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2 kDa) were isolated from the American lobster Homarus americanus and identified by integration of MS-b
3 the NMT in the cardiac system of the lobster Homarus americanus by stimulating a cardiac motor nerve
4 stomatogastric ganglion (STG) of the lobster Homarus americanus generates a triphasic motor pattern,
5 luable marine species, the American lobster (Homarus americanus Milne Edwards), has thrived for decad
6 of the largest known d/l peptides (CHH from Homarus americanus with 72 residues) with a dynamic rang
9 eral protocerebral neuropils of the lobster, Homarus americanus, and the development of their neurona
10 f these peptidergic projections in the adult Homarus americanus, and the effects of some of these neu
11 organs of three decapod crustacean species, Homarus americanus, Cancer borealis, and Panulirus inter
12 tomatogastric nervous system in the lobster, Homarus americanus, exhibited substantial activity-depen
14 gland (PTG) tissue of the American lobster, Homarus americanus, reveal a complex tubulin (Tub) profi
15 the stomatogastric ganglion of the lobster, Homarus americanus, the pyloric (PY) neurons exist in va
16 rvous system (STNS) of the American lobster, Homarus americanus, using matrix-assisted laser desorpti
17 kers, and with a focus on the Maine lobster, Homarus americanus, we report that many peaks appearing
27 loci provide powerful species assignment in Homarus, enabling the robust identification of hybrid an
28 d in the abdominal musculature of developing Homarus gammarus larvae acclimated to 10, 14 and 19+/-1
30 ing nudiviruses reveals conservation between Homarus gammarus nudivirus and Penaeus monodon nudivirus