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Introduction: The Need for Spatial Statistics, D.A. Griffith | |
Components of Geographic Information and Analysis | |
Background: The Importance of Locational Information | |
Background: Statistical Estimator Properties | |
Organization of the Book | |
Summary | |
References | |
Visualization of Spatial Dependence: An Elementary View of Spatial Autocorrelation, I.R. Vasiliev | |
Editorial Note | |
Introduction | |
The Spatial Mean and Other Basic Concepts | |
Spatial Autocorrelation | |
Map Complexity | |
Map Representations of Changes in Space and Time | |
Summary: Rules-of-Thumb for Spatial Autocorrelation | |
References | |
Spatial Sampling, S.V. Stehman and W.S. Overton | |
Introduction | |
Spatial Universes and Populations | |
Sampling Fundamentals | |
Sampling a Continuous Universe | |
Sampling Spatially Distributed Objects via Areal Samples of the Continuous Universe | |
Inference in Spatial Sampling | |
Applications of Spatial Sampling | |
Empirical Evaluation of Sampling Strategies | |
Summary | |
References | |
Some Guidelines for Specifying the Geopraphic Weights Matrix Contained in Spatial Statistical Models, D.A. Griffith | |
Introduction | |
Background | |
Evaluation Criteria | |
Rules-of-Thumb Implications | |
References | |
Aggregation Effects in Geo-Referenced Data, D.W.S. Wong | |
Spatial Dependency of Spatial Data Analysis | |
Source of the MAUP: Spatial Dependence and the Averaging Process | |
General Impacts of the MAUP on Spatial Data | |
Approaches to "Solving" the MAUP | |
Guidelines for Analyzing Data From Different Scales | |
Conclusions | |
References | |
Implementing Spatial Statistics on Parallel Computers, B. Li | |
Introduction | |
A Brief Introduction to Parallel Processing | |
Software Models for Parallel Processing | |
Parallel Implementations | |
Performance | |
Summary | |
References | |
Appendix I: Test Statistics for Spatial Autocorrelation Coefficients | |
Appendix II: Source Code | |
Spatial Statistics and GIS Applied to Internal Migration in Rwanda, Central Africa, D.G. Brown | |
Introduction | |
Study Area | |
Database Description | |
GIS Data Management | |
Traditional Regression Analysis | |
Mapping Residuals | |
Spatial Statistical Model | |
Conclusions | |
References | |
Spatial Statistical Modeling of Regional Fertility Rates: A Case Study of He-Nan Province, China, H.M. Feng | |
Introduction | |
Preliminary Considerations of the Spatial Statistical Application | |
The Dataset and the Model Specification | |
Explicit Variables | |
A Classical Linear Regression Model of Explicit Variables | |
In Search of a Spatial Pattern | |
Interpretation and Conclusions | |
References | |
Appendix I: Description of Data Set | |
Appendix II: Maps | |
Appendix III: Scatter-Plots | |
Spatial Statistical/Econometric Versions of Simple Urban Population Density Models, D.A. Griffith and A. Can | |
Introduction and Background | |
The Selected Metropolitan Landscapes | |
Preliminaries for Estimating the Autoregressive Model | |
The Estimated Population Density Models | |
Implementation Findings | |
References | |
Spatial Statistics for Analysis of Variance of Agronomic Field Trials, D.S. Long | |
The Example Data Set | |
Goals of the Case Study | |
The Autoregressive Response Model | |
Calculating the Moran Coefficient | |
Calculating the Necessary Eigenvalues | |
Estimating the Jacobian Term | |
Estimating an Autoregressive Response Model | |
Comparison of AR-based ANOVA and Conventional ANOVA | |
Conclusions | |
Acknowledgments | |
References | |
Index |