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1.
Proc Natl Acad Sci U S A ; 121(25): e2312293121, 2024 Jun 18.
Article in English | MEDLINE | ID: mdl-38857385

ABSTRACT

The perception of sensory attributes is often quantified through measurements of sensitivity (the ability to detect small stimulus changes), as well as through direct judgments of appearance or intensity. Despite their ubiquity, the relationship between these two measurements remains controversial and unresolved. Here, we propose a framework in which they arise from different aspects of a common representation. Specifically, we assume that judgments of stimulus intensity (e.g., as measured through rating scales) reflect the mean value of an internal representation, and sensitivity reflects a combination of mean value and noise properties, as quantified by the statistical measure of Fisher information. Unique identification of these internal representation properties can be achieved by combining measurements of sensitivity and judgments of intensity. As a central example, we show that Weber's law of perceptual sensitivity can coexist with Stevens' power-law scaling of intensity ratings (for all exponents), when the noise amplitude increases in proportion to the representational mean. We then extend this result beyond the Weber's law range by incorporating a more general and physiology-inspired form of noise and show that the combination of noise properties and sensitivity measurements accurately predicts intensity ratings across a variety of sensory modalities and attributes. Our framework unifies two primary perceptual measurements-thresholds for sensitivity and rating scales for intensity-and provides a neural interpretation for the underlying representation.


Subject(s)
Perception , Humans , Perception/physiology , Sensory Thresholds/physiology , Sensation/physiology , Judgment/physiology
2.
J Sports Med Phys Fitness ; 64(7): 609-614, 2024 Jul.
Article in English | MEDLINE | ID: mdl-38916083

ABSTRACT

BACKGROUND: This study examined the influence of physical fitness qualities, individual characteristics, and contextual factors on perceived exertion and recovery responses to official games in youth basketball players. METHODS: Twenty-six males (age: 15.8±1.2 years; 12 guards, 9 forwards, and 5 centers) and 7 females (age: 16.1±0.9 years; 3 guards, 4 forwards) were monitored for an entire basketball season (N.=635 observations). Yo-Yo Intermittent Recovery (level 1) and countermovement jump (CMJ) tests were administered, with players categorized as high and low Yo-Yo and CMJ groups according to test results. Ratings of perceived exertion (RPE) were collected after each official game. Before the game and the day after, the Total Quality of Recovery (scores) were collected, and the difference between post- and pregame TQR was calculated (TQRΔ). Separate linear mixed models evaluated the effects of sex (M; F), fitness qualities (high Yo-Yo; low Yo-Yo) (high CMJ; low CMJ), playing position (guard; forward; center), game outcome (won; loss) and game location (home; away). RESULTS: Male players reported higher RPE (7.0±0.3) than females (5.5±0.4) (P=0.003, effect size [ES]: moderate). Players with high Yo-Yo performance also reported higher RPE (6.7±0.4) than low Yo-Yo (5.8±0.3) (P=0.049, ES: small). TQRΔ was higher in guards (-1.3±0.2) than forwards (-0.8±0.2) (P=0.041, ES: trivial), and lower after lost games (-0.8±0.2) compared to won games (-1.2±0.2) (P=0.002, ES: small). CONCLUSIONS: In youth basketball, postgame perceived exertion and recovery responses are influenced by players' sex, intermittent endurance capacity, and game outcome. Current findings can help youth basketball practitioners to better understand their players' performances and perceptual responses.


Subject(s)
Athletic Performance , Basketball , Physical Exertion , Physical Fitness , Humans , Basketball/physiology , Male , Adolescent , Female , Physical Exertion/physiology , Physical Fitness/physiology , Athletic Performance/physiology , Perception/physiology , Exercise Test , Sex Factors
3.
Dev Psychobiol ; 66(5): e22504, 2024 Jul.
Article in English | MEDLINE | ID: mdl-38837411

ABSTRACT

Experimental studies of sensory plasticity during development in birds and mammals have highlighted the importance of sensory experiences for the construction and refinement of functional neural circuits. We discuss how dysregulation of experience-dependent brain plasticity can lead to abnormal perceptual representations that may contribute to heterogeneous deficits symptomatic of several neurodevelopmental disorders. We focus on alterations of somatosensory processing and the dynamic reorganization of cortical synaptic networks that occurs during early perceptual development. We also discuss the idea that the heterogeneity of strengths and weaknesses observed in children with neurodevelopmental disorders may be a direct consequence of altered plasticity mechanisms during early development. Treating the heterogeneity of perceptual developmental trajectories as a phenomenon worthy of study rather than as an experimental confound that should be overcome may be key to developing interventions that better account for the complex developmental trajectories experienced by modern humans.


