Time-on-task decrement in vigilance is modulated by inter-individual vulnerability to homeostatic sleep pressure manipulation
Under sleep loss, vigilance is reduced and attentional failures emerge progressively. It becomes difficult to maintain stable performance over time, leading to growing performance variability (i.e. state instability) in an individual and among subjects. Task duration plays a major role in the mainte...
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doaj-2065e4dd821c414684a8fb27cded71282020-11-24T21:54:45ZengFrontiers Media S.A.Frontiers in Behavioral Neuroscience1662-51532014-03-01810.3389/fnbeh.2014.0005977417Time-on-task decrement in vigilance is modulated by inter-individual vulnerability to homeostatic sleep pressure manipulationMicheline eMaire0Carolin Franziska Reichert1Virginie eGabel2Antoine U Viola3Julia eKrebs4Werner eStrobel5Hans-Peter eLandolt6Valérie eBachmann7Christian eCajochen8Christina eSchmidt9Center for Chronobiology, Psychiatric University HospitalCenter for Chronobiology, Psychiatric University HospitalCenter for Chronobiology, Psychiatric University HospitalCenter for Chronobiology, Psychiatric University HospitalCenter for Chronobiology, Psychiatric University HospitalUniversity Hospital BaselUniversity of ZürichUniversity of ZürichCenter for Chronobiology, Psychiatric University HospitalCenter for Chronobiology, Psychiatric University HospitalUnder sleep loss, vigilance is reduced and attentional failures emerge progressively. It becomes difficult to maintain stable performance over time, leading to growing performance variability (i.e. state instability) in an individual and among subjects. Task duration plays a major role in the maintenance of stable vigilance levels, such that the longer the task, the more likely state instability will be observed. Vulnerability to sleep-loss-dependent performance decrements is highly individual and is also modulated by a polymorphism in the human clock gene PERIOD3 (PER3). By combining two different protocols, we manipulated sleep-wake history by once extending wakefulness for 40 h (high sleep pressure condition) and once by imposing a short sleep-wake cycle by alternating 160 min of wakefulness and 80 min naps (low sleep pressure condition) in a within-subject design. We observed that homozygous carriers of the long repeat allele of PER3 (PER35/5) experienced a greater time-on-task dependent performance decrement (i.e., a steeper increase in the number of lapses) in the Psychomotor Vigilance Task compared to the carriers of the short repeat allele (PER34/4). These genotype-dependent effects disappeared under low sleep pressure conditions, and neither motivation, nor perceived effort accounted for these differences. Our data thus suggest that greater sleep-loss related attentional vulnerability based on the PER3 polymorphism is mirrored by a greater state instability under extended wakefulness in the short compared to the long allele carriers. Our results undermine the importance of time-on-task related aspects when investigating inter-individual differences in sleep loss-induced behavioural vulnerability.http://journal.frontiersin.org/Journal/10.3389/fnbeh.2014.00059/fullSleep Deprivationsustained attentionsleep lossVulnerabilitytime-of-dayTime-on-task |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Micheline eMaire Carolin Franziska Reichert Virginie eGabel Antoine U Viola Julia eKrebs Werner eStrobel Hans-Peter eLandolt Valérie eBachmann Christian eCajochen Christina eSchmidt |
spellingShingle |
Micheline eMaire Carolin Franziska Reichert Virginie eGabel Antoine U Viola Julia eKrebs Werner eStrobel Hans-Peter eLandolt Valérie eBachmann Christian eCajochen Christina eSchmidt Time-on-task decrement in vigilance is modulated by inter-individual vulnerability to homeostatic sleep pressure manipulation Frontiers in Behavioral Neuroscience Sleep Deprivation sustained attention sleep loss Vulnerability time-of-day Time-on-task |
author_facet |
Micheline eMaire Carolin Franziska Reichert Virginie eGabel Antoine U Viola Julia eKrebs Werner eStrobel Hans-Peter eLandolt Valérie eBachmann Christian eCajochen Christina eSchmidt |
author_sort |
Micheline eMaire |
title |
Time-on-task decrement in vigilance is modulated by inter-individual vulnerability to homeostatic sleep pressure manipulation |
title_short |
Time-on-task decrement in vigilance is modulated by inter-individual vulnerability to homeostatic sleep pressure manipulation |
title_full |
Time-on-task decrement in vigilance is modulated by inter-individual vulnerability to homeostatic sleep pressure manipulation |
title_fullStr |
Time-on-task decrement in vigilance is modulated by inter-individual vulnerability to homeostatic sleep pressure manipulation |
title_full_unstemmed |
Time-on-task decrement in vigilance is modulated by inter-individual vulnerability to homeostatic sleep pressure manipulation |
title_sort |
time-on-task decrement in vigilance is modulated by inter-individual vulnerability to homeostatic sleep pressure manipulation |
publisher |
Frontiers Media S.A. |
series |
Frontiers in Behavioral Neuroscience |
issn |
1662-5153 |
publishDate |
2014-03-01 |
description |
Under sleep loss, vigilance is reduced and attentional failures emerge progressively. It becomes difficult to maintain stable performance over time, leading to growing performance variability (i.e. state instability) in an individual and among subjects. Task duration plays a major role in the maintenance of stable vigilance levels, such that the longer the task, the more likely state instability will be observed. Vulnerability to sleep-loss-dependent performance decrements is highly individual and is also modulated by a polymorphism in the human clock gene PERIOD3 (PER3). By combining two different protocols, we manipulated sleep-wake history by once extending wakefulness for 40 h (high sleep pressure condition) and once by imposing a short sleep-wake cycle by alternating 160 min of wakefulness and 80 min naps (low sleep pressure condition) in a within-subject design. We observed that homozygous carriers of the long repeat allele of PER3 (PER35/5) experienced a greater time-on-task dependent performance decrement (i.e., a steeper increase in the number of lapses) in the Psychomotor Vigilance Task compared to the carriers of the short repeat allele (PER34/4). These genotype-dependent effects disappeared under low sleep pressure conditions, and neither motivation, nor perceived effort accounted for these differences. Our data thus suggest that greater sleep-loss related attentional vulnerability based on the PER3 polymorphism is mirrored by a greater state instability under extended wakefulness in the short compared to the long allele carriers. Our results undermine the importance of time-on-task related aspects when investigating inter-individual differences in sleep loss-induced behavioural vulnerability. |
topic |
Sleep Deprivation sustained attention sleep loss Vulnerability time-of-day Time-on-task |
url |
http://journal.frontiersin.org/Journal/10.3389/fnbeh.2014.00059/full |
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