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1.
Curr Biol ; 34(18): 4332-4337.e2, 2024 Sep 23.
Artículo en Inglés | MEDLINE | ID: mdl-39232564

RESUMEN

Dragonflies are poikilothermic animals with limited thermoregulation; therefore, their entire bodies, including the brain, experience a range of temperatures during their daily activities.1,2 These flying insects exhibit hunting prowess, pursuing prey or conspecifics whether in direct sunlight or under the cover of cloud.3,4 Likely to underlie these aerobatic feats are the small target motion detector (STMD) neurons.5 These visual neurons are sensitive to target contrast and tuned to the target's size and velocity, with some neurons exhibiting complex predictive and selective properties, well suited for prey interception and feeding amid swarms.3,4,6,7,8,9 Increased temperature can modulate the biochemical processes underlying neuronal processing, increasing sensitivity and quickening the responsiveness of insect photoreceptors and downstream optic flow neurons,10,11,12 while in other neuronal pathways, compensatory processes have been shown to account for temperature changes.13,14 We determined the ethological range of temperatures experienced by the dragonfly, Hemicordulia tau, in its natural environment. Across this behaviorally relevant range, we showed increased temperatures having a large 8.7-fold increase in the contrast sensitivity of STMD neurons. However, suppression of responses to larger targets was unaltered. STMD tuning for target velocities was changed remarkably, not only increasing the optimum but extending the fastest velocities encoded by an order of magnitude. These results caution against interpreting functionality underlying spike rates at constrained, experimental temperatures. Moreover, they raise intriguing new questions about how information is represented within the brain of these flying insects, given the relationship between visual stimulus parameters and neuronal activity varies so dramatically depending on current environmental conditions.


Asunto(s)
Percepción de Movimiento , Odonata , Temperatura , Animales , Odonata/fisiología , Percepción de Movimiento/fisiología , Neuronas/fisiología
2.
eNeuro ; 11(9)2024 Sep.
Artículo en Inglés | MEDLINE | ID: mdl-39256041

RESUMEN

Some visual neurons in the dragonfly (Hemicordulia tau) optic lobe respond to small, moving targets, likely underlying their fast pursuit of prey and conspecifics. In response to repetitive targets presented at short intervals, the spiking activity of these "small target motion detector" (STMD) neurons diminishes over time. Previous experiments limited this adaptation by including intertrial rest periods of varying durations. However, the characteristics of this effect have never been quantified. Here, using extracellular recording techniques lasting for several hours, we quantified both the spatial and temporal properties of STMD adaptation. We found that the time course of adaptation was variable across STMD units. In any one STMD, a repeated series led to more rapid adaptation, a minor accumulative effect more akin to habituation. Following an adapting stimulus, responses recovered quickly, though the rate of recovery decreased nonlinearly over time. We found that the region of adaptation is highly localized, with targets displaced by ∼2.5° eliciting a naive response. Higher frequencies of target stimulation converged to lower levels of sustained response activity. We determined that adaptation itself is a target-tuned property, not elicited by moving bars or luminance flicker. As STMD adaptation is a localized phenomenon, dependent on recent history, it is likely to play an important role in closed-loop behavior where a target is foveated in a localized region for extended periods of the pursuit duration.


Asunto(s)
Adaptación Fisiológica , Percepción de Movimiento , Neuronas , Odonata , Animales , Odonata/fisiología , Adaptación Fisiológica/fisiología , Percepción de Movimiento/fisiología , Neuronas/fisiología , Estimulación Luminosa/métodos , Potenciales de Acción/fisiología , Lóbulo Óptico de Animales no Mamíferos/fisiología , Femenino , Masculino
3.
PLoS One ; 19(9): e0310502, 2024.
Artículo en Inglés | MEDLINE | ID: mdl-39292714

