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1 h astrocyte networks, creating a barrier for neuronal access to an astrocytic energy reservoir in the
4 inflammation and activation of GABAergic and neuronal activation in mice regardless of cirrhosis comp
5 found that sevoflurane caused an increase in neuronal activation in primary somatosensory cortex of y
6 sh the role of the apparently avian-specific neuronal activation in the VMH of zebra finch parents.
7 e a circuit framework through which dopamine neuronal activation shifts from reward delivery to cue o
9 al bioenergetics is dynamically coupled with neuronal activities, which are altered by hypoxia-induce
11 er rates in cultured brain cells under basal neuronal activity and found that protein turnover is inf
12 normally positive effects of estrogen on SF1 neuronal activity and glucose balance control to paradox
13 d mice exhibited normal synaptic density and neuronal activity as measured by density of VGLUT2(+) pu
16 imaging, we detected evoked and spontaneous neuronal activity in the mouse visual cortex, with fluor
18 te that modulation of chronic stress-induced neuronal activity limits microglia-mediated neuronal rem
19 hese subcortical structures, we recorded CDh neuronal activity of macaque monkeys before and during u
21 study reveals that 4-AP-induced increase of neuronal activity restores synaptic connectivity and fun
24 proposed modulatory effect of irradiation on neuronal activity without causing cellular death require
25 espond to neuronal activation by suppressing neuronal activity, and ablation of microglia amplifies a
27 vels, it modulates synaptic transmission and neuronal activity, but at much higher levels mediates ne
29 indicate that NKCC1b is required to maintain neuronal activity-related solute homeostasis at the axon
35 been shown to induce the production of toxic neuronal amyloid protein and also enhance neurotoxicity.
38 s work identifies a simultaneous activity of neuronal and lymphoid CB(2)that protects against spontan
41 nide treatment was associated with increased neuronal and network excitability after injury, includin
42 of the mechanism(s) of action of tDCS at the neuronal and systems levels, the establishment of the co
45 ated that EBOV can induce satellite cell and neuronal apoptosis and microglial activation in infected
48 her, our results identify an mTOR-responsive neuronal autophagy pathway, wherein RILP integrates the
49 tle is known about which PATs are present in neuronal axons, although long-distance trafficking of pa
53 rowth factor (NGF) regulates many aspects of neuronal biology by retrogradely propagating signals alo
54 the loss of Ascl1 yielded a similar delay in neuronal birth, suggesting that Ascl1 cannot rescue the
56 s by which mutant huntingtin (mHTT) leads to neuronal cell death in Huntington's disease (HD) are not
57 sible for unchecked inflammation that causes neuronal cell death, systemic stress, and lethal immunod
60 f this study was to morphologically identify neuronal cell types of the CX in the honeybee Apis melli
62 that microglial cells constitute ~7% of non-neuronal cells in different brain structures as well as
64 g to these motifs in vivo, we analysed human neuronal cells using ChIP-seq and ATAC-seq technologies.
65 ligands to target the construct to specific neuronal cells utilizing only native components of the n
67 lpha) cause dominantly inherited adult-onset neuronal ceroid lipofuscinosis (ANCL), a rapidly progres
69 ent and presynaptic function in a developing neuronal circuit in its native environment is unclear.
72 veals important regulatory components of the neuronal circuitry that underlies female aggressive soci
74 In this review, I discuss newly discovered neuronal circuits in primates that represent uncertainty
76 aine to the dura prevented activation of all neuronal classes but not the initiation or maintenance o
77 Here we recorded spiking activity in 435 neuronal clusters evoked by acoustic stimuli in the peri
78 n-wide functional imaging, we identify three neuronal clusters in the anterior hindbrain that are wel
79 Action potentials are a key component of neuronal communication and their precise timing is criti
84 d evolution of neuronal culture networks and neuronal culture cluster networks by estimating the impo
85 e investigate the structure and evolution of neuronal culture networks and neuronal culture cluster n
86 Here, we investigated, in rat hippocampal neuronal cultures derived from embryos of unknown sex, w
87 d the uptake of D-serine in synaptosomes and neuronal cultures of mice of either sex, while increasin
88 ealed a disease duration-related increase in neuronal cytoplasmic inclusions in the dentate gyrus and
90 macrostructural change characterises global neuronal damage, investigating microstructural alteratio
91 oid cells 2 (sTREM2), as well as a marker of neuronal damage, neurofilament light chain (NfL), using
92 ) on Cx43 expression and function leading to neuronal damage, underlying mechanisms by which Abeta mo
96 e that is expressed by Muller glia following neuronal death, is required for Muller glia to progress
