Selectivity and invariance for visual object perception.
Explore this paper's citation graph
Summary
Basic principles of neural coding for object perception are discussed and evidence showing that it mainly relies on two principles: selectivity and invariance are described.
- Type
- review
- Published
- 2008-05-01
- Cited by
- 26
- References
- 143
- Access
- Open access
- OpenAlex
- https://openalex.org/W16628102
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:31929434
Keywords
Perception, Vision for perception and vision for action, Object (grammar), Cognitive neuroscience of visual object recognition, Computer science
References
- Intentional maps in posterior parietal cortex.
- Binocular rivalry and visual awareness in human extrastriate cortex.
- Neocognitron: A self-organizing neural network model for a mechanism of pattern recognition unaffected by shift in position
- Damage to the perirhinal cortex exacerbates memory impairment following lesions to the hippocampal formation
- Information processing with population codes
- Domain specificity in face perception
- Activation of the middle fusiform 'face area' increases with expertise in recognizing novel objects
- FFA: a flexible fusiform area for subordinate-level visual processing automatized by expertise
- Two cortical visual systems
- Stimulus-selective properties of inferior temporal neurons in the macaque
- The dynamics of object-selective activation correlate with recognition performance in humans
- What's new with the amnesic patient H.M.?
- A direct demonstration of functional specialization in human visual cortex
- A cortical–hippocampal system for declarative memory
- Three-dimensional object recognition is viewpoint dependent
- Computational neuroscience of vision
- Human amnesia and the medial temporal region: enduring memory impairment following a bilateral lesion limited to field CA1 of the hippocampus
- Models of object recognition
- A cortical representation of the local visual environment
- Object recognition with features inspired by visual cortex
Cited by
- Word Recognition in Auditory Cortex.
- Experience-Dependent Network Modification in the Medial Temporal Lobe
- Mapping invariance in the ventral occipital temporal pathway
- On The Dynamic Relationship Of Perceptual And Learning And Memory Systems: Mechanisms For Adaptive Perceptual Change
- Selectivity of pyramidal cells and interneurons in the human medial temporal lobe.
- Age-related alterations in the modular organization of structural cortical network by using cortical thickness from MRI
- Multiplexed and robust representations of sound features in auditory cortex
- The what, where and how of auditory-object perception
- 3D Object Recognition Based on Some Aspects of the Infant Vision System and Associative Memory
- Auditory Cortical Processing in Real-World Listening: The Auditory System Going Real
- Phoneme and word recognition in the auditory ventral stream
- Complex Spectral Interactions Encoded by Auditory Cortical Neurons: Relationship Between Bandwidth and Pattern
- Gnostic cells in the 21st century.
- The neural correlates of perceptual awareness
- Integración de información en tareas secuenciales
- Pooled, but not single-neuron, responses in macaque V4 represent a solution to the stereo correspondence problem.
- Symbol Acquisition from Motion Patterns and Their Sparce Coding by an Associative Memory Model with Self-organizing Nonmonotonicity
- The Brain Mechanism of Bistable Perception
- When shared concept cells support associations: Theory of overlapping memory engrams
- A model integrating multiple processes of synchronization and coherence for information instantiation within a cortical area
Related papers
- Visual pathways supporting perception and action in the primate cerebral cortex.
- Are the dorsal/ventral pathways sufficiently distinct to resolve perceptual theory?
- Head Up, Foot Down
- Does the brain's ventral visual pathway compute object shape?
- What vs. Where: Which Direction Is Faster?
- Visual saliency and spike timing in the ventral visual pathway.
- A double dissociation between sensitivity to changes in object identity and object orientation in the ventral and dorsal visual streams: a human fMRI study.
- A Neural Network Model for the Concurrent Perception of Multiple Objects