RESUMEN

Biological motion perception is an essential part of the cognitive process. Stress can affect the cognitive process. The present study explored the intrinsic ERP features of the effects of acute psychological stress on biological motion perception. The results contributed scientific evidence for the adaptive behavior changes under acute stress. After a mental arithmetic task was used to induce stress, the paradigm of point-light displays was used to evaluate biological motion perception. Longer reaction time and lower accuracy were found in the inverted walking condition than in the upright walking condition, which was called the "inversion effect". The P2 peak amplitude and the LPP mean amplitude were significantly higher in the local inverted perception than in the local upright walking condition. Compared to the control condition, the stress condition induced lower RT, shorter P1 peak latency of biological motion perception, lower P2 peak amplitude and LPP mean amplitude, and higher N330 peak amplitude. There was an "inversion effect" in biological motion perception. This effect was related to the structural characteristics of biological motion perception but unrelated to the state of acute psychological stress. Acute psychological stress accelerated the reaction time and enhanced attention control of biological motion perception. Attention resources were used earlier, and less attentional investment was made in the early stage of biological motion perception processing. In the late stage, a continuous weakening of inhibition was shown in the parieto-occipital area.


Asunto(s)
Percepción de Movimiento , Tiempo de Reacción , Estrés Psicológico , Humanos , Percepción de Movimiento/fisiología , Masculino , Estrés Psicológico/fisiopatología , Tiempo de Reacción/fisiología , Femenino , Adulto Joven , Adulto , Electroencefalografía , Atención/fisiología , Potenciales Evocados/fisiología , Caminata/fisiología
4.
Proc Biol Sci ; 291(2031): rspb20241490, 2024 Sep.
Artículo en Inglés | MEDLINE | ID: mdl-39288810

RESUMEN

The visual naturalness of a rendered character's motion is an important factor in computer graphics work, and the rendering of jumping motions is no exception to this. However, the computational mechanism that underlies the observer's judgement of the naturalness of a jumping motion has not yet been fully elucidated. We hypothesized that observers would perceive a jumping motion as more natural when the jump trajectory was consistent with the trajectory of a vertical projectile motion based on Earth's gravity. We asked human participants to evaluate the naturalness of point-light jumping motions whose height and duration were modulated. The results showed that the observers' naturalness rating varied with the modulation ratios of the jump height and duration. Interestingly, the ratings were high even when the height and duration differed from the actual jump. To explain this tendency, we constructed computational models that predicted the theoretical trajectory of a jump based on the projectile motion formula and calculated the errors between the theoretical and observed trajectories. The pattern of the errors correlated closely with the participants' ratings. Our results suggest that observers judge the naturalness of observed jumping motion based on the error between observed and predicted jump trajectories.


Asunto(s)
Percepción de Movimiento , Humanos , Percepción de Movimiento/fisiología , Masculino , Femenino , Adulto , Adulto Joven
6.
J Vis ; 24(9): 11, 2024 Sep 03.
Artículo en Inglés | MEDLINE | ID: mdl-39269364

RESUMEN

It has been demonstrated that observers can accurately estimate their self-motion direction (i.e., heading) from optic flow, which can be affected by attention. However, it remains unclear how attention affects the serial dependence in the estimation. In the current study, participants conducted two experiments. The results showed that the estimation accuracy decreased when attentional resources allocated to the heading estimation task were reduced. Additionally, the estimates of currently presented headings were biased toward the headings of previously seen headings, showing serial dependence. Especially, this effect decreased (increased) when the attentional resources allocated to the previously (currently) seen headings were reduced. Furthermore, importantly, we developed a Bayesian inference model, which incorporated attention-modulated likelihoods and qualitatively predicted changes in the estimation accuracy and serial dependence. In summary, the current study shows that attention affects the serial dependence in heading estimation from optic flow and reveals the Bayesian computational mechanism behind the heading estimation.


