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Data management and expert systems for outpatient diabetes care--16 years experience with diabeta.

The continuing development and implementation of a computer-based diabetes register and management system are described. For 15 years the system has been used as a readily accessible source of clinical data, for letter generation, for prompting screening procedures and for clinical audit and research. Later developments include the incorporation of specialist "intelligence" for advising management of individual patients. This is intended for use by non-specialists to enable their greater participation in diabetes care. It is currently undergoing preliminary evaluation with a view to conducting clinical trials both in Hospital and in General Practice.

Data Collection

Automated donor-recipient identification systems as a means of reducing human error in blood transfusion.

Clerical and administrative errors are the most common mistakes in blood banking, with errors of sample or patient identification accounting for the majority of mistakes. In an effort to reduce the incidence of human errors, three automated donor-recipient identification systems were developed and were evaluated under clinical conditions. After two years of development and bench testing, each set of equipment was tested, along with established procedures, at a large clinical center, a medium-sized community hospital and a regional donor center. Although none of the systems, as tested, proved acceptable under clinical conditions, a great deal was learned about prototype equipment testing in the clinical setting. Future development of identification systems for clinical use should respond to carefully defined problems, apply in all areas of the hospital or donor center, and be convenient and reliable. The development of the equipment should involve established manufacturers and be subject to exacting preclinical testing.

Blood Banks

Role of medical teams in a community disaster plan.

In London, Ont. two mock disaster exercises have indicated the need for re-evaluating the role of medical disaster teams. To coordinate and direct these teams a medical on-site coordinating team, composed of three emergency physicians with an expanded and more clearly defined role, was formed. The role of the triage teams deployed from the hospital to assess and resuscitate casualties is reviewed in detail. In addition, the communication systems, availability and deployment of medical supplies, identification of medical personnel and tagging of casualties are discussed. Because a mass casualty episode is possible in any community, disaster planning and clear outlining of the role of medical disaster teams are needed.

Disaster Planning

Pictographs: feasibility and acceptability of a novel method of newborn identification to reduce wrong-patient errors in the NICU.

Wrong-patient errors cause serious harm in newborns. These errors involve ordering and administering tests, procedures, medications, and breast milk to an unintended patient. Newborns receiving care in neonatal intensive care units (NICUs) are at particularly high risk. Although more distinct newborn naming conventions as recommended by the Joint Commission significantly reduce wrong-patient orders, name similarities among multiple-birth infants and truncation of differentiating information in some electronic health record (EHR) systems contribute to this persistent increased risk. Accordingly, novel newborn identifiers are urgently needed. We propose Pictographs - images that are appealing, recognizable, and appropriate - to serve as visual identifiers for newborns in NICUs. Pictographs are selected by caregivers, uploaded into the EHR, and displayed at bedside. As part of a multicenter randomized controlled trial assessing effectiveness of Pictographs to prevent wrong-patient order errors, we initially evaluated feasibility and acceptability of Pictographs at two study sites. Pictographs as novel visual identifiers for newborns in the NICU were generally well received by caregivers and clinicians, and the vast majority of caregivers selected a Pictograph for their infant(s), which was posted at the bedside and uploaded into the EHR. Ordering clinicians - the primary target of the intervention to prevent wrong-patient errors - recognized the potential for Pictographs to provide a visual cue when placing orders, particularly for multiple-birth infants. Here, we describe the rationale, implementation, framework, feasibility, usefulness, and acceptability of Pictographs among key stakeholders. If found effective for preventing wrong-patient errors, Pictographs could be adopted as a patient safety solution in hospitals worldwide.

Female

Portable medical records on microchip cards: the Tournai experiment.

A test of the use of microchip cards as portable medical records has been organized and evaluated in a small Belgian town. The portable record was accepted by patients and could be a useful innovation for emergency situations. A comparative evaluation of other portable media is needed.

Adult

The M1 Kegworth aircraft disaster: experience in three hospital blood transfusion laboratories and the regional transfusion centre.

Eighty-eight survivors of an aircraft accident on the M1 motorway were taken to three major hospitals, two of which were teaching hospitals, in the immediate vicinity. We describe the effects of this on the three blood transfusion and haematology laboratories concerned and on the regional transfusion centre, describe how the work was processed, and list the lessons learnt.

Accidents, Aviation

Validating patient names in an integrated clinical information system.

Methods for validating patient names during the upload of clinical records are described. Exact string matching, Soundex method and a pattern matching algorithm (LCS method) are described and compared to a manual analysis of 10000 patient name pairs. In addition, the types of spelling and typographical errors that occur in patient names in the pathology database at CPMC are described. The data analysis shows that the LCS method performs better than the other techniques when compared to manual analysis.

Algorithms

Information systems for evaluating the quality of prescribing.

OBJECTIVE: An important purpose of drug usage evaluation (DUE) is to provide feedback to physicians on population-based prescribing patterns and problems. This article has four objectives: (1) to outline prescribing information requirements for a computerized information system in terms of the variables needed for DUE, (2) to describe existing computerized information systems that collect and organize prescribing data, (3) to assess existing systems in terms of their capacity to provide the requirements outlined in our first objective, and (4) to suggest design changes to existing systems that would improve the DUE process. ANALYSIS: There are several existing DUE information systems that have some capacity to evaluate the quality of prescribing in specific populations (e.g., veterans, public and private insured groups, hospital service areas). Shortcomings of most DUE information systems include patient identification problems, defects in database design, and lack of software to identify prescribing problems and perform statistical analysis. CONCLUSIONS: DUE information systems could be used and upgraded to enable physicians to develop more rational prescribing rules from population data that would improve the quality of prescribing.

Drug Prescriptions

The difficult airway: mechanisms for effective dissemination of critical information.

The perioperative management and dissemination of critical information regarding a patient with an unexpected difficult intubation, including successful application of a difficult airway algorithm (Figure 1), are described. Documentation and dissemination of critical information include entry of patient data into an in-hospital computerized Difficult Airway/Intubation Registry, simultaneous application of a highly visible Difficult Airway/Intubation Patient Wrist Band (coded for access to computer registry), summary reports distributed to health care providers, and enrollment of the patient in the Medic Alert Foundation International's newly established category difficult airway/intubation for 24-hour access. We postulate that the widespread use of the procedures described in this report may reduce the contribution of unexpected difficult airway/intubation to anesthetic morbidity and mortality.

Algorithms