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1 and the loss of touch response in the distal caudal fin.
2 ae-bearing tail continues to grow beyond the caudal fin.
3 oups of genetically labeled cells within the caudal fin.
4 iated cells that cooperate to regenerate the caudal fin.
5 ineage classes that make the adult zebrafish caudal fin.
6 e also possess the ability to regenerate the caudal fin.
7 bending, spiraling tail and twisting of the caudal fin.
8 f shha does not alter the shape of the adult caudal fin.
9 e hoxb13a and hoxc13a mutants fail to form a caudal fin.
10 c prepattern of transcription factors in the caudal fin.
11 formities, including pooling of blood in the caudal fin.
12 bes and the body axis not extending into the caudal fin.
13 enhanced three-dimensional kinematics of the caudal fin.
14 ed fibroblasts of uninjured and regenerating caudal fins.
15 estral scale-covered tails curved over their caudal fins.
16 e into slender midwater species with furcate caudal fins.
18 -independent bioindicator of oil exposure in caudal fin, a tissue that is amenable to nonlethal sampl
19 sset Lagerstatte, which exhibits lateral and caudal fins, a distinct head region with long antennae a
20 remely small and strongly arched; dorsal and caudal fins absent; tail stings and cartilaginous tail r
27 modern sharks and sturgeons, with asymmetric caudal fins and a vertebral column extending into an elo
28 owth trajectories; a lower median fin turned caudal fin, and an upper vertebrae-bearing tail, equival
30 profiles from regenerating zebrafish retina, caudal fin, and heart muscle revealed additional candida
31 agrass, kelp or coral reefs, lack pelvic and caudal fins, and give birth to directly developed offspr
34 Relative to standard length (SL; jaw tip to caudal fin base distance), the surface area of jaw-closi
36 positive cells occurring on the lobes of the caudal fin by stage 48 and on the remaining fins by stag
37 form body plan, with a fusiform body, lunate caudal fin, compressed peduncle, and peduncle joint.
39 ransition in growth control during zebrafish caudal fin development, wherein a switch from allometric
40 , we investigated the role of hox13 genes in caudal fin formation as these genes control posterior id
43 neurovascular-bone relationship in the adult caudal fin is established during fin organogenesis and s
45 phological abnormalities, including peculiar caudal fin malformations and hyperpigmentation in the ta
51 f the neuromuscular system of the dorsal and caudal fin of zebrafish, Danio rerio, was studied, inclu
52 metabolites along the proximodistal axis of caudal fins of uninjured and regenerating adult zebrafis
58 nic fish, and its genomic deletion perturbed caudal fin regeneration and abrogated cardiac regenerati
63 of AHR activation, we employed the zebrafish caudal fin regeneration model, where AHR activation bloc
64 ke other glucocorticoids, suppress zebrafish caudal fin regeneration, indicating that hair cell regen
68 ted tail is eclipsed by the upward-expanding caudal fin, rendering a once ventral body margin as the
69 here deep-bodied benthic forms with truncate caudal fins repeatedly evolve into slender midwater spec
71 the total thrust produced over the body and caudal fin, substantially decreasing the net drag on the
72 late multiple spontaneous fractures in their caudal fin, suggesting their bones may be more brittle.
73 strategies demonstrated self-sustained body-caudal fin swimming, highlighting the role of feedback m
74 appropriate level of flexibility to flapping caudal fins (tails) of robots emulating the thunniform s
75 Alopiids possess specialist pectoral and caudal fins that are likely to have evolved, at least in
76 igmented extension of the ventral tip of the caudal fin-the "sword"-in males of several species of Xi
77 putation, zebrafish regenerate their injured caudal fin through lineage-restricted reprogramming.
78 nerate the complex structure of an amputated caudal fin to a degree that the original and replacement
79 rowth of the central rays, causing the adult caudal fin to grow into a triangular, truncate shape.
80 ults indicated that during the first h after caudal fin transection, neutrophils migrate from the hem
82 rformed a longitudinal analysis of zebrafish caudal fin vascular assembly, revealing the existence of
83 analyses further suggest that its dorsal and caudal fins were adapted for swift predatory locomotion