves were drawn.
  • 7.7. The results are considered with a view to anticipating the efficiency of the gas exchange system of this species under conditions of variable temperature and during diving.
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7.
  • 1.1. Water vapour conductance (GH2O) was determined for 25 grey heron Ardea cinerea eggs in the laboratory, and in nests during natural incubation at two Scottish colonies.
  • 2.2. The mean GH2O of eggs measured in the nest which successfully hatched was 9.0 mgH;O/mmHg/day and the mean water vapour pressure gradient between egg and nest (ΔPH2O), measured using “calibrated” duck eggs, averaged at 31 mmHg (4.13 kPa).
  • 3.3. Based on eggshell porosity results, from the eggs which hatched, such a gradient would result in a loss of water from the eggs during incubation equivalent to 11% of their fresh weight.
  • 4.4. Shell thickness, the number of pores/cm2 of eggshell and DDE content were also determined for the 25 eggs measured in the laboratory.
  • 5.5. Eggs containing high levels of DDE had thinner shells, more pores in the eggshell and a higher overall eggshell porosity.
  • 6.6. The main problem posed by a high level of DDE would appear, however, not to be an excessive water loss from the egg during incubation, but rather eggshell thinning leading to a loss of the egg due to breakage in the nest.
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8.
  • 1.1. The non-specific hen's egg yolk alkaline phosphatase is a metalloprotein (Zn2+?) composed of two identical inactive subunits.
  • 2.2. A second metal site preferably binds Mg2+ (15-fold activation). Me(II))H2O)H+, a charged arginine, and tyrosine in the active site are involved in positioning and binding of the substrate and metal ion.
  • 3.3. Substrate inhibition differs with pH. This may be related to the presence of two active sites in the enzyme, one in each subunit.
  • 4.4. Uncompetitive inhibition with L-phenylalanine and analogues suggests a phosphorylated intermediate.
  • 5.5. Inhibition is weakly competitive with Pi strong non-competitive with PPi as compared to Mg2+-free PPi, and partially competitive with arsenate.
  • 6.6. The purified enzyme is stabilized and activated by amines and proteins.
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9.
  • 1.1. Studies of experimentally induced hypoxia were carried out on synapses in the isolated sixth abdominal (A6) ganglion of the cockroach using electrophysiological methods.
  • 2.2. During a break of saline superfusion, oxygen tension (PO2) decreased and depolarization of presynaptic and postsynaptic membranes was observed.
  • 3.3. During hypoxia EPSP amplitude initially increased, but decreased after a few minutes.
  • 4.4. Changes in the EPSP and membranes potential resulting from hypoxia were reversed when the saline superfusion was restarted.
  • 5.5. Changes in the amplitude of both the EPSP and the depolarization induced by microiontophoretic injections of ACh indicated that ACh release initially increased during hypoxia and decreased during recovery from oxygen deprivation.
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10.
  • 1.1. Starch gel clectrophoresis was used to determine the polymorphism of pre-conalbumin, conalbumin and ovomucin in the egg white of Peking and Muscovy ducks and the Peking × Muscovy hybrids (F1 generation).
  • 2.2. In the interspecific hybrids of ducks the codominant type of heredity of these proteins were found.
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11.
  • 1.1. The locomotor-inducting factor of the giant African snail, Achatina fulica, was examined.
  • 2.2. Snails showed nocturnal circadian behavior in relative humidity at least over 50%. Although the rhythmicity was independent of light and darkness, it was disturbed easily by hydration, and hydrated snails continued to locomote throughout the day. For induction of locomotor behavior, relative humidity over 50% was the fundamental factor and water is shown to be the limiting factor for the endogeneous circadian oscillator.
  • 3.3. The integument of snails showed a higher water permeability. Through the integument, hemolymph osmolality changed easily according to hydration and dehydration from about 120 to 400 mOsm/kg H2O. Circadian behavior was induced in snails in which hemolymph osmolality ranged from about 130 to 230 mOsm/kg H2O.
  • 4.4. By hydration, hemolymph osmolality in quiescent and estivated snails which have higher osmolality decreased gradually and then they began to locomote according to the degree of dilution, and vice versa. The induction of behavior in these snails was controlled by low hemolymph osmolality.
  • 5.5. Together with the endogeneous rhythmicity, water environment was shown to be the key factor for the induction of locomotor behavior.
  • 6.6. Based on these results, the mechanisms of the induction of locomotor behavior in terrestrial pulmonates are proposed.
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12.
  • 1.1. When protoporphyrin is added to normal red cells it distributes to about 30% in the stroma and 70% in the cytosol. By comparison, in erythropoietic protoporphyria red cell protoporphyrin is found to more than 95% in the cytosol.
