886 resultados para activity patterns


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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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Objetivou-se descrever as rotinas de três famílias, que adotaram crianças com necessidades especiais, que tinham conhecimento prévio dessa condição infantil. Utilizou-se o método de Estudo de Casos Múltiplos. Os dados foram obtidos por meio de Entrevista Semiestruturada (ES), do Inventário de Rotina (IR) e do Diário de Campo (DC). Quanto às semelhanças entre os grupos familiares, identificou-se que são comuns as atividades de alimentação/higiene, descanso e lazer, envolvendo a participação dos pais, irmãs e babás, geralmente nos ambientes domésticos da família. Observou-se diferenças importantes nos padrões de atividades, companhias e ambientes onde as rotinas ocorriam. Conclui-se que as variações nas rotinas estão relacionadas às particularidades de cada criança, à estrutura e nível socioeconômico de cada família participante.

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Neurofeedback (NF) is a training to enhance self-regulatory capacity over brain activity patterns and consequently over brain mental states. Recent findings suggest that NF is a promising alternative for the treatment of attention-deficit/hyperactivity disorder (ADHD). We comprehensively reviewed literature searching for studies on the effectiveness and specificity of NF for the treatment of ADHD. In addition, clinically informative evidence-based data are discussed. We found 3 systematic review on the use of NF for ADHD and 6 randomized controlled trials that have not been included in these reviews. Most nonrandomized controlled trials found positive results with medium-to-large effect sizes, but the evidence for effectiveness are less robust when only randomized controlled studies are considered. The direct comparison of NF and sham-NF in 3 published studies have found no group differences, nevertheless methodological caveats, such as the quality of the training protocol used, sample size, and sample selection may have contributed to the negative results. Further data on specificity comes from electrophysiological studies reporting that NF effectively changes brain activity patterns. No safety issues have emerged from clinical trials and NF seems to be well tolerated and accepted. Follow-up studies support long-term effects of NF. Currently there is no available data to guide clinicians on the predictors of response to NF and on optimal treatment protocol. In conclusion, NF is a valid option for the treatment for ADHD, but further evidence is required to guide its use.

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Members of the subfamily Crotalinae are considered to be essentially nocturnal and most of the data about these snakes have been collected from the field. Information on how nutritional status affects the movement rate and activity patterns is a key point to elucidating the ecophysiology of snakes. In this study, we distributed 28 lancehead Bothrops moojeni into three groups under distinct feeding regimens after a month of fasting. Groups were divided as follows: ingestion of meals weighing (A) 40%, (B) 20%, or (C) 10% of the snake body mass. Groups were monitored for five days before and after food intake and the activity periods and movement rates were recorded. Our results show that B. moojeni is prevalently nocturnal, and the activity peak occurs in the first three hours of the scotophase. After feeding, a significant decrease in activity levels in groups A and B was detected. The current results corroborate previous field data that describe B. moojeni as a nocturnal species with low movement rates. The relationship between motion and the amount of food consumed by the snake may be associated with its hunting strategy.

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Background Healthy lifestyle including sufficient physical activity may mitigate or prevent adverse long-term effects of childhood cancer. We described daily physical activities and sports in childhood cancer survivors and controls, and assessed determinants of both activity patterns. Methodology/Principal Findings The Swiss Childhood Cancer Survivor Study is a questionnaire survey including all children diagnosed with cancer 1976–2003 at age 0–15 years, registered in the Swiss Childhood Cancer Registry, who survived ≥5years and reached adulthood (≥20years). Controls came from the population-based Swiss Health Survey. We compared the two populations and determined risk factors for both outcomes in separate multivariable logistic regression models. The sample included 1058 survivors and 5593 controls (response rates 78% and 66%). Sufficient daily physical activities were reported by 52% (n = 521) of survivors and 37% (n = 2069) of controls (p<0.001). In contrast, 62% (n = 640) of survivors and 65% (n = 3635) of controls reported engaging in sports (p = 0.067). Risk factors for insufficient daily activities in both populations were: older age (OR for ≥35years: 1.5, 95CI 1.2–2.0), female gender (OR 1.6, 95CI 1.3–1.9), French/Italian Speaking (OR 1.4, 95CI 1.1–1.7), and higher education (OR for university education: 2.0, 95CI 1.5–2.6). Risk factors for no sports were: being a survivor (OR 1.3, 95CI 1.1–1.6), older age (OR for ≥35years: 1.4, 95CI 1.1–1.8), migration background (OR 1.5, 95CI 1.3–1.8), French/Italian speaking (OR 1.4, 95CI 1.2–1.7), lower education (OR for compulsory schooling only: 1.6, 95CI 1.2–2.2), being married (OR 1.7, 95CI 1.5–2.0), having children (OR 1.3, 95CI 1.4–1.9), obesity (OR 2.4, 95CI 1.7–3.3), and smoking (OR 1.7, 95CI 1.5–2.1). Type of diagnosis was only associated with sports. Conclusions/Significance Physical activity levels in survivors were lower than recommended, but comparable to controls and mainly determined by socio-demographic and cultural factors. Strategies to improve physical activity levels could be similar as for the general population.

