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The National Disaster Medical System: a concept in large-scale emergency medical care.

The national disaster medical system is a new program established in 1981 to develop and implement a national policy to improve emergency preparedness for large-scale disasters. This article describes the background and purpose of this activity and delineates the elements of the system, which include a rapid medical response, patient evacuation, and definitive medical care. The program is designed to involve resources at the federal, state, and community levels. This article describes how local communities may participate in this initiative.

Disaster Planning↗

Rheological and mechanical properties of pharmaceutical gels. Part I: Non-medicated systems.

Non-medicated gel systems based on polymers of different chemical nature and source have been characterized for rheological as well as for gel strength properties: a synthetic product, polyacrylic acid and a natural product, scleroglucan, both known to produce true gels, and two semi-synthetic materials, sodium carboxymethylcellulose and hydroxypropylmethylcellulose, both known to originate polymeric colloidal solutions, have been chosen. In particular, the rheological analysis involved the comparison of the different polymers on the basis either of viscosity (constant rate test) or of viscoelastic measurements (oscillation test). Subsequently the possible relationships between either viscosity or viscoelastic parameters (G', G", tg delta) and the gel strength parameter have been investigated. The mechanical resistance of the pharmaceutical gels examined didn't depend on the viscosity but rather on the viscoelasticity of the systems. In particular, low tg delta values were always accompanied by high gel strength values. A rank order correlation was found between the tg delta values obtained for the various samples at different frequency values and the relevant gel strength parameter: this suggests that mechanical resistance measurements, similarly to viscoelastic ones, give information on the structural properties of the samples and therefore represent a suitable tool in the optimization of gel formulations.

Elasticity↗

Healers, deities, saints and doctors: elements for the analysis of medical systems.

This article provides the basic elements for the discussion and analysis of medical systems and their inter-dependency, with special reference to Latin America and, in particular, to the Andean countries. In a culturally diverse and socially stratified population, such as in contemporary Latin America, medical systems constitute a social representation resulting from the historical relationship between autochtonous medical cultures and those from other latitudes. The impregnation of scientific and popular knowledge results not only in the incorporation (and often expropriation) of folk in professional or scientific medicine, but also in the increasing 'medicalisation' of popular and traditional therapeutic practices. The emergent 'popular' medical system draws from both the professional and folk models, and in its actual practice, integrates both popular beliefs and materia medica with elements drawn from popular religions and pre-Hispanic deities. The degree of competitiveness, co-operation or 'integration' among medical systems depends mainly on the asymmetrical distribution of power and resources, and is conditioned by the population's behaviour in the management of disease. Existing pluralist systems of health care reveal a valuable array of survival strategies, which far outreach the proposals for integration called for by official sectors. On the other hand, knowledge derived from traditional medicine can contribute to the development of new models of clinical practice and to the expansion of the conventional epidemiological model.

Cultural Characteristics↗

Military medicine in operations other than war. Part I: Use of deployable medical systems facilities to assist in urban crises and enhance reserve medical training.

Navy medicine is challenged to provide ongoing and realistic training for medical personnel who will be deployed to provide battlefield care. Current events in this country suggest that the need for realistic training could be met while simultaneously providing support to civilian communities with great need. Deployable Medical Systems hospital modules could be set up in areas where the medical care system is overwhelmed and provide real patient management on the deployment platform. This innovative approach to providing "mutual support" to our own citizens will also enhance the cooperation between the civilian and military sectors should a civil disaster occur.

Disaster Planning↗

A population-based multivariate analysis of the association of county demographic and medical system factors with per capita pediatric trauma death rates in North Carolina.

OBJECTIVE: This study analyzed the association between demographic and medical system factors and the pediatric trauma death rate in North Carolina. SUMMARY BACKGROUND DATA: Trauma is the leading cause of death in children. Various medical system factors have been suggested to reduce pediatric morbidity and mortality rates, but the association with these rates has not been tested. METHODS: Data were obtained from the North Carolina medical examiner's database. The dependent variable was the county per capita pediatric trauma death rate. Twenty-one demographic and medical system measures were selected as independent variables. RESULTS: Nine hundred forty-one pediatric trauma deaths from 1986 to 1989 were included in our sample. Multivariate analysis identified the variables most highly associated with the dependent variables. The presence of advanced life support (ALS) training was the only medical system factor associated significantly with pediatric trauma death rates. Trauma centers, emergency (911) telephone access, and other medical resource variables had no significant association. CONCLUSIONS: The study confirms other reports showing that demographic factors have an important predictive association with the trauma death rate in children. Advanced life support was the only medical system resource associated significantly with pediatric trauma death rates. This study underlines the significance of pre-hospital care in the treatment of pediatric trauma.

Adolescent↗

Traditional or transitional medical systems? Pharmacotherapy as a case for analysis.

