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Biomedical subjects

S S Poe

Publications and source records attributed to S S Poe.

7 recordsLinked to original sources

Ensuring safety of patients receiving sedation for procedures: evaluation of clinical practice guidelines.

BACKGROUND: In 1995 The Johns Hopkins Hospital in Baltimore convened an interdisciplinary task force to evaluate sedation practices, create a comprehensive set of sedation guidelines, and evaluate patient safety outcomes following guideline implementation. METHODOLOGY: Baseline data were collected on all procedures in which sedation was administered by a nonanesthesiologist for a 6-month period, using scanning technology to automate data entry. Sedation practices were reviewed, and four critical events were examined: unresponsiveness, obstructed airway, airway placement, and cardiopulmonary resuscitation (CPR). In 1998 data collection procedures were repeated to evaluate the impact of the guidelines on sedation practices and patient safety outcomes. RESULTS: In 1995 sedation practices varied, and one or more critical events occurred in 45 (1.4%) of 3,255 procedures. Steps taken included development and dissemination of a clinical sedation guideline, including monitoring criteria to guide nonanesthesiologists, and evaluation planning. In 1998 sedation practices were more consistent. One or more critical events occurred in 50 (1.6%) of 3,134 procedures, representing a small increase in critical events from 1995. More events of unresponsiveness were identified, and no event required CPR. Although not statistically significant, this trend suggests that critical events were being identified earlier, preventing patients from progressing to a more serious event requiring CPR. Steps taken included further refinement of clinical practice guidelines and establishment of ongoing monitoring. CONCLUSIONS: Standardization of sedation practices is a complex and resource-intensive activity, requiring ongoing oversight and monitoring. Commitment from medical staff, nursing staff, and administration is essential to successful implementation of sedation guidelines.

Academic Medical Centers↗

Quality assurance, practical management, and outcomes of point-of-care testing: laboratory perspectives, Part I.

Pathologists and nurses have only recently cooperated in point-of-care testing (POCT), after accreditation organizations recommended that the laboratories take responsibility for managing the quality of patient-care testing conducted at the bedside. Laboratories are charged with ensuring that patient-care tests generate comparable results, regardless of the location or method. Many home testing devices, when used in hospitals, physicians' office laboratories, and mobile nursing practices, have presented technical and operational issues that were not foreseen from home use. These problems arise from a number of factors: the way the devices are used, the patient population, and even differences in sample type. Thus, to be successful, management of POCT in the health-care environment requires interdisciplinary cooperation of clinical nursing staff and laboratory staff. The article identifies problems in POCT, describes some solutions, and examines how well these solutions have worked from a laboratory perspective.

Clinical Laboratory Information Systems↗

Healthcare needs scale for patients with HIV/AIDS: content validation.

The authors of this study adapted Peters' (1987) community health specifications of patients' nursing requirements so they could be applied to patients with HIV/AIDS in hospital, dedicated outpatient HIV clinic, home care, and long-term care settings. The authors then collected validity evidence on the revised specifications, developed a sample of 62 multiple-choice items, and obtained content-related validity evidence via a judgmental review panel. The results produced: (a) a set of specifications for the environmental, psychosocial, physiological, and health behaviors domains; and (b) a 44-item scale of patient characteristics related to four levels of healthcare needs.

Community Health Nursing↗

A national survey of infection prevention practices on bone marrow transplant units.

PURPOSE/OBJECTIVES: To identify and describe bone marrow transplant (BMT)-specific infection prevention measures in the United States. DESIGN: Survey design using a mailed questionnaire. SETTING: BMT programs across the United States. SAMPLE: 91 BMT programs (80.5% response rate). METHODS: A questionnaire containing both closed- and open-ended items was mailed to identified nurse contacts following introductory phone calls. Descriptive statistics were computed on responses to closed-ended questions; content analysis was performed on responses to open-ended questions. FINDINGS: Although all programs used some type of protected environment, practices varied considerably. Wide variation existed in cover-garment and hand-washing practices, regardless of the type of protected environment in use. Other protective measures included skin decontamination (69%), gut decontamination with oral nonabsorbable antibiotics (30%), antifungal therapy (73%), acyclovir therapy (82%), immunotherapy (73%), granulocyte-macrophage colony stimulating factor therapy (58%), and modified microbial diets (66%). Numerous mouth care regimens, visitor and patient precautions, and environmental maintenance routines were described. CONCLUSION: Little standardization of infection-prevention practices exists nationwide. IMPLICATIONS FOR NURSING PRACTICE: Efforts should be made to test the cost effectiveness and benefits of the various measures in use prior to the development of national standards.

Anti-Bacterial Agents↗

Scanner technology for data-based decision making.

Scanner systems offer several benefits to nurse executives. Clinical, educational, and administrative data can guide the nurse executive's decisions providing greater control over patient care outcomes. Information from large patient care data sets provides a powerful tool for persuading executives in other departments. Additionally, the nurse executive who can eliminate the need for personnel to conduct time consuming and costly manual data entry, may be able to justify financial support for continued development of the nursing department's information system and technological training for the staff. In this way, scanner technology meets the immediate need for information and serves as an entry to more advanced communications systems.

Electronic Data Processing↗