Sylwester Kujach
Biographic Data
| ID | 7925396 |
|---|---|
| NAME | Sylwester Kujach |
| GIVEN NAMES | Sylwester |
| FAMILY NAME | Kujach |
| SIGNATURE | KUJACH S |
| AFFILIATIONS | Gdansk University of Physical Education and Sport |
| ORCID | 0000-0001-5520-1748 |
| VERIFIED | Yes |
| TOTAL WORKS | 3 |
| TOTAL CITATIONS | 0 |
| AUTHOR COUNT | 3 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2022 |
| LATEST PUBLICATION YEAR | 2026 |
| H-INDEX | 0 |
All Is Relative—A Call for Considering “Physiologically Informed” Control Conditions to Improve the Mechanistic Understanding of the Effects of Physical Exercise on Cognition
There is a growing interest in elucidating the mechanisms that drive the benefits of physical exercise on cognitive performance. A key element for a better understanding of a particular phenomenon (e.g., the mediators of the exercise‐cognition interaction) is the selection of an appropriate control condition/group as the basis for causal inference. In contemporary practice, control conditions/groups used in exercise‐cognition research can be broa…
Exercise-Induced Elevated BDNF Concentration Seems to Prevent Cognitive Impairment after Acute Exposure to Moderate Normobaric Hypoxia among Young Men
Memory impairment, reduced learning ability, decreased concentration, and psychomotor performance can be all signs of deleterious impact of hypoxia on cognitive functioning. In turn, physical exercise can improve performance and enhance cognitive functions. The purpose of this study was to investigate whether the potential positive effects of exercise performed under normobaric hypoxia can counteract the negative effects of hypoxia on cognitive f…
Acute Normobaric Hypoxia Lowers Executive Functions among Young Men despite Increase of BDNF Concentration
According to these findings, acute hypoxia delayed cognitive processing for motor execution and reduced the neural activity in motor executive and inhibitory processing. We also noted that this negative effect was associated with decreased SpO 2 irrespective of a rise in BDNF
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Acute Normobaric Hypoxia Lowers Executive Functions among Young Men despite Increase of BDNF Concentration
According to these findings, acute hypoxia delayed cognitive processing for motor execution and reduced the neural activity in motor executive and inhibitory processing. We also noted that this negative effect was associated with decreased SpO 2 irrespective of a rise in BDNF
Exercise-Induced Elevated BDNF Concentration Seems to Prevent Cognitive Impairment after Acute Exposure to Moderate Normobaric Hypoxia among Young Men
Memory impairment, reduced learning ability, decreased concentration, and psychomotor performance can be all signs of deleterious impact of hypoxia on cognitive functioning. In turn, physical exercise can improve performance and enhance cognitive functions. The purpose of this study was to investigate whether the potential positive effects of exercise performed under normobaric hypoxia can counteract the negative effects of hypoxia on cognitive f…
All Is Relative—A Call for Considering “Physiologically Informed” Control Conditions to Improve the Mechanistic Understanding of the Effects of Physical Exercise on Cognition
There is a growing interest in elucidating the mechanisms that drive the benefits of physical exercise on cognitive performance. A key element for a better understanding of a particular phenomenon (e.g., the mediators of the exercise‐cognition interaction) is the selection of an appropriate control condition/group as the basis for causal inference. In contemporary practice, control conditions/groups used in exercise‐cognition research can be broa…
Cognition (3 works) · Adipose Tissue and Metabolism (2 works) · Chemistry (2 works) · Hypoxia (environmental (2 works) · Internal Medicine (2 works) · Medicine (2 works) · Psychiatry (2 works) · Psychology (2 works) · Action Observation and Synchronization (1 works) · Biochemical effects in animals (1 works)