Infection control in hospitals: what does the infection control nurse do?
Explore the source record for details and available documents.
SEARCH · PubMed Health
Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.
Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.
Explore the source record for details and available documents.
Much thought has been given to the role of the nurse in the future. Concern has been expressed that nurses are becoming preoccupied with technology which, despite the undoubted advantages, is diverting attention from simple prevention and control of infection measures. In countries with minimal resources the appointment of a full-time infection control nurse may not be feasible. Therefore, attempts should be made to train all nurses in the basic principles and practice of the prevention and control of nosocomial infection. This training should be designed to suit the needs of the individual country taking into account the culture, common infections and the patient population. The International Federation of Infection Control should be able to assist with this type of education. The nursing priorities for each country will vary and, whereas handwashing will remain a major priority, routine surveillance may be impracticable. The International Federation of Infection Control which was founded in 1987 is planning to take a lead in helping to set up organizations for infection control workers and to improve communications between organizations in different countries.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
In 1997 the Association for Professionals in Infection Control and Epidemiology and the Society for Healthcare Epidemiology of America established a consensus panel to develop recommendations for optimal infrastructure and essential activities of infection control and epidemiology programs in out-of-hospital settings. The following report represents the Consensus Panel's best assessment of requirements for a healthy and effective out-of-hospital-based infection control and epidemiology program. The recommendations fall into 5 categories: managing critical data and information; developing and recommending policies and procedures; intervening directly to prevent infections; educating and training of health care workers, patients, and nonmedical caregivers; and resources. The Consensus Panel used an evidence-based approach and categorized recommendations according to modifications of the scheme developed by the Clinical Affairs Committee of the Infectious Diseases Society of America and the Centers for Disease Control and Prevention's Healthcare Infection Control Practices Advisory Committee.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
Sterility. Infection control. Patient protection. It's all the same thing. It's required and it's costly. However, we need to turn it into a positive aspect of our practices. The old marketing axiom still applies-you have to market your marketing! Stop viewing patient protection as just one more overhead expense and begin to use it as a benefit that can help prove how committed to your patients you are.
The Infection Control Unit of the Montreal General Hospital implemented a Mock Isolation Room that tested nurses' knowledge with a review of common medical device and isolation infractions and recommendations. Consultants reinforced correct practices and clarified misconceptions. The Mock Isolation Room is recommended as an effective review strategy that encompasses the principles of adult learning. The material was identified by the nurses as clinically relevant and the learning method was considered to be fun and effective. The exercise can also be used as a needs assessment tool.
This is the second in a two-part series discussing and illustrating the application of statistical process control (SPC) in hospital epidemiology. The basic philosophical and theoretical foundations of statistical quality control and their relation to epidemiology are emphasized in order to expand the mutual understanding and cross-fertilization between these two disciplines. Part I provided an overview of the philosophy and general approach of SPC, illustrated common types of control charts, and provided references for further information or statistical formulae. Part II now discusses alternate possible SPC approaches, statistical properties of control charts, chart-design issues and optimal control limit widths, some common misunderstandings, and more advanced issues. The focus of both articles is mostly nonmathematical, emphasizing important concepts and practical examples rather than academic theory and exhaustive calculations.
Infection control in hospitals is not mandatory in Switzerland as in the United States. There are more than 300 acute-care hospitals in Switzerland. Hospitals are reimbursed by patient-days rather than diagnosis-related group. However, all five Swiss university hospitals have developed an infection control program. The major criteria for setting up and running these programs are reviewed; data are based on a questionnaire and personal interviewing of each institution. Most of the major criteria exist in all five institutions. Resources allocated to infection control differ markedly. The number of infection control nurses per 250 beds varies between 0.2 and 0.75 for the five hospitals; the activity of those in charge of infection control differs between hospitals. A comparison is made between the Swiss and U.S. programs with regard to some aspects of healthcare and infection control.
The infection control team (ICT) plays important roles in many different aspects of infection control. They include (1) surveillance for hospital-acquired infection, (2) developing the infection control manual, (3) checking that the manual is followed correctly, (4) giving information about the isolation of microorganisms in the hospital, (5) educating and instructing medical staff, etc. Many data have been accumulated on a database in the microbiology laboratory. Bacterial samples are also examined in the microbiological laboratory therefore medical technologists will be the first to notice hospital-acquired infection. Offering prompt information, obtained by surveillance or routine work, greatly contributes to infection control. Furthermore, a 24hr system for the microbiological laboratory may prevent occupational infection of health care workers. The role of the medical technologist in ICT is thus important. To prevent outbreaks of infection, the regional network is also important for the collection of information about the pathogen and the susceptibility of antimicrobial agents in the region. The medical technologist should participate in and communicate with this network. As mentioned above, the inclusion of medical technologists in infection control practice is essential. To participate in the ICT, medical technologists need to have communication skills, and be recognized by other team members as an essential member.
To determine the most effective infection control procedure in preventing nosocomial infection with respiratory syncytial virus (RSV), we did a prospective controlled study of four infection-control strategies in four wards in a large paediatric hospital in the west of Scotland. All children under two years old admitted to four general wards during three winter RSV epidemics (1989-92) were screened for RSV infection (by nasopharyngeal aspirate and direct immunofluorescence) within 18 hours of admission. The main outcome measure was the occurrence of nosocomial infection, defined as the number of children initially RSV negative who became RSV positive 7 days or more after hospital admission (incubation period for RSV infection is 5-8 days). Without special precautions, there was a high rate of nosocomial RSV infection (26%). Nosocomial infection was significantly reduced by the combination of cohort nursing with the wearing of gowns and gloves for all contacts of RSV-infected children (p = 0.0022). Neither the use of gowns and gloves alone nor cohort nursing alone produced a significant reduction in cross-infection. In the final year, general clinical use of a policy of cohort nursing with gowns and gloves resulted in a reduction in the cross-infection rate by two-thirds of its original value (9.5% vs 26%). Combined with rapid laboratory diagnosis, cohort nursing and the wearing of gowns and gloves for all contacts with RSV-infected children can significantly reduce the risk of nosocomial RSV infection.
The infection control department at Niagara Falls Memorial Medical Center in Niagara Falls, New York, has developed an innovative approach to decreasing nosocomial infections. By following up on the infections that occur on nursing units, nurses actively work to prevent their occurrence. The approach utilizes nursing accountability, continuing staff education, and documentation, with positive results.
In order to constructively use Department of Health surveillance data to address the issue of healthcare-associated infection, a peer review process investigating infection control arrangements for healthcare-associated infection in acute care trusts was initiated in the East of England. This study set out to evaluate that process and determine if it should be rolled out regionwide. A questionnaire survey of infection control doctors at trusts visited was conducted by telephone. Respondents commented that the peer review process raised the profile of infection control and healthcare-associated infection in participating trusts, and that a review of routine surveillance data was a useful way to initiate discussion about and focus attention on hospital infection control. Respondents felt the forum for discussion of infection control was most beneficial. A peer review process utilising routine surveillance data is of value in addressing issues related to infection control arrangements for healthcare-associated infection in acute care trusts.