Javascript must be enabled to continue!
A flexibly shaped spatial scan statistic for detecting clusters
View through CrossRef
AbstractBackgroundThe spatial scan statistic proposed by Kulldorff has been applied to a wide variety of epidemiological studies for cluster detection. This scan statistic, however, uses a circular window to define the potential cluster areas and thus has difficulty in correctly detecting actual noncircular clusters. A recent proposal by Duczmal and Assunção for detecting noncircular clusters is shown to detect a cluster of very irregular shape that is much larger than the true cluster in our experiences.MethodsWe propose a flexibly shaped spatial scan statistic that can detect irregular shaped clusters within relatively small neighborhoods of each region. The performance of the proposed spatial scan statistic is compared to that of Kulldorff's circular spatial scan statistic with Monte Carlo simulation by considering several circular and noncircular hot-spot cluster models. For comparison, we also propose a new bivariate power distribution classified by the number of regions detected as the most likely cluster and the number of hot-spot regions included in the most likely cluster.ResultsThe circular spatial scan statistics shows a high level of accuracy in detecting circular clusters exactly. The proposed spatial scan statistic is shown to have good usual powers plus the ability to detect the noncircular hot-spot clusters more accurately than the circular one.ConclusionThe proposed spatial scan statistic is shown to work well for small to moderate cluster size, up to say 30. For larger cluster sizes, the method is not practically feasible and a more efficient algorithm is needed.
Springer Science and Business Media LLC
Title: A flexibly shaped spatial scan statistic for detecting clusters
Description:
AbstractBackgroundThe spatial scan statistic proposed by Kulldorff has been applied to a wide variety of epidemiological studies for cluster detection.
This scan statistic, however, uses a circular window to define the potential cluster areas and thus has difficulty in correctly detecting actual noncircular clusters.
A recent proposal by Duczmal and Assunção for detecting noncircular clusters is shown to detect a cluster of very irregular shape that is much larger than the true cluster in our experiences.
MethodsWe propose a flexibly shaped spatial scan statistic that can detect irregular shaped clusters within relatively small neighborhoods of each region.
The performance of the proposed spatial scan statistic is compared to that of Kulldorff's circular spatial scan statistic with Monte Carlo simulation by considering several circular and noncircular hot-spot cluster models.
For comparison, we also propose a new bivariate power distribution classified by the number of regions detected as the most likely cluster and the number of hot-spot regions included in the most likely cluster.
ResultsThe circular spatial scan statistics shows a high level of accuracy in detecting circular clusters exactly.
The proposed spatial scan statistic is shown to have good usual powers plus the ability to detect the noncircular hot-spot clusters more accurately than the circular one.
ConclusionThe proposed spatial scan statistic is shown to work well for small to moderate cluster size, up to say 30.
For larger cluster sizes, the method is not practically feasible and a more efficient algorithm is needed.
Related Results
The Robustness of the Modified H-Statistic in the Test of Comparing Independent Groups
The Robustness of the Modified H-Statistic in the Test of Comparing Independent Groups
The H-statistic is a robust test statistic in comparing the equality of two and more than two independent groups. This statistic is one of a good alternative to the F-statistic in ...
Pemodelan dan Pemetaan Jumlah Penderita Kusta di Jawa Barat dengan Regresi Binomial Negatif dan Flexibly Shaped Spatial Scan Statistic
Pemodelan dan Pemetaan Jumlah Penderita Kusta di Jawa Barat dengan Regresi Binomial Negatif dan Flexibly Shaped Spatial Scan Statistic
Abstract. Flexibly Shaped Spatial Scan Statistics is a statistical scan method used to detect hotspots in a location in the form of points or aggregates. This method will be more f...
Density Based Spatial Clustering of Applications and Spatial Pattern Analysis In Mapping the Distribution of ISPA Disease in Bireuen Regency
Density Based Spatial Clustering of Applications and Spatial Pattern Analysis In Mapping the Distribution of ISPA Disease in Bireuen Regency
ISPA is an infectious disease transmitted through the air. ISPA disease can be detected through the regional distribution maps of disease. ISPA disease can be prevented in the earl...
Spatial and spatio-temporal analysis of malaria cases in Zimbabwe
Spatial and spatio-temporal analysis of malaria cases in Zimbabwe
Abstract
Background
Although effective treatment for malaria is now available, approximately half of the global population remain at risk of the dis...
A model-based scan statistic with enhanced specificity for detecting spatial clusters of high mortality risk
A model-based scan statistic with enhanced specificity for detecting spatial clusters of high mortality risk
Abstract
Detecting geographical areas in a territory with excess mortality is a crucial step to understand health disparities and implement effective public healt...
Spatial clustering of suicide mortality and associated community characteristics in Kanagawa prefecture, Japan, 2011–2017
Spatial clustering of suicide mortality and associated community characteristics in Kanagawa prefecture, Japan, 2011–2017
Abstract
Background
Suicide mortality is high in Japan and early interventional strategies to solve that problem are needed. An accurate evaluation ...
Embedded Clusters in Molecular Clouds
Embedded Clusters in Molecular Clouds
▪ Abstract Stellar clusters are born embedded within giant molecular clouds (GMCs) and during their formation and early evolution are often only visible at infrared wavelengths, b...
Elaboration of a structural, petrophysical and mechanical model of faults in porous sandstones : implication for migration and fluid entrapment
Elaboration of a structural, petrophysical and mechanical model of faults in porous sandstones : implication for migration and fluid entrapment
Élaboration d'un modèle structural, pétrophysique et mécanique de failles dans les grès poreux : implication pour la migration et le piégeage des fluides
La catacla...