Questions have been raised about the validity of labels such as 'western', 'alternative', and 'traditional' as applied to medical systems. This study shows that the rubric 'traditional' may be validly applied to clusters of medical systems sharing common elements that distinguish them from 'western' systems. At the same time, pluralism in diagnostic and therapeutic procedures must be recognized even within each system. The discussion in this paper analyzes explanatory models, drawing mainly from Asian examples and focussing on pharmaceuticals. A purely cognitive approach may however be insufficient in understanding the different medical systems. A review of socio-historical factors that influence medical systems highlights important processes such as cultural reinterpretation and indigenization that characterize what could be more appropriately described as transitional medical systems. Changes in cultural forms, such as the acceptance of western pharmaceuticals, may still rely on traditional cognitive frames of reference, suggesting eclecticism amid conservatism. Issues of theoretical and practical concern are outlined at the end of the article.

Asia↗

Triage: in austere environments and echeloned medical systems.

Although triage as a medical sorting process was originally developed and applied to echeloned military field medical systems dealing with mass casualties, the term has now permeated most aspects of medical practice. This essay attempts to refocus on triage in military and disaster settings, emphasizing the relationship of the echeloned system organization to the triage process, and the various non-medical factors which may influence triage decisions and priorities. Due to the lack of any analogous civilian experience, it is essential that all health personnel who may be involved in an echeloned care system gain and maintain proficiency by frequent involvement in appropriate training exercises, the characteristics of which are described.

Disasters↗

[General aspects and number of phases of the medication system in four brazilian hospitals].

This study identified and analyzed the medication systems in 04 university hospitals located in Recife, Ribeirão Preto, Goiânia and São Paulo, Brazil, after approval by the Research Ethics Committee and authorization by the hospital directors. Data were collected through a structured interview with one of the professionals in charge of the medication system and non-participant and direct observation during one week. The results indicated the points requiring improvement, such as the use of abbreviations, lack of standardization in medication administration times, lack of updated and complete information about the patient, the pharmacy's not working 24 hours a day in hospitals and others. 66 phases were shown in Hospital A, 58 in B, 70 in C, and 80 in D concerning the medication system. Simplifying the processes by reducing the number of phases is the key to reducing medication errors.

Brazil↗

Management issues in automating medical systems.

The nontechnical aspects of medical computing systems are as important as the technical. In order to understand why, it is important to consider the social context of systems, the human engineering necessary for medical systems to work, and the specifics of the man-machine interface. It is also necessary to plan for the change which comes with any new method. This paper contains a discussion of these topics, concluding with a set of guidelines for change-management which we feel organizes the data of years of experience into a systematic approach.

Computers↗

Computer modeling of emergency medical system performance.

Emergency medical services (EMS) system managers face difficult problems when determining the need for system expansion and unit deployment. Information relevant to the decision is often limited and frequently not in a usable format. This lack of usable information often results in decisions that create less-than-optimal EMS systems. A constant search for greater efficiency prompted the development of a computer simulation model to analyze the current EMS system operated by the Tucson Fire Department and to provide statistical information on the effects of potential vehicle base locations on system performance. The simulation model generates data that reflect a variety of parameters necessary in base location analysis. Included in the performance statistics for each unit and for the entire system are indicators of unit use rates, minimum and maximum response times, and proportion of calls reached within the critical response time of eight minutes or less. The model has been carefully validated and used in unit redeployment and unit activation in Tucson, Arizona.

Arizona↗

Modeling of biological and medical systems: a systemic strategy.

A strategy in the frame of General System Theory is proposed for the study of biological systems for medical purposes. Its definition and use requires in each experiment the collaboration between physician and system scientists and hence the definition of a common language, by which the real system under study is described. The strategy is based on three intermingled steps: first an ingenuous model is proposed, gathering all the medical knowledge about the studied system, organized within an informal frame derived from the state space approach. Next, a functional model is derived, enlightening the organization of the relations in the medical model. Finally, this organization is formalized by the most suitable algebraic tools, which are thereafter translated into APL programs. This last version is used for simulation, which is exploited not only as a tool to describe and make provisions on the dynamics of the models, but also to deepen and improve the knowledge about the observed system.

Computer Simulation↗

Relative importance of emergency medical system transport and the prehospital electrocardiogram on reducing hospital time delay to therapy for acute myocardial infarction: a preliminary report from the Cincinnati Heart Project.

Substantial time delays from symptom onset to diagnosis and treatment of patients with acute myocardial infarction have been demonstrated. To determine the relative importance of prehospital mode of patient transport and the relative impact of emergency medical system transport with or without a prehospital cellular electrocardiogram (ECG) on hospital time delays to initiation of thrombolytic therapy, four prospective parallel groups of patients with acute myocardial infarction were evaluated. The median hospital time delay to treatment median (twenty-fifth and seventy-fifth percentiles) was 64 minutes (46 and 87 minutes, respectively, for twenty-fifth and seventy-fifth percentiles) for patients transported by private automobile ("walk-in"); 55 minutes (45 and 68 minutes, respectively) for patients transported by local ambulance; 50 minutes (38 and 81 minutes, respectively) for patients transported by the emergency medical system without a prehospital ECG; and 30 minutes (27 and 35 minutes, respectively) for patients transported by the emergency medical system who had a 12-lead ECG transmitted from the field. Patients transported by the emergency medical system were randomized to receive cellular telephone transmission of a prehospital 12-lead ECG. Specialized emergency medical system transport alone did not facilitate in-hospital initiation of thrombolytic therapy in patients with acute myocardial infarction when compared with those brought by local ambulance or by private automobile. A significant reduction in hospital time delay to treatment was observed only in patients transported by the emergency medical system who had cellular transmission of a prehospital 12-lead ECG from the field.

