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1 hives, and the Canadian Institute for Health Information from 2000 to 2019.
2 cal brain responses to syllable pitch speech information from ages 2 to 6.5 months (coefficient: 0.68
3  application was improved with the aid of CF information, from 78% to 98% on the endocardium (P<0.001
4 ding of patient perceptions, the transfer of information from a physician to a patient and a patient'
5  disease for children have not included much information from China, leading to a large gap in data.
6  accurate molecular mass and LC elution time information from the analysis to a reference database.
7 tosensory pathway that transmits temperature information from the skin to a median subregion of the p
8 systematic and effective method of combining information from multiple cells to accomplish this.
9           The proposed approach incorporates information from reliable controls to achieve a higher p
10 s for diagnostic disagreement prevented this information from being used to address identified reliab
11 h calls for a better approach to integrating information from multiple cohorts to address issues of b
12 ients are able to extract some useful visual information from text to aid the planning of reading sca
13          Nervous systems extract and process information from the environment to alter animal behavio
14 r cells convey luminance, spatial, and color information from photoreceptors to amacrine and ganglion
15 ssion of the amyloid fold as a way to convey information from a receptor to an effector protein.
16 me function, allowing transfer of functional information from one member to an entire COG.
17             To better understand the flow of information from the thalamus to and through rat A1, we
18 ansfer of cell type-specific gene expression information from one dataset to another.
19 ential role of the linkers in passing signal information from one domain to another.
20                  Sequential dissemination of information from one enzyme to another facilitates signa
21 opulations, which is the transfer of genetic information from one population to another through migra
22  which diffusible molecules relay regulatory information from one position to another along the chrom
23 lular signaling cascades rely on transfer of information from one protein to another or within a sing
24 e, are built to relay the passage of genetic information from one site to another within a cell, ensu
25         Thus, the transmission of allosteric information from one subunit to another is conducted thr
26 underlying computations that transfer visual information from posterior to anterior face patches.
27  test case for the multimodal convergence of information from sensory to associative areas.
28 mmunication in the brain involving a flow of information from vessel to astrocyte to neuron, a direct
29 ns who recognize objects by extracting shape information from visual-to-auditory sensory substitution
30 lack of guidance on the use of supplementary information from the journals to authors and reviewers.
31 that films simultaneously harvest energy and information from the environment to autonomously move do
32                      ImaGene enables genomic information from multiple individuals to be represented
33 cer mutagenesis, it may also be possible for information from the interaction to be used to develop D
34 ades, allowing for predictive and consistent information from the past to be incorporated into each n
35 entral player in processing non-visual light information, from input to behavioral output.
36  may act as a signaling molecule that relays information from secretory granules to both cytosol and
37 bute to the reliable transmission of sensory information from nose to brain.
38 o TAS1R-mediated transduction, for conveying information from taste buds to brainstem.
39 m an ascending pathway that conveys spectral information from the cochlea to brainstem nuclei, the in
40 s and opportunities in extrapolating genetic information from Arabidopsis to Brassica and to more dis
41         Serological surveys provide reliable information from which to calculate forces (instantaneou
42 tion between different types of navigational information: from terrestrial to celestial cues and from
43  is involved in the transmission of polarity information from cell to cell in the Drosophila cuticle,
44 strate that LTB(4) acts as a signal to relay information from cell to cell over long distances.
45 m heterodimeric bridges that convey polarity information from cell to cell.
46 les that are secreted by cells that transmit information from cell to cell.
47 ys a central role in transmitting hereditary information from cell to cell.
48 integration, which combines warm temperature information from peripheral to central neurons and provi
49 tter release and the transmission of sensory information from the periphery to central sites.
50 in ions, rather than simply N- or C-terminal information from low mass-to-charge products, for protei
51  Bayesian modelling introduced here combines information from the mass-to-charge ratio, retention tim
52                              We then applied information from this analysis to classify human breast
53 ral hydrogen on Earth has been combined with information from geologic analogs to construct a mass ba
54 ion channels in the pain pathway, integrates information from extracellular milieu to control excitab
55 tributed populations of neurons and extracts information from these patterns to control specific beha
56                    Neurons process real-time information from axon terminals to coordinate gene expre
57                Thalamic relay cells transmit information from retina to cortex by firing either rapid
58 lian visual pathway and regulate the flow of information from retina to cortex.
59                       The brain uses sensory information from the periphery to create percepts.
60 or evolutionary studies and for transferring information from model species to crop species has revol
61      TL algorithm was useful in diffusion of information from longitudinal to cross-sectional subject
62  activity through the transfer of excitatory information from D1-MSNs to D2-MSNs and may provide a me
63                        However, the relay of information from early sensory to decision areas, such t
64 combination of bioinformatics and structural information from related proteins to deduce valuable inf
65 c models provide a powerful means to harness information from genomes to deepen biological insights.
