Development of a deep learning based framework for classification of Indian venomous snakes integrated with explainable artificial intelligence for primary and emergency care providers. [PDF]
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Snakebite knowledge among healthcare workers in Gabon: A health facility-based cross-sectional survey. [PDF]
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Retrospective Comparison of Empiric Antivenom vs. Expectant Treatment for Eastern Coral Snakebites. [PDF]
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Rapid, label-free surface plasmon resonance discrimination between Bothrops and Crotalus venoms using clinical antivenom as the capture reagent. [PDF]
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Venomics across the <i>Bothrops neuwiedi</i> Species Complex Revealed a P-III Snake Venom Metalloproteases/K49-PLA<sub>2</sub> Dichotomy and a Remarkable Paraspecific Neutralization of the Brazilian Pentabothropic Antivenom. [PDF]
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The use of antivenom in snake bite poisoning.
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Snake antivenom: Challenges and alternate approaches
Biochemical Pharmacology, 2020Snake envenomation is still a serious threat to many countries in the world. The only mainstay treatment depends on the administration of animal derived immunoglobulin based antivenom. Significant limitations to these antivenoms are a challenge in the treatment of snake envenomation.
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ANTIVENOM IN SEA-SNAKE BITE POISONING
Lancet, The, 1975Among a series of 101 patients bitten by sea-snakes in Malaya in the years 1957-64, 80% were fishermen. Bathers and divers are occasionally bitten. Before sea-snake antivenom became available the mortality-rate (despite the high toxicity of sea-snake venom) was only 10%; however, of 11 with serious poisoning, 6 died.
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