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Among other auditory operations, the analysis of different sound levels received at both ears is fundamental for the localization of a sound source. These so-called interaural level differences, in animals, are coded by excitatory-inhibitory neurons yielding asymmetric hemispheric activity patterns with acoustic stimuli having maximal interaural level differences. In human auditory cortex, the temporal blood oxygen level-dependent (BOLD) response to auditory inputs, as measured by functional magnetic resonance imaging (fMRI), consists of at least two independent components: an initial transient and a subsequent sustained signal, which, on a different time scale, are consistent with electrophysiological human and animal response patterns. However, their specific functional role remains unclear. Animal studies suggest these temporal components being based on different neural networks and having specific roles in representing the external acoustic environment. Here we hypothesized that the transient and sustained response constituents are differentially involved in coding interaural level differences and therefore play different roles in spatial information processing. Healthy subjects underwent monaural and binaural acoustic stimulation and BOLD responses were measured using high signal-to-noise-ratio fMRI. In the anatomically segmented Heschl's gyrus the transient response was bilaterally balanced, independent of the side of stimulation, while in opposite the sustained response was contralateralized. This dissociation suggests a differential role at these two independent temporal response components, with an initial bilateral transient signal subserving rapid sound detection and a subsequent lateralized sustained signal subserving detailed sound characterization.

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Triggered event-related functional magnetic resonance imaging requires sparse intervals of temporally resolved functional data acquisitions, whose initiation corresponds to the occurrence of an event, typically an epileptic spike in the electroencephalographic trace. However, conventional fMRI time series are greatly affected by non-steady-state magnetization effects, which obscure initial blood oxygen level-dependent (BOLD) signals. Here, conventional echo-planar imaging and a post-processing solution based on principal component analysis were employed to remove the dominant eigenimages of the time series, to filter out the global signal changes induced by magnetization decay and to recover BOLD signals starting with the first functional volume. This approach was compared with a physical solution using radiofrequency preparation, which nullifies magnetization effects. As an application of the method, the detectability of the initial transient BOLD response in the auditory cortex, which is elicited by the onset of acoustic scanner noise, was used to demonstrate that post-processing-based removal of magnetization effects allows to detect brain activity patterns identical with those obtained using the radiofrequency preparation. Using the auditory responses as an ideal experimental model of triggered brain activity, our results suggest that reducing the initial magnetization effects by removing a few principal components from fMRI data may be potentially useful in the analysis of triggered event-related echo-planar time series. The implications of this study are discussed with special caution to remaining technical limitations and the additional neurophysiological issues of the triggered acquisition.

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Functional magnetic resonance imaging (fMRI) studies can provide insight into the neural correlates of hallucinations. Commonly, such studies require self-reports about the timing of the hallucination events. While many studies have found activity in higher-order sensory cortical areas, only a few have demonstrated activity of the primary auditory cortex during auditory verbal hallucinations. In this case, using self-reports as a model of brain activity may not be sensitive enough to capture all neurophysiological signals related to hallucinations. We used spatial independent component analysis (sICA) to extract the activity patterns associated with auditory verbal hallucinations in six schizophrenia patients. SICA decomposes the functional data set into a set of spatial maps without the use of any input function. The resulting activity patterns from auditory and sensorimotor components were further analyzed in a single-subject fashion using a visualization tool that allows for easy inspection of the variability of regional brain responses. We found bilateral auditory cortex activity, including Heschl's gyrus, during hallucinations of one patient, and unilateral auditory cortex activity in two more patients. The associated time courses showed a large variability in the shape, amplitude, and time of onset relative to the self-reports. However, the average of the time courses during hallucinations showed a clear association with this clinical phenomenon. We suggest that detection of this activity may be facilitated by examining hallucination epochs of sufficient length, in combination with a data-driven approach.