66 plex control factors that define the flow of information from transgene to desired protein.
67  a signal is defined as the communication of information from source to destination, where it modifie
68 tory systems of birds and mammals use timing information from each ear to detect interaural time diff
69      In the cortex, target neurons integrate information from multiple glomeruli to detect distinct f
70 d behaviors involve the rapid integration of information from the environment to direct flexible moto
71                         However, integrating information from different modalities to discover regula
72  the genome from the reverse flow of genetic information from RNA to DNA, revealing an unanticipated
73 g a role of Pol zeta in transferring genetic information from transcript RNA to DNA.
74 elease of neuropeptides can deliver temporal information from pacemakers to downstream neurons to exe
75                  In addition, we use genomic information from several species to draw inferences abou
76  involved in visual perception or merely use information from visual regions to drive behavior.
77 aptive coding mechanisms to filter redundant information from the environment to efficiently represen
78 cess through which we retrieve and recombine information from our memory to elicit the subjective imp
79 truments and chemistries, by extracting more information from data to enable data-driven multiplexing
80 is that the POR relies on object and pattern information from the PER to encode representations of co
81 search and motif discovery methods and using information from each process to enhance the other.
82           We speculate that butyrate carries information from bacteria to epithelial cells.
83 th next-generation sequence data, leveraging information from the sample to estimate genotype probabi
84       The prefrontal cortex (PFC) integrates information from multiple inputs to exert top-down contr
85 networks (GRNs) regulate the flow of genetic information from the genome to expressed messenger RNAs
86 for computational methods that can integrate information from different modalities to facilitate join
87 ths on feedforward connections carrying face information from EVC to FFA and EVC to pSTS.
88 is reason, many industries are searching for information from review studies to find the conditions t
89                   BG output nuclei integrate information from both pathways to fine-tune motor proced
90 a signal transduction pathway that transmits information from transmembrane receptors to flagellar mo
91 n of cortical circuits is the integration of information from different sources to form a reliable ba
92 es have found that the AF not only transmits information from temporal to frontal areas, but also in
93 distinct lack of tools to adequately extract information from these images to fully characterise micr
94 l medicine, the ability to stream continuous information from the body to gain insight into health st
95 ina, amacrine cells modulate the transfer of information from bipolar to ganglion cells.
96 global scale, and facilitate the transfer of information from starburst to ganglion cell dendrites.
97 splicing of RNA mediates the flow of genetic information from DNA to gene expression and expands prot
98                           The association of information from experiment to gene to genome requires c
99 as dominated by RNA, which can both transfer information from generation to generation through replic
100 mline (responsible for propagating heritable information from generation to generation) and the peris
101 complements to allow for the transmission of information from generation to generation.
102 dicated to reproduction and transmit genetic information from generation to generation.
103  An animal that can transfer gene-regulatory information from somatic cells to germ cells may be able
104 ion about attentional context and/or readout information from occipitotemporal cortex to guide behavi
105  the ability to flexibly apply and recombine information from past experience to guide new behavior.
106 depends on the ability to extract predictive information from the environment to guide future actions
107                 The challenge is to use this information from past patients to help us better manage
108       Visual attention selects task-relevant information from scenes to help achieve behavioral goals
109                      Furthermore, we use the information from this procedure to help improve a Bayesi
110 ure in the Drosophila brain that relays odor information from the antennae to higher brain centers.
111 ntennal lobe and projection neurons relaying information from this glomerulus to higher brain centers
112  this model, higher frequency signals convey information from the cortex to hippocampus during wakefu
113           We introduce a framework that uses information from different sources to identify vulnerabi
114 cit mobile phone data and malaria prevalence information from Kenya to identify the dynamics of human
115          Put together, our studies integrate information from multiple systems to identify a novel re
116        In addition we have used the sequence information from these clones to identify two ESTs as me
117    MESSI relies on multi-task learning using information from neighboring cells to improve the predic
118 RS, a weighted lasso model that incorporates information from relevant endophenotypes to improve dise
119 e synergies obtained by utilizing validation information from stereo visualization to improve the low
120 some methods to take into account additional information from the microarrays to improve the false di
121                  Meta-analysis seeks to pool information from multiple GWAS to increase the chances o
122        This method pools together enrichment information from neighboring nucleosomes to increase sen
123 f this general paradigm but formally borrows information from other scans to increase confidence in o
124 The ability of animals to extract predictive information from the environment to inform their future
125 S, thereby establishing a base of structural information from which to interpret experiments with CVB
126 a novel technique that extracts morphometric information from diffusion data, to investigate brain an
127 ulvinar in distractor filtering--suppressing information from competing stimuli to isolate behavioura
128 cation is required to translate DNA sequence information from each gamma to its respective motor doma
129 challenge is how to integrate them with rich information from pathway databases to jointly select rel
130 e assessed patients' clinical and laboratory information from August, 1998, to July, 2000, from three
131 ies associated with extrapolation of genomic information from facile models to large-genome taxa incl
132  synaptic plasticity and transferring memory information from the more to less plastic region.
