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Biomedical subjects

T Carney

Publications and source records attributed to T Carney.

13 recordsLinked to original sources

Binocularity of early motion mechanisms: comments on Georgeson and Shackleton.

The demonstration of compelling dichoptic illusions of motion using a variety of stimuli, all of which share the property that left and right eye patterns were spatio-temporal quadrature pairs, has been interpreted as evidence for binocular integration in the early motion system (short range motion). Georgeson and Shackleton (1989, Vision Research, 29, 1511-1523) have recently challenged this position based on results using 3 types of stimuli, sinusoidal gratings, random line kinematograms and missing fundamental squarewaves. For each class of stimuli motion was perceived during dichoptic presentation, but certain limitations led them to conclude that early motion mechanisms are defeated when no motion is present monocularly. We do not dispute their data, rather an alternative interpretation is offered which supports the position that early motion sensors are capable of binocular integration, a property well established physiologically.

Humans

Vernier acuity as line and dipole detection.

The vernier judgment is commonly thought of as discriminating the displacement of a portion of a pattern. However, we have found it revealing to consider vernier stimuli in another light; as the composite of a test pattern superimposed on a masking pedestal. The pedestal is the pattern with zero spatial offset, and the test pattern is the luminance distribution which, when added to the pedestal, produces the offset. For example, a vernier offset of an edge can be generated by adding a thin line (the derivative of an edge) to one half of an edge pedestal, and a vernier offset of a line can be generated by adding a thin dipole (the derivative of a line) to one half of a line pedestal. Vernier thresholds for low contrast edge and line pedestals can be directly predicted from detection thresholds of thin lines and dipoles on uniform fields. A surprisingly simple relationship is also derived between vernier thresholds and the size of Ricco's integration zone. We have found this masking paradigm to be fruitful and believe it is relevant to all the hyperacuities, not just vernier.

Contrast Sensitivity

A physiological correlate of the Pulfrich effect in cortical neurons of the cat.

When a swinging pendulum is viewed with a light-attenuating filter before one eye, the pendulum bob is perceived to move in an elliptical path in depth. It is believed that the filter causes this illusion, the Pulfrich effect, by delaying processing of the image in the filtered eye relative to that of the unfiltered eye. We sought a physiological correlate of this effect by studying binocular integration in cortical neurons of cats while they viewed moving stimuli. Special attention was focused on single unit disparity tuning because it is widely believed that depth perception is related to the responses of disparity selective neurons in visual cortex. We found that placing a filter before one of the cat's eyes produced a temporal delay in the cortical response. The temporal delay was always associated with a shift in the neuron's spatial disparity tuning. The observed temporal delays and disparity shifts are comparable with the magnitude of the Pulfrich effect in humans.

Action Potentials

Cortical processing of hyperacuity tasks.

Spatial discrimination thresholds were determined by having subjects make comparisons between stimuli presented successively at the same or at different locations in the visual field. Two tasks were employed, discrimination of line orientation and discrimination of the distance between two parallel lines (spatial interval discrimination). We find that discrimination thresholds based on the comparison of features in spatially-separated stimuli are comparable to those based on the comparison of features in two stimuli presented successively at the same location. This holds even when the stimuli are presented in nonhomologous positions in the visual field or are presented in a manner such that they activate cells in opposite cortical hemispheres in the early visual areas. This shows that discriminability is not determined solely by differences in the firing rates of striate or pre-striate neurons. Rather, it appears that the attributes of visual stimuli are precisely coded and available for comparison at higher levels of visual processing. Implications of this finding for models of hyperacuity are discussed.

Discrimination, Psychological

A fresh approach to child protection practice and legislation in Australia.

This paper outlines some of the findings and approaches of the Victorian Review. It assesses a stylized "orthodox model" of child welfare law and practice, a model which remains in many Australian jurisdictions and which has its popularity in Britain, Canada, and the United States. It concludes that serious consideration should be given to rebuilding and strengthening these arrangements. This entails emphasis on utilizing laws to serve an educative function and facilitating access by children and families to preventive and support services. It argues that a broad concept of neglect should be adopted and that the "welfare orientation" of the Children's Court requires reconsideration, because the capacity of courts to resolve entrenched structural problems of society has been overrated. Welfare practice, and specifically a community approach to welfare, should shape the primary response to protection of children; judicial involvement should be a last resort.

