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J Molenaar

Publications and source records attributed to J Molenaar.

21 records · Page 2Linked to original sources

Anisotropic receptive field structure of cat horizontal cells.

Horizontal (H-)cells were recorded intracellularly in the retinae of optically intact feline eyes in vivo. A small light spot orbiting slowly around the receptive field centers was used to quantify the fine structure and diameter of the receptive fields. Receptive field diameters measured in this way were larger than those measured with centered spots of increasing diameter. All H-units studied showed clearly anisotropic receptive field structures. These results are summarized in polar plots representing the local response generating sites with their corresponding "response plus transport" latencies. It is shown that the anisotropic receptive field properties are not incompatible with the approximately homogenous spatial distribution of H-cell somata reported by Wässle and Rieman (1978) for the axonless type of horizontal cell. Finally it is concluded that each H-cell might be involved in many different locally specialized signal processing activities.

Animals↗

A visual stimulator for orbiting light spots and equal energy annuli with continuously variable parameters.

When a light spot moves at high angular velocity along a circular path on a screen, an annulus is preceived. This principle is used in a simple annulus generator consisting of a plane mirror that rotates about an axis making an angle alpha with the normal in the center point of the mirror. Angle alpha can be varied with a micrometer screw to change the diameter of the annular path (orbit) followed by the light spot that is projected on a screen via the rotating mirror. This results in variable diameter equal energy annuli. The diameter of the light spot can be changed to manipulate the width of the annulus. Finally, at low angular velocities an orbiting light spot is obtained. It is shown in the companion paper (Molenaar and van de Grind, 1979) that this slow orbiting of the light spot allows a precise study of the fine structure of receptive fields.

Animals↗