133         Automated scripts retrieved sequence information from public databases to locate predicted OR
134 more, the professional transfer of antigenic information from migratory DC to lymph node-residing DC
135 ral integration of skylight cues with timing information from circadian clocks to maintain a constant
136 variate pattern analysis extracts sufficient information from fcMRI data to make accurate predictions
137 eotype suggests that such individuals ignore information from others, preferring to make their own ch
138   Thus, the LC-NE circuit overall integrates information from, and broadcasts to, many brain regions,
139 n each process mediating transfer of genetic information from PRPS1 transcription to maximal PRS1 iso
140 itically dependent upon a continuing flow of information from observations to measure, understand and
141 the brain dynamics that organize the flow of information from sensory to memory areas.
142 ge of time scales, providing rich structural information from nanometres to micrometres, non-invasive
143 es the analysis of large datasets containing information from thousands to millions of participants.
144 heory, making it possible to extract kinetic information from nanosecond to millisecond time scales.
145 /NK3R/ERalpha neurons could mediate feedback information from the gonads to modulate pulsatile GnRH s
146 he same physical substrate carries different information from moment to moment?
147 onsible for the transfer of left-right (L-R) information from early gastrulation to morphogenesis.
148          We focus on the feedforward flow of information from sensory neurons to motor neurons, and a
149  motor control: the transformations that map information from sensory to motor coordinates, the speci
150  role in controlling the transfer of genetic information from gene to mRNA.
151 tating or preventing the transfer of noxious information from sensory to multiple higher-level cortic
152 fugal pathway predominately processing color information from ROT to NCL, relayed by entopallium, and
153 s, is thought to mediate the transmission of information from hippocampus to neocortex, but the mecha
154  long-term memory consolidation transferring information from hippocampus to neocortex.
155 ized to result from the off-line transfer of information from the hippocampus to neocortex, allowing
156 ceptors play a role in transmission of taste information from taste buds to nerves.
157 ullary raphe neurones transform and transmit information from baroreceptors to neurones in the ventra
158 e neuronal assemblies transform and transmit information from baroreceptors to neurones in the ventra
159 e modulation and transmission of nociceptive information from peripheral afferents to neurons in the
160 ns internally at the step of transmission of information from the germline to neurons and is required
161  Finally future prospects for using all this information from model to non-model species to extend va
162  channel uses can even increase the coherent information from zero to non-zero.
163                           Leveraging genomic information from sequenced to nonsequenced species shoul
164 ssociated with the Mendelian transmission of information from parents to offspring by alleles (DNA se
165 ting for the germline transfer of nongenetic information from sire to offspring must include certain
166  to mediate the transfer and distribution of information from the hippocampus to other areas.
167                                 Generalising information from ourselves to others, and others to ours
168 in a better understanding of the transfer of information from physician to patient, as well as the pa
169 led products; and how to translate nutrition information from medical doctors to patients.
170 e critical for translating ambiguous sensory information from our environments to perceptual decision
171                        Working memory allows information from transient events to persist as active n
172 cromolecular machine controlling the flow of information from genotype to phenotype, and insights int
173 ular biochemistry and to control the flow of information from genotype to phenotype.
174  example of transkingdom transfer of genetic information, from bacteria to plants.
175 quantile regression forest (QRF) to leverage information from 2773 lakes to predict the chloride conc
176 ion with Soft Constraints (SPSC), which uses information from known proteins to predict secondary str
177             Here, we leveraged morphological information from Patch-seq to predict the transcriptomic
178 vity analysis indicated a flow of contextual information from the hippocampus to prefrontal cortex up
179                  Consistent with the flow of information from IT to PRH, we also found that task-rele
180 nformation, capturing linkage disequilibrium information, from founders to progenies.
181  copies of themselves and transfer heritable information from parent to progeny molecules, thus provi
182 oordinated to ensure transmission of genetic information from parents to progeny.
