958 research outputs found
A martingale analysis of first passage times of time-dependent Wiener diffusion models
Research in psychology and neuroscience has successfully modeled decision
making as a process of noisy evidence accumulation to a decision bound. While
there are several variants and implementations of this idea, the majority of
these models make use of a noisy accumulation between two absorbing boundaries.
A common assumption of these models is that decision parameters, e.g., the rate
of accumulation (drift rate), remain fixed over the course of a decision,
allowing the derivation of analytic formulas for the probabilities of hitting
the upper or lower decision threshold, and the mean decision time. There is
reason to believe, however, that many types of behavior would be better
described by a model in which the parameters were allowed to vary over the
course of the decision process.
In this paper, we use martingale theory to derive formulas for the mean
decision time, hitting probabilities, and first passage time (FPT) densities of
a Wiener process with time-varying drift between two time-varying absorbing
boundaries. This model was first studied by Ratcliff (1980) in the two-stage
form, and here we consider the same model for an arbitrary number of stages
(i.e. intervals of time during which parameters are constant). Our calculations
enable direct computation of mean decision times and hitting probabilities for
the associated multistage process. We also provide a review of how martingale
theory may be used to analyze similar models employing Wiener processes by
re-deriving some classical results. In concert with a variety of numerical
tools already available, the current derivations should encourage mathematical
analysis of more complex models of decision making with time-varying evidence
Strong Gravitational Lensing by Sgr A*
In recent years, there has been increasing recognition of the potential of
the galactic center as a probe of general relativity in the strong field. There
is almost certainly a black hole at Sgr A* in the galactic center, and this
would allow us the opportunity to probe dynamics near the exterior of the black
hole. In the last decade, there has been research into extreme gravitational
lensing in the galactic center. Unlike in most applications of gravitational
lensing, where the bending angle is of the order of several arc seconds, very
large bending angles are possible for light that closely approaches a black
hole. Photons may even loop multiple times around a black hole before reaching
the observer. There have been many proposals to use light's close approach to
the black hole as a probe of the black hole metric. Of particular interest is
the property of light lensed by the S stars orbiting in the galactic center.
This paper will review some of the attempts made to study extreme lensing as
well as extend the analysis of lensing by S stars. In particular, we are
interested in the effect of a Reissner-Nordstrom like 1/r^2 term in the metric
and how this would affect the properties of relativistic images.Comment: 13 pages, 9 figures. Submitted as invited review article for the GR19
issue of CQ
Thalamic inputs to dorsomedial striatum are involved in inhibitory control: evidence from the five-choice serial reaction time task in rats
Rationale
Corticostriatal circuits are widely implicated in the top-down control of attention including inhibitory control and behavioural flexibility. However, recent neurophysiological evidence also suggests a role for thalamic inputs to striatum in behaviours related to salient, reward-paired cues.
Objectives
Here, we used designer receptors exclusively activated by designer drugs (DREADDs) to investigate the role of parafascicular (Pf) thalamic inputs to the dorsomedial striatum (DMS) using the five-choice serial reaction time task (5CSRTT) in rats.
Methods
The 5CSRTT requires sustained attention in order to detect spatially and temporally distributed visual cues and provides measures of inhibitory control related to impulsivity (premature responses) and compulsivity (perseverative responses). Rats underwent bilateral Pf injections of the DREADD vector, AAV2-CaMKIIa-HA-hM4D(Gi)-IRES-mCitrine. The DREADD agonist, clozapine N-oxide (CNO; 1 μl bilateral; 3 μM) or vehicle, was injected into DMS 1 h before behavioural testing. Task parameters were manipulated to increase attention load or reduce stimulus predictability respectively.
Results
We found that inhibition of the Pf-DMS projection significantly increased perseverative responses when stimulus predictability was reduced but had no effect on premature responses or response accuracy, even under increased attentional load. Control experiments showed no effects on locomotor activity in an open field.
