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Application of an economic model to the study of leprosy control costs.

The effectiveness of various control methods for reducing the incidence of leprosy have been tested over 20 years and compared with predictions made using the present current control method (early diagnosis and mass treatment). Specific vaccination of the whole population, a control measure yet to be developed, has been identified as the most effective strategy in the long run. A cost-effectiveness analysis has been carried out for three indicators, annual incidence, annual prevalence and cumulative prevalence at 20 years, using cumulative costs. The analysis indicates that specific vaccination at high levels of coverage is the most effective method for controlling incidence in the long term. Provided the cost of the vaccination campaign during the first years (roughly fourfold the funds required for carrying out the current strategy) can be supported, specific vaccination is also the most cost-effective method where a high level of effectiveness is required. Specific vaccination is still the most advantageous method if prevalence or cumulative prevalence are taken to indicate the effectiveness of leprosy control. The BCG-type of vaccination is not only less effective, it is also less cost-effective. Reducing the rate of abandonment of treatment (which in the model has been simulated by increasing the rate of resuming treatment) and earlier detection both appear as useful methods under conditions of severe budgetary constraints. Their ultimate effectiveness in terms of incidence reduction is, however, very small. As expected, segregation is costly and ineffective compared with other methods. In each simulation, the cost of treating the backlog of patients already ill or infected (incubating) at the time the control measures are initiated is high. Methods aimed at reducing transmission, such as vaccination, early treatment or segregation, have long-delayed effects on the cost even if incidence is reduced. The major cost item in these control measures is the prolonged or even life-long treatment of patients. The development of fast-acting, effective treatment is likely to be the only way to reduce the cost in the short term. Thus, in addition to research aimed at developing a vaccine for leprosy, resources should also be allocated for developing new therapeutics.

BCG Vaccine

On cost control.

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Cost Control

[Preoperative autologous blood bank: communication, documentation, informed consent, iron supplement, testing, blood bank reports, cost control, transfusion].

Preoperative deposition auf autologous blood requires a strenuous effort for its initiation and operation. K.R.A.F.T.A.K.T. (literal translation: strenuous effort) became therefore the acronym for the program realized at this institution; it stands for: K = communication between patient and his physicians (primary care, surgeon, blood banker) R = direction of the program through the primary care physician (who does what, when, where, how and how much of it) A = informed consent of the patient prior to the first donation F = iron supplement (100mg Fe++ daily beginning 2 weeks prior) T = collection, processing, labelling, storage, pretransfusion testing, and release in accordance with GMP and legal requirements A = blood bank reports on the available units to all concerned K = cost control (limited to operations in need of transfusion) T = transfusion of autologous prior to any homologous unit. We report initial experiences and a cost assessment.

Blood Banks

Methods of cost control in urologic care.

The urologist now has the capability of significantly reducing the cost of care for his patients. Major savings could occur by performing procedures, laboratory tests, and roentgenographic studies in proper sequence. The use of outpatient evaluations and surgery can save the patient expensive hospital room charges. Proper utilization of equipment would markedly decrease costly duplication of services. Quality of care cannot and will not be affected by these cost-saving measures. Furthermore, retrospective and prospective clinical studies should be instituted immediately to determine the pathophysiology of genitourinary disease, specifically answering the question of which laboratory tests have the highest diagnostic yield. Protocols could be started to eliminate wasteful low-yield procedures and to maximize diagnosis and therapy while minimizing cost. Finally, controls must be placed on the continuing trend toward an excess of physicians.

Ambulatory Care