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1 in the auditory thresholds recorded from the saccule.
2 nd extra-striolar regions of the utricle and saccule.
3 ed loss of vestibular hair cells only in the saccule.
4 structures such as the cochlea, utricle, and saccule.
5 mitotically blocked cultures of the bullfrog saccule.
6 n that of sensory epithelium from utricle or saccule.
7 approximately threefold larger than in frog saccule.
8 in higher frequency organs such as the frog saccule.
9 ERalpha, and aromatase in the forebrain and saccule.
10 e otic capsule and terminates lateral to the saccules.
11 with compensatory hyperinflation of immature saccules.
12 apparatus, such as the formation of dilated saccules.
13 in-duct strictures and grapelike clusters of saccules.
17 ver, Gbx2 promotes ventral fates such as the saccule and cochlear duct, possibly by restricting Otx2
19 sed dissociated hair cells from the bullfrog saccule and high-speed video imaging to characterize thi
21 t reduction in the number of otoconia in the saccule and the utricle, were consistently observed in t
22 owing to a depletion of sensory cells in the saccule and utricle, and a complete loss of the horizont
23 nse lateral and ventral projections from the saccule and utricle, and medial and dorsal projections f
24 agenar otoliths, close proximity between the saccules and the utricles, deeply grooved sulci on the s
26 crista, the lateral crista, the utricle, the saccule, and both the basilar papilla and lagenar macula
27 shapen and smaller ear with a fused utricle, saccule, and cochlea and absent horizontal canal, aberra
29 of hair cells differentiate in the utricle, saccule, and cochlear base but sensory epithelium format
30 nd sac, in distinct areas of the utricle and saccule, and in the external sulcus region within the co
31 rom the three otolithic organs (the utricle, saccule, and lagena) project to the intermediate DON in
32 show that Pax2-/- ears often lack a distinct saccule, and the endolymphatic duct and common crus are
34 ing the mature semicircular canals, utricle, saccule, cochlear duct, endolymphatic duct and sac, and
35 labeling of the main auditory end organ, the saccule, combined with tyrosine hydroxylase immunofluore
39 he three mechanoreceptor organs, the utricle/saccule, cristae, and cochlea, with distinct types of ac
40 ista, as well as a fusion of the utricle and saccule endolymphatic spaces into a common utriculosaccu
42 brane of vestibular hair cells from the frog saccule extrudes H+ via an Na+-dependent mechanism, bund
43 derivatives, including the cochlear duct and saccule, fail to form, and dorsal otic derivatives, incl
47 he dorsal medulla shows that fibers from the saccule in the inner ear and from the anterior lateral l
50 om all three of the inner ear endorgans (the saccule, lagena, and utricle) synapse directly on the ip
51 ed as a 95-kDa glycoprotein in sunfish whole-saccule lysate and in homogenates of microdissected sacc
52 tained from afferents innervating the middle saccule may reflect curvature of the sensory epithelium
53 conia are biominerals within the utricle and saccule of the inner ear that are critical for the perce
54 omozygous mice is limited to the utricle and saccule of the inner ear, which completely lack otoconia
55 in het mutants is limited to the utricle and saccule of the inner ear, which completely lack otoliths
57 y localized to tubulovesicles that resembled saccules of SER, and less frequently localized to isolat
58 s showing S-LI were prominently localized to saccules of smooth endoplasmic reticulum and mitochondri
59 chT-immunoreactive tubulovesicles resembling saccules of smooth endoplasmic reticulum were often seen
61 n the bluegill sunfish (Lepomis macrochirus) saccule, one of the otolithic organs in the inner ear.
63 erebellum similar to that of the utricle and saccule suggest that the primary role of the lagena in t
69 Grh1 containing vesicles and tubules into a saccule to generate a mature Acb1 containing compartment
70 ped and used a preparation of isolated mouse saccule to measure transepithelial currents from the ext
71 re localized within sensory epithelia of the saccule, utricle and cochlea throughout development and
74 aratus, including three semicircular canals, saccule, utricle, and their associated sensory organs, d
75 bundles in different regions of the lagena, saccule, utricle, macula neglecta, and cristae was chara
78 imental preparations of ampulla, utricle and saccule were found to be significantly higher than those
81 ects of adaptation in hair cells of the frog saccule, where adaptation time constants are tens of mil
82 formation of the proximal cochlear duct and saccule, which requires less Shh signaling, is achieved
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