878 resultados para Prospective temporal control


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An analysis of the reset of visual cortical circuits responsible for the binding or segmentation of visual features into coherent visual forms yields a model that explains properties of visual persistence. The reset mechanisms prevent massive smearing or visual percepts in response to rapidly moving images. The model simulates relationships among psychophysical data showing inverse relations of persistence to flash luminance and duration, greaterr persistence of illusory contours than real contours, a U-shaped temporal function for persistence of illusory contours, a reduction of persistence: due to adaptation with a stimulus of like orientation, an increase or persistence due to adaptation with a stimulus of perpendicular orientation, and an increase of persistence with spatial separation of a masking stimulus. The model suggests that a combination of habituative, opponent, and endstopping mechanisms prevent smearing and limit persistence. Earlier work with the model has analyzed data about boundary formation, texture segregation, shape-from-shading, and figure-ground separation. Thus, several types of data support each model mechanism and new predictions are made.

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Neural network models of working memory, called Sustained Temporal Order REcurrent (STORE) models, are described. They encode the invariant temporal order of sequential events in short term memory (STM) in a way that mimics cognitive data about working memory, including primacy, recency, and bowed order and error gradients. As new items are presented, the pattern of previously stored items is invariant in the sense that, relative activations remain constant through time. This invariant temporal order code enables all possible groupings of sequential events to be stably learned and remembered in real time, even as new events perturb the system. Such a competence is needed to design self-organizing temporal recognition and planning systems in which any subsequence of events may need to be categorized in order to to control and predict future behavior or external events. STORE models show how arbitrary event sequences may be invariantly stored, including repeated events. A preprocessor interacts with the working memory to represent event repeats in spatially separate locations. It is shown why at least two processing levels are needed to invariantly store events presented with variable durations and interstimulus intervals. It is also shown how network parameters control the type and shape of primacy, recency, or bowed temporal order gradients that will be stored.

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The amygdala is a limbic structure that is involved in many of our emotions and processing of these emotions such as fear, anger and pleasure. Conditions such as anxiety, autism, and also epilepsy, have been linked to abnormal functioning of the amygdala, owing to improper neurodevelopment or damage. This thesis investigated the cellular and molecular changes in the amygdala in models of temporal lobe epilepsy (TLE) and maternal immune activation (MIA). The kainic acid (KA) model of temporal lobe epilepsy (TLE) was used to induce Ammon’s-horn sclerosis (AHS) and to investigate behavioural and cytoarchitectural changes that occur in the amygdala related to Neuropeptide Y1 receptor expression. Results showed that KA-injected animals showed increased anxiety-like behaviours and displayed histopathological hallmarks of AHS including CA1 ablation, granule cell dispersion, volume reduction and astrogliosis. Amygdalar volume and neuronal loss was observed in the ipsilateral nuclei which was accompanied by astrogliosis. In addition, a decrease in Y1 receptor expressing cells in the ipsilateral CA1 and CA3 sectors of the hippocampus, ipsi- and contralateral granule cell layer of the dentate gyrus and ipsilateral central nucleus of the amygdala was found, consistent with a reduction in Y1 receptor protein levels. The results suggest that plastic changes in hippocampal and/or amygdalar Y1 receptor expression may negatively impact anxiety levels. Gamma-aminobutyric acid (GABA) is the main inhibitory neurotransmitter in the brain and tight regulation and appropriate control of GABA is vital for neurochemical homeostasis. GABA transporter-1 (GAT-1) is abundantly expressed by neurones and astrocytes and plays a key role in GABA reuptake and regulation. Imbalance in GABA homeostasis has been implicated in epilepsy with GAT-1 being an attractive pharmacological target. Electron microscopy was used to examine the distribution, expression and morphology of GAT-1 expressing structures in the amygdala of the TLE model. Results suggest that GAT-1 was preferentially expressed on putative axon terminals over astrocytic processes in this TLE model. Myelin integrity was examined and results suggested that in the TLE model myelinated fibres were damaged in comparison to controls. Synaptic morphology was studied and results suggested that asymmetric (excitatory) synapses occurred more frequently than symmetric (inhibitory) synapses in the TLE model in comparison to controls. This study illustrated that the amygdala undergoes ultrastructural alterations in this TLE model. Maternal immune activation (MIA) is a risk factor for neurodevelopmental disorders such as autism, schizophrenia and also epilepsy. MIA was induced at a critical window of amygdalar development at E12 using bacterial mimetic lipopolysaccharide (LPS). Results showed that MIA activates cytokine, toll-like receptor and chemokine expression in the fetal brain that is prolonged in the postnatal amygdala. Inflammation elicited by MIA may prime the fetal brain for alterations seen in the glial environment and this in turn have deleterious effects on neuronal populations as seen in the amygdala at P14. These findings may suggest that MIA induced during amygdalar development may predispose offspring to amygdalar related disorders such as heightened anxiety, fear impairment and also neurodevelopmental disorders.