Subject(s)
Neuronal Plasticity , Neuronal Plasticity/physiology , Humans , Animals , Neurodevelopmental Disorders/physiopathology , Brain/physiopathology , Brain/physiology , Perception/physiology
4.
J Sports Sci Med ; 23(2): 326-341, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38841639

ABSTRACT

In the recent past, practical blood flow restriction (pBFR) using non-pneumatic, usually elastic cuffs has been established as a cost-effective alternative to traditional blood flow restriction (BFR) using pneumatic cuffs, especially for training in large groups. This study investigated whether low-load resistance exercise with perceptually primed pBFR using an elastic knee wrap is suitable to induce similar motor performance fatigue as well as physiological and perceptual responses compared to traditional BFR using a pneumatic nylon cuff in males and females. In a randomized, counterbalanced cross-over study, 30 healthy subjects performed 4 sets (30-15-15-15 repetitions) of unilateral knee extensions at 20% of their one-repetition-maximum. In the pBFR condition, each individual was perceptually primed to a BFR pressure corresponding to 60% of their arterial occlusion pressure. Before and after exercise, maximal voluntary torque, maximal muscle activity, and cuff pressure-induced discomfort were assessed. Moreover, physiological (i.e., muscle activity, muscle oxygenation) and perceptual responses (i.e., effort and exercise-induced leg muscle pain) were recorded during exercise. Moderate correlations with no differences between pBFR and BFR were found regarding the decline in maximal voluntary torque and maximal muscle activity. Furthermore, no to very strong correlations between conditions, with no differences, were observed for muscle activity, muscle oxygenation, and perceptual responses during exercise sets. However, cuff pressure-induced discomfort was lower in the pBFR compared to the BFR condition. These results indicate that low-load resistance exercise combined with perceptually primed pBFR is a convenient and less discomfort inducing alternative to traditional BFR. This is especially relevant for BFR training with people who have a low cuff-induced discomfort tolerance.


Subject(s)
Cross-Over Studies , Muscle Fatigue , Muscle, Skeletal , Resistance Training , Humans , Female , Resistance Training/methods , Male , Muscle Fatigue/physiology , Adult , Young Adult , Muscle, Skeletal/physiology , Muscle, Skeletal/blood supply , Regional Blood Flow , Torque , Myalgia/etiology , Myalgia/prevention & control , Perception/physiology , Oxygen Consumption , Blood Flow Restriction Therapy/methods , Electromyography , Knee/physiology
5.
Physiol Meas ; 45(6)2024 Jun 18.
Article in English | MEDLINE | ID: mdl-38838705

ABSTRACT

Objective. To compare the acute physiological and perceptual responses to blood flow restriction (BFR) exercise using a traditional research device or novel, automated system.Methods. Forty-four resistance trained individuals performed four sets of unilateral elbow flexion exercise (30% one-repetition maximum) to volitional failure using two distinct restrictive devices [SmartCuffs PRO BFR Model (SMARTCUFF), Hokanson E20 Rapid Inflation device (HOKANSON)] and with two levels of BFR [40% limb occlusion pressure (LOP), 80% LOP]. Blood pressure (BP), muscle thickness (MT), and isometric strength (ISO) were assessed prior to and following exercise. Perceptual responses [ratings of perceived exertion (RPE), discomfort] were assessed prior to exercise and following each exercise set.Main results. Data are displayed as means (SD). Immediately following exercise with 40% LOP, there were no statistical differences between devices for BP, MT, and ISO. However, only following Set 1 of exercise, RPE was greater with SMARTCUFF compared to HOKANSON (p< 0.05). In addition, only following Set 2 of exercise, discomfort was greater with HOKANSON compared to SMARTCUFF (p< 0.001). Immediately following exercise with 80% LOP, there were no statistical differences between devices for BP, MT, and ISO. However, only following Set 4 of exercise, RPE was greater with HOKANSON compared to SMARTCUFF (p< 0.05). In addition, following all exercise sets, discomfort was greater with HOKANSON compared to SMARTCUFF (p< 0.001). For repetitions completed with 40% LOP there were no statistical differences between SMARTCUFF and HOKANSON across any exercise sets. For repetitions completed with 80% LOP there were no statistical differences between SMARTCUFF and HOKANSON across Set 1 of exercise (p= 0.34), however, for Sets 2-4 of exercise, significantly greater number of repetitions were completed during SMARTCUFF than HOKANSON.Significance. The present study provides valuable insight into the efficacy of a novel, automated BFR system (SMARTCUFF) eliciting comparable acute physiological responses to BFR exercise and in some cases favorable perceptual responses when compared to a traditional research device (HOKANSON).


