UPV-EHU ADDI
  • Itzuli
    • English
    • español
    • Basque
  • Nire Dspace
  • Basque 
    • English
    • español
    • Basque
  • FAQ
Item erakusi 
  •   ADDI
  • IKERKUNTZA
  • Ikerketarako Taldeak, Institutuak eta Gune Kolaboratzaileak
  • BCBL
  • BCBL-Publications
  • Item erakusi
  •   ADDI
  • IKERKUNTZA
  • Ikerketarako Taldeak, Institutuak eta Gune Kolaboratzaileak
  • BCBL
  • BCBL-Publications
  • Item erakusi
JavaScript is disabled for your browser. Some features of this site may not work without it.

Neurogenetic traits outline vulnerability to cortical disruption in Parkinson’s disease

Thumbnail
Ikusi/Ireki
Neurogenetic traits outline2022.pdf (5.873Mb)
Data
2022
Egilea
Basaia, Silvia
Agosta, Federica
Diez, Ibai
Bueichekú, Elisenda
d’Oleire Uquillas, Federico
Delgado-Alvarado, Manuel
Caballero-Gaudes, César
Rodríguez-Oroz, MariCruz
Stojkovic, Tanja
Kostic, Vladimir S.
Filippi, Massimo
Sepulcre, Jorge
Metadata
Itemaren erregistro osoa erakusten du
  Estadisticas en RECOLECTA
(LA Referencia)

Silvia Basaia, Federica Agosta, Ibai Diez, Elisenda Bueichekú, Federico d'Oleire Uquillas, Manuel Delgado-Alvarado, César Caballero-Gaudes, MariCruz Rodriguez-Oroz, Tanja Stojkovic, Vladimir S. Kostic, Massimo Filippi, Jorge Sepulcre, Neurogenetic traits outline vulnerability to cortical disruption in Parkinson’s disease, NeuroImage: Clinical, Volume 33, 2022, 102941, ISSN 2213-1582, https://doi.org/10.1016/j.nicl.2022.102941
NeuroImage: Clinical
URI
http://hdl.handle.net/10810/55377
Laburpena
The genetic traits that underlie vulnerability to neuronal damage across specific brain circuits in Parkinson’s disease (PD) remain to be elucidated. In this study, we characterized the brain topological intersection between propagating connectivity networks in controls and PD participants and gene expression patterns across the human cortex – such as the SNCA gene. We observed that brain connectivity originated from PD-related pathology epicenters in the brainstem recapitulated the anatomical distribution of alpha-synuclein histopathology in postmortem data. We also discovered that the gene set most related to cortical propagation patterns of PDrelated pathology was primarily involved in microtubule cellular components. Thus, this study sheds light on new avenues for enhancing detection of PD neuronal vulnerability via an evaluation of in vivo connectivity trajectories across the human brain and successful integration of neuroimaging-genetic strategies.
Collections
  • BCBL-Publications

DSpace 6.4 software copyright © -2023  DuraSpace
OpenAIRE
EHU Bilbioteka
 

 

Zerrendatu

Gordailu osoaKomunitateak & bildumakArgitalpen dataren araberaEgileakIzenburuakDepartamentos (cas.)Departamentos (eus.)MateriakBilduma hauArgitalpen dataren araberaEgileakIzenburuakDepartamentos (cas.)Departamentos (eus.)Materiak

Nire kontua

Sartu

Estatistikak

Ikusi erabilearen inguruko estatistikak

DSpace 6.4 software copyright © -2023  DuraSpace
OpenAIRE
EHU Bilbioteka