Australia

Binocular interaction in the perigeniculate nucleus of the cat.

We have recorded from single cells in the perigeniculate nucleus (PGN) of the cat to determine their response properties. Quantitative tests have been conducted with sinusoidal gratings. Using optimal stimulus parameters, determined monocularly, we explored binocular interaction by varying the relative phase between dichoptically presented gratings. Monocularly, cells exhibit varying degrees of response specificities with respect to stimulus orientation and spatial frequency. Binocularly, we have identified six types of response. The most prominent, type 1, found for half the cells, is phase-specific binocular interaction at the fundamental frequency component of the drifting grating. For these cells, mean response rate is independent of interocular phase. The remaining types of binocular responses involve varying degrees of interaction at different harmonic components. For a quarter of the sample, no binocular interaction was observed. To investigate the role of cortical input to PGN, visual cortex was removed from some cats. Subsequent study of PGN cells indicated that response properties were generally similar to those found in intact animals. We conclude that PGN response properties are determined primarily by subcortical inputs.

Afferent Pathways

Orientation discrimination as a function of stimulus eccentricity and size: nasal/temporal retinal asymmetry.

Orientation discrimination threshold is a monotonically increasing function of retinal eccentricity. Increasing stimulus length extends the range of eccentricities over which fine orientation discriminations can be made. Orientation discrimination thresholds at all eccentricities are determined by the size of the cortical image of the stimulus. Thresholds obtained using either nasal or temporal hemiretina are similar up to the blind spot, beyond which the temporal retina yields increasingly higher thresholds. The results are consistent with a recent theoretical study which predicts that orientation discrimination threshold is determined by the number of cortical cells activated by the discrimination target.

Humans

Binocular interaction in the dorsal lateral geniculate nucleus of the cat.

We have investigated binocular interaction in the dorsal lateral geniculate nucleus (LGN) of the cat. Neurons were recorded extracellularly during visual stimulation with sinusoidal gratings which were presented at different interocular phases (disparities). The large majority of cells (91%) exhibited some type of binocular interaction. For 75% and 16% of the total number of cells, the binocular interaction was inhibitory or facilitatory, respectively. For the remaining 9% of cells, no interaction was evident. In marked distinction from visual cortex, the facilitatory and inhibitory interactions in the LGN are independent of the relative interocular phase of the patterns. Neurons in the LGN are therefore insensitive to the stereoscopic depth cue, retinal disparity.

Animals

Mechanisms of human motion perception revealed by a new cyclopean illusion.

A new cyclopean illusion of motion may bear on neural mechanisms of direction selectivity. Stationary flickering patterns were presented to each eye, and the resulting fused pattern was perceived to be moving. To determine direction of motion, the visual system seems to integrate image components differing by 90 degrees in spatial and temporal phase. On the other hand, image speed seems to be derived from displacement of features over time. A model of neural direction selectivity is discussed in light of these results.

Fourier Analysis

Parallel processing of motion and colour information.

When the two eyes are confronted with sufficiently different versions of the visual environment, one or the other eye dominates perception in alternation. A similar situation may be created in the laboratory by presenting images to the left and right eyes which differ in orientation or colour. Although perception is dominated by one eye during rivalry, there are a number of instances in which visual processes nevertheless continue to integrate information from the suppressed eye. For example the interocular transfer of the motion after-effect is undiminished when induced during binocular rivalry. Thus motion information processing may occur in parallel with the rivalry process. Here we describe a novel example in which the visual system simultaneously exhibits binocular rivalry and vision that integrates signals from both eyes. This apparent contradiction is resolved by postulating parallel visual processes devoted to the analyses of colour and motion information. Counterphased gratings are viewed dichoptically such that for one eye the grating is composed of alternating yellow and black stripes (luminance) while for the other it is composed of alternating red and green stripes (chrominance). When the gratings are fused, a moving grating is perceived. A consistent direction of motion can only be achieved if left and right monocular signals are integrated by the nervous system. Yet the apparent colour of the binocular percept alternates between red-green and yellow-black. These observations demonstrate the segregation of processing by the early motion system from that affording the perception of colour. Although, in this stimulus, colour information in itself can play no part in the cyclopean perception of motion direction, colour is carried along perceptually (filled in) by the moving pattern which is integrated from both eyes.

Color Perception