183 bunit Mediator complex transduces regulatory information from enhancers to promoters, and performs an
184          Accurate translation of the genetic information from DNA to protein is maintained by multipl
185                     Accurate flow of genetic information from DNA to protein requires faithful transl
186 biology describes the translation of genetic information from mRNA to protein, but does not specify t
187  plays a pivotal role in the flow of genetic information from DNA to proteins by expanding the coding
188 ction as messengers for transferring genetic information from DNA to proteins, as the primary genetic
189     It alters the direct transfer of genetic information from DNA to proteins, due to the introductio
190 nslation), compromising the accurate flow of information from DNA to proteins.
191 ase for bacterial lipoproteins by processing information from 510 entries to provide a list of 199 di
192  patterns of background variation as well as information from environmental values to provide an impr
193                                       We use information from human infections to provide a framework
194 ogether single nucleotide polymorphism (SNP) information from numerous sources to provide a comprehen
195 f the experiment so that the model uses more information from the data to provide a more robust estim
196 es topographic, structural, and cytochemical information from the rat to recognize corresponding area
197                   Eukaryotic cells integrate information from multiple sources to respond appropriate
198  synaptic features for rapid transmission of information from sense organs to responding muscles.
199 ine the delicate interplay between noise and information, from signal to response, through the observ
200                          The transmission of information from DNA to RNA is a critical process.
201                 The accurate flow of genetic information from DNA to RNA to protein is essential for
202 e of its central role in the flow of genetic information from DNA to RNA to protein, the NPC is commo
203 tical roles in the transformation of genetic information from DNA to RNA to protein.
204                 Dysregulation of the flow of information from genomic DNA to RNA to protein occurs wi
205 ED) is a multiprotein complex that transmits information from transcription factors to RNA polymerase
206  Clusters of Orthologous Groups database and information from published genomes to search for other u
207  database of article abstracts, synthesizing information from many sources to shed light on groups of
208 g a charge-to-spin converter that translates information from electrical domain to spin domain, magne
209 erforming a visuo-motor task, glia integrate information from neuromodulatory neurons to stop motor o
210                    Humans can rapidly encode information from faces to support social judgments and f
211  adaptive immunity by transferring antigenic information from peripheral organs to T cells in lymph n
212  The retinogeniculate synapse conveys visual information from the retina to thalamic relay neurons.
213  first demonstration of a transfer of chiral information from an allene to the 5-position of a cyclop
214                             How animals gain information from attending to the behavior of others has
215 coherence leads inevitably to the leaking of information from each subsystem to the composite entangl
216 es the most effective route for transmitting information from MI to the facial nucleus.
217 convergence, the articulation of the flow of information from modality-related to the more parallel c
218 llular communication and transfer of genetic information from one cell to the other.
219                       Sequential transfer of information from one enzyme to the next within the confi
220 s that can transfer gene-specific regulatory information from one generation to the next because they
221 e catalyzes the accurate transfer of genetic information from one generation to the next, and thus it
222 e germ line, is required to transmit genetic information from one generation to the next.
223 e molecular machinery synapses use to convey information from one neuron to the next not only plays a
224 onse to environmental perturbations to relay information from plastids to the nucleus.
225 n the ability to transfer regulatory network information from reference species to the genomes under
226 ate nucleus (dLGN) dynamically convey visual information from retina to the neocortex.
227 ield organization of nerves that carry taste information from taste buds to the nucleus of the solita
228 s, as signalling platforms, to relay tensile information from the aECM to the underlying epidermis, a
229 ety can regulate the flow of emotional state information from the BLA to the mPFC.
230 ld be an important and even dominant flow of information from the body to the brain(9).
231 ns are auditory efferent neurons that convey information from the brainstem to the auditory periphery
232   In enteric species, CheW transmits sensory information from the chemoreceptors to the histidine pro
233                      The exchange of genetic information from the chloroplast to the nucleus has resu
234   Because these afferent neurons carry sound information from the cochlea to the auditory brainstem,
235 consequences of DRs is noisy transmission of information from the cochlea to the brain, which results
236 he Bayesian approach is a tool for including information from the data to the analysis.
237 epends on the faithful transmission of sound information from the ear to the brain by spiral ganglion
238 t relay center in the conduction of auditory information from the ear to the brain, and it probably p
239 sfer of TGFbeta (Dpp) and Wnt (Wg) signaling information from the ectoderm to the underlying mesoderm
240 ing each whisker encode and transmit sensory information from the environment to the brain via affere
241 thways have been identified that communicate information from the environment to the cell cycle, a sy
242 ptors and ion channels that act to transduce information from the environment to the cell.
