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1 s or morphological changes in their injected striata.
2 take in mGluR5 receptor-rich regions such as striata.
3 rcent decrease in D1-like binding in the two striata.
4 activity but not in PSP activity in lesioned striata.
5 t alter neuron firing in the 6-OHDA-lesioned striata.
6 nondopaminergic cells in their cortices and striata.
7 medium spiny-like neurons in 6-OHDA-lesioned striata.
8 es were detected in the quinolinate-injected striata.
9 ociated, [3H]choline-labeled, adult male rat striata.
10 ed in the lesioned and contralateral control striata.
11 n acutely dissociated neurons from adult rat striata.
12 roscopy in the ipsilateral and contralateral striata.
13 cific differences between ventral and dorsal striata.
14 etworks for the blackpoll warbler (Setophaga striata), a Neotropical-Nearctic songbird, using trackin
16 nobutyric acid-positive) isolated from mouse striata also responded to U50,488 by increasing phospho-
17 llular dopamine in both lesioned and control striata, although tissue dopamine was decreased 30-70% i
19 of aquatic insects (caddisflies Oligotricha striata and Limnephilus spp. and mayfly Siphlonurus aest
20 f an average scan, automatically locates the striata and occipital structures, locates the caudate an
21 s were positioned in both the right and left striata and perfused with artificial cerebrospinal fluid
22 long-distance blackpoll warblers (Setophaga striata) and short-distance yellow-rumped warblers (Seto
23 s was 60% in the corpus callosum, 36% in the striata, and 18%-22% in the cortical lobes in the simula
25 ng doublecortin-defined neuroblasts in their striata, and the new neurons expressed p27 as a marker o
28 striatum was significantly decreased in Q140 striata, as was the abundance of VGLUT2(+) axodendritic
29 approximately half of that in contralateral striata at 3 days, and was significantly increased in IR
30 ation readily elicited DA release in control striata but not from contralateral striata when nigrostr
31 rsolateral (30-60%) and posterior (100-200%) striata, but not within the anterior ventromedial striat
32 nylacetic acid (DOPAC) were not different in striata collected from melatonin-treated versus DMSO-tre
33 eductions in TH immunoreactivity in injected striata compared with the contralateral hemisphere (inje
38 tutored juvenile Bengalese finches (Lonchura striata domestica) from different genetic backgrounds wi
39 gia guttata) and Bengalese finches (Lonchura striata domestica) to detect a zebra finch or a Bengales
40 ure of vocal learning in songbirds (Lonchura striata domestica) to test the idea that matching instru
41 demonstrate that Bengalese finches (Lonchura striata domestica), which sing variable syllable sequenc
44 h quantitative autoradiography in postmortem striata from 19 patients with dementia with Lewy bodies,
46 astructural studies of the human and Macaque striata further revealed an association of torsinA immun
50 s were differentially expressed in TgR mouse striata, including 15 known genes, 7 of which are anxiet
51 suggests that increases in dopamine (DA) in striata may participate in neurodegenerative processes d
52 iated murine neuroblastoma (NBP2) cells into striata of 6-hydroxydopamine-lesioned rats (an animal mo
53 ver, transplantation of these cells into the striata of 6-hydroxydopamine-treated rats at the neurona
55 ced from human embryonic stem cells into the striata of adult mice that had been neonatally chimerize
56 PA metabolites in extracellular space in the striata of anesthetized rats was investigated using in v
57 reuptake were significantly increased in the striata of animals receiving dopamine PTEN knock-out tra
60 lished human data of increased DAT levels in striata of HAND patients and by demonstrating similar fi
62 e receptor availability has been observed in striata of methamphetamine users as compared with contro
65 anted bilaterally into the dopamine depleted striata of MitoPark mice that express a parkinsonian phe
66 cell-cycle markers typically not seen in the striata of normal mice, and these cells are preferential
67 rtalized dopamine neurons, when grafted into striata of normal rats, did not divide, did not form tum
69 line receptors (nAChRs) are decreased in the striata of patients with Parkinson's disease (PD) or in
70 es, and TH expression were attenuated in the striata of pups from the dams fed with the resveratrol-s
72 te (NMDA) receptor-induced excitotoxicity in striata of symptomatic N171-82Q mice, a new transgenic m
73 e to the loss of medium spiny neurons in the striata of the hyperammonemic sparse fur (spf/Y) mouse,
74 d (HVA) were significantly diminished in the striata of the middle-aged and old rats as compared to l
75 howed no change in NR1, NR2A, or NR2B in the striata of the symptomatic mice, we observed a decrease
76 We followed the distribution of mHTT in the striata of transgenic R6/2-J2 HD mice as their motor fun
77 fferential changes in gene expression in the striata of wild-type and SOD-tg mice treated with neurot
83 actional [3H]ACH efflux from dissociated rat striata tested whether tonic inhibition prevents stimula
85 geting human Htt mRNA (siRNA-Htt) into mouse striata that also received adeno-associated virus contai
87 ongbird species (Bengalese finches, Lonchura striata var. domestica) greatly reduced the magnitude of
88 tory feedback in Bengalese finches (Lonchura striata var. domestica) to create sensory errors during
91 tal extracellular [18F] radioactivity in rat striata was observed to rise and peak at 30 min post-inj
92 ased by 2.4-fold in blood-injected wild-type striata, was not altered by IRP1 knockout, but was reduc
95 um spiny-like neurons in the 6-OHDA-lesioned striata were significantly faster than were firing rates
96 euthanized 2 h after SA cessation and dorsal striata were used in post-mortem molecular analyses.
98 DA release in either the control or lesioned striata when the virus was injected directly into the st
99 4%, respectively, relative to the unlesioned striata, whereas the abundance of NR2A was unchanged.
100 iculate, and, to a lesser extent, cortex and striata, which are known to contain alpha(4)beta(2) site
101 and by germline inactivation in osteopathia striata with cranial sclerosis, a bone overgrowth syndro