Reduced Frequency of Knowledge of Results Enhances Acquisition of Skills in Rats as in Humans

Macphail’s (1985) null hypothesis challenged researchers to demonstrate any differences in intelligence between vertebrate species. Rather than focus on differences, we asked whether rats would show the same unexpected, counterintuitive features of skill learning observed in humans: Factors that deg...

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Main Authors: Alliston K. Reid, Paige G. Bolton Swafford
Format: Article
Language:English
Published: Frontiers Media S.A. 2020-04-01
Series:Frontiers in Psychology
Subjects:
Online Access:https://www.frontiersin.org/article/10.3389/fpsyg.2020.00846/full
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spelling doaj-b74dbd2e6d9242e0b97ca021bc8ada222020-11-25T02:37:49ZengFrontiers Media S.A.Frontiers in Psychology1664-10782020-04-011110.3389/fpsyg.2020.00846523365Reduced Frequency of Knowledge of Results Enhances Acquisition of Skills in Rats as in HumansAlliston K. ReidPaige G. Bolton SwaffordMacphail’s (1985) null hypothesis challenged researchers to demonstrate any differences in intelligence between vertebrate species. Rather than focus on differences, we asked whether rats would show the same unexpected, counterintuitive features of skill learning observed in humans: Factors that degrade performance during acquisition often enhance performance in a subsequent retention/autonomy phase. Providing post-trial “knowledge of results” (KR) on 30–67% of trials instead of 100% degrades accuracy, yet increases retention in a subsequent phase without KR. We tested this feature by providing three groups of rats with KR on every trial (100% KR), 67% KR, or 0% KR. We also provided operant feedback in every trial for completing the left-right lever-press skill (food for correct sequences, timeout for all others). In the autonomy phase, we assessed their ability to complete the skill independently—in the absence of differential cues and KR feedback. In agreement with human performance in the autonomy phase, 67% KR yielded higher skill accuracy than providing 100% KR. Also, providing 67% KR improved skill accuracy above that observed with operant feedback alone (0% KR). Rather than degrading performance during acquisition, the 67% KR condition yielded unexpected higher accuracy than the other conditions. Accuracy increased systematically across our extended acquisition phase, which provided each rat with over 3600 trials compared to 20–30 trials for human studies. Providing limited KR promoted skill learning in rats as it does in humans, consistent with the conjecture that both species share common learning processes. Introducing difficulties to rats during training improved their autonomy.https://www.frontiersin.org/article/10.3389/fpsyg.2020.00846/fullskill learningknowledge of resultsoperant feedbackfrequency of KRautonomycomparative psychology
collection DOAJ
language English
format Article
sources DOAJ
author Alliston K. Reid
Paige G. Bolton Swafford
spellingShingle Alliston K. Reid
Paige G. Bolton Swafford
Reduced Frequency of Knowledge of Results Enhances Acquisition of Skills in Rats as in Humans
Frontiers in Psychology
skill learning
knowledge of results
operant feedback
frequency of KR
autonomy
comparative psychology
author_facet Alliston K. Reid
Paige G. Bolton Swafford
author_sort Alliston K. Reid
title Reduced Frequency of Knowledge of Results Enhances Acquisition of Skills in Rats as in Humans
title_short Reduced Frequency of Knowledge of Results Enhances Acquisition of Skills in Rats as in Humans
title_full Reduced Frequency of Knowledge of Results Enhances Acquisition of Skills in Rats as in Humans
title_fullStr Reduced Frequency of Knowledge of Results Enhances Acquisition of Skills in Rats as in Humans
title_full_unstemmed Reduced Frequency of Knowledge of Results Enhances Acquisition of Skills in Rats as in Humans
title_sort reduced frequency of knowledge of results enhances acquisition of skills in rats as in humans
publisher Frontiers Media S.A.
series Frontiers in Psychology
issn 1664-1078
publishDate 2020-04-01
description Macphail’s (1985) null hypothesis challenged researchers to demonstrate any differences in intelligence between vertebrate species. Rather than focus on differences, we asked whether rats would show the same unexpected, counterintuitive features of skill learning observed in humans: Factors that degrade performance during acquisition often enhance performance in a subsequent retention/autonomy phase. Providing post-trial “knowledge of results” (KR) on 30–67% of trials instead of 100% degrades accuracy, yet increases retention in a subsequent phase without KR. We tested this feature by providing three groups of rats with KR on every trial (100% KR), 67% KR, or 0% KR. We also provided operant feedback in every trial for completing the left-right lever-press skill (food for correct sequences, timeout for all others). In the autonomy phase, we assessed their ability to complete the skill independently—in the absence of differential cues and KR feedback. In agreement with human performance in the autonomy phase, 67% KR yielded higher skill accuracy than providing 100% KR. Also, providing 67% KR improved skill accuracy above that observed with operant feedback alone (0% KR). Rather than degrading performance during acquisition, the 67% KR condition yielded unexpected higher accuracy than the other conditions. Accuracy increased systematically across our extended acquisition phase, which provided each rat with over 3600 trials compared to 20–30 trials for human studies. Providing limited KR promoted skill learning in rats as it does in humans, consistent with the conjecture that both species share common learning processes. Introducing difficulties to rats during training improved their autonomy.
topic skill learning
knowledge of results
operant feedback
frequency of KR
autonomy
comparative psychology
url https://www.frontiersin.org/article/10.3389/fpsyg.2020.00846/full
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