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Abstract #3451

Procedure for Normalization of Cerebrovascular Reactivity in Bilateral and Indeterminate Patterns of Hypoperfusion using Dynamic BOLD-CVR

Siddhant Dogra1,2, Xiuyuan Wang3, James Michael Gee1,2, Yihui Zhu1, Koto Ishida4, and Seena Dehkharghani1,2,4
1Bernard and Irene Schwartz Center for Biomedical Imaging, Department of Radiology, New York University Grossman School of Medicine, New York, New York, USA., New York, NY, United States, 2Center for Advanced Imaging Innovation and Research (CAI2R), Department of Radiology, New York University Grossman School of Medicine, New York, New York, USA., New York, NY, United States, 3Department of Radiology, Weill Cornell Medical College. New York, New York, USA., New York, NY, United States, 4Department of Neurology, New York University Grossman School of Medicine, New York, New York, USA, New York, NY, United States

Synopsis

Keywords: fMRI Analysis, fMRI

Motivation: The BOLD response to acetazolamide offers robust estimation of cerebrovascular reactivity (CVR) with dynamic interrogation for maximal (CVRmax) augmentation. The lack of physiologic units limits use to relative CVR reductions versus normal hemispheres, confounding use for bilateral steno-occlusive disease (SOD).

Goal(s): Develop normal voxel search procedure for BOLD-CVR informed by DSC perfusion in SOD.

Approach: DSC in unilateral SOD patients undergoing BOLD-CVR were used to train random forest classifiers and identify voxels with CVRmax within 10% of ground-truth normal hemispheric CVRmax.

Results: Median percent-differences <8% from ground-truth were achieved, indicating robust performance for extension of BOLD-CVR to bilateral SOD.

Impact: We demonstrate the feasibility of a random forest classifier as a normal voxel search algorithm, in order to identify candidate voxels serving as an auto-normalization for CVR studies in settings of bilateral or indeterminate patters of steno-occlusive disease.

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Keywords