Subject(s)
Automation , Exercise , Perception , Regional Blood Flow , Humans , Male , Female , Exercise/physiology , Regional Blood Flow/physiology , Perception/physiology , Young Adult , Adult , Blood Pressure/physiology , Resistance Training/instrumentation
6.
Eur J Sport Sci ; 24(6): 703-712, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38874946

ABSTRACT

This study examined the impact of continuous blood flow restriction (BFR) during repeated-sprint exercise (RSE) on acute performance, peripheral, systemic physiological, and perceptual responses. In a randomized crossover design, 26 adult male semi-professional and amateur team-sport players completed two RSE sessions (3 sets of 5 × 5-s sprints with 25 s of passive recovery and 3 min of rest) with continuous BFR (45% arterial occlusion; excluding during between-set rest periods) or without (non-BFR). Mean and peak power output were significantly lower (p < 0.001) during BFR compared to non-BFR (dz = 0.85 and 0.77, respectively). Minimum tissue saturation index during the sprints and rest periods was significantly reduced (p < 0.001) for BFR (dz = 1.26 and 1.21, respectively). Electromyography root mean square was significantly decreased (p < 0.01) for biceps femoris and lateral gastrocnemius muscles during BFR (dz = 0.35 and 0.79, respectively), but remained unchanged for the vastus lateralis muscle in both conditions. Oxygen consumption and minute ventilation were significantly reduced (both p < 0.01) for BFR (dz = 1.46 and 0.43, respectively). Perceived limb discomfort was significantly higher (p < 0.001) for BFR (dz = 0.78). No differences (p > 0.05) in blood lactate concentration or rating of perceived exertion were observed between conditions. Blood flow-restricted RSE reduced performance and likely increased the physiological and perceptual stimulus for the periphery with greater reliance on anaerobic glycolysis, despite comparable or decreased systemic demands.


Subject(s)
Cross-Over Studies , Electromyography , Muscle, Skeletal , Oxygen Consumption , Regional Blood Flow , Humans , Male , Oxygen Consumption/physiology , Young Adult , Adult , Muscle, Skeletal/physiology , Muscle, Skeletal/blood supply , Regional Blood Flow/physiology , Running/physiology , Athletic Performance/physiology , Perception/physiology
7.
Eur J Sport Sci ; 24(6): 732-739, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38874957

ABSTRACT

Perception of Velocity (PV) is the ability to estimate single repetition velocity during resistance training (RT) exercises. The main purpose of the study was to evaluate the effects of Mental Fatigue (MF) on the accuracy of barbell PV. The secondary aims were to evaluate whether MF affected RT performance and ratings of perceived exertion (RPE; OMNI-RES) in the back squat. Twenty-four (14 Females, 10 Males) resistance-trained participants underwent 2 familiarization sessions and 1RM test for the back squat. In two separate sessions, PV was tested for light, medium, and heavy loads in 2 conditions in random order: at rest (REST) and in MF condition (POST-MF) induced by previous incongruent Stroop color-word task. MF and Motivation were assessed through visual analog scales (VAS; 0-100) before and after the Stroop task. For each load subjects performed 2 repetitions and reported the RPE value. Mean propulsive velocity (Vr) of the barbell was recorded with a linear encoder, while the perceived velocity (Vp) of the subjects was self-reported using the Squat-PV scale. The PV accuracy was calculated through the delta score (ds: Vp-Vr). Following the Stroop task MF increased significantly (p < 0.001; F (1, 23) = 52.572), while motivation decreased (p < 0.05; F (1, 23) = 7.401). Ds, Vr, and RPE did not show significant differences between conditions (p > 0.05) for the three loads analyzed. MF induced by previous demanding cognitive task did not affect PV accuracy. Furthermore, subjects maintained unchanged both RT performance and RPE values associated with each load, even when mentally fatigued.