Asunto(s)
Atención , Teorema de Bayes , Percepción de Movimiento , Flujo Optico , Humanos , Atención/fisiología , Flujo Optico/fisiología , Percepción de Movimiento/fisiología , Adulto Joven , Estimulación Luminosa/métodos , Masculino , Adulto , Femenino
7.
Sci Total Environ ; 952: 175936, 2024 Nov 20.
Artículo en Inglés | MEDLINE | ID: mdl-39218089

RESUMEN

To the microwave irradiation safety hazards caused by the co-construction of towers in smart grids, this paper investigates the effects of microwave irradiation in the power environment on the biological motion balance perception function. Firstly, simulation of microwave signals in the electric power environment, i.e., low-frequency harmonics and high-frequency carriers, were realized by signal modulation and applied in four types of behavior testing scenarios. Then, determining rats as target organisms to replace workers and randomly dividing into groups in proportion: open field, rotating rod fatigue, beam walking and forced swimming. Configuring radar with various parameters to match the electric power irradiation scene and stimulate rats, monitoring the abnormal behavior by image processing module, including posture, motion trajectory, distance, and other features. The experimental result showed that exposed to microwaves induce rats motor ability decline, balance perception imbalance, together with paralysis within long-term exposure, and its locomotor activity, coordination, posture control and reaction time all exhibit varying degrees of weakening. These findings indicate that microwave irradiation in electric power environment may pose significant health and safety risks for worker.


Asunto(s)
Microondas , Microondas/efectos adversos , Ratas , Animales , Equilibrio Postural/fisiología , Percepción de Movimiento/fisiología , Masculino
8.
Sci Rep ; 14(1): 21296, 2024 09 12.
Artículo en Inglés | MEDLINE | ID: mdl-39266612

RESUMEN

Motion-onset visual evoked potentials (MO VEPs) are robust to dioptric blur when low contrast and low spatial frequency patterns are used for stimulation. To reveal mechanisms of MO VEPs robustness, we studied whether the resistance to defocus persists even when using a high-contrast checkerboard using digital defocus in the emmetropic eyes of 13 subjects (males 20-60 years). We compared the dominant components of MO VEPs to pattern-reversal VEPs (PR VEP), which are sensitive to the blur. For stimulation, we used checkerboard patterns with 15´ and 60´ checks. To defocus the checkerboard, we rendered it with a second-order Zernike polynomial ( Z 2 0 ) with an equivalent defocus of 0, 2, or 4 D. For PR VEP, the checkerboards were reversed in terms of their contrast. To evoke MO VEP, the checkerboard of 60´ checks moved for 200 ms with a speed of 5 or 10 deg/s in the cardinal directions. The MO VEP did not change in peak time (P ≥ 0.0747) or interpeak amplitude (P > 0.0772) with digital blur. In contrast, for PR VEP, the results showed a decrease in interpeak amplitude (P ≤ 6.65ˑ10-4) and an increase in peak time (P ≤ 0.0385). Thus, we demonstrated that MO VEPs evoked by checkerboard, structure containing high spatial content, can be robust to defocus.


Asunto(s)
Potenciales Evocados Visuales , Humanos , Adulto , Masculino , Potenciales Evocados Visuales/fisiología , Persona de Mediana Edad , Adulto Joven , Femenino , Percepción de Movimiento/fisiología , Estimulación Luminosa
9.
Commun Biol ; 7(1): 1087, 2024 Sep 05.
Artículo en Inglés | MEDLINE | ID: mdl-39237668

RESUMEN

Vestibular motion perception declines with age, increasing the risk of falling substantially. We performed a two-week perceptual learning intervention using a self-motion direction discrimination task (2800 training trials per person) on a 6 degrees of freedom motion platform in healthy older adults (n = 40, aged 70-88 yr). Linear inter-aural and angular roll tilt vestibular thresholds improved with training (95% credible interval for pre/post difference), suggesting altered sensitivity post-training. Moreover, improved perceptual abilities transfer to actual posture (reduced sway) and gait parameters. Passive self-motion discrimination training provides a new and promising way to counteract age-related sensory decline. It can reduce the risk of falling, and thereby maintain individual autonomy and quality of life.