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BACKGROUND: The incidence and epidemiology of invasive fungal infections (IFIs), a leading cause of death among hematopoeitic stem cell transplant (HSCT) recipients, are derived mainly from single-institution retrospective studies. METHODS: The Transplant Associated Infections Surveillance Network, a network of 23 US transplant centers, prospectively enrolled HSCT recipients with proven and probable IFIs occurring between March 2001 and March 2006. We collected denominator data on all HSCTs preformed at each site and clinical, diagnostic, and outcome information for each IFI case. To estimate trends in IFI, we calculated the 12-month cumulative incidence among 9 sequential subcohorts. RESULTS: We identified 983 IFIs among 875 HSCT recipients. The median age of the patients was 49 years; 60% were male. Invasive aspergillosis (43%), invasive candidiasis (28%), and zygomycosis (8%) were the most common IFIs. Fifty-nine percent and 61% of IFIs were recognized within 60 days of neutropenia and graft-versus-host disease, respectively. Median onset of candidiasis and aspergillosis after HSCT was 61 days and 99 days, respectively. Within a cohort of 16,200 HSCT recipients who received their first transplants between March 2001 and September 2005 and were followed up through March 2006, we identified 718 IFIs in 639 persons. Twelve-month cumulative incidences, based on the first IFI, were 7.7 cases per 100 transplants for matched unrelated allogeneic, 8.1 cases per 100 transplants for mismatched-related allogeneic, 5.8 cases per 100 transplants for matched-related allogeneic, and 1.2 cases per 100 transplants for autologous HSCT. CONCLUSIONS: In this national prospective surveillance study of IFIs in HSCT recipients, the cumulative incidence was highest for aspergillosis, followed by candidiasis. Understanding the epidemiologic trends and burden of IFIs may lead to improved management strategies and study design.

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Animals must coordinate development with fluctuating nutrient availability. Nutrient availability governs post-embryonic development in Caenorhabditis elegans: larvae that hatch in the absence of food do not initiate post-embryonic development but enter "L1 arrest" (or "L1 diapause") and can survive starvation for weeks, while rapidly resume normal development once get fed. Insulin-like signaling (IIS) has been shown to be a key regulator of L1 arrest and recovery. However, the C. elegans genome encodes 40 insulin-like peptides (ILPs), and it is unknown which peptides participate in nutritional control of L1 arrest and recovery. Work in other contexts has identified putative receptor agonists and antagonists, but the extent of specificity versus redundancy is unclear beyond this distinction.

We measured mRNA expression dynamics with high temporal resolution for all 40 insulin-like genes during entry into and recovery from L1 arrest. Nutrient availability influences expression of the majority of insulin-like genes, with variable dynamics suggesting complex regulation. We identified 13 candidate agonists and 8 candidate antagonists based on expression in response to nutrient availability. We selected ten candidate agonists (daf-28, ins-3, ins-4, ins-5, ins-6, ins-7, ins-9, ins-26, ins-33 and ins-35) for further characterization in L1 stage larvae. We used destabilized reporter genes to determine spatial expression patterns. Expression of candidate agonists was largely overlapping in L1 stage larvae, suggesting a role of the intestine, chemosensory neurons ASI and ASJ, and the interneuron PVT in systemic control of L1 development. Transcriptional regulation of candidate agonists was most significant in the intestine, as if nutrient uptake was a more important influence on transcription than sensory perception. Scanning in the 5' upstream promoter region of these 40 ILPs, We found that transcription factor PQM-1 and GATA putative binding sites are depleted in the promoter region of antagonists. A novel motif was also found to be over-represented in ILPs.

Phenotypic analysis of single and compound deletion mutants did not reveal effects on L1 recovery/developmental dynamics, though simultaneous disruption of ins-4 and daf-28 extended survival of L1 arrest without enhancing thermal tolerance, while overexpression of ins-4, ins-6 or daf-28 shortened L1 survival. Simultaneous disruption of several ILPs showed a temperature independent, transient dauer phenotype. These results revealed the relative redundancy and specificity among agonistic ILPs.

