Thrane Lars, Gu Shi, Blackburn Brecken J, Damodaran Kishore V, Rollins Andrew M, Jenkins Michael W
Opt Lett. 2017 Jul 15;42(14):2738-2741. doi: 10.1364/OL.42.002738.
We demonstrate that complex decorrelation averaging can reduce the effect of multiple scattering and improve optical coherence tomography (OCT) imaging contrast. Complex decorrelation averaging calculates the product of an A-scan and the complex conjugate of a subsequent A-scan. The resultant signal is the product of the amplitudes and the phase difference. All these resulting complex signals at a particular location are then averaged. We take advantage of the fact that complex averaging, in contrast to conventional magnitude averaging, is sensitive to phase decorrelation. Sample motion that increases signal phase variance results in lower signal magnitude after complex averaging. Such motion preferentially results in a faster decorrelation of the multiple scattering signal when compared to the single scattering signal with each scattering event spreading the phase. This indicates that we may reduce multiple scattering by implementing complex decorrelation averaging to preferentially reduce the magnitude of the multiply scattered light signal in OCT images. By adjusting the time between phase-differenced A-scans, one can regulate the amount of measured decorrelation. We have performed experiments on liquid phantoms that give experimental evidence for this hypothesis. A substantial improvement in OCT image contrast using complex decorrelation averaging is demonstrated.
我们证明,复去相关平均可以降低多次散射的影响并改善光学相干断层扫描(OCT)成像对比度。复去相关平均计算一次A扫描与后续A扫描的复共轭的乘积。所得信号是幅度与相位差的乘积。然后对特定位置处的所有这些所得复信号进行平均。我们利用这样一个事实,即与传统的幅度平均相比,复平均对相位去相关敏感。增加信号相位方差的样本运动会导致复平均后信号幅度降低。与单次散射信号相比,这种运动优先导致多次散射信号更快地去相关,因为每个散射事件都会使相位扩散。这表明我们可以通过实施复去相关平均来减少多次散射,从而优先降低OCT图像中多次散射光信号的幅度。通过调整相差A扫描之间的时间,可以调节测量的去相关量。我们已经在液体模型上进行了实验,为这一假设提供了实验证据。结果表明,使用复去相关平均可显著改善OCT图像对比度。