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Discrimination learning of grating orientation in visually deprived cats and the role of the superior colliculi.

Four cats deprived binocularly of pattern vision (BD cats), 4 control cats reared also in the laboratory (C cats), and 4 normal wild cats (N cats) were trained to discriminate gratings of progressively smaller difference in orientation. Differences in learning were found only in fine orientation discriminations. The stage of 15 degrees orientation difference was learned by 4 N cats, 2 C cats, and 1 BD cat. After the discrimination training, the superior colliculi were ablated in 2 C cats and 2 BD cats. In contrast to C cats, the BD cats were very deficient and failed to relearn even a horizontal versus vertical orientation discrimination. Thus, an abnormal neural strategy used by BD cats diminished their deficit in grating discrimination learning.

Animals↗

Effects of preference, prompt, and task agreement on the discrimination learning of mentally retarded adults.

Twenty-seven mentally retarded employees of a sheltered workshop were trained on five discrimination tasks (wires, hardware, moldings, capacitors, and fasteners) using five combination of preference, prompt, and task agreement: all agree, preference different, prompt different, tasks different, and all different. The data revealed that when the learners were prompted in the dimension of the target discrimination (a) fewer errors were made, (b) training time was reduced, and (c) fewer training trials were required to reach criterion. Preference for a particular dimension (color, shape, or size, as measured by a screening test) did not significantly affect performance on the discrimination tasks. Findings were discussed in terms of the functions of prompts as feedback, reinforcement, and symbolic parts of a compound stimulus.

Adult↗

Elemental and configural visual discrimination learning following lesions to perirhinal cortex in the rat.

Rats were tested in a series of two-choice visual discrimination tasks in a computer-controlled testing apparatus. The discriminations used a range of discriminanda, which varied in complexity. The discriminations included relatively simple form discriminations, more complex form discriminations and discriminations between compound stimuli that shared many features. It was found that rats with perirhinal cortex lesions were unimpaired in all discriminations except those that involved the compound stimuli with overlapping features. Using these stimuli, rats with perirhinal cortex lesions were unimpaired when the stage of learning did not necessitate discriminating stimuli on the basis of more than one feature. However, when efficient performance of the task needed the configuration of more than one feature to be taken into account, perirhinal lesioned rats were impaired. These results are interpreted as revealing the role of the perirhinal cortex in providing multifeature information about the properties of visual objects.

Animals↗