Asunto(s)
Marcha , Percepción de Movimiento , Postura , Vestíbulo del Laberinto , Humanos , Anciano , Masculino , Femenino , Anciano de 80 o más Años , Marcha/fisiología , Percepción de Movimiento/fisiología , Vestíbulo del Laberinto/fisiología , Postura/fisiología , Aprendizaje/fisiología , Equilibrio Postural/fisiología
10.
PLoS One ; 19(9): e0308642, 2024.
Artículo en Inglés | MEDLINE | ID: mdl-39283837

RESUMEN

Intercepting moving targets is a fundamental skill in human behavior, influencing various domains such as sports, gaming, and other activities. In these contexts, precise visual processing and motor control are crucial for adapting and navigating effectively. Nevertheless, there are still some gaps in our understanding of how these elements interact while intercepting a moving target. This study explored the dynamic interplay among eye movements, pupil size, and interceptive hand movements, with visual and motion uncertainty factors. We developed a simple visuomotor task in which participants used a joystick to interact with a computer-controlled dot that moved along two-dimensional trajectories. This virtual system provided the flexibility to manipulate the target's speed and directional uncertainty during chase trials. We then conducted a geometric analysis based on optimal angles for each behavior, enabling us to distinguish between simple tracking and predictive trajectories that anticipate future positions of the moving target. Our results revealed the adoption of a strong interception strategy as participants approached the target. Notably, the onset and amount of optimal interception strategy depended on task parameters, such as the target's speed and frequency of directional changes. Furthermore, eye-tracking data showed that participants continually adjusted their gaze speed and position, continuously adapting to the target's movements. Finally, in successful trials, pupillary responses predicted the amount of optimal interception strategy while exhibiting an inverse relationship in trials without collisions. These findings reveal key interactions among visuomotor parameters that are crucial for solving complex interception tasks.


Asunto(s)
Movimientos Oculares , Desempeño Psicomotor , Humanos , Masculino , Femenino , Desempeño Psicomotor/fisiología , Adulto , Movimientos Oculares/fisiología , Adulto Joven , Pupila/fisiología , Percepción de Movimiento/fisiología , Tecnología de Seguimiento Ocular , Mano/fisiología , Movimiento/fisiología
12.
J Vis ; 24(8): 12, 2024 Aug 01.
Artículo en Inglés | MEDLINE | ID: mdl-39177998

RESUMEN

For successful interactions with the world, we often have to evaluate our own performance. Although eye movements are one of the most frequent actions we perform, we are typically unaware of them. Here, we investigated whether there is any evidence for metacognitive sensitivity for the accuracy of eye movements. Participants tracked a dot cloud as it followed an unpredictable sinusoidal trajectory and then reported if they thought their performance was better or worse than their average tracking performance. Our results show above-chance identification of better tracking behavior across all trials and also for repeated attempts of the same target trajectories. Sensitivity in discriminating performance between better and worse trials was stable across sessions, but judgements within a trial relied more on performance in the final seconds. This behavior matched previous reports when judging the quality of hand movements, although overall metacognitive sensitivity for eye movements was significantly lower.


Asunto(s)
Movimientos Oculares , Metacognición , Humanos , Masculino , Movimientos Oculares/fisiología , Femenino , Adulto , Adulto Joven , Metacognición/fisiología , Desempeño Psicomotor/fisiología , Percepción de Movimiento/fisiología , Tecnología de Seguimiento Ocular , Estimulación Luminosa/métodos
13.
J Vis ; 24(8): 14, 2024 Aug 01.
Artículo en Inglés | MEDLINE | ID: mdl-39186301

RESUMEN

In this paper, we show that the model we proposed earlier to account for the disparity vergence eye movements (disparity vergence responses, or DVRs) in response to horizontal and vertical disparity steps of white noise visual stimuli also provides an excellent description of the short-latency ocular following responses (OFRs) to broadband stimuli in the visual motion domain. In addition, we reanalyzed the data and applied the model to several earlier studies that used sine-wave gratings (single or a combination of two or three gratings) and white noise stimuli. The model provides a very good account of all of these data. The model postulates that the short-latency eye movements-OFRs and DVRs-can be accounted for by the operation of two factors: an excitatory drive, determined by a weighted sum of contributions of stimulus Fourier components, scaled by a global contrast normalization mechanism. The output of the operation of these two factors is then nonlinearly scaled by the total contrast of the stimulus. Despite different roles of disparity (horizontal and vertical) and motion signals in visual scene analyses, the earliest processing stages of these different signals appear to be very similar.


