Title :
Temporal codes and computations for sensory representation and scene analysis
Author :
Cariani, Peter A.
Author_Institution :
Eaton Peabody Lab., Boston, MA, USA
Abstract :
This paper considers a space of possible temporal codes, surveys neurophysiological and psychological evidence for their use in nervous systems, and presents examples of neural timing networks that operate in the time-domain. Sensory qualities can be encoded temporally by means of two broad strategies: stimulus-driven temporal correlations (phase-locking) and stimulus-triggering of endogenous temporal response patterns. Evidence for stimulus-related spike timing patterns exists in nearly every sensory modality, and such information can be potentially utilized for representation of stimulus qualities, localization of sources, and perceptual grouping. Multiple strategies for temporal (time, frequency, and code-division) multiplexing of information for transmission and grouping are outlined. Using delays and multiplications (coincidences), neural timing networks perform time-domain signal processing operations to compare, extract and separate temporal patterns. Separation of synthetic double vowels by a recurrent neural timing network is used to illustrate how coherences in temporal fine structure can be exploited to build up and separate periodic signals with different fundamentals. Timing nets constitute a time-domain scene analysis strategy based on temporal pattern invariance rather than feature-based labeling, segregation and binding of channels. Further potential implications of temporal codes and computations for new kinds of neural networks are explored.
Keywords :
code division multiplexing; codes; correlation methods; feedforward neural nets; frequency division multiplexing; neurophysiology; recurrent neural nets; signal processing; time division multiplexing; timing; code-division multiplexing; endogenous temporal response patterns; feature-based labeling; frequency-division multiplexing; phase-locking; recurrent neural timing networks; scene analysis; sensory modality; sensory representation; stimulus-driven temporal correlations; stimulus-related spike timing patterns; synthetic double vowels separation; temporal codes; temporal multiplexing; temporal pattern invariance; time-division multiplexing; time-domain operation; time-domain scene analysis strategy; time-domain signal processing; transmission information; Code division multiplexing; Data mining; Frequency; Image analysis; Nervous system; Periodic structures; Psychology; Signal processing; Time domain analysis; Timing; Action Potentials; Animals; Auditory Pathways; Auditory Perception; Brain; Humans; Models, Neurological; Nerve Net; Neural Networks (Computer); Neural Pathways; Neurons; Neurons, Afferent; Reaction Time; Synapses; Synaptic Transmission; Taste; Time Factors; Visceral Afferents; Visual Perception;
Journal_Title :
Neural Networks, IEEE Transactions on
DOI :
10.1109/TNN.2004.833305