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Storing and recalling spiking sequences is a general problem the brain needs to solve. It is, however, unclear what type of biologically plausible learning rule is suited to learn a wide class of spatiotemporal activity patterns in a robust way. Here we consider a recurrent network of stochastic spiking neurons composed of both visible and hidden neurons. We derive a generic learning rule that is matched to the neural dynamics by minimizing an upper bound on the Kullback–Leibler divergence from the target distribution to the model distribution. The derived learning rule is consistent with spike-timing dependent plasticity in that a presynaptic spike preceding a postsynaptic spike elicits potentiation while otherwise depression emerges. Furthermore, the learning rule for synapses that target visible neurons can be matched to the recently proposed voltage-triplet rule. The learning rule for synapses that target hidden neurons is modulated by a global factor, which shares properties with astrocytes and gives rise to testable predictions.

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The thalamus integrates and transmits sensory information to the neocortex. The activity of thalamocortical relay (TC) cells is modulated by specific inhibitory circuits. Although this inhibition plays a crucial role in regulating thalamic activity, little is known about long-term changes in synaptic strength at these inhibitory synapses. Therefore, we studied long-term plasticity of inhibitory inputs to TC cells in the posterior medial nucleus of the thalamus by combining patch-clamp recordings with two-photon fluorescence microscopy in rat brain slices. We found that specific activity patterns in the postsynaptic TC cell induced inhibitory long-term potentiation (iLTP). This iLTP was non-Hebbian because it did not depend on the timing between presynaptic and postsynaptic activity, but it could be induced by postsynaptic burst activity alone. iLTP required postsynaptic dendritic Ca2+ influx evoked by low-threshold Ca2+ spikes. In contrast, tonic postsynaptic spiking from a depolarized membrane potential (−50 mV), which suppressed these low-threshold Ca2+ spikes, induced no plasticity. The postsynaptic dendritic Ca2+ increase triggered the synthesis of nitric oxide that retrogradely activated presynaptic guanylyl cyclase, resulting in the presynaptic expression of iLTP. The dependence of iLTP on the membrane potential and therefore on the postsynaptic discharge mode suggests that this form of iLTP might occur during sleep, when TC cells discharge in bursts. Therefore, iLTP might be involved in sleep state-dependent modulation of thalamic information processing and thalamic oscillations.

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Olfactory glomeruli are the loci where the first odor-representation map emerges. The glomerular layer comprises exquisite local synaptic circuits for the processing of olfactory coding patterns immediately after their emergence. To understand how an odor map is transferred from afferent terminals to postsynaptic dendrites, it is essential to directly monitor the odor-evoked glomerular postsynaptic activity patterns. Here we report the use of a transgenic mouse expressing a Ca(2+)-sensitive green fluorescence protein (GCaMP2) under a Kv3.1 potassium-channel promoter. Immunostaining revealed that GCaMP2 was specifically expressed in mitral and tufted cells and a subpopulation of juxtaglomerular cells but not in olfactory nerve terminals. Both in vitro and in vivo imaging combined with glutamate receptor pharmacology confirmed that odor maps reported by GCaMP2 were of a postsynaptic origin. These mice thus provided an unprecedented opportunity to analyze the spatial activity pattern reflecting purely postsynaptic olfactory codes. The odor-evoked GCaMP2 signal had both focal and diffuse spatial components. The focalized hot spots corresponded to individually activated glomeruli. In GCaMP2-reported postsynaptic odor maps, different odorants activated distinct but overlapping sets of glomeruli. Increasing odor concentration increased both individual glomerular response amplitude and the total number of activated glomeruli. Furthermore, the GCaMP2 response displayed a fast time course that enabled us to analyze the temporal dynamics of odor maps over consecutive sniff cycles. In summary, with cell-specific targeting of a genetically encoded Ca(2+) indicator, we have successfully isolated and characterized an intermediate level of odor representation between olfactory nerve input and principal mitral/tufted cell output.

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Studying individual differences in conscious awareness can potentially lend fundamental insights into the neural bases of binding mechanisms and consciousness (Cohen Kadosh and Henik, 2007). Partly for this reason, considerable attention has been devoted to the neural mechanisms underlying grapheme–color synesthesia, a healthy condition involving atypical brain activation and the concurrent experience of color photisms in response to letters, numbers, and words. For instance, the letter C printed in black on a white background may elicit a yellow color photism that is perceived to be spatially colocalized with the inducing stimulus or internally in the “mind's eye” as, for instance, a visual image. Synesthetic experiences are involuntary, idiosyncratic, and consistent over time (Rouw et al., 2011). To date, neuroimaging research on synesthesia has focused on brain areas activated during the experience of synesthesia and associated structural brain differences. However, activity patterns of the synesthetic brain at rest remain largely unexplored. Moreover, the neural correlates of synesthetic consistency, the hallmark characteristic of synesthesia, remain elusive.