Subject(s)
Mental Fatigue , Resistance Training , Humans , Male , Female , Resistance Training/methods , Young Adult , Adult , Perception/physiology , Physical Exertion/physiology , Stroop Test , Motivation , Weight Lifting/physiology , Weight Lifting/psychology
8.
Brain Cogn ; 179: 106184, 2024 Aug.
Article in English | MEDLINE | ID: mdl-38843762

ABSTRACT

The embodied approach argues that interaction with the environment plays a crucial role in brain development and that the presence of sensory effects generated by movements is fundamental. The movement of the fetus is initially random. Then, the repeated execution of the movement creates a link between it and its sensory effects, allowing the selection of movements that produce expected sensations. During fetal life, the brain develops from a transitory fetal circuit to the permanent cortical circuit, which completes development after birth. Accordingly, this process must concern the interaction of the fetus with the intrauterine environment and of the newborn with the new aerial environment, which provides a new sensory stimulation, light. The goal of the present review is to provide suggestions for neuroscientific research capable of shedding light on brain development process by describing from a functional point of view the relationship between the motor and sensory abilities of fetuses and newborns and the increasing complexity of their interaction with objects in the womb and outside of it.


Subject(s)
Brain , Fetal Development , Humans , Infant, Newborn , Fetal Development/physiology , Brain/physiology , Brain/growth & development , Child Development/physiology , Fetus/physiology , Female , Perception/physiology
9.
J Sports Sci Med ; 23(2): 289-304, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38841637

ABSTRACT

Perception is an essential component of children's psychological development, which is foundational to children's ability to understand and adapt to their external environment. Perception is also a crucial tool for understand and navigating one's surroundings, enabling children to identify objects and react appropriately to settings or situations. Substantial evidence indicates that engaging in physical activity is beneficial for the development of children's perceptual abilities, as the two are closely intertwined. Still, more research is necessary to gain a full understanding of the impact of physical activity on children's perception. To further identify and quantify the effects of physical activity on a number of specific perceptions in children. Systematic review and meta-analysis. Searches were performed using five online databases (i.e., PubMed, SPORTDiscus, PsycINFO, Web of Science, and Cochrane Library) for articles published up to and including June 2023 to identify eligible citations. A total of 12 randomized controlled trials, encompassing 1,761 children under the age of 12, were analyzed. Overall, physical activity as an intervention showed a notable effect on the development of children's perceptions. The meta-analysis indicated that participating in physical activity for 30 minutes around, daily, had a greater impact on children's visual perception and executive functioning than on their motor perception, body perception, and global self-worth (SMD = 1.33, 95% CI: 0.75, 1.91, p < 0.001). The effects of physical activity on children's perception performance varied by participant characteristics, with physical activity having better effects on body perception and overall self-worth in children who were obese or overweight. Furthermore, physical activity can also enhance executive function and attention in children with developmental coordination disorders. The effects of physical activity on children's perception performance varied according to the intervention time, with different activity durations resulting in different perception performances. Therefore, parents and educators must prioritize an appropriate length of physical activity time for children to ensure their optimal growth and development. Registration and protocol CRD42023441119.


Subject(s)
Executive Function , Exercise , Perception , Humans , Child , Exercise/psychology , Perception/physiology , Executive Function/physiology , Child Development , Visual Perception , Randomized Controlled Trials as Topic , Body Image
10.
Behav Brain Sci ; 47: e123, 2024 Jun 27.
Article in English | MEDLINE | ID: mdl-38934434

ABSTRACT

What Babies Know (WBK) argues that core knowledge has a unique place in cognitive architecture, between fully perceptual and fully conceptual systems of representation. Here I argue that WBK's core knowledge is on the perception side of the perception/cognition divide. I discuss some implications of this conclusion for the roles language learning might play in transcending core knowledge.


Subject(s)
Cognition , Knowledge , Language , Humans , Cognition/physiology , Language Development , Infant , Learning/physiology , Concept Formation/physiology , Perception/physiology
11.
Behav Brain Sci ; 47: e129, 2024 Jun 27.
Article in English | MEDLINE | ID: mdl-38934435

ABSTRACT

What we know about what babies know - as represented by the core knowledge proposal - is perhaps missing a place for the baby itself. By studying the baby as an actor rather than an observer, we can better understand the origins of human intelligence as an interface between perception and action, and how humans think and learn about themselves in a complex world.


