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      Use of the human dive reflex for the management of supraventricular tachycardia: a review of the literature.

      Emergency Medicine Journal : EMJ
      Bradycardia, Cryotherapy, methods, Diving, physiology, Heart Rate, Humans, Immersion, Reflex, Tachycardia, Supraventricular, physiopathology, therapy

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          Abstract

          The human dive reflex (HDR), a physiological phenomenon similar to the bradycardia reflex used by marine mammals during prolonged submersion, can be employed in managing paroxysmal supraventricular tachycardia (PSVT). This review aims to identify a standardised HDR technique for haemodynamically stable PSVT, to determine the effectiveness of the HDR and to define its usefulness in the prehospital setting. A review of the Medline, EMBASE and CINAHL databases was conducted. Articles were included if they described the use of the HDR to revert PSVT in the prehospital or emergency medical setting, the nature of the effectiveness of the HDR for PSVT or historically significant developments of HDR techniques for PSVT reversion. Articles not available in English or describing the use of HDR in animal studies only were excluded. 211 articles were identified, of which 21 were found to be relevant. These included 10 studies of HDR effectiveness in PSVT and three physiological studies of HDR effect. No standardised model of performance exists for the HDR. Elements of performance include: a cold stimulus applied to the entire face, a specific temperature of the cold stimulus, application duration, breath holding during HDR and posture assumed to perform the procedure. There are also safety and logistics issues with using the HDR in prehospital care. The HDR represents an effective method of terminating PSVT in the hospital emergency department. Its usefulness in prehospital care requires further evaluation of the elements of the manoeuvre to determine appropriateness to this setting.

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          Journal
          22389355
          10.1136/emermed-2011-200877

          Chemistry
          Bradycardia,Cryotherapy,methods,Diving,physiology,Heart Rate,Humans,Immersion,Reflex,Tachycardia, Supraventricular,physiopathology,therapy

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