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Biomedical subjects

R Bascom

Publications and source records attributed to R Bascom.

43 records · Page 3Linked to original sources

Elevated serum IgE, eosinophilia, and lung function in rubber workers.

We previously reported an outbreak of acute respiratory illness associated with eosinophilia in a group of rubber workers who performed a thermoinjection process in which synthetic rubber was heated and then injected onto metal molds. This study was conducted to determine if persistent respiratory health effects were associated with this work area and to explore the possible allergic etiology of this syndrome. A survey was performed 1 mo after a major improvement in area ventilation and consisted of baseline, cross-shift, and cross-week spirometry; diffusing capacity; serum immunoglobulin E (IgE), total eosinophil count; and skin patch testing. Baseline lung function, cross-shift, and cross-week spirometry were not significantly worse in the exposed group as compared to the control group. However, either eosinophilia (greater than 450/mm3) or elevated serum IgE (greater than 470 ng/ml) were present in 44% of exposed workers vs. 11% of the control group (p = .003). Nine months later, neither eosinophilia nor elevated IgE were associated with employment in this work area. We conclude that employment in the thermoinjection process was associated with eosinophilia and elevated IgE, which suggests sensitization to one of the components of the rubber, although no effect on pulmonary function could be demonstrated.

Adult↗

Nasal inhalation challenge studies with sidestream tobacco smoke.

Environmental tobacco smoke (ETS) exposure is associated with rhinitis symptoms (i.e., runny nose and congestion) in some people. In an effort to better understand these symptoms, we recruited 18 historically ETS-sensitive subjects from the community and exposed them for 15 min to clean air and for 15 min to sidestream tobacco smoke (STS, 45 ppm carbon monoxide). Symptoms were recorded (0 = absent, 5 = severe), and posterior rhinomanometry was performed. There were significant changes in rhinitis symptoms (1.3 +/- 0.4 pre- versus 6.1 +/- 0.5 post-STS, p less than .05); nasal airway resistance (2.86 +/- 0.2 pre- versus 4.49 +/- 0.6 post-STS, p less than .05), and maximum inspiratory flow (2.74 +/- 0.3 pre- versus 2.14 +/- 0.3 post-STS, p less than .05). A spectrum of individual responsiveness to ETS was observed, and nasal resistance increased from 0% to 265%. Increased nasal resistance occurred primarily at the upstream or flow-limiting segment of the nasal airway.

Adult↗

Occupational and environmental respiratory diseases: a medicolegal primer for physicians.

This article is an introduction to medicine and the law with specific reference to occupational and environmental respiratory diseases. It provides an initial orientation for practicing physicians and includes basic definitions, practices and procedures, and helpful hints. Basic information about impairment and disability evaluations are reviewed.

Environmental Exposure↗

Don't just "do spirometry"--closing the loop in workplace spirometry programs.

The authors acknowledge that surveillance is a word that often causes eyes to glaze over and recognize that spirometry is often a casualty of a routine approach to surveillance. This article describes how to use spirometry as an active part of an on-site workplace occupational health program whose emphasis is avoiding trouble by knowing where and how to look for signs of occupational lung disease.

Humans↗

Human susceptibility to indoor contaminants.

Indoor environmental pollutants can act as irritants, allergens, carcinogens, or infectious agents. This chapter focuses on human susceptibility to indoor environmental pollutants, here defined as inherent factors that alter exposure-response relationships. The host defense system is an important determinant of human susceptibility and is composed of two portions: nonspecific immunity and specific immunity. Pollutants elicit responses from many components of the human host defense system, and human susceptibility results from biologic variability in these components. Nonspecific immunity responds to stressors based on physicochemical properties. Components include mucociliary clearance, the epithelial barrier, airway surface fluid, and neural reflexes. Specific immunity recognizes and responds to unique peptide or carbohydrate sequences present on the foreign agent, and components of the response may include lymphocytes, basophils, mast cells, and immunoglobulins. Irritants typically stimulate nonspecific immunity, allergens stimulate specific immunity, and infecting organisms and carcinogens interact with both. Additional inherent factors that may alter the toxicity of an agent include genetic background, the presence of disease or specific organ pathology, age, gender, body weight, nutritional, hormonal, and central nervous system status. Understanding the basis for human susceptibility to indoor environmental pollutants can assist in implementing practical strategies for managing indoor air quality.

Adult↗