Subject(s)
Child Development , Knowledge , Humans , Infant , Child Development/physiology , Intelligence , Perception/physiology , Learning/physiology
12.
Behav Neurosci ; 138(3): 195-211, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38934921

ABSTRACT

In recent years, there have been significant advances in our understanding of the positive symptoms of schizophrenia, such as hallucinations and delusions. This progress has been significantly aided by the use of associative learning-based approaches in human subjects and preclinical animal models. Here, we first review experimental research focusing on the abnormal processing of absent stimuli using three different conditioning phenomena: conditioned hallucinations, mediated conditioning, and trace conditioning. We then review studies investigating the ability to reduce focal processing of physically present but informationally redundant stimuli using habituation, latent inhibition, and blocking. The results of these different lines of research are then summarized within the framework of Wagner's (1981) standard operating procedures model, an associative learning model with explicit reference to the internal representations of both present and absent stimuli. Within this framework, the central deficit associated with positive symptoms can be described as a failure to suppress the focal processing of both absent stimuli and present but irrelevant stimuli. This can explain the wide range of results obtained in different experimental settings. Finally, we briefly discuss the role of the hippocampus and its interaction with dopaminergic transmission in the emergence of such abnormal stimulus representations and learning. Overall, we hope that the theoretical framework and empirical findings offered by the associative learning approach will continue to facilitate and integrate analyses of schizophrenia conducted at the psychological and behavioral levels on the one hand, and at the neural and molecular levels on the other, by serving as a useful interface between them. (PsycInfo Database Record (c) 2024 APA, all rights reserved).


Subject(s)
Association Learning , Schizophrenia , Humans , Association Learning/physiology , Schizophrenia/physiopathology , Animals , Psychotic Disorders/psychology , Psychotic Disorders/physiopathology , Hallucinations/physiopathology , Schizophrenic Psychology , Conditioning, Classical/physiology , Hippocampus/physiology , Perception/physiology
13.
J Cogn Neurosci ; 36(8): 1620-1642, 2024 Jul 01.
Article in English | MEDLINE | ID: mdl-38695762

ABSTRACT

Research into ascending sensory pathways and cortical networks has generated detailed models of perception. These same cortical regions are strongly connected to subcortical structures, such as the basal ganglia (BG), which have been conceptualized as playing key roles in reinforcement learning and action selection. However, because the BG amasses experiential evidence from higher and lower levels of cortical hierarchies, as well as higher-order thalamus, it is well positioned to dynamically influence perception. Here, we review anatomical, functional, and clinical evidence to demonstrate how the BG can influence perceptual processing and conscious states. This depends on the integrative relationship between cortex, BG, and thalamus, which allows contributions to sensory gating, predictive processing, selective attention, and representation of the temporal structure of events.


Subject(s)
Attention , Basal Ganglia , Consciousness , Perception , Basal Ganglia/physiology , Humans , Consciousness/physiology , Attention/physiology , Perception/physiology , Animals , Neural Pathways/physiology , Cerebral Cortex/physiology
14.
Int J Sports Physiol Perform ; 19(7): 685-695, 2024 Jul 01.
Article in English | MEDLINE | ID: mdl-38772547

ABSTRACT

PURPOSE: To examine the sex differences in performance and perceived fatigue during resistance training prescribed using traditional (TRA) and autoregulation rest-redistribution training (ARRT) approaches. METHODS: Twelve resistance-trained men and 12 women completed 2 sessions including the bench-press exercise matched for load (75% of 1-repetition maximum), volume (24 repetitions), and total rest (240 s). Sessions were performed in a counterbalanced randomized design with TRA consisting of 3 sets of 8 repetitions with 120-second interset rest and ARRT employing a personalized combination of clusters, repetitions per cluster, and between-clusters rest regulated with a 20% velocity-loss threshold. The effects of TRA and ARRT on velocity loss, unilateral isometric peak force, and rating of fatigue (ROF) were compared between sexes. RESULTS: The velocity loss was generally lower during ARRT compared with TRA (-0.47% [0.11%]), with velocity loss being mitigated by ARRT to a greater extent among males compared with females (-0.37% [0.15%]). A smaller unilateral isometric peak force decline was observed after ARRT than TRA among males compared with females (-38.4 [8.4] N). Lower ROF after ARRT than TRA was found among males compared to females (-1.97 [0.55] AU). Additionally, males reported greater ROF than females across both conditions (1.92 [0.53] AU), and ARRT resulted in lower ROF than TRA overall (-0.83 [0.39] AU). CONCLUSIONS: The ARRT approach resulted in decreased velocity loss, peak force impairment, and ROF compared with TRA in both sexes. However, male subjects exhibited more pronounced acute within-session benefits from the ARRT method.