Asunto(s)
Sensibilidad de Contraste , Movimientos Oculares , Percepción de Movimiento , Estimulación Luminosa , Disparidad Visual , Humanos , Percepción de Movimiento/fisiología , Estimulación Luminosa/métodos , Disparidad Visual/fisiología , Sensibilidad de Contraste/fisiología , Movimientos Oculares/fisiología , Tiempo de Reacción/fisiología
14.
Neuropsychologia ; 202: 108965, 2024 Sep 09.
Artículo en Inglés | MEDLINE | ID: mdl-39097186

RESUMEN

The ability to use past learned experiences to guide decisions is an important component of adaptive behavior, especially when decision-making is performed under time pressure or when perceptual information is unreliable. Previous studies using visual discrimination tasks have shown that this prior-informed decision-making ability is impaired in Parkinson's disease (PD), but the mechanisms underlying this deficit and the precise impact of dopaminergic denervation within cortico-basal circuits remain unclear. To shed light on this problem, we evaluated prior-informed decision-making under various conditions of perceptual uncertainty in a sample of 13 clinically established early PD patients, and compared behavioral performance with healthy control (HC) subjects matched in age, sex and education. PD patients and HC subjects performed a random dot motion task in which they had to decide the net direction (leftward vs. rightward) of a field of moving dots and communicate their choices through manual button presses. We manipulated prior knowledge by modulating the probability of occurrence of leftward vs. rightward motion stimuli between blocks of trials, and by explicitly giving these probabilities to subjects at the beginning of each block. We further manipulated stimulus discriminability by varying the proportion of dots moving coherently in the signal direction and speed-accuracy instructions. PD patients used choice probabilities to guide perceptual decisions in both speed and accuracy conditions, and their performance did not significantly differ from that of HC subjects. An additional analysis of the data with the diffusion decision model confirmed this conclusion. These results suggest that the impaired use of priors during visual discrimination observed at more advanced stages of PD is independent of dopaminergic denervation, though additional studies with larger sample sizes are needed to more firmly establish this conclusion.


Asunto(s)
Toma de Decisiones , Percepción de Movimiento , Enfermedad de Parkinson , Humanos , Enfermedad de Parkinson/fisiopatología , Enfermedad de Parkinson/complicaciones , Masculino , Femenino , Persona de Mediana Edad , Anciano , Incertidumbre , Percepción de Movimiento/fisiología , Toma de Decisiones/fisiología , Estimulación Luminosa , Discriminación en Psicología/fisiología , Pruebas Neuropsicológicas
15.
Soc Cogn Affect Neurosci ; 19(1)2024 Sep 16.
Artículo en Inglés | MEDLINE | ID: mdl-39167473

RESUMEN

Human facial features (eyes, nose, and mouth) allow us to communicate with others. Observing faces triggers physiological responses, including pupil dilation. Still, the relative influence of social and motion content of a visual stimulus on pupillary reactivity has never been elucidated. A total of 30 adults aged 18-33 years old were recorded with an eye tracker. We analysed the event-related pupil dilation in response to stimuli distributed along a gradient of social salience (non-social to social, going from objects to avatars to real faces) and dynamism (static to micro- to macro-motion). Pupil dilation was larger in response to social (faces and avatars) compared to non-social stimuli (objects), with surprisingly a larger response for avatars. Pupil dilation was also larger in response to macro-motion compared to static. After quantifying each stimulus' real quantity of motion, we found that the higher the quantity of motion, the larger the pupil dilated. However, the slope of this relationship was not higher for social stimuli. Overall, pupil dilation was more sensitive to the real quantity of motion than to the social component of motion, highlighting the relevance of ecological stimulations. Physiological response to faces results from specific contributions of both motion and social processing.