TGF- β and steroid hormone (SH) signaling have been reported to control the dauer formation along with IIS. Our preliminary results suggest they may also mediate the IIS control of L1 arrest and recovery, as the expression of several key components of TGF-β and SH signaling pathway genes are negatively regulated by DAF-16, and loss-of-function of these genes partially represses daf-16 null phenotype in L1 arrest, and causes a retardation in L1 development.

In summary, my dissertation study focused on the IIS, characterized the dynamics and sites of ILPs expression in response to nutrient availability, revealed the function of specific agonistic ILPs in L1 arrest, and suggested potential cross-regulation among IIS, TGF-β signaling and SH signaling in controlling L1 arrest and recovery. These findings provide insights into how post-embryonic development is governed by insulin-like signaling and nutrient availability.

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Cells respond to environmental stimuli by fine-tuned regulation of gene expression. Here we investigated the dose-dependent modulation of gene expression at high temporal resolution in response to nutrient and stress signals in yeast. The GAL1 activity in cell populations is modulated in a well-defined range of galactose concentrations, correlating with a dynamic change of histone remodeling and RNA polymerase II (RNAPII) association. This behavior is the result of a heterogeneous induction delay caused by decreasing inducer concentrations across the population. Chromatin remodeling appears to be the basis for the dynamic GAL1 expression, because mutants with impaired histone dynamics show severely truncated dose-response profiles. In contrast, the GRE2 promoter operates like a rapid off/on switch in response to increasing osmotic stress, with almost constant expression rates and exclusively temporal regulation of histone remodeling and RNAPII occupancy. The Gal3 inducer and the Hog1 mitogen-activated protein (MAP) kinase seem to determine the different dose-response strategies at the two promoters. Accordingly, GAL1 becomes highly sensitive and dose independent if previously stimulated because of residual Gal3 levels, whereas GRE2 expression diminishes upon repeated stimulation due to acquired stress resistance. Our analysis reveals important differences in the way dynamic signals create dose-sensitive gene expression outputs.

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Las actividades humanas impactan fuertemente sobre los procesos de los ecosistemas. En los sistemas ganaderos, las actividades humanas intentan maximizar el flujo de energía hacia la productividad secundaria. Las consecuencias sobre la transferencia de energía desde la productividad primaria neta aérea (PPNA) a la producción secundaria neta no están totalmente establecidas. Varios estudios describieron la relación entre la carga animal y la PPNA a lo largo de gradientes regionales de recursos, tanto en sistemas naturales como ganaderos. Pero persisten al menos tres vacíos de conocimiento sobre los sistemas ganaderos que fueron abordados en esta tesis. En primer lugar, no se conocía la relación entre la producción secundaria neta y la PPNA, a lo largo de un gradiente regional de recursos y se desconocía la medida en que la actividad humana afectaba diferencialmente a los procesos parciales entre la PPNA y la producción secundaria : la eficiencia de cosecha (consumo / PPNA) y la eficiencia de producción (producción secundaria / consumo). En segundo lugar, no se conocía la relación entre la variabilidad interanual del flujo de entrada de energía, la PPNA, y el de salida, la producción secundaria neta, entre sitios que difieren por la disponibilidad de recursos o por el impacto humano. Asociado a esto existían escasos antecedentes sobre la relación entre producción secundaria, o algún determinante de esta, y la disponibilidad de recursos a través del tiempo. En particular, no existían evidencias de si esta relación temporal cambiaba a lo largo de un gradiente espacial y regional de recursos. En tercer lugar, eran muy escasos los antecedentes sobre las variaciones estacionales del índice de cosecha, y la incidencia de la carga y la PPNA sobre tales variaciones. Para abordar los primeros dos vacíos de conocimiento se compiló información de precipitación, carga animal y producción secundaria, tanto de sistemas naturales como de sistemas ganaderos. La información de sistemas naturales se obtuvo de búsquedas bibliográficas y compilaciones a nivel mundial ya publicadas. La de los sistemas ganaderos se obtuvo de dos fuentes. La primera, contempló información de 113 establecimientos ubicados a lo largo de un amplio gradiente de precipitación regional el de Argentina, pertencecientes en su mayoría la movimiento CREA. La segunda, se realizó a partir de la información brindada por el plan nacional de vacunación de aftosa para departamentos ubicados al norte del río Colorado. Para este último análisis, se estimó la PPNA a partir de información satelital, usando la lógica del modelo propuesto por Monteith (...) Para abordar el tercer vacío de conocimiento, se llevó adelante un ensayo en el que se manipularon la PPNA y su calidad, a través de dos comunidades vegetales diferentes, y la carga animal, a través de tres niveles. Este ensayo se condujo a lo largo de un año para evaluar la dinámica estacional del índice de cosecha, y al mismo tiempo identificar los factores que la regulan. En relación al primer vacío, la relación entre la producción secundaria neta y la PPNA mostró un patrón unimodal. A su vez se observó que a igual PPNA la producción secundaria neta de los sistemas ganaderos fue mayor a la de los naturales. Este incremento de la producción secundaria se debió en mayor medida a un aumento del índice de cosecha y en menor medida a un aumento en la eficiencia de producción. En relación al segundo vacío, la variabilidad interanual de la lluvia, principal control abiótico del flujo de entrada, no se relacionó significativamente con la variabilidad de un componente del siguiente nivel trófico, la carga animal, tanto en sistemas naturales como ganaderos. Sin embargo, la variabilidad de la carga animal de los naturales fue mayor que la de los ganaderos. En estos últimos la variabilidad de la PPNA, fue el doble que la de la carga animal (...) En relación al tercer vacío, se mostró que el principal control de la variación estacional del índice de cosecha fue la PPNA. Esta tesis representa la primera evidencia del impacto de la introducción de herbívoros exóticos a lo largo de un gradiente regional sobre el flujo desde la PPNA a la producción secundaria neta y brinda una de las pocas evaluaciones sobre el impacto humano sobre la estabilidad de este flujo. Finalmente, se desarrolló un modelo que permitiría mejorar las estimaciones de carga animal al relacionar la dinámica del índice de cosecha con la biomasa acumulada estimada a partir de la PPNA acumulada por estación del año.