Subject(s)
Muscle Fatigue , Resistance Training , Rest , Humans , Male , Female , Resistance Training/methods , Muscle Fatigue/physiology , Young Adult , Sex Factors , Rest/physiology , Adult , Perception/physiology , Homeostasis , Muscle Strength/physiology , Isometric Contraction/physiology , Muscle, Skeletal/physiology , Weight Lifting/physiology
15.
Front Endocrinol (Lausanne) ; 15: 1343759, 2024.
Article in English | MEDLINE | ID: mdl-38752176

ABSTRACT

Syndromic autism spectrum conditions (ASC), such as Klinefelter syndrome, also manifest hypogonadism. Compared to the popular Extreme Male Brain theory, the Enhanced Perceptual Functioning model explains the connection between ASC, savant traits, and giftedness more seamlessly, and their co-emergence with atypical sexual differentiation. Overexcitability of primary sensory inputs generates a relative enhancement of local to global processing of stimuli, hindering the abstraction of communication signals, in contrast to the extraordinary local information processing skills in some individuals. Weaker inhibitory function through gamma-aminobutyric acid type A (GABAA) receptors and the atypicality of synapse formation lead to this difference, and the formation of unique neural circuits that process external information. Additionally, deficiency in monitoring inner sensory information leads to alexithymia (inability to distinguish one's own emotions), which can be caused by hypoactivity of estrogen and oxytocin in the interoceptive neural circuits, comprising the anterior insular and cingulate gyri. These areas are also part of the Salience Network, which switches between the Central Executive Network for external tasks and the Default Mode Network for self-referential mind wandering. Exploring the possibility that estrogen deficiency since early development interrupts GABA shift, causing sensory processing atypicality, it helps to evaluate the co-occurrence of ASC with attention deficit hyperactivity disorder, dyslexia, and schizophrenia based on phenotypic and physiological bases. It also provides clues for understanding the common underpinnings of these neurodevelopmental disorders and gifted populations.


Subject(s)
Androgens , Autism Spectrum Disorder , Estrogens , Humans , Androgens/deficiency , Androgens/metabolism , Estrogens/metabolism , Estrogens/deficiency , Autism Spectrum Disorder/metabolism , Autism Spectrum Disorder/physiopathology , Male , Sex Differentiation/physiology , Klinefelter Syndrome/physiopathology , Klinefelter Syndrome/metabolism , Perception/physiology , Brain/metabolism
16.
Physiol Rep ; 12(10): e16036, 2024 May.
Article in English | MEDLINE | ID: mdl-38757255

ABSTRACT

In the past few years, the face mask has been recommended for the prevention of exposing others to COVID-19. Wearing a face mask may have the potential to increase dyspnea and discomfort during exercise; however, controversy exists on whether wearing face masks during exercise affects exercise performance, perception, and mood in runners. We investigated the physiological and perceptual responses of healthy male adults who had experienced long-distance running while exercising at different intensities. Nine healthy young adults who were long-distance runners wearing surgical face mask conducted an incremental treadmill protocol. The protocol was three 6-min stages (20%, 40%, and 60% of maximal heart rate, respectively). The rating of perceived exertion (RPE) and the feeling scale (FS) were measured. RPE was higher in mask condition than in unmask condition (No mask vs. Face mask, light; 8.22 vs. 8.78, p = 0.615, middle; 10.00 vs. 10.78, p = 0.345, high; 12.33 vs. 13.67, p = 0.044.), while FS was not different between conditions. The present study shows that wearing a mask may increase rating of perceived exertion and discomfort when the exercise intensity exceeds a certain threshold in healthy male adults who have experienced long-distance running.


Subject(s)
Affect , COVID-19 , Masks , Running , Humans , Male , Masks/adverse effects , Running/physiology , Affect/physiology , Pilot Projects , Adult , COVID-19/prevention & control , Young Adult , Exercise Test/methods , Physical Exertion/physiology , Perception/physiology , Heart Rate/physiology , SARS-CoV-2
17.
Epilepsy Behav ; 156: 109821, 2024 Jul.
Article in English | MEDLINE | ID: mdl-38704987

