Keywords: قشر عمودی; Cell assemblies; Feature detectors; Inferotemporal cortex; Prefrontal cortex; Hippocampus;
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در صورتی که به ترجمه آماده هر یک از مقالات زیر نیاز داشته باشید، می توانید سفارش دهید تا مترجمان با تجربه این مجموعه در اسرع وقت آن را برای شما ترجمه نمایند.
Keywords: قشر عمودی; ART; adaptive resonance theory; BOLD; blood oxygen level dependent; Ca2+; calcium; DoG; difference of Gaussians; EEG; electroencephalogram; EPSP; excitatory postsynaptic potential; fMRI; functional magnetic resonance imaging; IT; inferotemporal cortex; K;
Keywords: قشر عمودی; Repetition suppression; Macaques; Inferotemporal cortex; Repetition probability; Stimulus-specific adaptation; IT; inferior temporal cortex;
Keywords: قشر عمودی; IT; inferotemporal cortex; MDS; multi-dimensional scaling; monkey inferotemporal cortex; object recognition; view invariance; population coding;
Keywords: قشر عمودی; Inferior frontal gyrus; Inferotemporal cortex; Occipital cortex; Orbitofrontal cortex; Top-down facilitation; Spatial frequencies
Keywords: قشر عمودی; CS; conditioned stimuli; US; unconditioned stimulus; PFC; prefrontal cortex; SMA; supplemental motor area; IC; inferotemporal cortex; AIC; anterior insular cortex; PMC/MC; premotor/motor cortex; ipoT; ipothalamus; ANS; autonomous nervous system; ACC; ante
Keywords: قشر عمودی; BOLD; blood oxygenation level dependent; ChR2; ChannelRhodopsin-2; FEF; frontal eye fields; fMRI; functional magnetic resonance imaging; IT; inferotemporal cortex; MST; medial superior temporal area; MT; middle temporal visual area; VIP; ventral intrapari
Keywords: قشر عمودی; A1; primary auditory cortex; LIP; lateral intraparietal cortex; IT; inferotemporal cortex; M1; primary motor cortex; M2; secondary motor cortex; MT; mediotemporal cortex; OFC; orbitofrontal cortex; PFC; prefrontal cortex; S1; primary somatosensory cortex;
Aging alters visual processing of objects and shapes in inferotemporal cortex in monkeys
Keywords: قشر عمودی; Perceptual deficit; Aging; Shape vision; Inferotemporal cortex; Monkey
Basic NeuroscienceDevelopment of tube tetrodes and a multi-tetrode drive for deep structure electrophysiological recordings in the macaque brain
Keywords: قشر عمودی; Electrophysiology; Tube tetrodes; Macaque; Inferotemporal cortex; Microdrive; Population recordings;
How does the brain rapidly learn and reorganize view-invariant and position-invariant object representations in the inferotemporal cortex?
Keywords: قشر عمودی; Inferotemporal cortex; Category learning; Invariant object recognition; View category; Persistent activity; Spatial attention; Disengage attention; Sustained attention; Transient attention; Cortical magnification factor; Target swapping; Adaptive resonanc
On the road to invariant recognition: Explaining tradeoff and morph properties of cells in inferotemporal cortex using multiple-scale task-sensitive attentive learning
Keywords: قشر عمودی; Inferotemporal cortex; Object recognition; Categorization; Attention; Cortical magnification factor; Multiple spatial scales; Selectivity/tolerance tradeoff; Image morphs; Adaptive resonance theory; Vigilance; Autism; Amnesia
View-invariant object category learning, recognition, and search: How spatial and object attention are coordinated using surface-based attentional shrouds
Keywords: قشر عمودی; Category learning; Object recognition; Spatial attention; Object attention; Parietal cortex; Inferotemporal cortex; Saccadic eye movements; Attentional shroud; Adaptive Resonance Theory; Surface perception
The rat temporal association cortical area 2 (Te2) comprises two subdivisions that are visually responsive and develop independently
Keywords: قشر عمودی; brain maps; development; Fos; neurofilament protein; rodent; visual cortex; Au; auditory cortex; DAB; diaminobenzidine; Ect; ectorhinal area; Ent; entorhinal area; FLX; far lateral complex; IR; immunoreactivity; IR index; immunoreactivity index; IT; infer
Single neuron studies of inferior temporal cortex
Keywords: قشر عمودی; Inferior temporal cortex; Inferotemporal cortex; Area TE; Faces; FMRI
Thresholding lesion overlap difference maps: Application to category-related naming and recognition deficits
Keywords: قشر عمودی; Language; Naming; Inferotemporal cortex; Statistics; Lesion method
Neural mechanisms of visual categorization: Insights from neurophysiology
Keywords: قشر عمودی; Categorization; Visual learning; Object recognition; Motion perception; Primate; Neurophysiology; Prefrontal cortex; Parietal cortex; Lateral intraparietal area; Inferior temporal cortex; Inferotemporal cortex; Middle temporal area
Further analysis of the effects of immunotoxic lesions of the basal nucleus of Meynert reveals substantial impairment on visual discrimination learning in monkeys
Keywords: قشر عمودی; Saporin; Basal forebrain; Acetylcholine; Memory; Inferotemporal cortex; Marmoset;
From brainstem to cortex: Computational models of saccade generation circuitry
Keywords: قشر عمودی; aCG; anterior cingulate cortex; BG; basal ganglia; BN; superior colliculus burst neurons; BUN; superior colliculus build-up neurons; CBLM; cerebellum; CMAC; cerebellar model arithmetic computer; DLPFC; dorsolateral prefrontal cortex; EBN; reticular format