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R L Cada

Publications and source records attributed to R L Cada.

5 recordsLinked to original sources

Clinical laboratory proficiency test performance. Its relationship to structural, process and environmental variables.

This comparative analysis of clinical laboratories was intended to develop a more quantitative understanding of environmental, structural, and process variables and their relationships to the quality of laboratory services. The quality of laboratory services was defined as analytic capability demonstrated on proficiency-test specimens of the College of American Pathologists. Independent variables describing the laboratory environment, as well as structural and process aspects of management, were obtained from management reports, staffing records, and workload reports. Although correlations between the eight proficiency testing indices and the independent variables were generally low, a number of significant correlates were evident in three areas: bacteriology, parasitology, and qualitative hematology. Environmental variables describing organizational size were related to proficiency, as were variables dealing with accreditation by the College of American Pathologists and time accredited by the College of American Pathologists. The education and experience of personnel and the percentage of specialized supervisors were related to proficiency-testing success in bacteriology and parasitology. Empirical evidence suggests that the size of the laboratory indirectly affects proficiency in these three tested areas. Presumably, this relationship is mediated through specialization of work and reinforcement of learning. Few significant correlates were evident in the five remaining areas tested: chemistry, quantitative hematology, blood bank, immunology, and syphilis serology. Despite the concentration of personnel resources and other assets in larger laboratories, size appeared to have no effect on proficiency-testing performance in these five areas.

Bacteriology↗

Quality assurance practice in rural and urban hospital clinical laboratories.

This survey examined quality assurance practice in matched pairs of rural and urban hospital clinical laboratories. Questions directed at personnel qualifications, laboratory management, internal quality control mechanisms, and proficiency testing enrollment revealed no major differences between the rural-urban pairs. Deficiencies observed were either generic or size-related. Most laboratories were directed by physicians; however, almost half spent 5 or less hours per week in the laboratory. All respondents employed at least one individual professionally certified at the "technologist" level. Virtually all respondents insisted they employ a laboratory management system for ensuring quality performance, although 20% did not document their practice. Internal quality control practice varied widely. Many respondents recognized shortcomings related to volume and budget, and requested specific training courses for technical personnel. At least 20% of the laboratories were not enrolled in any recognized proficiency testing program, an integral part of the total quality assurance process.

Blood Banks↗

Proficiency test specimens for water bacteriology.

A procedure for the preparation and distribution of simulated water specimens for coliform density testing is described. Lyophilization of Escherichia coli in a cooked meat-glucose supporting substrate provides stable samples which may be distributed to participants in a proficiency testing program. Logarithmic conversion of the data allows statistical evaluation of the results for inter- and intralaboratory variation. Comparisons between the most probable number and membrane filter techniques indicate no significant difference in the accuracy of these techniques, although the membrane filter technique is more precise.

Analysis of Variance↗

Simulated proficiency test specimens in enteric bacteriology.

A procedure for proficiency test sample preparation in enteric bacteriology is described and evaluated. Research indicates that a mixture of cooked meat and glucose provides an appropriate supporting substrate for simulation of clinical specimens. Mixed cultures of enteric bacteria were added to the substrate, the mixture lyophilized, and distributed to participating laboratories for testing. This procedure permits an assessment of the isolation capabilities of laboratory media, as well as identification skills.

Bacteriological Techniques↗