98 that D(1)R-induced cell death signaling and neuronal degeneration, are mitigated by an H(3)R antagon
101 modulate BDNF-dependent gene expression and neuronal dendritic growth mediated by the CREB transcrip
102 nger photoperiods are associated with higher neuronal density and decreased depressive-like behaviour
105 een distinct RBPs and alternative 5' UTRs in neuronal development and underscore the risk of post-tra
106 scam2 is a cell surface protein required for neuronal development in Drosophila; it can promote neura
110 represses the expression of region-specific neuronal differentiation genes, thereby controlling the
111 nly observed in individuals with CHARGE, and neuronal differentiation is reduced in CHARGE patient-de
116 GNIFICANCE STATEMENT We examine how coherent neuronal dynamics arise from optogenetic stimulation in
118 a general mechanism for generating coherent neuronal dynamics without the need for an oscillatory ge
122 exposed phosphatidylserine (PS) represents a neuronal "eat-me" signal involved in microglial-mediated
123 cent tracking of nanoparticles together with neuronal electrical activity recording at the submillise
124 forms, but recently, photonic techniques for neuronal emulation have emerged given their unique prope
126 apture the proteomic microenvironment of the neuronal endolysosomal network by knocking in (KI) an en
127 formation of hundreds of cell-type-specific neuronal enhancers that appear to be modulated by neuron
129 s are updated through dynamic recruitment of neuronal ensembles on the basis of excitability and func
130 dentate gyrus contain functionally distinct neuronal ensembles, genetically defined by the Fos- or N
131 course have greater hemispheric asymmetry in neuronal epigenomes than those with a short disease cour
133 estigated changes in synaptic plasticity and neuronal excitability of BLA neurons in vitro in the lef
141 be due, at least in part, to suppression of neuronal FGF2 signaling, which is a known suppressor of
142 evealed a total of 33 brain neuropils and 30 neuronal fiber tracts including six distinct tracts betw
143 In cortex that is recruited to the seizure, neuronal firing rates increase and waveforms become long
148 ses (NDDs) comprise conditions with impaired neuronal function and loss and may be associated with a
149 conclusion, electrophysiological analysis of neuronal function in rodent retinal explants is useful f
151 g effects of background genetic variation on neuronal function, the regulatory effects of MORs on syn
161 In a separate sample, we investigated the neuronal gene expression associated with CUD by using RN
162 tered and glial-enriched miRNA that controls neuronal gene expression is regulated by antipsychotics.
163 esults highlight the unique role of eRNAs in neuronal gene regulation and demonstrate that eRNAs can
164 ction of NONO in regulation of TET1-targeted neuronal genes, offering new functional and mechanistic
165 be the equilibrium ensemble of structures of neuronal GIRK2 as a function of the C8-PIP(2) concentrat
168 P/Abeta, but not tau, in the emergence of EC neuronal hyperactivity and impaired theta rhythmicity.
170 roadly in the C. elegans nervous system, and neuronal IL-17-MALT-1 signaling regulates multiple pheno
172 degeneration (~45%) exhibit TDP-43 positive neuronal inclusions, suggesting a role for this protein
173 n of fusogens in the nervous system disrupts neuronal individuality, which, in turn, leads to a chang
174 h the administration of GSK2656157 abrogated neuronal induction of IFNbeta, switched microglial polar
175 r's disease (AD), its reflection on regional neuronal injury in the context of amyloid pathology rema
177 ion (n = 115, 39.4%) mainly for treatment of neuronal injury, and improved immune and inflammatory mo
178 l fluid microRNAs that control inflammation, neuronal injury, autophagy and vesicular transport genes
184 tered APP processing could contribute to the neuronal iron elevation and oxidative burden that featur
186 Mutations that truncate the C terminus of neuronal Kv7/KCNQ channels are linked to a spectrum of s
187 rgic neuronal loss and the presence of intra-neuronal Lewy body (LB) inclusions with aggregated alpha
188 lism in neurons and indicates that directing neuronal lipid synthesis away from TG synthesis and towa
189 isease (PD) is characterized by dopaminergic neuronal loss and the presence of intra-neuronal Lewy bo
192 uggests that primary cilia are important for neuronal maturation and function in cells of the SC and
199 with nontransgenic wild-type mice, mice with neuronal Mfn2 overexpression also exhibited alleviated b
202 n, and this is required for proper GABAergic neuronal migration into the substantia nigra pars reticu
208 Diverse sensory neurons exhibit distinct neuronal morphologies with a variety of axon terminal ar
209 ing that preclinical/prodromal YAP-dependent neuronal necrosis represents a target for AD therapeutic
211 yte calcium and electrocorticogram to record neuronal network activity in the somatosensory cortex du
212 o sensory inputs and regulate sensory-evoked neuronal network activity maximizing its dynamic range.
