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M S Korsnes

Publications and source records attributed to M S Korsnes.

3 recordsLinked to original sources

Age comparisons of serial position effects in short-term memory.

Memory for serial position in four-item lists of words or abstract designs was tested at retention intervals of 5-25 seconds in two subject groups, aged 25-35 and 60-75 years; accuracy and choice reaction times (RT) were recorded. Increasing the retention interval transformed the serial position curve from recency to primacy but produced no overall reduction in memory performance in terms of accuracy. RTs varied as a function of both serial position and retention interval. Under all conditions the memory of older subjects was less accurate and they exhibited longer RTs compared to young subjects, but the age differences did not interact with list position or retention interval for either response indicator. The results suggest that age differences in memory can be explained by a single factor of mental speed limiting encoding efficiency and affecting decision times.

Adult↗

Serial position effects in visual short-term memory for words and abstract spatial patterns.

Two experiments tested the effects of list position, and retention-interval in recognition for two distinct stimulus categories in young adults. Stimulus categories were spatial abstract patterns and words presented on a computer screen. At short delay intervals recency effects predominates and at longer delay intervals a primacy effect predominates in both experiments, indicating similar basic memory processes producing the serial position functions for the two different categories of visual stimuli, but as length of retention-interval increases, memory for first list items improves for words and remains constant for abstract patterns. Recency functions are similar for both stimulus categories tested.

Adult↗

Aging and serial list picture memory.

List memory of 6 young and 6 older human adults was tested with lists of four visual items (black and white patterns and colored abstract paintings). We investigated the effects of varying the length of the recognition interval on the serial-position function for picture recognition in the two age groups. Increases in the retention interval showed a consistent modification of the shape of the serial-position function from a monotonically increasing function at the shortest interval to a monotonically decreasing function at the longest interval. The time course of these changes was faster for older adults than for young adults. Age differences in the length of the interval required for a shift in the serial-position functions from recency to primacy effects were strikingly similar to those previously found between young people and nonhuman species.

Adult↗