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Accurate estimation of the attenuation coefficient from axial point spread function corrected OCT scans of a single layer phantom

机译:根据轴向点扩散函数校正的单层体模的OCT扫描准确估算衰减系数

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The attenuation coefficient (AC) is a property related to the microstructure of tissue on a wavelength scale that can be estimated from optical coherence tomography (OCT) data. Since the OCT signal sensitivity is affected by the finite spectrometer/detector resolution called roll-off and the shape of the focused beam in the sample arm, ignoring these effects leads to severely biased estimates of AC. Previously, the signal intensity dependence on these factors has been modeled. In this paper, we study the dependence of the estimated AC on the beam-shape and focus depth experimentally. A method is presented to estimate the axial point spread function model parameters by fitting the OCT signal model for single scattered light to the averaged A-lines of multiple B-scans obtained from a homogeneous single-layer phantom. The estimated model parameters were used to compensate the signal for the axial point spread function and roll-off in order to obtain an accurate estimate of AC. The result shows a significant improvement in the accuracy of the estimation of AC after correcting for the shape of the OCT beam.
机译:衰减系数(AC)是一种与组织的微观结构有关的特性,该特性可以从光学相干断层扫描(OCT)数据估算出来。由于OCT信号的灵敏度受称为滚降的有限光谱仪/检测器分辨率和样品臂中聚焦光束的形状的影响,因此忽略这些影响会导致AC的估计严重偏差。以前,已经对信号强度对这些因素的依赖性进行了建模。在本文中,我们通过实验研究了估计AC对光束形状和聚焦深度的依赖性。提出了一种通过将单个散射光的OCT信号模型拟合到从均匀单层体模获得的多个B扫描的平均A线来估计轴点扩展函数模型参数的方法。估计的模型参数用于补偿信号的轴点扩展函数和滚降,以获得准确的AC估计值。结果表明,在校正OCT光束的形状之后,交流估计的准确性有了显着提高。

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