Skip to main content

Research Repository

Advanced Search

All Outputs (5)

Coordinate based meta-analysis of networks in neuroimaging studies (2019)
Journal Article
Tench, C., Tanasescu, R., Constantinescu, C., Cottam, W., & Auer, D. (2020). Coordinate based meta-analysis of networks in neuroimaging studies. NeuroImage, 205, 1-12. https://doi.org/10.1016/j.neuroimage.2019.116259

Meta-analysis of summary results from published neuroimaging studies independently testing a common hypothesis is performed using coordinate based meta-analysis (CBMA), which tests for consistent activation (in the case of functional MRI studies) of... Read More about Coordinate based meta-analysis of networks in neuroimaging studies.

Large?scale network dysfunction in vascular cognitive disorder supports connectional diaschisis in advanced arteriosclerosis (2019)
Journal Article
Meng, D., Hosseini, A. A., Simpson, R. J., Welton, T., Dineen, R. A., & Auer, D. P. (2019). Large?scale network dysfunction in vascular cognitive disorder supports connectional diaschisis in advanced arteriosclerosis. European Journal of Neurology, https://doi.org/10.1111/ene.14084

Background and Purpose The interrelation of cognitive performance, cerebrovascular damage and brain functional connectivity (FC) in advanced arteriosclerosis remains unclear. Our aim was to investigate the associations between FC, white matter damag... Read More about Large?scale network dysfunction in vascular cognitive disorder supports connectional diaschisis in advanced arteriosclerosis.

Prediction of Stroke Risk by Detection of Hemorrhage in Carotid Plaques: Meta-Analysis of Individual Patient Data (2019)
Journal Article
Schindler, A., Schinner, R., Altaf, N., Hosseini, A. A., Simpson, R. J., Esposito-Bauer, L., …Saam, T. (2019). Prediction of Stroke Risk by Detection of Hemorrhage in Carotid Plaques: Meta-Analysis of Individual Patient Data. JACC: Cardiovascular Imaging, 13(2), 395-406. https://doi.org/10.1016/j.jcmg.2019.03.028

Objectives The goal of this study was to compare the risk of stroke between patients with carotid artery disease with and without the presence of intraplaque hemorrhage (IPH) on magnetic resonance imaging. Background IPH in carotid stenosis incr... Read More about Prediction of Stroke Risk by Detection of Hemorrhage in Carotid Plaques: Meta-Analysis of Individual Patient Data.

Relationship between neuromelanin and dopamine terminals within the Parkinson’s nigrostriatal system (2019)
Journal Article
Martín-Bastida, A., Lao-Kaim, N. P., Roussakis, A. A., Searle, G. E., Xing, Y., Gunn, R. N., …Piccini, P. (2019). Relationship between neuromelanin and dopamine terminals within the Parkinson’s nigrostriatal system. Brain, 142(7), 2023–2036. https://doi.org/10.1093/brain/awz120

© 2019 The Author(s). All rights reserved. Parkinson's disease is characterized by the progressive loss of pigmented dopaminergic neurons in the substantia nigra and associated striatal deafferentation. Neuromelanin content is thought to reflect the... Read More about Relationship between neuromelanin and dopamine terminals within the Parkinson’s nigrostriatal system.

Coordinate based meta-analysis of motor functional imaging in Parkinson's: disease-specific patterns and modulation by dopamine replacement and deep brain stimulation (2019)
Journal Article
Xing, Y., Tench, C., Wongwandee, M., Schwarz, S., Bajaj, N., & Auer, D. (2020). Coordinate based meta-analysis of motor functional imaging in Parkinson's: disease-specific patterns and modulation by dopamine replacement and deep brain stimulation. Brain Imaging and Behavior, 14(4), 1263–1280. https://doi.org/10.1007/s11682-019-00061-3

Objective To investigate factors affecting the pattern of motor brain activation reported in people with Parkinson’s (PwP), aiming to differentiate disease-specific features from treatment effects. Methods A co-ordinate-based-meta-analysis (CBMA... Read More about Coordinate based meta-analysis of motor functional imaging in Parkinson's: disease-specific patterns and modulation by dopamine replacement and deep brain stimulation.