PubMed HealthSearch

PubMed · 8140740

Blood gas sampling errors during exercise.

Abstract

The source did not provide an abstract. Follow the original record for more information.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

J H Jones. Blood gas sampling errors during exercise.. https://doi.org/10.1111/j.1532-950x.1994.tb00444.x

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Effect of racing on serum sodium and potassium concentrations and acid-base status of Alaskan sled dogs.

OBJECTIVE: To examine the effect of participation in a long-distance race on serum electrolyte concentrations, estimated exchangeable cation content, and acid-base status of Alaskan sled dogs. DESIGN: Prospective study. ANIMALS: 9 male and 5 female, sexually intact, physically fit Alaska sled dogs between 18 and 48 months old. PROCEDURE: Body weight was recorded, and blood samples were collected from dogs before, during, and after a 300-mile race. RESULTS: Serum sodium and potassium concentrations decreased during the race, as did serum total protein, albumin, and globulin concentrations and PCV. Effects on acid-base status were minimal. Body weight and estimated total exchangeable cation content in dogs also decreased significantly during the race. CLINICAL IMPLICATIONS: Prolonged running is associated with decreases in serum cation concentration and estimated total exchangeable cation content in dogs, as in human beings and horses. However, the mechanism of the decrease in serum cation concentration likely differs among species. Clinical abnormalities associated with cation depletion were not observed in the dogs in this study.

Acid-Base Equilibrium

Different effects of omeprazole and Sch 28080 on canine cerebrospinal fluid production.

We investigated the effects of omeprazole and Sch 28080, a more specific and a more potent inhibitor of K+,H+-ATPase than omeprazole, in canine cerebrospinal fluid (CSF) production. CSF production was measured by ventriculocisternal perfusion (VCP) technique in three groups (n = 10 in each group) of anesthetized, paralyzed and mechanically ventilated dogs. Group I served as control, Sch 28080 (10(-4) mol/l of synthetic CSF) was added to VCP in group II, and omeprazole (10(-5) mol/l of synthetic CSF) was added to VCP in group III, after baseline control CSF production had been determined at 15, 30, 45, and 60 min. Comparing the three groups, the mean baseline values for CSF production did not differ significantly. However, the percent decreases in CSF production in the omeprazole treated group were 26 +/- 17 and 24 +/- 13 at 210 and 225 min, which were significantly more than the respective values in the control group. Percent decrease in CSF production in Sch 28080 was not significantly different from that in the control group. We conclude that in the canine model, physiological doses of omeprazole decrease CSF production by about 26%. However, the effect is independent of the K+,H+-ATPase activity, since Sch 28080 which is more potent than omeprazole did not significantly affect CSF production.

Acid-Base Equilibrium

Localization of flunitrazepam in artificial membranes. A spectrophotometric study about the effect the polarity of the medium exerts on flunitrazepam acid-base equilibrium.

In the present paper we tried to test the hypothesis that nonspecific flunitrazepam-membrane interactions are consistent with drug molecules accommodated between lipid molecules, becoming an integral part of the bilayer. We developed a spectrophotometric method to determine FNTZH+ equilibrium dissociation constant and applied it to the study of the acid-base equilibria of this drug in homogeneous media of different polarity. In these conditions, pK decreased with the decrement in the dielectric constant (D) of the media. These results, analyzed under the light of the theory developed by Fernandez and Fromherz (1977; J. Phys. Chem. 81, 1755-1761) let us infer that flunitrazepam is localized a region with D = 60. This D value is lower that Dwater = 78 and higher than D of hydrocarbon chains zone (D = 2-5) and would correspond to D of the region of polar groups. This result is compatible with the hypothesis.

Acid-Base Equilibrium