Two new species of <i>Liljeborgia</i> Spence Bate, 1863 (Crustacea, Amphipoda, Liljeborgiidae) from the Clarion-Clipperton Zone, Pacific Ocean. [PDF]
Timm R, Stewart ECD, Lörz AN, Horton T.
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Global patterns of modularity and narrow host use in fish-parasitic copepods (Crustacea). [PDF]
Morales-Serna FN.
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The complete chloroplast genome of Lindernia crustacea (L.) F. Muell 1882 (Linderniaceae) and its phylogenetic analysis. [PDF]
Wang X, Wang L, Kong J, Kong N.
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Complete mitochondrial genome pathological characteristics and scanning electron microscopic observations of <i>Armillifer moniliformis</i> isolated from <i>Manis javanica</i>. [PDF]
Wang X +7 more
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<i>Bathynomus vaderi</i> Ng, Sidabalok & Nguyen, 2025: the senior synonym of <i>B. paracelensis</i> Huang & Kawai, 2025 (Crustacea, Isopoda, Cirolanidae). [PDF]
Ng PKL +5 more
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A new terrestrial talitrid genus, <i>Kachinorchestia</i>, with a new species from Myanmar (Crustacea, Amphipoda, Arcitalitridae). [PDF]
Tong Y, Liu Z, Liu H, Hou Z.
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HAEMOGLOBIN is found in the Crustacea. It occurs dissolved in the blood plasma of the Notostraca1,2, Anostraca3, Cladocera3,4, and parasitic Copepoda5,6 although it is absent in free-living ones2. I have not been able to find haemoglobin in the Branchiura (Argulus). It is found, however, in Ostracoda7 and in a parasitic member of the Cirripedia8.
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The Nutrition of the Crustacea
1952Publisher Summary This chapter reviews the existing status of knowledge regarding the nutrition of the Crustacean and some of the attractive possibilities that exist for further extensive study in this area. The numerous edible crustaceans, because of their tremendous economic importance, present continual problems in population nutrition because of ...
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