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1 ates of isolated intestinal tissue from Gulf toadfish acclimated to control or 1900 muatm CO2 (projec
4 ) fish species of the family Batrachoididae (toadfishes and midshipmen) possess high titers of all en
5 ty in the vestibular labyrinth of the oyster toadfish by using whole end organs labeled by immunofluo
9 ly 200 Hz), the swimbladder muscle fibers of toadfish have evolved (i) a large and very fast calcium
12 iontophoretically into saccular afferents of toadfish (Opsanus tau) after intracellular recording to
13 the response are mediated by the presence of toadfish (Opsanus tau) predation threat in the form of w
14 erties of the evolutionarily distant species toadfish (Opsanus tau), approximately 420-million year d
15 om the beluga whale (Delphinapterus leucas), toadfish (Opsanus tau), chicken (Gallus gallus), hagfish
16 concentrating neurons was examined in oyster toadfish (Opsanus tau), males of which produce a courtsh
17 , we hypothesized that treatment of the Gulf toadfish, Opsanus beta, with FLX would interfere with th
19 micircular canal (HSCC) crista and cupula of toadfish, Opsanus tau, by using a) confocal light micros
20 semicircular canal crista ampullaris of the toadfish, Opsanus tau, is sensitive to infrared radiatio
21 e horizontal semicircular canal nerve of the toadfish, Opsanus tau, was transected and allowed to reg
24 marine food chain consisting of a predator (toadfish--Opsanus tau), prey (mud crab--Panopeus herbsti
26 in frogs, birds, and one other teleost, the toadfish sonic motor nucleus did not concentrate androge
29 in the fastest vertebrate muscle known (the toadfish swimbladder), and whether the swimbladder muscl
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