Electrocardiography↗

Smart medical systems with application to nutrition and fitness in space.

Smart medical systems are being developed to allow medical treatments to address alterations in chemical and physiologic status in real time. In a smart medical system, sensor arrays assess subject status, which is interpreted by computer processors that analyze multiple inputs and recommend treatment interventions. The response of the subject to the treatment is again assessed by the sensor arrays, thus closing the loop. An early form of "smart medicine" has been practiced in space to assess nutrition. Nutrient levels are assessed with food frequency questionnaires, which are interpreted by flight surgeons to recommend inflight alterations in diet. In the future, sensor arrays will directly probe body chemistry. Near-infrared spectroscopy can be used to non-invasively measure several blood and tissue parameters that are important in the assessment of nutrition and fitness. In particular, this technology can be used to measure blood hematocrit and interstitial fluid pH. The non-invasive measurement of interstitial pH is discussed as a surrogate for blood lactate measurement for the development and real-time assessment of exercise protocols in space. Earth-based application of these sensors is also described.

Aerospace Medicine↗

Receiver operating characteristic analysis for intelligent medical systems--a new approach for finding confidence intervals.

Intelligent systems are increasingly being deployed in medicine and healthcare, but there is a need for a robust and objective methodology for evaluating such systems. Potentially, receiver operating characteristic (ROC) analysis could form a basis for the objective evaluation of intelligent medical systems. However, it has several weaknesses when applied to the types of data used to evaluate intelligent medical systems. First, small data sets are often used, which are unsatisfactory with existing methods. Second, many existing ROC methods use parametric assumptions which may not always be valid for the test cases selected. Third, system evaluations are often more concerned with particular, clinically meaningful, points on the curve, rather than on global indexes such as the more commonly used area under the curve. A novel, robust and accurate method is proposed, derived from first principles, which calculates the probability density function (pdf) for each point on a ROC curve for any given sample size. Confidence intervals are produced as contours on the pdf. The theoretical work has been validated by Monte Carlo simulations. It has also been applied to two real-world examples of ROC analysis, taken from the literature (classification of mammograms and differential diagnosis of pancreatic diseases), to investigate the confidence surfaces produced for real cases, and to illustrate how analysis of system performance can be enhanced. We illustrate the impact of sample size on system performance from analysis of ROC pdf's and 95% confidence boundaries. This work establishes an important new method for generating pdf's, and provides an accurate and robust method of producing confidence intervals for ROC curves for the small sample sizes typical of intelligent medical systems. It is conjectured that, potentially, the method could be extended to determine risks associated with the deployment of intelligent medical systems in clinical practice.

Algorithms↗

Requirements engineering: the key to designing complex medical systems.

A variety of business systems, clinical work systems, instrumentation systems, information systems, infrastructure systems, and management systems interact to make the modern healthcare facility work. The key to designing for such a system is systems engineering, a skill often little appreciated among clinical engineers. At the heart of systems engineering is requirements engineering and management (REAM), which is defined as "the process of discovering, documenting and managing systems requirements." The principal activities of REAM include eliciting, understanding, negotiating, describing, validating, and managing system requirements. When REAM is done improperly, the resulting system will be satisfactory only if chance intervenes. Well-done REAM is likely to bring the project in on time, under budget, and at full performance.

Biomedical Engineering↗

Adolescent health needs and access to care in the Army medical system.

The United States Army Medical Department operates one of the largest comprehensive medical care systems. Health of adolescents is promoted by providing them with access to care without the impediment of direct monetary charge. This study defines the scope of health concerns and the availability of care for the common health problems of adolescents in this geographically widespread medical care system of high accessibility. In addition to common respiratory illness, more age-group-unique musculoskeletal, psychosocial, dermatologic, gynecologic, and sexuality-related problems are noted. Availability of care varies by location, with tertiary centers providing more services appropriate to developmental stage. These data are useful in planning improved health-care services appropriate to developmental stages of adolescents in the Army medical system as well as in other health-care systems.

Adolescent↗

Systemic medications: clinical significance in periodontics.

Systemic medications are of value as adjuncts to periodontal therapy. These medications can be divided into two major categories: antibiotics and agents for host modulation. Antibiotics have been shown to be valuable adjuncts in specialized types of periodontal disease, such as localized and generalized aggressive periodontitis, and of possible value in severe chronic periodontitis. Antibiotics have been studied individually, in combination and in sequential therapy. Host modulators include Periostat, non-steroidal anti-inflammatory agents, alendronate (Fosamax), hormone replacement therapy and anti-arthritic medications. These agents produce their beneficial effects by a variety of mechanisms of action, including inhibition of matrix metalloproteinases, inhibition of prostaglandin production, stimulation of osteoblasts, inhibition of osteoclasts, and other anti-inflammatory mechanisms of action.

Alendronate↗