bioRxiv · 10.1101/2020.03.16.993154
Cortical Depth-Dependent Modeling of Visual Hemodynamic Responses
Abstract
A physiologically based three-dimensional (3D) hemodynamic model is used to predict the experimentally observed blood oxygen level dependent (BOLD) responses versus the cortical depth induced by visual stimuli. Prior 2D approximations are relaxed in order to analyze 3D blood flow dynamics as a function of cortical depth. Comparison of the predictions with experimental data for typical stimuli demonstrates that the full 3D model matches at least as well as previous approaches while requiring significantly fewer assumptions and model parameters (e.g., there is no more need to define depth-specific parameter values for spatial spreading, peak amplitude, and hemodynamic velocity).
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Lacy, T. C., Robinson, P. A., Aquino, K. M., Pang, J. C.. 2020-03-18. Cortical Depth-Dependent Modeling of Visual Hemodynamic Responses. https://doi.org/10.1101/2020.03.16.993154
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