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The aim of this Research Topic is to examine theoretical and experimental work directed at a detailed and comprehensive quantitative understanding of neuroanatomy. Integrating such knowledge with functional data should provide a more complete understanding of how the nervous system in different animal species is organized to generate appropriate behaviour. Three main areas will be covered in this issue. Firstly, progress in understanding neuroanatomical structures from applying novel mathematical and statistical methods. Secondly, experimental or computational work providing a quantitative analysis of microcircuit anatomy, cell distributions, cell morphologies, intracellular compartmentalization etc. Thirdly, experimental or computational studies of structural plasticity, and its effect on neural computations, e.g., changes in spine size and synaptic plasticity; changes in axonal projection patterns and cortical representations. Structural plasticity includes plasticity during development, in response to injury or disease and experience-induced plasticity.
Computational neuroscience. --- Neuroanatomy. --- Nerves --- Nervous system --- Anatomy --- Neurobiology --- Computational neurosciences --- Computational biology --- Neurosciences --- Quantitative morphology --- connectomics --- spatial statistics --- Dendrites --- neuronal modelling
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Imagine using an evidence-based risk management model that enables researchers and practitioners alike to analyze the spatial dynamics of crime, allocate resources, and implement custom crime and risk reduction strategies that are transparent, measurable, and effective. Risk Terrain Modeling (RTM) diagnoses the spatial attractors of criminal behavior and makes accurate forecasts of where crime will occur at the microlevel. RTM informs decisions about how the combined factors that contribute to criminal behavior can be targeted, connections to crime can be monitored, spatial vulnerabilities can be assessed, and actions can be taken to reduce worst effects. As a diagnostic method, RTM offers a statistically valid way to identify vulnerable places. To learn more, visit http://www.riskterrainmodeling.com and begin using RTM with the many free tutorials and resources.
Crime analysis --- Spatial analysis (Statistics) --- Crime --- Crime forecasting --- Crime prevention. --- Crime prevention --- Prevention of crime --- Public safety --- Forecasting, Crime --- Social prediction --- Criminal behavior, Prediction of --- City crime --- Crime and criminals --- Crimes --- Delinquency --- Felonies --- Misdemeanors --- Urban crime --- Social problems --- Criminal justice, Administration of --- Criminal law --- Criminals --- Criminology --- Transgression (Ethics) --- Analysis, Spatial (Statistics) --- Correlation (Statistics) --- Spatial systems --- Police administration --- Statistical methods. --- Environmental aspects. --- Geographic information systems. --- Prevention --- Government policy --- Forecasting --- Social aspects --- Analysis --- contexts of crime. --- crime emergence. --- crime exposure. --- crime persistence. --- crime prediction. --- crime. --- criminal behavior. --- criminals. --- custom strategies. --- exposure. --- forecasting crimes. --- identifying risk. --- minimizing risk. --- modeling methods. --- risk management. --- risk reduction. --- rtm. --- spatial dynamics of crime. --- surveillance. --- theory of risky places. --- vulnerable places.
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