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首页> 外文期刊>Journal of Biophotonics >Hybrid method of strain estimation in optical coherence elastography using combined sub-wavelength phase measurements and supra-pixel displacement tracking
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Hybrid method of strain estimation in optical coherence elastography using combined sub-wavelength phase measurements and supra-pixel displacement tracking

机译:光学相干弹性成像中使用亚波长相位测量和超像素位移跟踪相结合的应变估计的混合方法

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摘要

A novel hybrid method which combines sub-wavelength-scale phase measurements and pixel-scale displacement tracking for robust strain mapping in compressional optical coherence elastography is proposed. Unlike majority of OCE methods it does not rely on initial reconstruction of displacements and does not suffer from the phase-wrapping problem for super-wavelength displacements. Its robustness is enabled by direct fitting of local phase gradients obviating the necessity of phase unwrapping and error-prone numerical differentiation. Furthermore, axial displacements significantly exceeding not only the optical wavelength, but pixel scales (i.e., multiple wavelengths) can be efficiently tracked and compensated. This feature strongly reduces errors in phase-gradient estimation and ensures high robustness with respect to both additive and decorrelation noises.
机译:提出了一种结合亚波长尺度相位测量和像素尺度位移跟踪的新型混合方法,用于压缩光学相干弹性成像中的鲁棒应变映射。与大多数OCE方法不同,它不依赖于位移的初始重建,也没有超波长位移的相位包裹问题。它的鲁棒性是通过直接拟合局部相位梯度来实现的,从而避免了相位展开和易于出错的数值微分的必要性。此外,不仅有效地超过了光波长,而且可以有效地跟踪和补偿不仅大大超过光学波长,而且还超过了像素级(即,多个波长)的轴向位移。此功能极大地减少了相位梯度估计中的误差,并确保了相对于加性和去相关噪声的高鲁棒性。

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