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En este trabajo se ha realizado un análisis de la estructura del juego y de los parámetros morfológicos y fisiológicos en jugadores de bádminton. Para ello se han realizado 4 estudios aplicados. Objetivo: Los objetivos del trabajo han sido: (1) comprobar si existen diferencias entre el lado dominante y no dominante de las medidas antropométricas en jugadores de bádminton de máximo nivel nacional, así como verificar si el lado del cuerpo donde se realiza la medición puede influir en el cálculo de la composición corporal y del somatotipo. (2) Comparar la estuctura temporal y notacional en partidos de individual masculino entre los Juegos Olímpicos de Pekín y de Londres para observar como ha evolucionado el bádminton de 2008 a 2012. (3) Medir la ocurrencia de daño muscular después de un partido simulado de bádminton y su influencia en parámetros físicos y hematológicos. (4) Investigar la efectividad de una bebida energética que contiene cafeína para mejorar el rendimiento físico y el rendimiento en un partido en jugadores de élite de bádminton. Metodología: Para caracterizar el bádminton participaron en esta tesis un total de 78 jugadores de bádminton de élite (63 hombres y 15 mujeres), distribuidos en tres estudios y se analizaron 40 sets de bádminton de individual masculino usando los videos oficiales de los Juegos Olímpicos de Pekín 2008 y Londres 2012. En el primer estudio se tomaron medidas de pliegues cutáneos, diámetros, longitudes y perímetros del lado dominante y no dominante de los jugadores. Se calculó la composición corporal y el somatotipo. En el segundo estudio se analizaron los factores temporales y los factores notacionales de los partidos. En el tercer estudio se midieron la fuerza máxima isométrica, la velocidad en test específicos de bádminton y se tomaron muestras de sangre antes y después de jugar un partido de bádminton de 45 minutos. En el cuarto estudio se realizó un experimento a doble ciego, aleatorizado y controlado con placebo, los jugadores ingirieron 3 mg de cafeína por kilógramo de masa corporal en forma de bebida energética, o la misma bebida sin cafeína (placebo). En este estudio se registraron diferente tests específicos de bádminton (tests de salto, fuerza máxima y test de agilidad) y se jugó un partido simulado de 45 minutos. Resultados y discusión: (1) El porcentaje óseo fue mayor calculado a partir de las mediciones del lado dominante (dominante = 16.37 ± 1.14 %, no dominante = 15.66 ± 1.12 %; P < 0.001), mientras que el porcentaje muscular fue mayor calculado a partir de las mediciones del lado no dominante (dominante = 49.39 ± 2.60 %, no dominante = 50.18 ± 2.69%; P < 0.001). (2) La duración del set (Pekín: 1124.6 ± 229.9 s vs Londres: 1260.3 ± 267.1 s.; P < 0.05), el tiempo real de juego (Pekín: 306.9 ± 45.7 s vs Londres: 354.7 ± 86.5 s; P < 0.05), tiempo de rally, golpeos por rally, tiempo de descanso en el punto 11, tiempo de descanso entre sets y golpeos por rally fueron significativamente mayores en Londres que en Pekín. (3) El partido simulado de bádminton no afectó a la fuerza isométrica máxima (Pre: 1263.6 ± 245.5, Post: 1290.8 ± 240.4 N) o a la velocidad específica de bádminton (Pre: 21.0 ± 1.7, Post: 20.9 ± 1.8 s), sin embargo las concentraciones de mioglobina y de creatina quinasa en sangre aumentaron de 26.5 ± 11.6 a 197.3 ± 70.2 μg • L-1 y de 258.6 ± 192.2 a 466.0 ± 296.5 U • L-1, respectivamente después del partido de bádminton. (4) En comparación con la bebida placebo, la ingesta de la bebida energética con cafeína incrementó la altura del SJ (34.5±4.7 vs. 36.4±4.3 cm; P < 0.05) y del CMJ (37.7 ± 4.5 vs. 39.5 ± 5.1 cm; P < 0.05) y aumentó el número de aceleraciones totales durante el partido (7395 ± 1594 vs. 7707 ± 2033 aceleraciones; P < 0.05). Conclusiones: (1) Existen asimetrías corporales en los jugadores de bádminton de alto nivel, al encontrarse diferencias en los diámetros óseos y en los perímetros entre el lado dominante y no dominante. Al calcular la composición corporal con el lado dominante de los jugadores de bádminton se está sobreestimando el porcentaje óseo e infraestimando el porcentaje muscular. (2) El bádminton está evolucionando hacía rallies más largos con intervalos de descanso mayores, lo que resulta en partidos más largos. (3) El partido de bádminton generó daño muscular, sin embargo, el nivel de daño muscular alcanzado después de un partido de bádminton no produjo una disminución del rendimiento muscular. (4) El