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1 nd an auditory brainstem synapse in a female gerbil.
2 s on auditory brainstem neurons of Mongolian gerbil.
3 using neuroanatomical tracing methods in the gerbil.
4 microm) to stimulate auditory neurons of the gerbil.
5 rate in the medial geniculate nucleus of the gerbil.
6 uring vestibular adaptation in the Mongolian gerbil.
7 found in any sensory cortex except AI of the gerbil.
8 pplied chronically to one cochlea of a young gerbil.
9 l injury after 5 min of cerebral ischemia in gerbil.
10 r uvula/nodulus and flocculus lobules in the gerbil.
11 d by cerebral ischemia/reperfusion injury in gerbils.
12 s also found in H. pylori-infected Mongolian gerbils.
13 mation than the isogenic wild-type strain in gerbils.
14 y, cochleae were freshly isolated from young gerbils.
15 ith NO synthase (NOS) in recently mated male gerbils.
16 ot altered in auditory nerve fibers of aging gerbils.
17 resentation of ITDs in adult male and female gerbils.
18 in the cultured organ of Corti from neonatal gerbils.
19 vitro and reduced the incidence of cancer in gerbils.
20 been well documented in rats, hamsters, and gerbils.
21 ns from synaptosomes isolated from Mongolian gerbils.
22 ers in 32% and hyperplastic polyps in 68% of gerbils.
23 em slices from postnatal day 14 (P14) to P38 gerbils.
24 diated gastric cancer incidence in Mongolian gerbils.
25 membrane phosphatide synthesis in brains of gerbils.
26 n a model of ischemic tolerance in Mongolian Gerbils.
27 ling cascades in the hippocampal CA1 of male gerbils.
28 (MeApd) express Fos with ejaculation in male gerbils.
29 media infection via transbullar injection of gerbils.
30 II mRNA in vulnerable hippocampal regions of gerbils.
31 lceration and atrophy occurred only in B128+ gerbils.
32 al neurons of the MSO of anesthetized female gerbils.
33 n the ventral cochlear nucleus of developing gerbils.
34 cipal neurons in brain slices from Mongolian gerbils.
35 rapidly induces gastric cancer in Mongolian gerbils.
36 divided between young, middle-aged, and old gerbils.
37 r, spontaneous rates were decreased in aging gerbils.
38 epithelial (hyper)proliferation in Mongolian gerbils.
39 heir impact on sensory processing in vivo in gerbils.
40 gle-unit auditory nerve fibers of quiet-aged gerbils.
41 cts sound perception in developing and adult gerbils.
42 the auditory brainstem of juvenile Mongolian gerbils.
43 lus (IC) and primary auditory cortex (A1) of gerbils.
44 and the calyx of Held in juvenile Mongolian gerbils.
45 ce density (CSD) analysis in AI of Mongolian gerbils.
46 the responses of pregnant versus nonpregnant gerbils.
52 enge and successful colonization of mice and gerbils allows tracking of H. pylori phenotype variabili
55 tinylated dextran amine into the CNIC of the gerbil and demonstrated that it can be divided into two
56 n site-directed mutagenesis revealed that in gerbil and human AT(1) receptors, the amino acid most im
59 species with dissimilar timing requirements (gerbil and mouse): In gerbils (like humans), neuronal pr
61 ordings of binaural neurons in the Mongolian gerbil and pharmacological manipulations to directly com
62 SNPs (ENm010.7p15:2 data from HapMap) versus GERBIL and PHASE requiring more than a week and admittin
63 P is several orders of magnitude faster than GERBIL and PHASE while matching them in quality measured
64 the determination of antagonist affinity for gerbil and, most importantly, for human angiotensin II A
65 stric carcinoma in infected INS-GAS mice and gerbils and attenuated isoLG adducts, DNA damage, and so
67 ical data of proximal MSO axons in Mongolian gerbils and found that the axon diameter is <1 mum and t
68 uantitatively similar to those seen in aging gerbils and humans, e.g., a flat threshold loss at low f
69 apoptosis accounted for 42%-69% of cells in gerbils and insulin-gastrin mice with dysplasia and carc
70 odulation (FM) detection thresholds in adult gerbils and investigated whether diminished auditory exp
75 sorineural hearing loss (SNHL) in developing gerbils and then reared the animals for several days.