  • 2.2. At equimolar concentrations of protoporphyrin the photohemolysis is much more severe in normal red cells with exogenous protoporphyrin than in red cells from patients with erythropoietic protoporphyria.
  • 3.3. The photohemolysis is markedly enhanced when D2O is used as solvent instead of H2O.
  • 4.4. The results suggest that the photodamage is determined by the ability of susceptible structures to accumulate porphyrins, the partition of porphyrins between lipophilic and hydrophilic structures and the longevity of singlet oxygen in lipophilic environments.
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13.
  • 1.1. A series of diesters of isohematoporphyrin (isoHp), from dimethyl to dioctyl were prepared according to Rimington et al. (1989b). Their optical absorption, fluorescence spectra and high performance liquid chromatography (HPLC) retention times were recorded.
  • 2.2. A plot of HPLC retention time against number of C atoms in the alcohol used for esterification was approximately linear at first then rising steeply from diamyl to diocyi ester, whether a gradient elution was used or only methanol: water, 95/5, at pH 7.5.
  • 3.3. Preparation of the diethers of isoHp was much more difficult than that of the corresponding derivatives of hematoporphyrin (Hp). Several different methods were investigated, varying both times and temperatures.
  • 4.4. These methods included reaction of isoHp or its demethyl ester with
    • 4.1.(i) a bromoalkane in presence of anhydrous K2CO3;
    • 4.2.(ii) reaction with bromoalkane and Ag2O;
    • 4.3.(iii) reaction of brominated-isoHp, prepared by using thionylbromide, with the selected alcohol, or corresponding sodium alcoholate;
    • 4.4.(iv) heating of isoHp alone with an alcohol containing 20% (w/v) H2SCO4 (temp. range from 45° to 118°C),
    • 4.5.(v) refluxing as in (iv) at the b.p. of the alcohol; and
    • 4.6.(vi) carrying out this reaction in refluxing ethyleneglycoldimethyl ether (b.p. 85°C) or diethyleneglycoldimethyl ether (b.p. 155°C).
  • 5.5. Some diether formation was observable by all these methods but yields were small, a considerable quantity of unreacted isoHp and other products remaining.
  • 6.6. Examined by HPLC, the diethers consistently afforded a forked peak which on thin layer chromatography was only resolved into two very closely associated bands by a solvent mixture carefully selected for development.
  • 7.7. On elution these materials had virtually identical optical absorption and fluoresence spectra.
  • 8.8. The nature of the association is discussed, atropisomers (Gottwald and Ullman, 1969) and possible stacked monomer: dimers (Abraham et al., 1963) being considered as possibilities.
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14.
  • 1.1. The effect of incorporating D2O into the incubation medium on glycolysis and gluconeogenesis by hepatocytes from fasted rats was examined.
  • 2.2. The substitution by heavy water, D2O, at concentrations from 10 to 40%, stimulated glucose uptake, lactate production and CO2 yields from glucose. At 10 mM glucose, 40% D2O doubled glucose uptake, increased CO2 production by 40%, and increased lactate production by 350%.
  • 3.3. The stimulation of lactate production decreased at higher glucose concentrations, but was still substantial even at 80 mM glucose.
  • 4.4. There was no effect on CO2 production above glucose concentrations of 30 mM.
  • 5.5. Ten percent D2O showed little inhibition of lactate uptake, its oxidation and gluconeogenesis. At 40% D2O the inhibition ranged from 10 to 20%.
  • 6.6. No effect of D2O on the rate of glucokinase or glucose-6-phosphatase was observed.
  • 7.7. The concentration of fructose, 2,6-P was not affected by D2O
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15.
  • 1.1. Sedimentation velocity and sedimentation equilibrium studies of bovine heart AMP-deaminase were performed. Molecular weights of the native enzyme and subunit were determined as 161,000 and 43,000 dallons respectively.
  • 2.2. The kinetic data indicate that in the presence of 100 mM KCl the enzyme may be active as a dimer.
  • 3.3. The influence of temperature on the enzyme kinetics was investigated, from which activation energy (Ea and the heat of enzyme-substrate complex formation (ΔHs) were calculated.
  • 4.4. It is suggested that an equilibrium may exist between a dimeric and tetrameric form of AMP-deaminase in the heart.
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16.
  • 1.1. Anterior byssus retractor muscle of Mytilus (ABRM) was stimulated to contract by ACh (acetylcholine) and effects of temperature (5–30°C), FDNB (1-fluoro 2,4 dinitro-benzene) and IAA (iodoacetic acid) on tension response were examined.
