2020
Hematologic Disorders
Amin H, Schindler J. Hematologic Disorders. 2020, 193-201. DOI: 10.1007/978-3-030-52552-1_15.ChaptersHematological conditionsStrong family historyHypercoagulable panelStroke therapeuticsIschemic strokeSecondary preventionStroke neurologistsYounger patientsAcute treatmentHypercoagulable conditionsHematologic disordersFamily historyHematological disordersClot formationCoagulation cascadeStrokePatientsDisordersNeurologistsPrevention
2016
Hematologic Disorders
Amin H, Schindler J. Hematologic Disorders. 2016, 147-154. DOI: 10.1007/978-3-319-39605-7_15.Peer-Reviewed Original ResearchHematological conditionsStrong family historyHypercoagulable panelStroke therapeuticsIschemic strokeSecondary preventionStroke neurologistsYounger patientsAcute treatmentHypercoagulable conditionsHematologic disordersFamily historyHematological disordersClot formationCoagulation cascadeStrokePatientsDisordersNeurologistsPrevention
2015
Profiling of urinary proteins in Karan Fries cows reveals more than 1550 proteins
Bathla S, Rawat P, Baithalu R, Yadav M, Naru J, Tiwari A, Kumar S, Balhara A, Singh S, Chaudhary S, Kumar R, Lotfan M, Behare P, Phulia S, Mohanty T, Kaushik J, Nallapeta S, Singh I, Ambatipudi S, Mohanty A. Profiling of urinary proteins in Karan Fries cows reveals more than 1550 proteins. Journal Of Proteomics 2015, 127: 193-201. PMID: 26021477, DOI: 10.1016/j.jprot.2015.05.026.Peer-Reviewed Original ResearchConceptsGene OntologyIn-gelTwo-dimensional gel electrophoresisFunctional significanceKaran Fries cowsIn-solution digestion methodProtease inhibitor activityAmmonium sulphateGel electrophoresisNon-invasive sourceBiological processesProtein extractsTryptic digests of proteinsProteinProteomicsHealthy cowsIn-gel digestion methodPhysiological statusDigestibility of proteinUrinary proteomeInhibitor activityCowsCytoscapeCoagulation cascadeGenes
2014
Severe falciparum malaria associated with massive pulmonary embolism
Musoke C, Ssendikadiwa C, Babua C, Schwartz JI. Severe falciparum malaria associated with massive pulmonary embolism. Annals Of African Medicine 2014, 13: 47-49. PMID: 24521579, DOI: 10.4103/1596-3519.126952.Peer-Reviewed Original Research
2012
Staphylococcus aureus Secretes Coagulase and von Willebrand Factor Binding Protein to Modify the Coagulation Cascade and Establish Host Infections
McAdow M, Missiakas DM, Schneewind O. Staphylococcus aureus Secretes Coagulase and von Willebrand Factor Binding Protein to Modify the Coagulation Cascade and Establish Host Infections. Journal Of Innate Immunity 2012, 4: 141-148. PMID: 22222316, PMCID: PMC3388267, DOI: 10.1159/000333447.Peer-Reviewed Reviews, Practice Guidelines, Standards, and Consensus StatementsConceptsFormation of abscessesDrug-resistant S. aureusHost immune cellsHospital-acquired infectionsFactor binding proteinInnate defense mechanismsVon Willebrand factorThromboembolic lesionsClotting of plasmaPreclinical evidenceLethal sepsisImmune cellsStaphylococcal infectionsDisease pathogenesisCoagulation productsClinical isolatesCurrent epidemicKey innate defence mechanismCoagulation cascadeStaphylococcal productsInfectionWillebrand factorOpsonophagocytic clearanceHost infectionFibrin meshwork
2011
Coagulation, Bleeding, and Blood Transfusion
Miller B, Hendrickson J. Coagulation, Bleeding, and Blood Transfusion. 2011, 224-254. DOI: 10.1002/9781444345186.ch11.Peer-Reviewed Original ResearchBlood transfusionBlood conservation techniquesAbnormalities of coagulationAvailable blood productsSickle cell diseaseAvailable laboratory testsVon Willebrand diseaseBlood group classificationsTransfusion compatibilityTransfusion therapyBlood productsCell diseasePharmacological interventionsCoagulation systemWillebrand diseaseMaturational differencesTransfusionCoagulation cascadeCell-based modelDiseaseCoagulationLaboratory testsBleedingThrombophiliaInfants
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