76 Until recently, only two models, Mongolian gerbils and Tyrp1(B-lt) mice, were known to undergo age-
78 en and owl), and mammals (mouse, guinea pig, gerbil, and bat), and the connexin composition of GJs in
80 d features between human strial presbycusis, gerbils, and BALB/cJ and C57BL/6-Tyr(c-2J) mice further
81 lori-infected gastritis tissues from humans, gerbils, and both wild-type and hypergastrinemic insulin
83 peech in the primary auditory cortex (A1) of gerbils, and found that responses were qualitatively dif
84 derate or severe hearing loss was induced in gerbils, and iSTP was characterized by measuring inhibit
86 thers have previously reported that in mice, gerbils, and rhesus macaques, expression of babA is lost
88 llbirths were seen in gerbils indicates that gerbils are not more sensitive to L. monocytogenes invas
89 insulin-gastrin (INS-GAS) mice and Mongolian gerbils as models of H pylori-induced carcinogenesis and
93 responses to tones were measured in neonatal gerbils at a site near the round window of the cochlea.
94 (SNHL) was induced surgically in developing gerbils at postnatal day 10, and excitatory synaptic pla
95 the dorsal raphe nucleus (DRN) in Mongolian gerbils at selected times during a 12:12 h light:dark cy
97 different from postmortem responses in adult gerbils: BF was more than an octave lower, the steep slo
98 emetrically from the core auditory cortex of gerbils, both while they engaged in an amplitude-modulat
99 esults indicate that a local LPS infusion in gerbil brain may be a useful model in which to investiga
103 atic and dendritic patch-clamp recordings in gerbil brainstem slices together with compartmental mode
104 amp recordings from MSO principal neurons in gerbil brainstem slices, we examined interactions betwee
107 in a number of species, including Mongolian gerbils, but functional correlates of this optic pathway
109 rganotypic cultures from postnatal day (P) 6 gerbils, but this regenerative capacity is lost by P12.
110 Global cerebral ischemia was induced in gerbils by a 5-min occlusion of bilateral common carotid
111 ient global cerebral ischemia was induced in gerbils by occlusion of both common carotid arteries for
115 ory deprivation in male and female Mongolian gerbils caused correlated deficits in behavioral and cor
116 ional cochlear fluid model was developed for gerbil, chinchilla, cat, and human, featuring an active
118 ent fibers at a constant location within the gerbil cochlea by using the fluorescent carbocyanine dye
119 ed voltage-evoked hair-bundle motions in the gerbil cochlea to determine if such movements were also
120 measured in the basal turn of the sensitive gerbil cochlea using a scanning laser interferometer.
121 ed from 4 to 20 kHz in the basal turn of the gerbil cochlea, where the best frequency is approximatel
126 ic ulcers significantly more frequently than gerbils consuming a normal-salt diet, and the lowest hem
129 f the hippocampus, suggesting that Mongolian gerbils currently available in the US have anomalous con
132 imulation can affect c-Fos expression in the gerbil DRN, quantitative analysis of c-Fos-immunoreactiv
133 CM in the auditory cortex of adult Mongolian gerbils during specific phases of cortex-dependent audit
134 We show that in MSO principal neurons of gerbils during the first week of hearing, a hyperpolariz
137 ed H. pylori strains isolated from Mongolian gerbils fed either a high-salt diet or a regular diet fo
138 MO1 activity was significantly higher in the gerbils fed without Bc or VitA than those fed with a Vit
140 ed binocular horizontal eye movements in the gerbil following unilateral labyrinthectomy during the a
141 em penetration and pharmacological activity (gerbil foot tap test) in the case of the highest affinit
144 ommunicating arteries were present in 90% of gerbils from each vendor, ranging from 19 microm to 125
147 ert in the Middle East, the greater Egyptian gerbil Gerbillus pyramidum and the Saharan horned viper
148 inst ischaemia-induced hippocampal damage in gerbil global cerebral ischaemia when dosed at 10, 12.5
151 on to uninfected gerbils, H. pylori-infected gerbils had a higher gastric pH, a higher incidence of g
153 ls (independent of diet), H. pylori-infected gerbils had significantly lower hemoglobin values than t
154 red with whole-cell recordings from immature gerbil hair cells using near-physiological conditions.