uso de una bebida energética con cafeína puede ser una ayuda nutricional eficaz para aumentar el rendimiento en el salto y patrones de actividad durante el juego en jugadores de élite de bádminton. ABSTRACT: This study analyzes the structure of the game and the morphological and physiological parameters in badminton players, investigated in four applied studies. Purpose: The purposes of the study were: (1) To check if there are differences between the dominant and non-dominant side in the anthropometric measures of badminton players at the highest national level and verify if the side of the body where the measurements are performed can influence the calculation of the body composition and the somatotype. (2) To compare the temporal and notational structure in men’s singles matches between the Olympic Games in Beijing and London to observe the evolution of badminton between 2008 and 2012. (3) To asses the occurrence of muscle damage after a simulated badminton match and its influence on physical and haematological parameters. (4) To determine the effectiveness of a commercially available energy drink that contains caffeine to improve match performance in elite badminton players. Methods: A total of 78 elite badminton players (63 men and 15 women) participated in this thesis to characterize the sport of badminton distributed in three studies and 40 sets of men’s singles badminton analyzed using the official videos of the Olympic Games of Beijing 2008 and London 2012. In the first study skinfolds, diameters, lengths and perimeters of the dominant and non-dominant side of the players were measured and body composition and somatotype were calculated. In the second study the temporal and notational factors were analyzed. In the third study maximal isometric force and speed in badminton specific tests were measured and blood samples were taken before and after a badminton match of 45 minutes. In the fourth study, a double-blind, randomized placebo-controlled experiment, players ingested 3 mg of caffeine per kilogram of body mass in the form of an energy drink or an identical drink with no caffeine content (placebo). In this study different badminton specific tests (jump tests, handgrip force test and an agility test) were recorded and a simulated badminton match of 45 minutes was played. Results and discussion: (1) The percentage of bone was higher when calculated from measurements of the dominant body side (dominant = 16.37 ± 1.14 %, nondominant = 15.66 ± 1.12 %; P < 0.001), while the muscle percentage was higher when calculated from measurements of the non-dominant side (dominant = 49.39 ± 2.60 %, non-dominant = 50.18 ± 2.69%; P < 0.001). (2) Set duration (Beijing: 1124.6 ± 229.9 s vs. London: 1260.3 ± 267.1 s.; P < 0.05), real time played (Beijing: 306.9 ± 45.7 s vs. London: 354.7 ± 86.5 s; P < 0.05), rally time, shots per rally, rest time at point 11, rest time between sets and shots per rally were significantly higher in London than in Beijing. (3) A simulated badminton match did not affect maximal isometric force (Pre: 1263.6 ± 245.5, Post: 1290.8 ± 240.4 N) or specific badminton speed (Pre: 21.0 ± 1.7, Post: 20.9 ± 1.8 s), however, concentrations of myoglobin and creatine kinase in blood increased from 26.5 ± 11.6 to 197.3 ± 70.2 μg • L-1 and from 258.6 ± 192.2 to 466.0 ± 296.5 U • L-1, respectively after the badminton match. (4) In comparison to the placebo drink, the caffeinated beverage increased height in the SJ (34.5±4.7 vs. 36.4±4.3 cm; P < 0.05) and in the CMJ (37.7 ± 4.5 vs. 39.5 ± 5.1 cm; P < 0.05) and increased the number of total accelerations during the match (7395 ± 1594 vs. 7707 ± 2033 accelerations; P < 0.05). Conclusions: (1) Body asymmetries were found in high level badminton players, due to the differences found in bone diameters and perimeters between the dominant and non-dominant body side. When calculating body composition with the dominant side of the badminton players we are overestimating bone percentage and underestimating muscle percentage. (2) Badminton is evolving towards longer rallies with greater rest intervals, resulting in longer matches. (3) The badminton match generated muscle damage, however, the level of muscle damage reached after a badminton match did not produce a decrease in muscle performance. (4) The ingestion of an energy drink containing caffeine might be an effective ergogenic nutritional supplement to increase jump performance and activity patterns during the game in elite badminton players.