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Biomedical subjects

P Gruber

Publications and source records attributed to P Gruber.

10 recordsLinked to original sources

Time to equilibration of oxygen saturation using pulse oximetry.

OBJECTIVE: To determine the time it takes for O2 saturation measured by pulse oximetry to equilibrate after a change is made in supplemental O2 administered by nasal cannula in patients with cardiac and pulmonary disease. METHODS: A prospective, observational study of a convenience sample of 51 patients treated in a university-affiliated ED with nasal cannula O2. Patients were placed on and/or subsequently taken off O2 via nasal cannula set at 2 or 4 L/min based on clinical indications. Oxygen saturation was measured at 1-minute intervals over a 30-minute period using finger-probe pulse oximetry. Of the 51 patients in the study, 43 were monitored while O2 treatment was initiated and 18 were monitored when it was discontinued. RESULTS: Most (95%) of the patients placed on O2 attained equilibration of O2 saturation within 3.5 minutes. Most (95%) of the patients taken off supplemental O2 attained equilibration of O2 saturation within 4.5 minutes. CONCLUSION: The interval to equilibration of O2 saturation in patients receiving O2 by nasal cannula is considerably shorter than the 20-30 minutes generally suggested. Adequacy of O2 supplementation should be assessable much sooner than was previously taught.

Adult

Improved intestinal cannula for drug delivery studies in the dog.

A modified light-weight intestinal cannula, based on the modified Thomas type (Thomas, 1941; Jones et al., 1971) was fabricated and tested. The design extends the useful life of the cannula and expands the versatility of the canine gastrointestinal (GI) system for pharmaceutical and physiological research. The cannula permits easy administration of pharmaceutical dosage forms directly into or access to ingested substances anywhere along the small intestine.

Animals

Gastric emptying of nondigestible solids in the fasted dog.

Gastric emptying of nondigestible solid particles was studied in the fasted dog. Particles of varying sizes (0.5-6.4 mm), density (0.5-2.9 gm/cm3), and surface characteristics were coadministered orally with 50 mL of saline and collected from a permanent duodenal cannula implanted approximately 15 cm from the gastroduodenal junction. The phase of the motility pattern was ascertained by the appearance of bile, which occurs during phase II, as well as by mucus discharge, which stops at the onset of phase I. A lag phase, due to the 'quiet' phase I, was observed in the gastric emptying of coadministered saline. This is in contrast with gastric processing of large volumes (i.e., greater than 200 mL) which can usually be approximated by first-order discharge. Most coadministered saline was discharged before the solid particles. The pH of the duodenal effluent was elevated approximately 1 pH unit during mucus discharge and its pH can be as high as 8.3. In the fasted dog, gastric emptying of nondigestible particles closely followed the gastric motility patterns. The onset of discharge of the particles correlated with the late phase II and the phase III activity. Except for a few cases, which took two migrating motor complexes (MMC), greater than 90% of administered particles was discharged from the stomach after one MMC. The discharged particles were entrapped within mucous plugs. In the fasted state, gastric emptying of nondigestible particles appeared to be independent of size, density, and surface characteristics. Mucus seems to play a significant role in the distribution and discharge of the administered particles.

Animals

Electron-microscopic analysis of iris vessels in two cases of uveitis.

Electron-microscopic analysis of iris biopsy material was carried out paying particular attention to vessels and infiltrating cells. Characteristic changes of vessels and cells were found in two cases. One showed abundant lymphodiapedesis, perivascular infiltration, and vessels appearing morphologically normal. The other showed diffuse infiltration of cells and numerous fenestrated newly formed vessels. In the latter, three different types of opening in the endothelium were observed: (1) separation of intercellular junctions; (2) small pores or defects in the endothelium, and (3) large holes or defects in the endothelium. Cell leakage from normal and newly formed vessels was considered. We concluded that lymphocytes may migrate through the cytoplasm within membrane-bounded vesicles in normal vessels, whereas in newly formed fenestrated vessels cells, including small lymphocytes, may pass through three different types of opening in the endothelium.

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