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An objective approach to antivenom therapy and assessment of first-aid measures in snake bite.

Treatment of systemic envenoming in snake-bite victims has, in the past, depended almost entirely on the individual clinician's experience in assessing the severity of envenoming. The efficacy of treatment is obviously related to the neutralizing potency of the antivenom used, the route by which it is administered and the dose. The development of enzyme immunoassays has permitted a more scientific appraisal, allowing estimation of circulating specific venom and antivenom concentrations at any time after the bite in the patient's blood. It is therefore possible to measure accurately the efficacy of antivenom in the neutralization and clearance of venom antigen. In Brazil, it appears that clinicians treat patients with excessive amounts of highly efficient antivenoms and this results in an unacceptably high incidence of reactions. In Sri Lanka, the use of imported, Indian antivenom is relatively ineffective in neutralizing the venoms of Sri Lankan snakes, demonstrating the real problem of venom variability within individual species. In West Africa, the improved clearance of venom following treatment of Echis victims with a monospecific as opposed to a polyspecific antivenom has been demonstrated, and new, smaller fragment, Fab antivenoms have been developed and are now under clinical assessment. Such clinically-based immunological studies should result in more efficient and controlled use of expensive antivenoms for treatment of systemic envenoming and the accurate assessment of newly designed products. Such studies also emphasise the importance of individual countries producing their own antivenoms for treatment of systemic envenoming. Likewise, the use of such objective systems now enables the use of first-aid measures such as tourniquets to be properly assessed.

Africa, Western↗

[First aid].

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First Aid↗

Use of a paper disposable cup as a spacer is effective for the first-aid management of asthma.

OBJECTIVE: There are many settings in which a spacer device is not available for the administration of bronchodilator. Therefore, we tested whether a paper disposable cup is as effective as a commercially produced spacer to administer bronchodilator. METHODOLOGY: Randomised controlled trial. 50 subjects aged 16-50 years who had wheeze and a greater than 10% decrease in FEV1 after histamine inhalation test (HIT). Subjects were randomised to either the 150 ml paper disposable cup group (CUP) or the commercially produced spacer group (SPACER). Twenty minutes after 400 microg salbutamol was administered FEV1 was measured. The recovery index measured post-bronchodilator FEV1 as a percentage of baseline FEV1. Also, analysis of covariance tested whether recovery of FEV1 was related to the magnitude of the fall following the HIT. RESULTS: There were no statistically significant differences between CUP and SPACER groups in any characteristics. There was no difference for the recovery index (t48=1.14, P=0.26). Regression analyses showed that the relation between the magnitude of the fall in FEV1 during the HIT and the percent recovery was not different between the CUP and SPACER groups (t=-1.2, P<0.23). CONCLUSIONS: A paper disposable cup was effective for the reversal of mild to moderate bronchoconstriction. Therefore, a paper disposable cup can be used for the first-aid management of asthma when there is concern about cross-infection and a commercially produced spacer is not available.

Adolescent↗

[Polytraumatized patient. First aid care, transport and resuscitation].

The initial management of multiple trauma must achieve a triple aim: performing the actions required by a vital emergency, preventing as well as possible the complications associated with the initial lesions, and, most importantly, bringing the injured person into hospital in the best possible conditions for emergency surgery. Achieving these aims requires a perfect coordination of medical and nonmedical rescue. A rough initial categorization is important to decide whether additional medical staff is desirable, choose the type of transport planned (by ambulance, helicopter...) as well as the department or hospital due to receive the patient. Four actions must be accomplished, most often jointly, all of them contributing to the quality of treatment: 1. picking up/freeing/immobilizing the injured person, 2. controlling the hypovolemic collapse and the traumatic shock, 3. dealing with the associated distresses, 4. suppressing pain. The techniques used to pick up, free and immobilize the injured person require a close co-operation with the rescuing staff (stretcher bearers, fire department, first-aid workers). The hypovolemic shock is treated by volume replacement, mainly with colloids. Local hemostasis may sometimes be necessary. Anti-shock trousers should be widely used in cases of multiple trauma. Dealing with the associated distresses gives priority to ventilation. The indications of ventilatory support must be very wide whenever coma or signs of respiratory distress are noted, more so with an associated shock. The indications of aspiration of a gaseous or fluid pleural effusion must also be discussed. Maximal suppression of pain must be kept in mind throughout all these operations.(ABSTRACT TRUNCATED AT 250 WORDS)

Analgesia↗