Asunto(s)
Reconocimiento Facial , Percepción de Movimiento , Pupila , Humanos , Pupila/fisiología , Adulto Joven , Adulto , Masculino , Femenino , Adolescente , Percepción de Movimiento/fisiología , Reconocimiento Facial/fisiología , Percepción Social , Estimulación Luminosa/métodos , Cara/fisiología , Tecnología de Seguimiento Ocular
16.
Neural Netw ; 179: 106539, 2024 Nov.
Artículo en Inglés | MEDLINE | ID: mdl-39089149

RESUMEN

Significant progress has been achieved in multi-object tracking (MOT) through the evolution of detection and re-identification (ReID) techniques. Despite these advancements, accurately tracking objects in scenarios with homogeneous appearance and heterogeneous motion remains a challenge. This challenge arises from two main factors: the insufficient discriminability of ReID features and the predominant utilization of linear motion models in MOT. In this context, we introduce a novel motion-based tracker, MotionTrack, centered around a learnable motion predictor that relies solely on object trajectory information. This predictor comprehensively integrates two levels of granularity in motion features to enhance the modeling of temporal dynamics and facilitate precise future motion prediction for individual objects. Specifically, the proposed approach adopts a self-attention mechanism to capture token-level information and a Dynamic MLP layer to model channel-level features. MotionTrack is a simple, online tracking approach. Our experimental results demonstrate that MotionTrack yields state-of-the-art performance on datasets such as Dancetrack and SportsMOT, characterized by highly complex object motion.


Asunto(s)
Movimiento (Física) , Humanos , Redes Neurales de la Computación , Algoritmos , Aprendizaje Automático , Percepción de Movimiento/fisiología
17.
Neural Netw ; 179: 106578, 2024 Nov.
Artículo en Inglés | MEDLINE | ID: mdl-39111158

RESUMEN

Self-supervised contrastive learning draws on power representational models to acquire generic semantic features from unlabeled data, and the key to training such models lies in how accurately to track motion features. Previous video contrastive learning methods have extensively used spatially or temporally augmentation as similar instances, resulting in models that are more likely to learn static backgrounds than motion features. To alleviate the background shortcuts, in this paper, we propose a cross-view motion consistent (CVMC) self-supervised video inter-intra contrastive model to focus on the learning of local details and long-term temporal relationships. Specifically, we first extract the dynamic features of consecutive video snippets and then align these features based on multi-view motion consistency. Meanwhile, we compare the optimized dynamic features for instance comparison of different videos and local spatial fine-grained with temporal order in the same video, respectively. Ultimately, the joint optimization of spatio-temporal alignment and motion discrimination effectively fills the challenges of the missing components of instance recognition, spatial compactness, and temporal perception in self-supervised learning. Experimental results show that our proposed self-supervised model can effectively learn visual representation information and achieve highly competitive performance compared to other state-of-the-art methods in both action recognition and video retrieval tasks.


Asunto(s)
Grabación en Video , Humanos , Redes Neurales de la Computación , Percepción de Movimiento/fisiología , Aprendizaje Automático Supervisado , Movimiento (Física) , Algoritmos
18.
J Electromyogr Kinesiol ; 78: 102924, 2024 Oct.
Artículo en Inglés | MEDLINE | ID: mdl-39182462

RESUMEN

BACKGROUND: To better personalize treatment and monitor recovery of individuals with low back pain, objective tests of sensorimotor functions, such as lumbar proprioception, must be selected based on their reliability and validity. The primary objective of this study was to test the concurrent validity of three measures of lumbar proprioception. METHODS: Thirty-one participants performed three lumbar proprioception tests (motion perception threshold, active and passive joint positioning sense), a whole-body mobility and balance (time up-and-go) and two trunk-specific postural control (threshold of stability and sensor-based sway measures) tests. RESULTS: Only the motion perception threshold proprioception test showed some validity, correlating with the trunk-specific postural control tests [r range (positive values): 0.37 to 0.60]. The three lumbar proprioception measures were not correlated to each other. The threshold of stability measure was correlated with the time up-and-go (r = 0.37) and trunk-specific (sensor-based sway measures) postural control [r range (positive values): 0.48 to 0.77] tests. CONCLUSION: The present study generated three original findings. Only the motion perception threshold proprioception test demonstrated its concurrent validity. In fact, the three lumbar proprioception tests performed in the present study were not correlated to each other, thus assessing different constructs. Finally, the threshold of stability protocol was validated against other tests. These findings will help in selecting the most appropriate lumbar proprioception measures to study the effects of exercise treatments in patients with back pain.


