Fronto-parietal contributions to episodic retrieval—evidence from neurodegenerative disorders
- Siddharth Ramanan1,2,3,
- Cherie Strikwerda-Brown1,2,3,
- Annu Mothakunnel1,
- John R. Hodges1,2,4,
- Olivier Piguet1,2,3 and
- Muireann Irish1,2,3
- 1The University of Sydney, Brain and Mind Centre, Sydney, New South Wales 2050, Australia
- 2The University of Sydney, School of Psychology, Sydney, New South Wales 2006, Australia
- 3ARC Centre of Excellence in Cognition and its Disorders, Sydney, New South Wales 2109, Australia
- 4The University of Sydney, School of Medical Sciences, Sydney, New South Wales 2006, Australia
- Corresponding author: muireann.irish{at}sydney.edu.au
Abstract
Converging evidence suggests a critical role for the parietal cortices in episodic memory retrieval. Here, we examined episodic memory performance in Corticobasal Syndrome (CBS), a rare neurodegenerative disorder presenting with early parietal atrophy in the context of variable medial temporal lobe damage. Forty-four CBS patients were contrasted with 29 typical Alzheimer's disease (AD), 29 healthy Controls, and 20 progressive supranuclear palsy patients presenting with brainstem atrophy as a disease control group. Participants completed standardized assessments of verbal episodic memory (learning, delayed recall, and recognition), and underwent structural and diffusion-weighted MRI. Selective delayed recall deficits were evident in the CBS group relative to Controls, at an intermediate level to the stark amnesia displayed by AD, and Control-level performance noted in progressive supranuclear palsy. Considerable variability within the CBS group on delayed recall performance led to the identification of memory-spared (N = 19) and memory-impaired (N = 25) subgroups. Whereas CBS-Spared showed no significant memory deficits, the CBS-Impaired subgroup were indistinguishable from typical AD across all episodic memory measures. Whole-brain voxel-based morphometry analyses implicated fronto-parietal and medial temporal regions in delayed recall performance in both the CBS-Impaired and AD groups. Furthermore, diffusion tensor imaging analyses revealed correlations between delayed recall performance and altered structural connectivity between fronto-parietal and frontotemporal regions in the CBS-Impaired group. Our findings underscore the importance of a distributed brain network including frontal, medial temporal, and parietal brain regions in supporting the capacity for successful episodic memory retrieval.
Footnotes
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[Supplemental material is available for this article.]
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Article is online at http://www.learnmem.org/cgi/doi/10.1101/lm.048454.118.
- Received January 22, 2019.
- Accepted May 10, 2019.
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