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Compensatory Neural Activity in Response to Cognitive Fatigue
- Source :
- The Journal of neuroscience : the official journal of the Society for Neuroscience. 36(14)
- Publication Year :
- 2015
-
Abstract
- Prolonged continuous performance of a cognitively demanding task induces cognitive fatigue and is associated with a time-related deterioration of objective performance, the degree of which is referred to cognitive fatigability. Although the neural underpinnings of cognitive fatigue are poorly understood, prior studies report changes in neural activity consistent with deterioration of task-related networks over time. While compensatory brain activity is reported to maintain motor task performance in the face of motor fatigue and cognitive performance in the face of other stressors (e.g., aging) and structural changes, there are no studies to date demonstrating compensatory activity for cognitive fatigue. High-density electroencephalography was recorded from human subjects during a 160 min continuous performance of a cognitive control task. While most time-varying neural activity showed a linear decline over time, we identified an evoked potential over the anterior frontal region which demonstrated an inverted U-shaped time-on-task profile. This evoked brain activity peaked between 60 and 100 min into the task and was positively associated with better behavioral performance only during this interval. Following the peak and during subsequent decline of this anterior frontal activity, the rate of performance decline also accelerated. These findings demonstrate that this anterior frontal brain activity, which is not part of the primary task-related activity at baseline, is recruited to compensate for fatigue-induced impairments in the primary task-related network, and that this compensation terminates as cognitive fatigue further progresses. These findings may be relevant to understanding individual differences in cognitive fatigability and developing interventions for clinical conditions afflicted by fatigue.SIGNIFICANCE STATEMENTFatigue refers to changes in objective performance and subjective effort induced by continuous task performance. We examined the neural underpinnings of cognitive fatigue in humans using a prolonged continuous performance task and high-density electroencephalography with the goal of determining whether compensatory processes exist to maintain performance in the face of fatigue. We identified brain activity demonstrating an inverted U-shaped time-on-task profile. This brain activity showed features consistent with a compensatory role including: peaking between 60 and 100 min into the task, a positive association with behavioral performance only during this interval, and accelerated performance decline following its peak. These findings may be relevant to understanding individual differences in cognitive fatigue and developing interventions for clinical conditions afflicted by fatigue.
- Subjects :
- Adult
Male
medicine.medical_specialty
Adolescent
Brain activity and meditation
Poison control
Audiology
Electroencephalography
behavioral disciplines and activities
050105 experimental psychology
Developmental psychology
03 medical and health sciences
Young Adult
0302 clinical medicine
Cognition
Continuous performance task
Event-related potential
medicine
Reaction Time
Humans
0501 psychology and cognitive sciences
Effects of sleep deprivation on cognitive performance
Evoked Potentials
medicine.diagnostic_test
General Neuroscience
05 social sciences
Brain
Articles
Mental Fatigue
Frontal Lobe
Stroop Test
Female
Psychology
030217 neurology & neurosurgery
Psychomotor Performance
Stress, Psychological
Stroop effect
Subjects
Details
- ISSN :
- 15292401
- Volume :
- 36
- Issue :
- 14
- Database :
- OpenAIRE
- Journal :
- The Journal of neuroscience : the official journal of the Society for Neuroscience
- Accession number :
- edsair.doi.dedup.....037eb85d9ea8423bbf1c97d9a60fb9c7