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Circulation Research|October 26, 2018
Cerebral Cavernous Malformations Develop Through Clonal Expansion of Mutant Endothelial CellsMatthew R Detter, Daniel A Snellings, Douglas A MarchukThe Journal of Pathology|November 19, 2016
The pathobiology of vascular malformations: insights from human and model organism geneticsSarah E Wetzel-Strong, Matthew R Detter, Douglas A MarchukHuman Genetics|April 29, 2022
Genetic genealogy uncovers a founder deletion mutation in the cerebral cavernous malformations 2 geneCarol J Gallione, Matthew R Detter, Adrienne Sheline, et al.American Journal of Human Genetics|October 22, 2019
Somatic Mutations in Vascular Malformations of Hereditary Hemorrhagic Telangiectasia Result in Bi-allelic Loss of ENG or ACVRL1Daniel A Snellings, Carol J Gallione, Dewi S Clark, et al.Nature Communications|November 3, 2023
Single-nucleus DNA sequencing reveals hidden somatic loss-of-heterozygosity in Cerebral Cavernous MalformationsAndrew K Ressler, Daniel A Snellings, Romuald Girard, et al.Circulation. Cardiovascular Genetics|December 25, 2009
A locus mapping to mouse chromosome 7 determines infarct volume in a mouse model of ischemic strokeSehoon Keum, Douglas A MarchukJournal of Clinical Medicine|July 12, 2025
The Role of Somatic Mutation in Hereditary Hemorrhagic Telangiectasia PathogenesisEvon DeBose-Scarlett, Douglas A MarchukCirculation Research|March 15, 2014
Inhibition of the cardiomyocyte-specific troponin I-interacting kinase limits oxidative stress, injury, and adverse remodeling due to ischemic heart diseaseDennis M Abraham, Douglas A MarchukCirculation Research|June 24, 2021
Cerebral Cavernous Malformation: From Mechanism to TherapyDaniel A Snellings, Courtney C Hong, Aileen A Ren, et al.Physiological Genomics|June 27, 2013
A novel genetic locus modulates infarct volume independently of the extent of collateral circulationPei-Lun Chu, Sehoon Keum, Douglas A MarchukPageof 12