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M Callens

Publications and source records attributed to M Callens.

At least 55 records · Page 3Linked to original sources

Receptive field types of area 18 neurones in the cat.

In cats, 131 area 18 units with receptive fields 10-50 degrees from the visual axis, were recorded and tested with moving stimuli. These stimuli included light slits, dark bars, single edges, gratings and a random square pattern. 94% of the units were responsive to visual motion. 106 neurones could be classified by a screening procedure based on responses to a moving standard grating and a moving random square pattern. When testing with moving stimuli, the criteria for distinguishing between simple and complex cells in area 17 (Pettigrew et al., 1968; Bishopel al., 1971a,b, 1973 Goodwin and Henry, 1975, Sherman et al., 1976) also apply to area 18 neurones. No tests with stationary stimuli were made in distinguishing simple from complex cells. In addition to simple (50%) and complex (18%) cells, area 18 contains other cell types as hypercomplex cells (11%), cells with a radially symmetric RF (6%) and amplitude specific cells (10%). Six cells (5%) were unclassified. A special battery of tests was designed to study the RF of the very sophisticated amplitude specific cells. Their RF appears to consist of a discharge region preceded by a trigger area and of two flanking inhibitory regions.

Animals↗

Influence of movement parameters on area 18 neurones in the cat.

In cats, 107 area 18 neurones with identified FR type, 10-50 degrees from the visual axis, were tested for the influence of direction, velocity and amplitude of movement. These three parameters are believed to be the primary parameters of a movement analysing system. 94% of the neurones were influenced by the direction of movement, all of them by the angular velocity and 16% by the amplitude of movement. For each of the primary parameters, tuning curves were established. Angular velocity influenced not only the response magnitude but also the response latency and the direction bias. By preparing response amplitude functions at different velocities the influence of movement duration was ruled out. The association of functional properties and RF organization suggests a model of information processing in area 18 of the cat.

Animals↗

Unit responses to moving stimuli in area 18 of the cat.

In paralyzed cats units were recorded from the peripheral projections on area 18. Of 46 cells, 71 percent responded to moving visual stimuli. From this sample 91 percent responded to velocities ranging from 5 to 400 degrees-sec(-1). Within this group, two classes of neurons could be distinguished. The first class had small receptive fields and responded repetitively to a moving grating. They had low spontaneous activity and were located in the superficial cortical layers. Random pattern movement elicited no response. The second class had large receptive fields and higher spontaneous activity. These neurons, found in the deeper layer of the cortex, responded better to slits than to grating. Responses to random pattern motion reached 50-100 percent of grating motion responses. A similar distinction holds for fast movement sensitive neurons of area 17. The identification of both these classes with simple and complex cells is discussed.

Animals↗