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Compensation of optode sensitivity and position errors in diffuse optical tomography using the approximation error approach

机译:使用近似误差方法补偿漫射光学层析成像中的光敏度和位置误差

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Diffuse optical tomography is highly sensitive to measurement and modeling errors. Errors in the source and detector coupling and positions can cause significant artifacts in the reconstructed images. Recently the approximation error theory has been proposed to handle modeling errors. In this article, we investigate the feasibility of the approximation error approach to compensate for modeling errors due to inaccurately known optode locations and coupling coefficients. The approach is evaluated with simulations. The results show that the approximation error method can be used to recover from artifacts in reconstructed images due to optode coupling and position errors.
机译:漫射光学层析成像对测量和建模误差非常敏感。源和检测器耦合以及位置中的错误会在重建的图像中引起明显的伪影。最近,提出了近似误差理论来处理建模误差。在本文中,我们研究了近似误差方法补偿由于错误的已知光电二极管位置和耦合系数而引起的建模误差的可行性。通过仿真评估该方法。结果表明,由于光电二极管耦合和位置误差,近似误差方法可用于从重建图像的伪影中恢复。

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