Fast Readout of Object Identity from Macaque Inferior Temporal Cortex
McGovern Institute for Brain Research · Computational Physics (United States) · +1 more institution
Abstract
Understanding the brain computations leading to object recognition requires quantitative characterization of the information represented in inferior temporal (IT) cortex. We used a biologically plausible, classifier-based readout technique to investigate the neural coding of selectivity and invariance at the IT population level. The activity of small neuronal populations (approximately 100 randomly selected cells) over very short time intervals (as small as 12.5 milliseconds) contained unexpectedly accurate and robust information about both object "identity" and "category." This information generalized over a range of object positions and scales, even for novel objects. Coarse information about position and…
Citation impact
- FWCI
- 14.22
- Percentile
- 100%
- References
- 32
Authors
4- CPChou P. HungCorresponding
McGovern Institute for Brain Research, Computational Physics (United States), Massachusetts Institute of Technology
- GKGabriel KreimanCorresponding
McGovern Institute for Brain Research, Computational Physics (United States), Massachusetts Institute of Technology
- TPTomaso Poggio
McGovern Institute for Brain Research, Computational Physics (United States), Massachusetts Institute of Technology
- JJJames J. DiCarlo
McGovern Institute for Brain Research, Computational Physics (United States), Massachusetts Institute of Technology
Topics & keywords
- Macaque
- Population
- Artificial intelligence
- Temporal cortex
- Computer science
- Pattern recognition (psychology)
- Cognitive neuroscience of visual object recognition
- Neuroscience