2013
DNA-COMPACT: DNA COMpression Based on a Pattern-Aware Contextual Modeling Technique
Li P, Wang S, Kim J, Xiong H, Ohno-Machado L, Jiang X. DNA-COMPACT: DNA COMpression Based on a Pattern-Aware Contextual Modeling Technique. PLOS ONE 2013, 8: e80377. PMID: 24282536, PMCID: PMC3840021, DOI: 10.1371/journal.pone.0080377.Peer-Reviewed Original ResearchConceptsReference-free compressionDisk storage capacityCompression algorithmDecompression costData transferringArt algorithmsCompression performanceFile sizeGenome compressionCompression rateBit rateAlgorithmDNA compressionBiomedical researchersPerformance advantagesGenome dataModeling techniquesContextual modelImportant concernResearch purposesCompressionPerformanceStorage capacityBitsReference sequence
2012
SecUre Privacy-presERving Medical Image CompRessiOn (SUPERMICRO)
Wang S, Jiang X, Ohno-Machado L, Cui L, Cheng S. SecUre Privacy-presERving Medical Image CompRessiOn (SUPERMICRO). 2012, 1: 130-130. DOI: 10.1109/hisb.2012.55.Peer-Reviewed Original ResearchNational Health Information NetworkBiomedical dataPrivacy-preserving mannerImage compression frameworkMedical image compressionTraditional compression algorithmsHigh compression performanceCT image sequencesHealth Information NetworkSecure privacyCompression frameworkImage compressionPrivacy protectionSecure mannerCompression algorithmCompression efficiencyLossless compressionElectronic health recordsSource codingCompression performanceImage sequencesData transmissionIntuitive wayInformation networksPrivacy