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Las actividades humanas impactan fuertemente sobre los procesos de los ecosistemas. En los sistemas ganaderos, las actividades humanas intentan maximizar el flujo de energía hacia la productividad secundaria. Las consecuencias sobre la transferencia de energía desde la productividad primaria neta aérea (PPNA)a la producción secundaria neta no están totalmente establecidas. Varios estudios describieron la relación entre la carga animal y la PPNA a lo largo de gradientes regionales de recursos, tanto en sistemas naturales como ganaderos. Pero persisten al menos tres vacíos de conocimiento sobre los sistemas ganaderos que fueron abordados en esta tesis. En primer lugar, no se conocía la relación entre la producción secundaria neta y la PPNA, a lo largo de un gradiente regional de recursos y se desconocía la medida en que la actividad humana afectaba diferencialmente a los procesos parciales entre la PPNA y la producción secundaria : la eficiencia de cosecha (consumo / PPNA)y la eficiencia de producción (producción secundaria / consumo). En segundo lugar, no se conocía la relación entre la variabilidad interanual del flujo de entrada de energía, la PPNA, y el de salida, la producción secundaria neta, entre sitios que difieren por la disponibilidad de recursos o por el impacto humano. Asociado a esto existían escasos antecedentes sobre la relación entre producción secundaria, o algún determinante de esta, y la disponibilidad de recursos a través del tiempo. En particular, no existían evidencias de si esta relación temporal cambiaba a lo largo de un gradiente espacial y regional de recursos. En tercer lugar, eran muy escasos los antecedentes sobre las variaciones estacionales del índice de cosecha, y la incidencia de la carga y la PPNA sobre tales variaciones. Para abordar los primeros dos vacíos de conocimiento se compiló información de precipitación, carga animal y producción secundaria, tanto de sistemas naturales como de sistemas ganaderos. La información de sistemas naturales se obtuvo de búsquedas bibliográficas y compilaciones a nivel mundial ya publicadas. La de los sistemas ganaderos se obtuvo de dos fuentes. La primera, contempló información de 113 establecimientos ubicados a lo largo de un amplio gradiente de precipitación regional el de Argentina, pertencecientes en su mayoría la movimiento CREA. La segunda, se realizó a partir de la información brindada por el plan nacional de vacunación de aftosa para departamentos ubicados al norte del río Colorado. Para este último análisis, se estimó la PPNA a partir de información satelital, usando la lógica del modelo propuesto por Monteith (...)Para abordar el tercer vacío de conocimiento, se llevó adelante un ensayo en el que se manipularon la PPNA y su calidad, a través de dos comunidades vegetales diferentes, y la carga animal, a través de tres niveles. Este ensayo se condujo a lo largo de un año para evaluar la dinámica estacional del índice de cosecha, y al mismo tiempo identificar los factores que la regulan. En relación al primer vacío, la relación entre la producción secundaria neta y la PPNA mostró un patrón unimodal. A su vez se observó que a igual PPNA la producción secundaria neta de los sistemas ganaderos fue mayor a la de los naturales. Este incremento de la producción secundaria se debió en mayor medida a un aumento del índice de cosecha y en menor medida a un aumento en la eficiencia de producción. En relación al segundo vacío, la variabilidad interanual de la lluvia, principal control abiótico del flujo de entrada, no se relacionó significativamente con la variabilidad de un componente del siguiente nivel trófico, la carga animal, tanto en sistemas naturales como ganaderos. Sin embargo, la variabilidad de la carga animal de los naturales fue mayor que la de los ganaderos. En estos últimos la variabilidad de la PPNA, fue el doble que la de la carga animal (...)En relación al tercer vacío, se mostró que el principal control de la variación estacional del índice de cosecha fue la PPNA. Esta tesis representa la primera evidencia del impacto de la introducción de herbívoros exóticos a lo largo de un gradiente regional sobre el flujo desde la PPNA a la producción secundaria neta y brinda una de las pocas evaluaciones sobre el impacto humano sobre la estabilidad de este flujo. Finalmente, se desarrolló un modelo que permitiría mejorar las estimaciones de carga animal al relacionar la dinámica del índice de cosecha con la biomasa acumulada estimada a partir de la PPNA acumulada por estación del año.

