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3D Monte Carlo simulation of light distribution in mouse brain in quantitative photoacoustic computed tomography

机译:三维蒙特卡罗在定量光声计算断层扫描中小鼠脑中光分布的仿真

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摘要

Photoacoustic computed tomography (PACT) detects light-induced ultrasound (US) 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.
机译:光声计算机断层扫描(PACT)检测光诱导的超声波(US)波以重建生物组织的光学吸收对比度。由于其相对深入的渗透(软组织中的几厘米),高空间分辨率和固有的功能敏感性,Pact具有具有内源性和外源性对比的成像鼠脑的巨大潜力,这对神经科学群落具有巨大兴趣。然而,常规协定旨在假设大脑内的均匀光学速度,或者使用简化的衰减模型进行光学通量估计。两种方法都低估了流量异质性的复杂性,并且可以导致定量成像精度差。

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