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1 brain, we have built a gene expression-based brain map.
2 ning stands in marked distinction from other brain maps.
3 as a model for the formation of topographic brain maps.
4 rfaces were generated using high-dimensional brain mapping.
5 een an enormous growth in the field of human brain mapping.
7 ional MRI data were compared using automated brain mapping algorithms and search regions related to A
8 ional MRI data were compared using automated brain mapping algorithms and search regions related to A
10 ble studies have not used recently developed brain mapping algorithms to characterize the progression
13 , and nucleus accumbens shell measured using brain mapping analyses of immediate-early gene expressio
16 ions on behalf of the Organization for Human Brain Mapping and identify barriers that impede these pr
20 lycosylation, which could be developed in to brain mapping applications, but also serves as a potenti
27 oral resolution of a few seconds, allows for brain mapping based on more transient aspects of the hem
28 y evolutionary stage where multiplication of brain maps can satisfy the demand on processing a wider
29 o the prelimbic area 32 in Brodmann's monkey brain map, caudal and ventral to the genu of the corpus
31 c resonance imaging at the Ahmanson-Lovelace Brain Mapping Center, University of California, Los Ange
33 electrophysiologic monitoring, thus allowing brain mapping during awake craniotomy and microelectrode
34 g to microtubules was not enhanced by bovine brain MAPs enriched for tau protein or by the addition o
36 Here we describe and validate an automated brain-mapping framework that uses text-mining, meta-anal
38 tential advantages of local heterogeneity in brain maps, how they reflect complex cortical connectivi
40 asive imaging methods available for auditory brain mapping in mice, despite the increasing use of gen
41 al variability may provide a new approach to brain mapping in the context of cognitive experiments.
42 sure (P < .001 by the statistical difference brain map) in the left dorsolateral prefrontal and bilat
50 or imaging (DTI) enables comprehensive whole-brain mapping of the white matter tracts that link regio
51 e via the Allen Brain Atlas data portal (www.brain-map.org), the Atlas integrates structure, function
56 uronal activity, which is subtracted away in brain mapping studies by positron emission tomography (P
62 egorical speech perception using an advanced brain-mapping technique, whole-brain multivariate patter
63 For these reasons, more refined structural brain mapping techniques may improve the accuracy of det
65 esonance imaging (MRI) and new computational brain-mapping techniques, we determined the pattern of s
66 These studies have enabled probabilistic brain mapping that is based on the ex vivo MRI contrast,
67 ork provides the necessary tools to generate brain maps that integrate data from connectivity, neuron
68 a single region reveal the value of refined brain maps to appreciate the genetic complexity of brain
72 ctivation and as a tool for human functional brain mapping, we recorded subdural electrocorticographi
73 its utility for high-resolution (100-microm) brain mapping, we used MEMRI to show the tonotopic organ
76 of this meta-analysis, original statistical brain maps were obtained from the authors of 13 of these
77 a general and economic modular mechanism for brain mapping whereby a projecting field is mapped onto
79 be directly relevant to questions concerning brain mapping with functional magnetic resonance imaging
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