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Geochemical evidence invokes anoxic deep oceans until the terminal Neoproterozoic similar to 0.55 Ma, despite oxygenation of Earth's atmosphere nearly 2 Gyr earlier. Marine sediments from the intervening period suggest predominantly ferruginous (anoxic Fe(II)-rich) waters, interspersed with euxinia (anoxic H2S-rich conditions) along productive continental margins. Today, sustained biotic H2S production requires NO3- depletion because denitrifiers outcompete sulphate reducers. Thus, euxinia is rare, only occurring concurrently with (steady state) organic carbon availability when N-2-fixers dominate the production in the photic zone. Here we use a simple box model of a generic Proterozoic coastal upwelling zone to show how these feedbacks caused the mid-Proterozoic ocean to exhibit a spatial/temporal separation between two states: photic zone NO3- with denitrification in lower anoxic waters, and N-2-fixation- driven production overlying euxinia. Interchange between these states likely explains the varying H2S concentration implied by existing data, which persisted until the Neoproterozoic oxygenation event gave rise to modern marine biogeochemistry.

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In marine environments, macrofauna living in or on the sediment surface may alter the structure, diversity and function of benthic microbial communities. In particular, microbial nitrogen (N)-cycling processes may be enhanced by the activity of large bioturbating organisms. Here, we study the effect of the burrowing mud shrimp Upogebia deltaura upon temporal variation in the abundance of genes representing key N-cycling functional guilds. The abundance of bacterial genes representing different N-cycling guilds displayed different temporal patterns in burrow sediments in comparison with surface sediments, suggesting that the burrow provides a unique environment where bacterial gene abundances are influenced directly by macrofaunal activity. In contrast, the abundances of archaeal ammonia oxidizers varied temporally but were not affected by bioturbation, indicating differential responses between bacterial and archaeal ammonia oxidizers to environmental physicochemical controls. This study highlights the importance of bioturbation as a control over the temporal variation in nitrogen-cycling microbial community dynamics within coastal sediments.

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Objective: To determine the epidemiology of out of hospital sudden cardiac death (OHSCD) in Belfast from 1 August 2003 to 31 July 2004.

Design: Prospective examination of out of hospital cardiac arrests by using the Utstein style and necropsy reports. World Health Organization criteria were applied to determine the number of sudden cardiac deaths.

