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1.
Am J Vet Res ; 54(4): 497-501, 1993 Apr.
Article in English | MEDLINE | ID: mdl-8484568

ABSTRACT

The accuracy of a reflectance pulse oximeter was determined in 22 anesthetized horses. Oximetric blood oxygen saturation was measured with the pulse oximeter probe attached to the mucosa of the mandible. Arterial blood oxygen saturation (SaO2) was calculated from arterial blood gas values and the equine blood oxygen dissociation curve. The mean +/- SD difference between oximetric blood oxygen saturation and SaO2 was -1.3 +/- 3.1% for values of SaO2 ranging from 80 to 100%. The difference between oximetric blood oxygen saturation and SaO2 was influenced by SaO2, the mean arterial blood pressure, and preanesthetic medication administered, but not by age, sex, or body weight of the horse, individual animal effect, anesthetic induction or maintenance agent, procedure performed, body position, mode of lung ventilation, time of sampling, arterial pH, or carbon dioxide tension.


Subject(s)
Anesthesia, General/veterinary , Horses/blood , Oximetry/veterinary , Oxygen/blood , Animals , Female , Male , Mouth Mucosa , Oximetry/methods , Oximetry/standards
2.
Biochem J ; 281 ( Pt 1): 171-3, 1992 Jan 01.
Article in English | MEDLINE | ID: mdl-1731752

ABSTRACT

The protonmotive force, as well as the mitochondrial and cytosolic concentrations of malate, 2-oxoglutarate, glutamate and aspartate, were determined in livers from hypo-, eu- and hyper-thyroid rats, by density-gradient centrifugation of freeze-clamped livers in non-aqueous solvents [Soboll, Akerboom, Schwenke, Haase & Sies (1980) Biochem. J. 192, 951-954]. The mitochondrial/cytosolic pH difference and the membrane potential were significantly enhanced in hyperthyroid livers compared with the hypothyroid state, resulting in an increased protonmotive force in the presence of thyroid hormones [Soboll & Sies (1989) Methods Enzymol. 174, 118-130]. The mitochondrial concentrations of 2-oxoglutarate, glutamate and aspartate were significantly higher in the euthyroid than in the hypothyroid state, but only slightly higher in the hyperthyroid state. Mitochondrial malate, on the other hand, increased significantly from the hypothyroid to the hyperthyroid state. The mitochondrial/cytosolic concentration gradients were significantly increased in the presence of thyroid hormones only for malate. The changes in steady-state metabolite concentrations reflect a higher substrate supply and a stimulation of mitochondrial metabolism. However, a clear relationship between the increased protonmotive force, as the driving force for mitochondrial metabolite transport, and the subcellular metabolite concentrations is not observable in different thyroid states.


Subject(s)
Hyperthyroidism/metabolism , Hypothyroidism/metabolism , Mitochondria, Liver/physiology , Thyroid Gland/physiology , Amino Acids/metabolism , Animals , Cytosol/metabolism , Hydrogen-Ion Concentration , Liver/drug effects , Liver/metabolism , Male , Membrane Potentials/drug effects , Mitochondria, Liver/drug effects , Mitochondria, Liver/metabolism , Rats , Rats, Inbred Strains , Thyroxine/blood , Thyroxine/pharmacology
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