Asunto(s)
Vértebras Lumbares , Equilibrio Postural , Propiocepción , Humanos , Propiocepción/fisiología , Masculino , Femenino , Vértebras Lumbares/fisiología , Reproducibilidad de los Resultados , Equilibrio Postural/fisiología , Adulto , Percepción de Movimiento/fisiología
19.
J Vis ; 24(8): 7, 2024 Aug 01.
Artículo en Inglés | MEDLINE | ID: mdl-39150740

RESUMEN

We investigated whether adaptation from implied motion (IM) is transferred to real motion using optokinetic nystagmus (OKN) in infants. Specifically, we examined whether viewing a series of images depicting motion shifted infants' OKN responses to the opposite direction of random dot kinematograms (RDKs). Each RDK was presented 10 times in a pre-test, followed by 10 trials of IM adaptation and test. During the pre-test, the signal dots of the RDK moved left or right. During IM adaptation, 10 randomly selected images depicting leftward (or rightward) IM were presented. In the test, the RDK was presented immediately after the last IM image. An observer, blinded to the motion direction, assessed the OKN direction. The number of matches in OKN responses for each RDK direction was calculated as the match ratio of OKN. We conducted a two-way mixed analysis of variance, with age group (5-6 months and 7-8 months) as the between-participant factor and adaptation (pre-test and test) as the within-participant factor. Only in 7-8 months the OKN responses were shifted in the opposite direction of RDK by viewing a series of images depicting motion, and these infants could detect both IM and RDK motion directions in the pre-test. Our results indicate that detecting the IM and RDK directions might induce direction-selective adaptation in 7-8 months.


Asunto(s)
Adaptación Fisiológica , Percepción de Movimiento , Nistagmo Optoquinético , Estimulación Luminosa , Humanos , Percepción de Movimiento/fisiología , Lactante , Estimulación Luminosa/métodos , Nistagmo Optoquinético/fisiología , Adaptación Fisiológica/fisiología , Masculino , Femenino
20.
Res Dev Disabil ; 153: 104810, 2024 Oct.
Artículo en Inglés | MEDLINE | ID: mdl-39111260

RESUMEN

BACKGROUND: The perception of biological motion requires accurate prediction of the spatiotemporal dynamics of human movement. Research on Developmental Coordination Disorder (DCD) suggests deficits in accurate motor prediction, raising the question whether not just action execution, but also action perception is perturbed in this disorder. AIMS: To examine action perception by comparing the neural response to the observation of apparent biological motion in children with and without DCD. METHODS AND PROCEDURES: Thirty-three participants with and 33 without DCD, matched based on age (13.0 ± 2.0), sex and writing hand, observed sequences of static body postures that showed either fluent or non-fluent motion, in which only the fluent condition depicted apparent biological motion. Using a recently validated paradigm combining EEG frequency tagging and apparent biological motion (Cracco et al., 2023), the perception of biological motion was contrasted with the perception of individual body postures. OUTCOMES AND CONCLUSIONS: Children with DCD did not show reduced sensitivity to apparent biological motion compared with typically developing children. However, the DCD group did show a reduced brain response to repetitive visual stimuli, suggesting altered predictive processing in the perceptual domain in this group. Suggestions for further research on biological motion perception in DCD are identified.


Asunto(s)
Electroencefalografía , Percepción de Movimiento , Trastornos de la Destreza Motora , Humanos , Percepción de Movimiento/fisiología , Femenino , Masculino , Electroencefalografía/métodos , Niño , Trastornos de la Destreza Motora/fisiopatología , Adolescente , Estudios de Casos y Controles , Postura/fisiología
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