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Mina Ryten

Showing results (51-60 of 176) with videos related to

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Neurobiology of Disease|December 29, 2015
Gene co-expression networks shed light into diseases of brain iron accumulationConceição Bettencourt, Paola Forabosco, Sarah Wiethoff, et al.
Neurology|June 19, 2015
ADCY5 mutations are another cause of benign hereditary choreaNiccolo E Mencacci, Roberto Erro, Sarah Wiethoff, et al.
Bioinformatics (Oxford, England)|March 18, 2021
Modeling multifunctionality of genes with secondary gene co-expression networks in human brain provides novel disease insightsJuan A Sánchez, Ana L Gil-Martinez, Alejandro Cisterna, et al.
Neurobiology of Aging|July 17, 2013
Insights into TREM2 biology by network analysis of human brain gene expression dataPaola Forabosco, Adaikalavan Ramasamy, Daniah Trabzuni, et al.
Biorxiv : the Preprint Server for Biology|January 13, 2025
Ancestry-specific gene expression in peripheral monocytes mediates risk of neurodegenerative diseaseAaron Z Wagen, Regina H Reynolds, Jia Nee Foo, et al.
Brain : a Journal of Neurology|March 11, 2021
Regional brain iron and gene expression provide insights into neurodegeneration in Parkinson's diseaseGeorge E C Thomas, Angeliki Zarkali, Mina Ryten, et al.
Acta Neuropathologica|September 19, 2018
Picomolar concentrations of oligomeric alpha-synuclein sensitizes TLR4 to play an initiating role in Parkinson's disease pathogenesisCraig D Hughes, Minee L Choi, Mina Ryten, et al.
Acta Neuropathologica|October 18, 2018
Correction to: Picomolar concentrations of oligomeric alpha-synuclein sensitizes TLR4 to play an initiating role in Parkinson's disease pathogenesisCraig D Hughes, Minee L Choi, Mina Ryten, et al.
Nucleic Acids Research|November 18, 2022
IntroVerse: a comprehensive database of introns across human tissuesSonia García-Ruiz, Emil K Gustavsson, David Zhang, et al.
Scientific Reports|August 24, 2023
Analysis of subcellular RNA fractions demonstrates significant genetic regulation of gene expression in human brain post-transcriptionallyKarishma D'Sa, Sebastian Guelfi, Jana Vandrovcova, et al.
Pageof 18

Showing results (51-60 of 176) with videos related to

Sort By:
Pageof 18
Neurobiology of Disease|December 29, 2015
Gene co-expression networks shed light into diseases of brain iron accumulationConceição Bettencourt, Paola Forabosco, Sarah Wiethoff, et al.
Neurology|June 19, 2015
ADCY5 mutations are another cause of benign hereditary choreaNiccolo E Mencacci, Roberto Erro, Sarah Wiethoff, et al.
Bioinformatics (Oxford, England)|March 18, 2021
Modeling multifunctionality of genes with secondary gene co-expression networks in human brain provides novel disease insightsJuan A Sánchez, Ana L Gil-Martinez, Alejandro Cisterna, et al.
Neurobiology of Aging|July 17, 2013
Insights into TREM2 biology by network analysis of human brain gene expression dataPaola Forabosco, Adaikalavan Ramasamy, Daniah Trabzuni, et al.
Biorxiv : the Preprint Server for Biology|January 13, 2025
Ancestry-specific gene expression in peripheral monocytes mediates risk of neurodegenerative diseaseAaron Z Wagen, Regina H Reynolds, Jia Nee Foo, et al.
Brain : a Journal of Neurology|March 11, 2021
Regional brain iron and gene expression provide insights into neurodegeneration in Parkinson's diseaseGeorge E C Thomas, Angeliki Zarkali, Mina Ryten, et al.
Acta Neuropathologica|September 19, 2018
Picomolar concentrations of oligomeric alpha-synuclein sensitizes TLR4 to play an initiating role in Parkinson's disease pathogenesisCraig D Hughes, Minee L Choi, Mina Ryten, et al.
Acta Neuropathologica|October 18, 2018
Correction to: Picomolar concentrations of oligomeric alpha-synuclein sensitizes TLR4 to play an initiating role in Parkinson's disease pathogenesisCraig D Hughes, Minee L Choi, Mina Ryten, et al.
Nucleic Acids Research|November 18, 2022
IntroVerse: a comprehensive database of introns across human tissuesSonia García-Ruiz, Emil K Gustavsson, David Zhang, et al.
Scientific Reports|August 24, 2023
Analysis of subcellular RNA fractions demonstrates significant genetic regulation of gene expression in human brain post-transcriptionallyKarishma D'Sa, Sebastian Guelfi, Jana Vandrovcova, et al.
Pageof 18