Exact(4)
We also described the duality between decoding and functional identification.
Functional identification of a complex cell DSP was possible again thanks to the demonstrated duality between decoding and functional identification.
Based on the duality between decoding and functional identification, functional identification algorithms that exploit the structure of the DSP of complex cells are presented.
Then, based on (75), we show that the duality between decoding and functional identification also holds in the spatio-temporal case.
Similar(56)
We also establish the duality between sparse decoding and functional identification and provide algorithms for identification of low-rank dendritic stimulus processors.
Based on duality between sparse decoding and functional identification, we showed that functional identification of complex cells DSPs can be efficiently achieved by exploiting their low-rank structure and using similar algorithms as used in decoding.
Fig. 3 Duality between decoding and identification.
But, in response to Reviewer 3, we split the correlation between decoding and behavior according to positive (preferring Si+ over Si-) or negative (preferring Si- over Si+) preference.
Here, we extend the previous results and apply such evaluation procedure on the sparse decoding and sparse functional identification algorithms.
Fig. 8 Duality between low-rank decoding and low-rank functional identification.
Fig. 17 Duality between low-rank decoding and low-rank functional identification for spatio-temporal complex cells.
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