Results: Of 300 OHSCDs, 197 (66%) in men, mean age (SD) 68 (14) years, 234 (78%) occurred at home. The emergency medical services (EMS) attended 279 (93%). Rhythm on EMS arrival was ventricular fibrillation (VF) in 75 (27%). The call to response interval (CRI) was mean (SD) 8 (3) minutes. Among patients attended by the EMS, 9.7% were resuscitated and 7.2% survived to leave hospital alive. The CRI for survivors was mean (SD) 5 (2) minutes and for non-survivors, 8 (3) minutes (p < 0.001). Ninety one (30%) OHSCDs were witnessed; of these 91 patients 48 (53%) had VF on EMS arrival. The survival rate for witnessed VF arrests was 20 of 48 (41.7%): all 20 survivors had VF as the presenting rhythm and CRI ? 7 minutes. The European age standardised incidence for OHSCD was 122/100 000 (95% confidence interval 111 to 133) for men and 41/100 000 (95% confidence interval 36 to 46) for women.

Conclusion: Despite a 37% reduction in heart attack mortality in Ireland over the past 20 years, the incidence of OHSCD in Belfast has not fallen. In this study, 78% of OHSCDs occurred at home.

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The design, construction and subsequent operation of the 75 kW oscillating water column wave power plant on the Isle of Islay has provided a significant insight into the practicality of wave power conversion. The development of wave power plant poses a significant design and construction challenge for not only civil but also mechanical and electrical engineers. The plant must withstand the immense forces imposed during storms, yet efficiently convert the slow cyclic motion of waves into a useful energy source such as electricity and do so at a price competitive with other forms of generation. In addition, the hostile marine environment hampers the construction process and the variability of the wave resource poses problems for electrical control and grid integration. Many sceptics consider wave power conversion to be too difficult, too expensive and too variable to justify the effort and expense necessary to develop this technology. However, the authors contend that with modular wave power systems developed from the practical experience gained with the Islay plant, wave power is a viable technology with a considerable world market potential. However, this technology is still at the early stages of development and will require the construction of a number of different prototypes before there is extensive commercial exploitation.

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Estimating a time interval and temporally coordinating movements in space are fundamental skills, but the relationships between these different forms of timing, and the neural processes that they incur, are not well understood. While different theories have been proposed to account for time perception, time estimation, and the temporal patterns of coordination, there are no general mechanisms which unify these various timing skills. This study considers whether a model of perceptuo-motor timing, the tau(GUIDE), can also describe how certain judgements of elapsed time are made. To evaluate this, an equation for determining interval estimates was derived from the tau(GUIDE) model and tested in a task where participants had to throw a ball and estimate when it would hit the floor. The results showed that in accordance with the model, very accurate judgements could be made without vision (mean timing error -19.24 msec), and the model was a good predictor of skilled participants' estimate timing. It was concluded that since the tau(GUIDE) principle provides temporal information in a generic form, it could be a unitary process that links different forms of timing.

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Moving to a rhythm necessitates precise timing between the movement of the chosen limb and the timing imposed by the beats. However, the temporal information specifying the moment when a beat will sound (the moment onto which one must synchronise one's movement) is not continuously provided by the acoustic array. Because of this informational void, the actors need some form of prospective information that will allow them to act sufficiently ahead of time in order to get their hand in the right place at the right time. In this acoustic interception study, where participants were asked to move between two targets in such a way that they arrived and stopped in the target zone at the same time as a beat sounded, we tested a model derived from tau-coupling theory (Lee DN (1998) Ecol Psychol 10:221-250). This model attempts to explain the form of a potential timing guide that specifies the duration of the inter-beat intervals and also describes how this informational guide can be used in the timing and guidance of movements. The results of our first experiment show that, for inter-beat intervals of less than 3 s, a large proportion of the movement (over 70%) can be explained by the proposed model. However, a second experiment, which augments the time between beats so that it surpasses 3 s, shows a marked decline in the percentage of information/movement coupling. A close analysis of the movement kinematics indicates a lack of control and anticipation in the participants' movements. The implications of these findings, in light of other research studies, are discussed.

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The emission characteristics of intense laser driven protons are controlled using ultrastrong (of the order of 10(9) V/m) electrostatic fields varying on a few ps time scale. The field structures are achieved by exploiting the high potential of the target (reaching multi-MV during the laser interaction). Suitably shaped targets result in a reduction in the proton beam divergence, and hence an increase in proton flux while preserving the high beam quality. The peak focusing power and its temporal variation are shown to depend on the target characteristics, allowing for the collimation of the inherently highly divergent beam and the design of achromatic electrostatic lenses.