155 s, we formulate a well-posed problem for the gerbil hemicochlea preparation by introducing an in-plan
156 d IHC transducer currents and BM motion in a gerbil hemicochlea to examine relationships between thes
157 ases the number of dendritic spines in adult gerbil hippocampus, particularly when animals are co-sup
158 19 was inoculated into the Brugia-permissive gerbil host to induce gamma interferon (IFN-gamma) produ
164 Of the six models evaluated, nude rats and gerbils immunosuppressed with dexamethasone excreted the
167 than those at which stillbirths were seen in gerbils indicates that gerbils are not more sensitive to
168 hrombocytosis were also detected in infected gerbils, indicating the presence of a systemic inflammat
169 ipopolysaccharide (LPS) into the striatum of gerbils induced lectin-positive macrophage parenchymal i
170 ic dysplasia and cancer developed in >50% of gerbils infected with either the wild-type or vacA(-) st
171 creased in gastric epithelium harvested from gerbils infected with the H. pylori carcinogenic strain
172 ng properties of single neurons in the awake gerbil inferior colliculus (IC) and compared them with p
173 terize the population code for speech in the gerbil inferior colliculus (IC), the hub of the auditory
176 al carotid artery occlusion in the Mongolian gerbil is a widely used model of forebrain ischemia due
177 f the bulbocavernosus (SNB) of the Mongolian gerbil is achieved by two periods of postnatal increase,
179 l bushy cell (SBC) activity in the Mongolian gerbil is rendered sparser and more reliable by subtract
181 st that the neural representation of ITDs in gerbils is transformed from IC to A1 and have important
182 s commonly studied in auditory research, the gerbil, is used to demonstrate that altering the viscoel
187 r timing requirements (gerbil and mouse): In gerbils (like humans), neuronal processing of sound sour
188 ata on the main rodent host reservoir (great gerbil), main vector (flea), human cases, and external (
189 rats and suggest that social interaction in gerbils may also be used to screen for anxiolytic action
190 nals in a noisy background, we recorded from gerbil medial superior olivary (MSO) neurons in vitro.
