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R L Stork

Publications and source records attributed to R L Stork.

3 recordsLinked to original sources

Regional hemodynamic responses to hypoxia and hypermetabolism in polycythemic dogs.

Normovolemic polycythemia did not improve the ability of either resting muscle or gut to maintain O2 uptake (VO2) during severe hypoxia because of the adverse effects of increased viscosity on blood flow to those regions. The present study tested whether increased metabolic demand would promote vasodilation sufficiently to overcome those effects. We measured whole body, muscle, and gut blood flow, O2 extraction, and VO2 in anesthetized dogs after increasing hematocrit to 65% and raising O2 demand with 2,4-dinitrophenol (n = 8). We also tested whether regional denervation (n = 8) and hypervolemia (n = 6) affected these responses. After raising hematocrit and metabolism, the dogs were ventilated with air, with 9% O2-91% N2, and again with air for 30-min periods. Reduced blood flow and increased O2 demand, caused by increased blood viscosity and 2,4-dinitrophenol, respectively, increased O2 extraction so that muscle VO2 was nearly supply limited in normoxia. Denervation showed that vasoconstriction had increased in gut and muscle with hypoxia onset but this was overcome after 15 min. By then, muscle was receiving a major portion of cardiac output, whereas gut showed little change. With hypervolemia cardiac output increased in hypoxia but neither gut nor muscle increased blood flow in those experiments. Because regional and whole body VO2 fell in all groups during hypoxia to the same extent found earlier in normocythemic dogs, any real benefit of polycythemia under the conditions of these experiments was dubious at best.

Animals↗

Regional hemodynamic responses to hypoxia in polycythemic dogs.

Polycythemia increases blood viscosity so that systemic O2 delivery (QO2) decreases and its regional distribution changes. We examined whether hypoxia, by promoting local vasodilation, further modified these effects in resting skeletal muscle and gut in anesthetized dogs after hematocrit had been raised to 65%. One group (CON, n = 7) served as normoxic controls while another (HH, n = 6) was ventilated with 9% O2--91% N2 for 30 min between periods of normoxia. Polycythemia decreased cardiac output so that QO2 to both regions decreased approximately 50% in both groups. In compensation, O2 extraction fraction increased to 65% in muscle and to 50% in gut. When QO2 was reduced further during hypoxia, blood flow increased in muscle but not in gut. Unlike previously published normocythemic studies, there was no initial hypoxic vasoconstriction in muscle. Metabolic vasodilation during hypoxia was enhanced in muscle when blood O2 reserves were first lowered by increased extraction with polycythemia alone. The increase in resting muscle blood flow during hypoxia with no change in cardiac output may have decreased O2 availability to other more vital tissues. In that sense and under these experimental conditions, polycythemia caused a maladaptive response during hypoxic hypoxia.

Animals↗

Efficient oxygen mask for patients undergoing hyperbaric oxygen therapy.

Hyperbaric oxygen (HBO) is established therapy for various disorders, but its effectiveness depends on the efficiency of the oxygen delivery system. A mask oxygen delivery system, consisting of the standard USAF aviator's A-14 regulator and the MBU-5/P oxygen mask, is installed in all USAF hyperbaric chambers. The efficiency of the mask oxygen delivery system at the USAF Hyperbaric Center, Brooks AFB, Tx, was evaluated breath-by-breath at sea level and 2.4 ATA via two different measuring techniques. Three groups of subjects were evaluated. Four subjects in Group I and seven subjects in Group II were randomly selected to use a single instrumented mask which was improperly fitted. The result was variable inspired oxygen levels from 64% to 100%. Six subjects in Group III wore properly fitted masks and achieved end-inspired oxygen levels ranging from 96% to 99%, for a mean of 97.8 +/- 0.5 (S.E.)%. A mean end-inspired oxygen level of 88,5 +/- 3,5 (S.E.)% was achieved within 5 min of mask donning. Inspiratory gas analyses indicate that the USAF aviator MBU-5/P mask and the A-14 regulator as used at the USAF Hyperbaric Center constitute a highly efficient oxygen delivery system for HBO therapy. This view has been refleced in arterial blood gas measurements and in preliminary data from tissue oxygen measurements in a gas gangrene patient. Future improvements in patient therapy masks are recommended.

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