  • 2.2. Isometric tension was highest at the temperature range of 10–20°C and decreased at higher and lower temperature than that range.
  • 3.3. The rate of tension decay after washing of ACh was accelerated by the increase of temperature.
  • 4.4. Tension redevelopment after release of 1 % during contraction was much smaller at 5°C than at 20°C.
  • 5.5. Tension development by ACh and the rate of tension decay after washing of ACh were remarkably decreased by the treatment of FDNB or IAA.
  • 6.6. The above results were discussed from the viewpoint that energy metabolism might be related to catch.
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17.
  • 1.1. A thermostable orthophosphoric monoester phosphohydrolase (EC 3.1.3.1) from Thermus sp strain Rt41A has been purified 400-fold to give a specific activity of 25 U/mg at 60°C in IM diethanolamine (pH 11.1).
  • 2.2. The enzyme has a Mr of 160,000 and is trimeric.
  • 3.3. The half-life of the enzyme is 5 min at 85°C.
  • 4.4. The enzyme has a wide specificity for a number of phosphate monoesters.
  • 5.5. The Hm of the enzyme is pH dependent, so the pH optimum of the enzyme is affected by the substrate concentration.
  • 6.6. The enzyme is inhibited 50% by 20 mM Ca2+ or Mg2+.
  • 7.7. The Ki for phosphate, EDTA-di sodium salt and arsenate (in 1 M diethanolamine, pH 11.1) is approx 1.2, 1.6 and 4mM respectively.
  • 8.8. Urea (200 mM) is not inhibitory.
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18.
  • 1.1. The cardiovascular physiology of adult Carcinus maenas (L.) emerging into air has been investigated at three different air temperatures.
  • 2.2. Transition from seawater to air or vice versa triggered transient increases in cardiac and locomotor activity.
  • 3.3. However, crabs became inactive 5–10 min after emerging from seawater (15°C) into air at the same temperature (15°C) or at lower temperatures (12–13°C) and heart rate fell.
  • 4.4. At higher air temperatures (18–20°C) heart rate rose but to a lesser extent than predicted from aquatic Q10 heart-rate values.
  • 5.5. Crabs were again quiescent in aerial conditions.
  • 6.6. Mean arterial oxygen tension (Pao2) was ~ 74 mmHg in submerged crabs but fell to ~ 38 mmHg in air while mean arterial carbon dioxide tension (Pao2) increased from 1 to 4 mmHg resulting in respiratory acidosis.
  • 7.7. A model of gill function is proposed to explain the development of internal hypoxia in air.
  • 8.8. The results are discussed in relation to the distribution of adult and juvenile C. maenas in situ.
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19.
  • 1.1. The heart rate and motor activity of lizards (Gallotia galloti) maintained in a light-dark cycle (12:12 hr) and with changing cyclic temperature were recorded. Both variables showed a circadian pattern, motor activity variations leading heart rate by approximately 110 min.
  • 2.2. Results from cross spectral analysis showed that heart rate was highly correlated with temperature and both variables were changing practically in phase. However, motor activity and temperature were less correlated and in this case motor activity led temperature by approximately 100 min.
  • 3.3. In the ultradian range, two periodicities could be distinguished in the power spectra of motor activity and heart rate variations during the day: one between 0.019 and 3.9 × 10−3 cycles/min (central peak around 85 min period) and another, of lower power, between 0.05 and 0.02 cycles/min (central peak around 34 min period). During the night, only the heart rate showed both periodicities but with a lower amplitude.
  • 4.4. The presence of ultradian oscillations in heart rate during the night suggested that they do not depend on motor activity which was almost absent during that daily period.
  • 5.5. Motor activity and heart rate were also highly correlated in the ultradian range, motor activity leading heart rate by around 5 min at the 85 min main peak.
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20.
  • 1.1. Fundamental chitin digestion characteristics of Crassostrea virginica crystalline style were investigated.
  • 2.2. Optimum temperature and pH were 34°C and 4.8. respectively.
  • 3.3. The colloidal regenerated chitin (0.56mol/0.5 ml: GlcNAc equivalents) was saturating under all enzyme levels encountered.
  • 4.4. There was no evidence of end product inhibition, even after 100 hr incubation.
  • 5.5. Calculated Km for the chitinase complex was 1.19mM when determined using a 30 min assay, but was only 0.70 mM when determined using a 4.6 hr assay.
  • 6.6. Both Km values are lower than reported for similar assays in other molluscs and for most bacteria.
  • 7.7. Effect of substrate preparation on the kinetics are discussed.
  • 8.8. Eight peaks of chitinase activity were resolved by DEAE-Fractogel ion exchange chromatography.
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