Processing and classification of chemical data inspired by insect olfaction
- 18 December 2007
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 104 (51) , 20285-20289
- https://doi.org/10.1073/pnas.0705683104
Abstract
The chemical sense of insects has evolved to encode and classify odorants. Thus, the neural circuits in their olfactory system are likely to implement an efficient method for coding, processing, and classifying chemical information. Here, we describe a computational method to process molecular representations and classify molecules. The three-step approach mimics neurocomputational principles observed in olfactory systems. In the first step, the original stimulus space is sampled by “virtual receptors,” which are chemotopically arranged by a self-organizing map. In the second step, the signals from the virtual receptors are decorrelated via correlation-based lateral inhibition. Finally, in the third step, olfactory scent perception is modeled by a machine learning classifier. We found that signal decorrelation during the second stage significantly increases the accuracy of odorant classification. Moreover, our results suggest that the proposed signal transform is capable of dimensionality reduction and is more robust against overdetermined representations than principal component scores. Our olfaction-inspired method was successfully applied to predicting bioactivities of pharmaceutically active compounds with high accuracy. It represents a way to efficiently connect chemical structure with biological activity space.Keywords
This publication has 50 references indexed in Scilit:
- Coding of Odors by a Receptor RepertoireCell, 2006
- Associative Encoding in Anterior Piriform Cortex versus Orbitofrontal Cortex during Odor Discrimination and Reversal LearningCerebral Cortex, 2006
- Molecular, Anatomical, and Functional Organization of the Drosophila Olfactory SystemCurrent Biology, 2005
- Coexpression of Two Functional Odor Receptors in One NeuronPublished by Elsevier ,2005
- Olfactory network dynamics and the coding of multidimensional signalsNature Reviews Neuroscience, 2002
- Spatial Representation of the Glomerular Map in the Drosophila ProtocerebrumCell, 2002
- A Novel Family of Divergent Seven-Transmembrane ProteinsNeuron, 1999
- Allelic inactivation regulates olfactory receptor gene expressionCell, 1994
- A novel multigene family may encode odorant receptors: A molecular basis for odor recognitionCell, 1991
- Self-organized formation of topologically correct feature mapsBiological Cybernetics, 1982