3D Monte Carlo Simulation of Light Distribution in Mouse Brain in Quantitative Photoacoustic Computed Tomography
Yuqi Tang, Junjie Yao

TL;DR
This paper uses 3D Monte Carlo simulations to analyze light distribution heterogeneity in mouse brains for photoacoustic tomography, highlighting its impact on quantitative imaging accuracy.
Contribution
First application of 3D Monte Carlo simulation to study optical fluence heterogeneity in a complete mouse brain model for PACT.
Findings
Optical fluence decreases by up to five times with depth.
Vasculature causes local fluence disturbances.
Fluence heterogeneity affects quantitative accuracy.
Abstract
Photoacoustic computed tomography (PACT) detects light-induced ultrasound waves to reconstruct the optical absorption contrast of the biological tissues. Due to its relatively deep penetration (several centimeters in soft tissue), high spatial resolution, and inherent functional sensitivity, PACT has great potential for imaging mouse brains with endogenous and exogenous contrasts, which is of immense interest to the neuroscience community. However, conventional PACT either assumes homogenous optical fluence within the brain or uses a simplified attenuation model for optical fluence estimation. Both approaches underestimate the complexity of the fluence heterogeneity and can result in poor quantitative imaging accuracy. To optimize the quantitative performance of PACT, we explore for the first time 3D Monte Carlo simulation to study the optical fluence distribution in a complete mouse…
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Taxonomy
TopicsPhotoacoustic and Ultrasonic Imaging · Optical Imaging and Spectroscopy Techniques · Thermography and Photoacoustic Techniques
