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Preliminary studies of nematocysts from the jellyfish Stomolophus meleagris
Toxicon, 1972Abstract Nematocysts from the jellyfish Stomolophus meleagris were found to be of the type—heterotrichous microbasic euryteles. The nematocysts were not ruptured by various physical or chemical means, but were disrupted by homogenization in a Braun homogenizing mill.
P M Toom
exaly +6 more sources
Hydrobiologia, 2020
Worldwide catches of cannonball jellyfish Stomolophus meleagris (Cnidaria: Scyphozoa) have increased during the last years; nevertheless, this species still lacks updated biological knowledge for its management. This research proposes that the individual growth pattern for jellyfish can be estimated in the absence of age readings through cohort follow ...
Enrique Morales-Bojorquez +2 more
exaly +2 more sources
Worldwide catches of cannonball jellyfish Stomolophus meleagris (Cnidaria: Scyphozoa) have increased during the last years; nevertheless, this species still lacks updated biological knowledge for its management. This research proposes that the individual growth pattern for jellyfish can be estimated in the absence of age readings through cohort follow ...
Enrique Morales-Bojorquez +2 more
exaly +2 more sources
Cannonball Jellyfish ( Stomolophus Meleagris ) in Mexico
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Cannonball Jellyfish (Stomolophus meleagris) as a Food Resource
Journal of Food Science, 1988ABSTRACT A pilot plant process was developed to produce salted dried jellyfish product from cannonball jellyfish ( Stomolophus meleagris ). Processed products containing an average of 68% moisture, 5.5% protein, 26% ash and 25% salt were obtained by brining with different ...
exaly +2 more sources
Marine Ecology - Progress Series, 2023
The cannonball jellyfishStomolophus meleagrisis one of the most abundant scyphozoan jellyfish in the South Atlantic Bight (SAB) of the southeastern USA. Like many scyphozoan jellyfish, cannonball jellies have high interannual variability and little is known about the environmental drivers of their distribution and phenology.
Joshua Stone
exaly +2 more sources
The cannonball jellyfishStomolophus meleagrisis one of the most abundant scyphozoan jellyfish in the South Atlantic Bight (SAB) of the southeastern USA. Like many scyphozoan jellyfish, cannonball jellies have high interannual variability and little is known about the environmental drivers of their distribution and phenology.
Joshua Stone
exaly +2 more sources
Cardiac effects of Stomolophus meleagris (cabbagehead jellyfish) toxin
Toxicon, 1987exaly +2 more sources
Cardiac effects of Stomolophus meleagris (cabbage head jellyfish) toxin
Toxicon, 1975Abstract Electrocardiograms recorded from rabbits and rats injected intravenously with toxin from Stomolophus meleagris showed bradycardia followed by inversion of the P and T waves, alterations of the QRS complex, ventricular extrasystoles, atrioventricular block, bizarre ventricular patterns, and fibrillation.
P M, Toom +4 more
exaly +3 more sources
In depth analysis of the in vivo toxicity of venom from the jellyfish Stomolophus meleagris
Toxicon, 2014Jellyfish Stomolophus meleagris, a synonym of Nemopilema nomurai, which has often bloomed in the China Sea in recent years, is becoming an increasing threat to human health and life as a result of its strong toxicity. Each year, hundreds of thousands of people were stung, especially in the high season, and the victims suffered itch, edema, myalgia ...
Rongfeng, Li +7 more
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Effects of purified components of jellyfish toxin (Stomolophus meleagris) on active sodium transport
Toxicon, 1975Abstract Using preparative isoelectric focusing and discontinuous membrane partition chromatography, three fractions which alter sodium transport were isolated from venom of the jellyfish Stomolophus meleagris . A fraction which inhibited sodium transport was partially purified and found to possess a molecular weight of approximately 50,000 and an ...
P M, Toom, T D, Phillips
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Enzymatic activities of venom from the jellyfishStomolophus meleagris
Comparative Biochemistry and Physiology Part B: Comparative Biochemistry, 1972Abstract 1. Lyophilized venom from the nematocysts of the jellyfish Stomolophus meleagris was tested for enzymatic activity on twenty-eight substrates commonly hydrolyzed by many animal toxins. 2. Of the twenty-eight substrates tested, twelve were hydrolyzed.
P M, Toom, D S, Chan
openaire +2 more sources

