Recurrent Network Interactions Underlying Flow-Field Selectivity of Visual Interneurons
- 1 August 2001
- journal article
- Published by Society for Neuroscience in Journal of Neuroscience
- Vol. 21 (15) , 5685-5692
- https://doi.org/10.1523/JNEUROSCI.21-15-05685.2001
Abstract
Motion-sensitive large-field neurons found at higher processing stages in many species often exhibit a remarkable selectivity for particular flow fields. However, the underlying neural mechanisms are not yet understood. We studied this problem in the so-called lobula plate tangential cells (LPTCs) of the fly. Investigating the connectivity between LPTCs by means of dual recordings, we find two types of connections: (1) heterolateral connections between LPTCs of both hemispheres and (2) ipsilateral connections between LPTCs within one lobula plate. The circuit is suitable to amplify incoming, dendritic signals in the case of rotatory flow fields and to reduce them in the case of other flow-field structures. In addition to feedforward connectivity, thus, the flow-field selectivity of LPTCs may be significantly attributable to recurrent excitation involving the network of large-field neurons in both brain hemispheres.Keywords
This publication has 35 references indexed in Scilit:
- Reproducibility and Variability in Neural Spike TrainsScience, 1997
- Estimation of self-motion by optic flow processing in single visual interneuronsNature, 1996
- Amplification of high-frequency synaptic inputs by active dendritic membrane processesNature, 1996
- Oculomotor control in calliphorid flies: Organization of descending neurons to neck motor neurons responding to visual stimuliJournal of Comparative Neurology, 1995
- Oculomotor control in calliphorid flies: GABAergic organization in heterolateral inhibitory pathwaysJournal of Comparative Neurology, 1995
- Time to collision is signalled by neurons in the nucleus rotundus of pigeonsNature, 1992
- Reading a Neural CodeScience, 1991
- Principles of visual motion detectionTrends in Neurosciences, 1989
- The centrifugal horizontal cells in the lobula plate of the blowfly, Phaenicia sericataJournal of Insect Physiology, 1983
- Spike responses of ‘non-spiking’ visual interneuroneNature, 1977