ABSTRACT

Epilepsy is a chronic disease characterized by recurrent epileptic seizures that can affect the perception of stigma and compromise the quality of life of those living with it. In addition, sociodemographic factors such as employment and maintaining a job, education, and the autonomy to drive vehicles are often impaired. OBJECTIVE: To assess the social inclusion of adult women with epilepsy in relation to the perception of stigma and quality of life, and the clinical aspects of the disease. METHODOLOGY: Data from 70 adult Brazilian women with epilepsy regarding aspects related to their social inclusion were verified. Such data were linked to clinical aspects and scores from the questionnaires: Quality of Life in Epilepsy Inventory 31 (QOLIE-31) and the Epilepsy Stigma Scale (ESS), with a significance level of p < 0.05. RESULTS: Average age of 45.5 years, 40 (57.1 %) women were divorced/single/widowed, 31 (44.3 %) women had less than 10 years of formal education, 32 (45.7 %) women had no income, and 57 (81.4 %) did not have a driver's license. The age at the time of the first seizure was 18 years, the seizures were focal in 46 (65.7 %) cases, and 26 (37.1 %) cases were seizure-free in the last year. A high number of women reported that the diagnosis of epilepsy negatively influenced aspects of autonomy such as the possession of a driver's license and going out alone. Longer duration of epilepsy was associated with lower education, not having children, and lower scores on the QOLIE-31. Higher scores on the QOLIE-31 were correlated with lower frequency of seizures and with the age at the time of the first seizure. Values in the dimension - energy and fatigue of the QOLIE-31 were significantly lower in the group with less independence compared to the other two groups with more independence, in latent class analyses (ANOVA, adjusted for age 42.1 ± 35.6 vs 57.2 ± 28.4 vs 73.9 ± 23.8, p = 0.0295). DISCUSSION: Clinical aspects of epilepsy and having a partner, autonomy, and independence such as driving vehicles are factors that contribute to social inclusion and to the perception of a better quality of life for adult women with epilepsy. CONCLUSION: It was observed that having a partner, autonomy, and independence such as driving vehicles are factors that contribute to social inclusion and to the perception of a better quality of life for adult women with epilepsy.


Subject(s)
Epilepsy , Quality of Life , Social Stigma , Humans , Female , Quality of Life/psychology , Epilepsy/psychology , Epilepsy/epidemiology , Brazil/epidemiology , Adult , Middle Aged , Surveys and Questionnaires , Young Adult , Aged , Perception/physiology
18.
Neuron ; 112(10): 1626-1641, 2024 May 15.
Article in English | MEDLINE | ID: mdl-38754374

ABSTRACT

The involvement of the prefrontal cortex (PFC) in consciousness is an ongoing focus of intense investigation. An important question is whether representations of conscious contents and experiences in the PFC are confounded by post-perceptual processes related to cognitive functions. Here, I review recent findings suggesting that neuronal representations of consciously perceived contents-in the absence of post-perceptual processes-can indeed be observed in the PFC. Slower ongoing fluctuations in the electrophysiological state of the PFC seem to control the stability and updates of these prefrontal representations of conscious awareness. In addition to conscious perception, the PFC has been shown to play a critical role in controlling the levels of consciousness as observed during anesthesia, while prefrontal lesions can result in severe loss of perceptual awareness. Together, the convergence of these processes in the PFC suggests its integrative role in consciousness and highlights the complex nature of consciousness itself.


Subject(s)
Consciousness , Prefrontal Cortex , Prefrontal Cortex/physiology , Humans , Consciousness/physiology , Animals , Awareness/physiology , Perception/physiology
19.
PeerJ ; 12: e17158, 2024.
Article in English | MEDLINE | ID: mdl-38711624

