| Literature DB >> 12225585 |
Paul T Spellman1, Michael Miller, Jason Stewart, Charles Troup, Ugis Sarkans, Steve Chervitz, Derek Bernhart, Gavin Sherlock, Catherine Ball, Marc Lepage, Marcin Swiatek, W L Marks, Jason Goncalves, Scott Markel, Daniel Iordan, Mohammadreza Shojatalab, Angel Pizarro, Joe White, Robert Hubley, Eric Deutsch, Martin Senger, Bruce J Aronow, Alan Robinson, Doug Bassett, Christian J Stoeckert, Alvis Brazma.
Abstract
BACKGROUND: Meaningful exchange of microarray data is currently difficult because it is rare that published data provide sufficient information depth or are even in the same format from one publication to another. Only when data can be easily exchanged will the entire biological community be able to derive the full benefit from such microarray studies.Entities:
Mesh:
Year: 2002 PMID: 12225585 PMCID: PMC126871 DOI: 10.1186/gb-2002-3-9-research0046
Source DB: PubMed Journal: Genome Biol ISSN: 1474-7596 Impact factor: 13.583
Packages and classes
| BioAssayDataCluster | |||
| Feature | PhysicalBioAssay | Node | |
| Reporter | BioAssayTreatment | NodeContents | |
| NameValueType | CompositeSequence | ImageAcquisition | NodeValue |
| Position | BioAssayCreation | ||
| FeatureLocation | Hybridization | ||
| Audit | CompositeCompositeMap | Image | Measurement |
| ReporterCompositeMap | Channel | ||
| Organization | FeatureReporterMap | FeatureExtraction | TemperatureUnit |
| Person | CompositePosition | MeasuredBioAssay | MassUnit |
| Security | ReporterPosition | DerivedBioAssay | VolumeUnit |
| SecurityGroup | FeatureInformation | DistanceUnit | |
| MismatchInformation | TimeUnit | ||
| BioAssayData | QuantityUnit | ||
| Description | Transformation | ConcentrationUnit | |
| OntologyEntry | ArrayManufacture | DerivedBioAssayData | |
| ExternalReference | Array | MeasuredBioAssayData | |
| DatabaseEntry | ArrayGroup | BioAssayDimension | Protocol |
| Database | Fiducial | QuantitationTypeDimension | Hardware |
| ArrayManufactureDeviation | Software | ||
| FeatureDefect | FeatureDimension | ||
| BioSequence | ZoneDefect | ReporterDimension | Parameter |
| SeqFeature | PositionDelta | CompositeSequenceDimension | ProtocolApplication |
| SeqFeatureLocation | ManufactureLIMS | BioDataCube | HardwareApplication |
| SequencePosition | ManufactureLIMSBioMaterial | BioDataTuples | SoftwareApplication |
| CompositePosition | BioAssayDatum | ||
| ReporterPosition | QuantitationTypeMapping | ParameterValue | |
| QuantitationTypeMap | |||
| BioSource | DesignElementMapping | ||
| ArrayDesign | BioSample | ||
| CompositeGroup | LabeledExtract | BioAssayMapping | |
| ReporterGroup | Treatment | BioAssayMap | SpecializedQuantitationType |
| BioMaterialMeasurement | PresentAbsent | ||
| FeatureGroup | CompoundMeasurement | MeasuredSignal | |
| PhysicalArrayDesign | Compound | Experiment | DerivedSignal |
| ZoneGroup | ExperimentDesign | Ratio | |
| ZoneLayout | ExperimentFactor | ||
| Zone | FactorValue | Pvalue | |
| Error | |||
| ExpectedValue |
Bold indicates packages and italics indicates abstract classes.
Figure 1A workflow diagram showing the various steps of microarray analysis. Rectangles represent physical things, diamonds represent events, ovals represent data, and rounded rectangles represent methods. (a) Workflows that lead up to a hybridized microarray. Two convergent paths (microarray production and sample preparation) are joined by the hybridization event to create a PhysicalBioAssay. (b) BioAssay manipulations.
Figure 2The BioDataCube. BioDataCubes are composed of a matrix of values. (a) A two-dimensional slice of a BioDataCube for a single Bioassay. Each combination of DesignElements and QuantitationTypes is allowed a value. (b) The cube of values is a set of slices, in this view one slice for each BioAssay.