191 ons of recent physiological results from the gerbil medial superior olive (MSO) that reveal that bloc
192 tissue migration of Brugia pahangi L3 in the gerbil (Meriones unguiculatus) and measure host cellular
194 ortical auditory structures of the Mongolian gerbil (Meriones unguiculatus), a frequently used animal
197 d mole rats compared to mice (Mus musculus), gerbils (Meriones unguiculatus), and Damaraland mole rat
199 asialylated siaB mutant was attenuated in a gerbil middle ear infection model system, as well as in
201 l of hypoxia-hypoglycaemia in vitro and in a gerbil model of global and in two rat models of focal ce
204 nduced by a Deltafur strain in the Mongolian gerbil model of infection and compared the results to re
205 lzine provided robust neuroprotection in the gerbil model of transient forebrain ischemia, with drug
210 e gastritis, proliferation, and apoptosis in gerbil mucosa than did duodenal ulcer strain G1.1, and g
213 ckers ('photoswitches') in binaural auditory gerbil neurons to show that hyperpolarization and cyclic
215 antifications of the afferent innervation in gerbils of both sexes with computational modeling of a s
216 nd calcium entry in MSO neurons of Mongolian gerbils of either sex raised in a normal and in an activ
217 r recordings were obtained from 41 Mongolian gerbils of either sex, divided between young, middle-age
219 btained the charge density of prestin in the gerbil OHCs by measuring their nonlinear capacitance (NL
220 velopmental conductive hearing loss (CHL) in gerbils on MMR characteristics, as a test for putative C
221 pylori strains harvested from iron-depleted gerbils or grown under iron-limiting conditions exhibite
222 e invasion and adverse pregnancy outcomes in gerbils orally exposed to L. monocytogenes, to compare t
223 cally evoked OHC somatic motility within the gerbil organ of Corti using an excised cochlear preparat
226 ophages in the neurodegenerative response in gerbils, peripheral macrophages were depleted by an intr
227 The mechanics of hearing in rodents such as gerbil pose a challenge to our understanding of the coch
230 al inhibitory synaptic transmission as adult gerbils progressed through the process of associative le
231 We found that utricular afferents in the gerbil projected to all divisions of the vestibular nucl
234 conductive hearing loss (CHL) in developing gerbils, reared the animals for 8-13 d, and subsequently
237 e of the SNB in prepubertally castrated male gerbils receiving delayed hormone replacement as adults.
239 evious results about the organization of the gerbil's subcortical auditory pathway using other anatom
240 the laminar and cellular organization of the gerbil's subcortical auditory structures, in particular
241 potential due to strial dysfunction in aged gerbils.SIGNIFICANCE STATEMENT As our society ages, age-
242 th the injected mitochondria, we used either gerbil single-cell embryos or rat oocytes to package inj
248 he cheY mutant completely failed to colonize gerbil stomachs, the tlpB mutant colonized at levels sim
250 r and cardiac iron calibration curves in the gerbil suggests that extrapolation of human liver calibr
251 re significantly lower in H. pylori-infected gerbils than in uninfected gerbils, consistent with IDA.
253 sent exclusively in fast conducting axons of gerbils that also exhibited unusual structural adaptatio
254 tanding of the cochlea, however, because for gerbil the two layers separate to form a pronounced arch
255 However, if acid secretion is inhibited in gerbils, the deletion mutants do colonize but are eradic
257 for efficient colonization of the Mongolian gerbil: the mutant strain exhibits a 100-fold increase i
258 n cognitive behaviors of giving normal adult gerbils three compounds, normally in the circulation, wh
259 ellular recordings in anesthetized Mongolian gerbils to assess the effect of acoustically evoked inhi
264 that H. pylori output strains isolated from gerbils treated with DFMO exhibit reduced ability to tra
265 r findings were noted in B. pahangi-infected gerbils treated with ivermectin, suggesting that the los
269 1) to define the central projections of the gerbil utricular afferents by injecting horseradish pero
272 days of exposure adjacent to a demonstrator gerbil was tested in the presence or absence of visual c
273 nd detailed signal analysis in the Mongolian Gerbil, we demonstrate that inhibition is widely co-tune
275 rom postnatal day 7 to 24 (P7-P24) Mongolian gerbils, we confirm that activation of GABAB receptors r
285 rulence in gastric carcinogenesis, Mongolian gerbils were maintained on iron-depleted diets and infec
287 after birth (DAB), BM responses in neonatal gerbils were passive but otherwise very different from p
291 ocampal damage following global ischaemia in gerbils when administered before or immediately post-occ
292 uditory cortical field (AI) in the Mongolian gerbil with subcortical structures of the auditory syste
293 tation of speech in the auditory midbrain of gerbils with "hidden hearing loss" through noise exposur
294 s of a high-salt diet, we infected Mongolian gerbils with a wild-type (WT) cagA(+) H. pylori strain o
298 mma mRNA levels were significantly higher in gerbils with ulcers than in those with hyperplastic poly
300 NB of prepubertally castrated male Mongolian gerbils within 2 days of the start of delayed TP treatme