214 d VGLUT3 is key for the function of specific neuronal networks involved in motor coordination, emotio
217 ects of energy balance (e.g. oxytocin (OXT), neuronal nitric oxide synthase 1 (NOS1), melanocortin 4-
218 accompanied by biomarker evidence of ongoing neuronal or astrocytic injury/activation or induction of
220 rated along the terminal tree, computing the neuronal output, which propagates toward the CNS, thus s
224 ircadian rhythms, although the molecular and neuronal pathways implicated have not been fully elucida
225 s of tcf12 in zebrafish larvae perturbs GnRH neuronal patterning with concomitant attenuation of the
228 ling genes, including S100a10 (p11), linking neuronal plasticity to the antidepressant response.
229 ological and pathological processes, such as neuronal plasticity, development, and viral invasion.
232 ecent studies revealed a novel glutamatergic neuronal population in the VP [VP neurons expressing the
233 To advance the measurement of distributed neuronal population representations of targeted motor ac
234 ey regulator of a previously uncharacterized neuronal population within the PVH that impinges upon mu
236 lly and in complexes: whether particular SCN neuronal populations act as pacemakers, and if so, by wh
237 nding whether these processes affect similar neuronal populations and whether they have similar effec
238 we tested the discrimination performance of neuronal populations at five levels of the auditory syst
239 trains, we performed comparative analysis of neuronal populations in A1 of adult (~ 10 weeks) C57BL/6
240 king noise decreased sound discrimination of neuronal populations in each auditory structure, but col
241 der, an area that gives rise to a variety of neuronal populations including the dorsal raphe (DR) nuc
243 n each auditory structure, discrimination by neuronal populations was slightly decreased when tone-vo
246 tial using transfected HEK293T cells, rodent neuronal preparations, and behavioural and electrophysio
249 aller with a reduced number of proliferating neuronal progenitors while mutant ugdh zebrafish do not
250 dings demonstrate that subtle differences in neuronal projection patterns can have a significant effe
252 receptor (beta(2)-AR) signaling and mediated neuronal protection through an arginase 1-polyamine axis
254 the present investigation used multichannel neuronal recording and tract tracing methods to examine
256 st their therapeutic targeting for promoting neuronal recovery.IMPORTANCE Brain injury induced by acu
257 ms members of the TGF-beta family, including neuronal regeneration-related protein (NREP) and growth
258 tes of spinal cord injury (SCI) and generate neuronal relays across lesions that can provide function
259 onal program modulates the expression of key neuronal remodeling genes, including S100a10 (p11), link
260 neuronal activity limits microglia-mediated neuronal remodeling in the medial PFC, and subsequent be
261 ttle is known about how OR antagonism shapes neuronal representations in the detection layer of the o
264 ity is that animals use disembodied internal neuronal representations of time to decide when to initi
265 with the application of ultrasound; (2) the neuronal response rate to ultrasound is dependent on pul
266 ics by fiber photometry, we observe that the neuronal response to conditioned context cues evolves ov
267 and delayed-visual experience) and compared neuronal responses to natural scene features in relation
270 TRP channel complexes regulate diversity in neuronal sensitization and may provide a therapeutic tar
275 Here, we provide estimates of neuron number, neuronal soma size, and volume of the different layers a
276 hted (downregulated) genes were enriched for neuronal, specifically interneuronal, affiliations and c
277 anding the effects of anesthesia on cortical neuronal spiking and information transfer could help ill
278 tly, clusters are permanently switched on by neuronal spiking, switched off by strong hyperpolarizati
279 nduced pluripotent stem cells (iPSC)-derived neuronal stem cell lines were generated from individuals
280 iking interneurons comprise ~1% of the total neuronal striatal population, are enriched dorsolaterall
281 hresholded voltage and its rate of change in neuronal structures subject to spatio-temporal synaptic
284 versification of motor neurons into distinct neuronal subsets by ensuring the maintenance of Isl1 exp
285 disorders; however, the genetically-defined neuronal subtypes and projections that govern these beha
286 r results show that neurochemically distinct neuronal subtypes in the primary auditory cortex have di
288 r cofactors to refine the differentiation of neuronal subtypes.SIGNIFICANCE STATEMENT Predisposition
290 r the same phenomenon occurs at conventional neuronal synapses due to the difficulties in collecting
291 o investigate the astrocytic activity-driven neuronal synaptic events and behavioral consequences, we
293 spective, following this arc of inquiry from neuronal to neuron-glial mechanisms by which activity an
294 t they are involved in three main processes: neuronal transmission, immuno-reactivity, and developmen
295 ata highlight an integral role for CaMKII in neuronal TRPV4-associated Ca(2+) responses, the importan
296 odel of T1D produce Abs directed against the neuronal type III intermediate filament protein peripher