ABSTRACT

Background: Rating of perceived exertion (RPE) is considered a valid method for prescribing prolonged aerobic steady-state exercise (SSE) intensity due to its association with physiological indicators of exercise intensity, such as oxygen uptake (V̇O2) or heart rate (HR). However, these associations between psychological and physiological indicators of exercise intensity were found during graded exercise tests (GXT) but are currently used to prescribe SSE intensity even though the transferability and validity of the relationships found during GXT to SSE were not investigated. The present study aims to verify whether (a) RPE-HR or RPE-V̇O2 relations found during GXTs are valid during SSEs, and (b) the duration and intensity of SSE affect these relations. Methods: Eight healthy and physically active males (age 22.6 ± 1.2 years) were enrolled. On the first visit, pre-exercise (during 20 min standing) and maximal (during a GXT) HR and V̇O2 values were measured. Then, on separate days, participants performed 4 SSEs on the treadmill by running at 60% and 80% of the HR reserve (HRR) for 15 and 45 min (random order). Individual linear regressions between GXTs' RPE (dependent variable) and HRR and V̇O2 reserve (V̇O2R) values (computed as the difference between maximal and pre-exercise values) were used to predict the RPE associated with %HRR (RPEHRR) and %V̇O2R (RPEV̇O2R) during the SSEs. For each relation (RPE-%HRR and RPE-%V̇O2R), a three-way factorial repeated measures ANOVA (α = 0.05) was used to assess if RPE (dependent variable) was affected by exercise modality (i.e., RPE recorded during SSE [RPESSE] or GXT-predicted), duration (i.e., 15 or 45 min), and intensity (i.e., 60% or 80% of HRR). Results: The differences between RPESSE and GXT-predicted RPE, which were assessed by evaluating the effect of modality and its interactions with SSE intensity and duration, showed no significant differences between RPESSE and RPEHRR. However, when RPESSE was compared with RPEV̇O2R, although modality or its interactions with intensity were not significant, there was a significant (p = 0.020) interaction effect of modality and duration yielding a dissociation between changes of RPESSE and RPEV̇O2R over time. Indeed, RPESSE did not change significantly (p = 0.054) from SSE of 15 min (12.1 ± 2.0) to SSE of 45 min (13.5 ± 2.1), with a mean change of 1.4 ± 1.8, whereas RPEV̇O2R decreased significantly (p = 0.022) from SSE of 15 min (13.7 ± 3.2) to SSE of 45 min (12.4 ± 2.8), with a mean change of -1.3 ± 1.5. Conclusion: The transferability of the individual relationships between RPE and physiological parameters found during GXT to SSE should not be assumed as shown by the results of this study. Therefore, future studies modelling how the exercise prescription method used (e.g., RPE, HR, or V̇O2) and SSE characteristics (e.g., exercise intensity, duration, or modality) affect the relationships between RPE and physiological parameters are warranted.


Subject(s)
Exercise Test , Exercise , Heart Rate , Oxygen Consumption , Physical Exertion , Humans , Male , Heart Rate/physiology , Physical Exertion/physiology , Oxygen Consumption/physiology , Young Adult , Exercise Test/methods , Exercise/physiology , Exercise/psychology , Adult , Perception/physiology
20.
PLoS One ; 19(5): e0300776, 2024.
Article in English | MEDLINE | ID: mdl-38809815

ABSTRACT

PURPOSE: Studies indicate that the rated perceived exertion (RPE) during physical exercise can be lower in field environments than indoors. The environmental conditions of those studies are explored. Furthermore, we study if the same phenomenon is valid when cycling indoors versus in cycle commuting environments with high levels of stimuli from both traffic and suburban-urban elements. METHODS: Twenty commuter cyclists underwent measurements of heart rate (HR) and oxygen uptake ([Formula: see text]O2) and RPE assessments for breathing and legs, respectively, while cycling in both laboratory and field conditions. A validated mobile metabolic system was used in the field to measure [Formula: see text]O2. Three submaximal cycle ergometer workloads in the laboratory were used to establish linear regression equations between RPE and % of HR reserve (%HRR) and %[Formula: see text]O2max, separately. Based on these equations, RPE from the laboratory was predicted and compared with RPE levels at the participants' individual cycle commutes at equal intensities. The same approach was used to predict field intensities and for comparisons with corresponding measured intensities at equal RPE levels. RESULTS: The predicted RPE levels based on the laboratory cycling were significantly higher than the RPE levels in cycle commuting at equal intensities (67% of HRR; 65% of [Formula: see text]O2max). For breathing, the mean RPE levels were; 14.0-14.2 in the laboratory and 12.6 in the field. The corresponding levels for legs were; 14.0-14.2 and 11.5. The range of predicted field intensities in terms of %HRR and %[Formula: see text]O2max was 46-56%, which corresponded to median differences of 19-30% compared to the measured intensities in field at equal RPE. CONCLUSION: The cycle commuters perceived a lower exertion during their cycle commutes compared to ergometer cycling in a laboratory at equal exercise intensities. This may be due to a higher degree of external stimuli in field, although influences from other possible causes cannot be ruled out.


Subject(s)
Bicycling , Heart Rate , Oxygen Consumption , Physical Exertion , Humans , Physical Exertion/physiology , Adult , Male , Oxygen Consumption/physiology , Heart Rate/physiology , Bicycling/physiology , Perception/physiology , Exercise/physiology , Female , Exercise Test , Young Adult
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