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Nature Communications|September 9, 2024
Genetic, transcriptomic, histological, and biochemical analysis of progressive supranuclear palsy implicates glial activation and novel risk genesKurt Farrell, Jack Humphrey, Timothy Chang, et al.Nature Communications|June 17, 2015
Genome-wide association study of corticobasal degeneration identifies risk variants shared with progressive supranuclear palsyNaomi Kouri, Owen A Ross, Beth Dombroski, et al.Molecular Neurodegeneration|August 16, 2024
Whole-genome sequencing analysis reveals new susceptibility loci and structural variants associated with progressive supranuclear palsyHui Wang, Timothy S Chang, Beth A Dombroski, et al.Medrxiv : the Preprint Server for Health Sciences|January 18, 2024
Whole-Genome Sequencing Analysis Reveals New Susceptibility Loci and Structural Variants Associated with Progressive Supranuclear PalsyHui Wang, Timothy S Chang, Beth A Dombroski, et al.Movement Disorders : Official Journal of the Movement Disorder Society|August 23, 2022
Common Variants Near ZIC1 and ZIC4 in Autopsy-Confirmed Multiple System AtrophyFranziska Hopfner, Anja K Tietz, Viktoria C Ruf, et al.Medrxiv : the Preprint Server for Health Sciences|March 11, 2024
Association of Structural Forms of 17q21.31 with the Risk of Progressive Supranuclear Palsy and MAPT Sub-haplotypesHui Wang, Timothy S Chang, Beth A Dombroski, et al.Movement Disorders : Official Journal of the Movement Disorder Society|March 8, 2025
Copy Number Variation and Haplotype Analysis of 17q21.31 Reveals Increased Risk Associated with Progressive Supranuclear Palsy and Gene Expression Changes in Neuronal CellsHui Wang, Timothy S Chang, Beth A Dombroski, et al.Pageof 52