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L C Christianson

Publications and source records attributed to L C Christianson.

10 recordsLinked to original sources

Pneumococcal infection and immunologic response to pneumococcal vaccine in chronic obstructive pulmonary disease. A pilot study.

We assessed the importance of Streptococcus pneumoniae and immunologic response to 14-valent pneumococcal vaccine in a randomized (saline placebo or vaccine) double-blind pilot study involving 103 patients with chronic obstructive pulmonary disease (COPD). Antibody titers, the flora of the sputum, respiratory infections or pneumonias, and deaths were monitored. The patients' antibody titers before immunization were higher than healthy control subjects. Titers rose normally in those vaccinated but declined more rapidly. Differences between the group receiving placebo and vaccine were not significant at 12 and 24 months. The incidence of pneumonia was high before and after vaccine (47/1,000 vs 41/1,000 patient-years). Nonpneumococcal causes predominated (73 percent of pneumonias; 83.4 percent of lethal pneumonias). Isolates from sputum were predominantly nonvaccine types (50 to 62.5 percent). Twenty-seven patients died; pneumonia occurred in six (one pneumococcal in a vaccinated patient) as a terminal complication of other diseases. Thus, although pneumonia occurred frequently in these patients with COPD and contributed to mortality in 22 percent (six) of the 27 deaths, the predominance of nonpneumococcal causes and the data on antibodies and sputum suggest that pneumococcal vaccine may not be as beneficial for patients with COPD as was hoped. More observations are needed.

Adult↗

Behavior of the human pulmonary circulation during head-up tilt.

Pulmonary blood volume (PBV), flow, and pressures were measured in 15 cardiopulmonary normal subjects, while supine and at 60 degrees head-up passive tilt. PBV, cardiac index (CI), right ventricular diastolic volume (VDVR), and mean pulmonary arterial (Ppa), venous (Pv), and mean right atrial (Pra) pressures all decreased during the first 4 min of tilting, with little subsequent change thereafter, to 30 min. Relative changes of CI, PBV, and VDVR were of similar magnitude (25--30%; mean Ppa and Pv fell 3.2 and 2.3 Torr, respectively. From measurements of thoracic dimensions and changes in intravascular pressures, we calculate that 11% of the pulmonary vascular bed falls into zone I condition, 34% goes from zone III to zone II, and 55% remains in zone III condition during tilt. A highly significant correlation exists between PBV and CI (P less than 0.001), with no significant change in pulmonary mean transit time during tilt. Significant correlations also exist between PBV and Pra (P less than 0.001), Pv (P less than 0.01), and Ppa (P less than 0.05). We conclude that outflow pressure plays a significant role in determining PBV during head-up tilt, but the major determinant is venous return to the right heart.

Adult↗

Determinants of pulmonary blood volume.

Pulmonary blood volume was determined by the radiocardiographic technique in 49 patients coming to cardiac catheterization. Since this method has not been directly compared with the more commonly used double injection of dye. 25 comparisons were carried out in 13 patients of the series. Agreement was good over a range of 4.5-21.1 heart cycles since there was no statistically significant difference between transit time values measured by the two methods. The relation of pulmonary blood volume to other hemodynamic factors in these 49 patients, with and without cardiac or pulmonary disease, was evaluated by means of multiple regression analysis. The analysis carried out for mean transit time indicates that this parameter varies predominately with flow. Pulmonary blood volume, in this series of resting recumbent individuals, varies to a significant degree only with total blood volume and with pulmonary venous pressure. No parameters of vascular distensibility, such as pulmonary vascular resistance, were found to affect the volume of blood in the lungs. The fact that variations in pulmonary blood volume among the subjects could be described by a multiple regression equation linear with respect to total blood volume and pulmonary venous pressure indicates that these variations are the result of passive distention of components of the vascular bed.

Adult↗