243 etinal ganglion cells (RGCs), which transfer information from the eye to the brain, are heterogeneous
244 tinal ganglion cells (RGCs) conveying visual information from the eye to the brain.
245  the output neurons that encode and transmit information from the eye to the brain.
246 damentally different strategy to communicate information from the eye to the brain.
247 pes of retinal ganglion cells conduct visual information from the eye to the rest of the brain.
248 RGCs) are tasked with transmitting all light information from the eye to the retinal recipient areas
249 the trigeminal ganglia, which relays sensory information from the face to the brain.
250 circuits involved in conveying somatosensory information from the genitalia to the brain during sexua
251 utationally mimicking the flow of biological information from the genome to the phenome is an importa
252  Vagal afferent neuron (VAN) signaling sends information from the gut to the brain and is fundamental
253 es play a key role in signalling distressing information from the gut to the brain.
254 urons that rapidly transmit antennal-tactile information from the head to the thorax in the cricket G
255                 Dopamine enables the flow of information from the hippocampus to the dLS by weakening
256 litates memory consolidation by transferring information from the hippocampus to the neocortex.
257 a renal sympathetic afferent pathway conduct information from the kidney to the central nervous syste
258 s and molecules that aid in this transfer of information from the KV to the left LPM are still not cl
259 lates are capable of relaying stereochemical information from the ligand to the reaction center.
260  mediate the transfer of homologous sequence information from the maternal to the developing somatic
261                      Transferring structural information from the nanoscale to the macroscale is a pr
262 late that this coupling reflects the flow of information from the neocortex to the hippocampus during
263                   The transfer of asymmetric information from the node to the lateral plate is mediat
264 brate embryo requires transfer of positional information from the node to the periphery, resulting in
265 es chemosensory neurons, which transmit odor information from the nose to the brain.
266 othesis that there is transfer of convergent information from the NTS to the DMV, implying that signi
267  PB) and viscerosensory (rostral lateral PB) information from the NTS to the forebrain.
268 anded oligonucleotides can transfer sequence information from the oligonucleotide to the chromosome.
269                                  The flow of information from the outside to the inside of bacterial
270 the "pain pathway" mediating transmission of information from the periphery to the brain is well know
271 nal cord are important for conveying sensory information from the periphery to the central nervous sy
272 lay proprioceptive and potentially cutaneous information from the periphery to the cerebellum is fund
273  These synapses gate the flow of nociceptive information from the periphery to the CNS, and plasticit
274 is is imparted by the thalamus, which relays information from the periphery to the cortex.
275 first-order thalamic nuclei transmit sensory information from the periphery to the cortex.
276      Primary nociceptors relay painful touch information from the periphery to the spinal cord.
277  These ipRGCs are crucial for relaying light information from the retina to the brain to control circ
278 GN) is the primary thalamic relay for visual information from the retina to the cortex and is densely
279 alamus, the brain region that conveys visual information from the retina to the primary visual cortex
280 tern that assures the most accurate relay of information from the retina to the visual neocortex.
281  labeled lines transmitting specific sensory information from the skin to the brain.
282 for a role in the transmission of epigenetic information from the sperm to the embryo.
283 ntains afferent fibers that transmit sensory information from the stomach to the nucleus of the solit
284 e opposite direction; transferring of speech information from the temporal to the frontal lobe utiliz
285 ck can influence the transmission of sensory information from the thalamus to the cortex in a stream-
286 tation is an obligatory step in the relay of information from the thalamus to the cortex, it represen
287 atomy suggests that this loop relays tactile information from the vibrissae to the motoneurons that c
288 t has been proposed that the transmission of information from the visuosensory to the motor map plays
289 thalamocortical axons relaying somatosensory information from the VP to the primary somatosensory cor
290 p interneuron), that (i) conveys the sensory information from this stimulus to the swim central patte
291   It's unclear whether the histopathological information from TJLB, due to the small specimen size, s
292 llenge is to interrelate different levels of information, from the genome to the transcriptome, the p
293                Plants perceive and integrate information from the environment to time critical transi
294 rete bands of E2 and E3 cells that may relay information from the CSF to underlying neural circuits a
295                       Integrating biological information from different sources to understand cellula
296 mentation of artificial systems that extract information from images to understand their content.
297 ll-calibrated model can reasonably propagate information from observations to unobserved variables vi
298 tential to turn the typical top-down flow of information from scientists to users into a much more di
299 TC synapses, which transmit competing visual information from each eye to V1, contributes to the earl
300  there was a top-down flow of sustained task information from frontoparietal to visual cortex.

 
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