Conclusions
These results complement previous lesion work in which the DMS and orbitofrontal cortex were similarly implicated in perseverative responses and suggest a specific role for thalamostriatal inputs in inhibitory control
In the light of directed evolution: Pathways of adaptive protein evolution
Directed evolution is a widely-used engineering strategy for improving the stabilities or biochemical functions of proteins by repeated rounds of mutation and selection. These experiments offer empirical lessons about how proteins evolve in the face of clearly-defined laboratory selection pressures. Directed evolution has revealed that single amino acid mutations can enhance properties such as catalytic activity or stability and that adaptation can often occur through pathways consisting of sequential beneficial mutations. When there are no single mutations that improve a particular protein property experiments always find a wealth of mutations that are neutral with respect to the laboratory-defined measure of fitness. These neutral mutations can open new adaptive pathways by at least 2 different mechanisms. Functionally-neutral mutations can enhance a protein's stability, thereby increasing its tolerance for subsequent functionally beneficial but destabilizing mutations. They can also lead to changes in “promiscuous” functions that are not currently under selective pressure, but can subsequently become the starting points for the adaptive evolution of new functions. These lessons about the coupling between adaptive and neutral protein evolution in the laboratory offer insight into the evolution of proteins in nature
Institutional assessment as an instrument of rationalization back to the school as a formal organisation
O papel central da avaliação, da avaliação institucional e dos
processos de garantia da qualidade de escolas e universidades
nas políticas educacionais é objeto de discussão, também
considerando a reforma do Estado. As teorias da nova gestão
pública e as perspectivas gestionárias são consideradas como
algumas das principais fontes de inspiração e de legitimação no
contexto dominante de uma educação contábil. Dados empíricos
preliminares resultantes do processo de avaliação externa de
escolas básicas e secundárias portuguesas são apresentados
e interpretados de acordo com os principais conceitos e
representações organizacionais de escola presentes nos relatórios
externos. Examinando algumas das imagens e dos significados de
escola, cultura de escola, autonomia, objetivos, liderança e eficácia
presentes nos relatórios de avaliação, o autor releva a importância
das imagens formais, racionais e burocráticas de escolas. Várias
questões de investigação são apresentadas tendo por base aquilo
a que o autor chama o processo da hiperburocratização das
organizações educativas. Algumas dimensões do conceito de
burocracia de Max Weber são revisitadas, em articulação com
perspectivas neocientíficas de garantia da qualidade e com as
tecnologias da informação e comunicação. O autor sugere que
maior relevância deve ser atribuída aos modelos formais e racionais
de interpretação das organizações educativas, pois os processos de
avaliação e de garantia da qualidade estão a contribuir para a
formalização de escolas e universidades e para a intensificação do
seu processo de racionalização, isto é, para a emergência de uma
imagem analítica das escolas como hiperburocracias.The central role of evaluation, institutional assessment and quality
assurance processes of schools and universities in education policy
is object of discussion also considering the reform of the state. New
Public Management theories and managerialist perspectives are
considered some of the main sources of inspiration and legitimation
in the dominant context of an audit education. Preliminary
empirical data from external assessment of Portuguese primary and
secondary schools are introduced and interpreted according to the
main concepts and organizational representations of school found
in external reports. Examining some of the central organizational
images and meanings of school, school culture, autonomy, goals,
leadership and effectiveness included in the external reviews, the
author stresses the importance of formal, rational and bureaucratic
images of schools. Several new research questions are presented
for further inquiry based on the hypothesis of what it is called by
the author the process of hyperbureaucratization of educational
organizations. Some of the main dimensions of the concept of
bureaucracy as presented by Max Weber are revisited in close
relation with neo-scientific approaches of quality assurance and
taking in consideration the use of information and communication
technologies. Accordingly the author suggests that much more
importance must be given to formal and rational models of
interpreting educational organizations because assessment and
quality assurance procedures are contributing to the formalization
of schools and universities and to the intensification of their process
of rationalization, i. e., to the emergence of an analytic image of
schools as hyperbureaucracies.(undefined
Histone degradation in response to DNA damage enhances chromatin dynamics and recombination rates
Nucleosomes are essential for proper chromatin organization and the maintenance of genome integrity. Histones are post-translationally modified and often evicted at sites of DNA breaks, facilitating the recruitment of repair factors. Whether such chromatin changes are localized or genome-wide is debated. Here we show that cellular levels of histones drop 20-40% in response to DNA damage. This histone loss occurs from chromatin, is proteasome-mediated and requires both the DNA damage checkpoint and the INO80 nucleosome remodeler. We confirmed reductions in histone levels by stable isotope labeling of amino acids in cell culture (SILAC)-based mass spectrometry, genome-wide nucleosome mapping and fluorescence microscopy. Chromatin decompaction and increased fiber flexibility accompanied histone degradation, both in response to DNA damage and after artificial reduction of histone levels. As a result, recombination rates and DNA-repair focus turnover were enhanced. Thus, we propose that a generalized reduction in nucleosome occupancy is an integral part of the DNA damage response in yeast that provides mechanisms for enhanced chromatin mobility and homology search.</p
Air quality and error quantity: pollution and performance in a high-skilled, quality-focused occupation
We provide the first evidence that short-term exposure to air pollution affects the work performance of a group of highly-skilled, quality-focused employees. We repeatedly observe the decision-making of individual professional baseball umpires, quasi-randomly assigned to varying air quality across time and space. Unique characteristics of this setting combined with high-frequency data disentangle effects of multiple pollutants and identify previously under-explored acute effects. We find a 1 ppm increase in 3-hour CO causes an 11.5% increase in the propensity of umpires to make incorrect calls and a 10 mg/m3 increase in 12-hour PM2.5 causes a 2.6% increase. We control carefully for a variety of potential confounders and results are supported by robustness and falsification checks
Genomic Nucleotide Sequence of Tomato Asr2, a Second Member of the Stress/Ripening-Induced Asr1 Gene Family
Sensory experience modifies spontaneous state dynamics in a large-scale barrel cortical model
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