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Translational Brain Mapping at the University of Rochester Medical Center: Preserving the Mind Through Personalized Brain Mapping
Published on: August 12, 2019
Separating the forest from the palm trees: Individual variation in a presurgical language mapping task
Natalie L Voets1, Oiwi Parker Jones2, Mohamed L Seghier3
1Oxford Centre for Integrative Neuroimaging, University of Oxford, Oxford, UK; Dept of Neurosurgery, Oxford University Hospitals NHS Foundation Trust, Oxford, UK.
Functional MRI language mapping using the Pyramids and Palm Trees Task (PPTT) shows reliable brain activation across individuals and sessions. This consistency aids in aligning pre-operative and intra-operative neurosurgery planning.
Area of Science:
- Neuroimaging
- Cognitive Neuroscience
- Neurosurgery
Background:
- Language mapping in neurosurgery is challenged by practice mismatches between pre-surgical and intra-operative evaluations.
- Functional MRI (fMRI) tasks are increasingly used for intra-operative assessment in awake neurosurgery patients.
- Evaluating task reliability is crucial for aligning these mapping practices.
Purpose of the Study:
- To evaluate the reliability of a functional MRI version of the semantic association task, the Pyramids and Palm Trees Task (PPTT).
- To characterize fMRI activation reliability across individuals, test-retest sessions, and different scanner cohorts using a consistency mapping approach.
- To support the alignment of pre- and intra-operative language mapping in neurosurgical patients.
Main Methods:
- fMRI data acquired during an adapted PPTT in 15 healthy controls and 54 pre-surgical glioma patients.
- Utilized threshold-weighted overlap mapping (TWOM) to assess inter-individual variability, test-retest variability, and between-scanner reliability.
- Compared standard and advanced fMRI acquisitions across Siemens Prisma and Verio scanners.
Main Results:
- Task-related activations within the core language network demonstrated high consistency across individuals and test-retest sessions.
- Variable activations were observed in specific brain regions, correlating with atypical language dominance or semantic processing differences.
- Overlap mapping effectively visualized individual variations in neural processing.
Conclusions:
- The PPTT effectively engaged widespread brain networks, including semantic processing regions.
- Overlap mapping is a valuable tool for visualizing individual neural processing variations.
- This approach supports better alignment between pre-operative and intra-operative language mapping for neurosurgery.
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