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Biomedical subjects

G T Ferguson

Publications and source records attributed to G T Ferguson.

23 records · Page 2Linked to original sources

Relationship of diaphragm glycogen, lactate, and function to respiratory failure.

Diaphragmatic function and biochemical changes were studied during respiratory failure induced by incremental inspiratory threshold loading in anesthetized rabbits (1) who were unbound and spontaneously breathing, (2) during lower thoracic and abdominal binding, and (3) while bound and undergoing transvenous phrenic nerve pacing of the diaphragm. There was no evidence of contractile fatigue or alterations in glycogen or lactate concentrations in the diaphragm of unbound spontaneously breathing animals. With thoracoabdominal binding, there was a fall in maximal transdiaphragmatic pressure (Pdimax) and the ratio of diaphragmatic force divided by neural input (Pdi/Edi ratio); there was no change in diaphragm glycogen, but there was a significant rise in lactate. In the bound and phrenic-paced animals Pdimax and Pdi/Edi ratio fell, and there was significant glycogen depletion and lactate accumulation. There was a significant correlation between diaphragm function and the levels of diaphragm glycogen and lactate at the point of respiratory failure. We conclude that (1) respiratory failure induced by incremental inspiratory threshold loading was not associated with either contractile fatigue of the diaphragm or diaphragmatic biochemical changes in unbound spontaneously breathing animals, (2) when mechanisms that preserve diaphragmatic function are circumvented by phrenic pacing and/or thoracoabdominal binding, diaphragm fatigue and biochemical changes occur, and (3) there is a significant relationship between in vivo evidence of contractile fatigue of the diaphragm and diaphragmatic glycogen depletion and lactate accumulation.

Acid-Base Equilibrium↗

Effect of corticosteroids on respiratory muscle histopathology.

Pathologic alterations induced by corticosteroid administration were evaluated in the respiratory muscles and compared to those in the peripheral skeletal muscles of the rabbit. Alterations in gross and microscopic pathology as well as histochemistry were determined in the diaphragm, intercostal, sternocleidomastoid, extensor digitorum longus, and soleus muscles following 3 wk of intramuscular cortisone injections. Corticosteroid administration induced significant pathologic changes in all the muscles except the soleus. Although gross pathologic changes were greatest in the extensor digitorum longus, microscopic changes were greatest in the diaphragm. Reductions in total muscle fiber volume were similar in the diaphragm, sternocleidomastoid, and extensor digitorum longus muscles. The composition of muscle fiber types and the number of fibers in a muscle were not altered in any of the muscles studied following corticosteroids. There was significant atrophy of individual muscle fibers in all the muscles except the soleus. In the diaphragm, corticosteroids induced atrophy of all fiber types, including type I fibers. Atrophy of type I fibers was not present in the peripheral skeletal muscles or the other respiratory muscles. On the other hand, corticosteroids induced selective atrophy of type IIb muscle fibers in the intercostal and sternocleidomastoid muscles similar to that in the peripheral skeletal muscles. These findings suggest that the effect of corticosteroids on the diaphragm is unique, and one cannot extrapolate form the effect of corticosteroids on peripheral skeletal muscles to that in the diaphragm. In addition, these pathologic changes may have functional relevance, since atrophy of type I fibers may result in a reduction in muscle endurance.

Animals↗

Thromboangiitis obliterans associated with idiopathic hypereosinophilia.

A 47-year-old male smoker with chronic eosinophilia developed progressive ischemia in his extremities. Pathologic examination of vessels in amputated limbs revealed changes of thromboangiitis obliterans. Focal segments of some arteries, however, revealed infiltration of thrombus and vessel wall by eosinophils. Furthermore, the patient developed a totally occluded right temporal artery, which on biopsy specimen showed marked infiltration by eosinophils within the vessel wall. In contrast to most patients with the hypereosinophilic syndrome, however, this patient had no evidence of endomyocardial thrombosis or fibrosis. In view of recent evidence that eosinophil granule proteins are toxic to endothelial cells, the findings in this patient suggest the possibility that eosinophils may be involved in the pathogenesis of thromboangiitis obliterans.

Eosinophilia↗