Search PubMed⌕ Search

Biomedical subjects

Chris Tailby

Publications and source records attributed to Chris Tailby.

4 recordsLinked to original sources

Early and late mechanisms of surround suppression in striate cortex of macaque.

The response of a neuron in striate cortex to an optimally configured visual stimulus is generally reduced when the stimulus is enlarged to encroach on a suppressive region that surrounds its classical receptive field (CRF). To characterize the mechanism that gives rise to this suppression, we measured its spatiotemporal tuning, its susceptibility to contrast adaptation, and its capacity for interocular transfer. Responses to an optimally configured grating confined to the CRF were strongly suppressed by annular surrounding gratings drifting at a wide range of temporal and spatial frequencies (including spatially uniform fields) that extended from well below to well above the range that drives most cortical neurons. Suppression from gratings capable of driving cortical CRFs was profoundly reduced by contrast adaptation and showed substantial interocular transfer. Suppression from stimuli that lay outside the spatiotemporal passband of most cortical CRFs was relatively stronger when the stimulus on the CRF was of low contrast, was generally insusceptible to contrast adaptation, and showed little interocular transfer. Our findings point to the existence of two mechanisms of surround suppression: one that is prominent when high-contrast stimuli drive the CRF, is orientation selective, has relatively sharp spatiotemporal tuning, is binocularly driven, and can be substantially desensitized by adaptation; the other is relatively more prominent when low-contrast stimuli drive the CRF, has very broad spatiotemporal tuning, is monocularly driven, and is insusceptible to adaptation. Its character suggests an origin in the input layers of primary visual cortex, or earlier.

Animals↗

Activity-dependent maintenance and growth of dendrites in adult cortex.

Whereas it is widely accepted that the adult cortex is capable of a remarkable degree of functional plasticity, demonstrations of accompanying structural changes have been limited. We examined the basal dendritic field morphology of dye-filled neurons in layers III and IV of the mature barrel cortex after vibrissal-deafferentation in adult rats. Eight weeks later, the tendency for these neurons to orient their dendritic arbors toward the center of their home barrel was found to be disrupted by the resultant reduced activity of thalamocortical innervation. Measures of spine density and total dendritic length were normal, indicating that the loss of dendritic bias was accompanied by growth of dendrites directed away from the barrel center. This finding suggests that in the mature cortex, the apparently static structural attributes of the normal adult cortex depend on maintenance of patterns of afferent activity; with the corollary that changes in these patterns can induce structural plasticity.

Afferent Pathways↗

Enhanced sensitivity for peripherally-presented collinearly-aligned stimulus elements: contour detection or spatial summation?

BACKGROUND: It has been shown that the detection threshold for a foveally presented Gabor stimulus (Gaussian-windowed sinusoidal grating) is reduced in the presence of two suprathreshold flanking Gabors and that such facilitation is orientation and configuration dependent, with maximal threshold reductions occurring with collinear flanking elements. METHODS: We assessed the effect of varying relative orientation on detection thresholds for chains of three Gabors, with 0.96(o) centre-to-centre spacing, presented at 4.8(o) in the periphery. The central Gabor element in each chain was either collinear with its flanking elements or oriented orthogonally to them. RESULTS: Thresholds for the configuration as a whole were found to be lower using the collinear configuration compared with the orthogonal configuration, consistent with the proposal that orientation-specific long-range intracortical interactions are involved. However, this configuration-dependent threshold difference disappeared when the spatial frequency of the Gabors was doubled from 3.33 cpd to 6.66 cpd. CONCLUSIONS: Configurational dependencies may disappear at higher spatial frequencies because, despite increased spatial summation at detection threshold contrast levels, the intrinsically smaller receptive field sizes of neurons tuned to high spatial frequencies render them incapable of encapsulating more than one of the spatially separated Gabors within their individual receptive fields.

Journal Article↗

Artificial scotoma-induced perceptual distortions are orientation dependent and short lived.

Conditioning human observers with an "artificial scotoma"-a small retinal area deprived of patterned stimulation within a larger area of dynamically textured noise-results in contractions and expansions of perceived space that are thought to reflect receptive-field changes among cells in the primary visual cortex (Kapadia et al., 1994). Here we show that one-dimensional counter-phase flickering grating patterns are also potent stimuli for producing artificial scotomata capable of altering three-element bisection ability analogous to those results reported earlier. Moreover, we found that the magnitude of the induced spatial distortions depends critically on the relative orientations of peri-scotomatous and test-stimulus spatial contrast. In addition, the perceptual distortions are found to be relatively short lived, decaying within 660 ms. The results support the hypothesis that artificial scotoma-induced perceptual distortions are generated by dynamic alteration of connection efficacy within a network linking cortical areas of similar orientation specificity, consistent with established anatomical and physiological results.

Humans↗