2006 · 12 citations · 13 references
Cluster ComputingEngineeringMicroscopyImage AnalysisInverse MappingData SciencePattern RecognitionConfocal Microscopy Instruments-Large Image CorrectionWarping ComputationsVisual ComputingCluster EnvironmentParallel ComputingRadiologyHealth SciencesMassively-parallel ComputingImage FormationMachine VisionMedical ImagingComputer EngineeringComputer ScienceImage StitchingMedical Image ComputingVisual AnalysisData-intensive ComputingImage EnhancementComputer VisionMicroscope Image ProcessingBioimage AnalysisBiomedical ImagingImage ProcessorParallel ProgrammingImage Segmentation
This paper is concerned with efficient execution of a pipeline of data processing operations on very large images obtained from confocal microscopy instruments. We describe parallel, out-of-core algorithms for each operation in this pipeline. One of the challenging steps in the pipeline is the warping operation using inverse mapping based methods. We propose and investigate a set of algorithms to handle the warping computations on storage clusters. Our experimental results show that the proposed approaches are scalable both in terms of number of processors and the size of images.
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Distributed processing of very large datasets with DataCutter
Michael D. Beynon, Tahsin Kurç, Ümit V. Çatalyürek et al. · Parallel Computing · 2001 · 185 citations
Digital dynamic telepathology--the Virtual Microscope.
Asmara Afework, Michael D. Beynon, Félix Andrés Restrepo Bustamante et al. · PubMed · 1998 · 137 citations
Telemetry, Engineering, Microscopy +18