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用于测量人脉络膜血流的1微米相位稳定光频域成像

Phase-stabilized optical frequency domain imaging at 1-µm for the measurement of blood flow in the human choroid.

作者信息

Braaf Boy, Vermeer Koenraad A, Sicam Victor Arni D P, van Zeeburg Elsbeth, van Meurs Jan C, de Boer Johannes F

机构信息

Rotterdam Ophthalmic Institute, Schiedamse Vest 160, 3011 BH Rotterdam, The Netherlands.

出版信息

Opt Express. 2011 Oct 10;19(21):20886-903. doi: 10.1364/OE.19.020886.

Abstract

In optical frequency domain imaging (OFDI) the measurement of interference fringes is not exactly reproducible due to small instabilities in the swept-source laser, the interferometer and the data-acquisition hardware. The resulting variation in wavenumber sampling makes phase-resolved detection and the removal of fixed-pattern noise challenging in OFDI. In this paper this problem is solved by a new post-processing method in which interference fringes are resampled to the exact same wavenumber space using a simultaneously recorded calibration signal. This method is implemented in a high-speed (100 kHz) high-resolution (6.5 µm) OFDI system at 1-µm and is used for the removal of fixed-pattern noise artifacts and for phase-resolved blood flow measurements in the human choroid. The system performed close to the shot-noise limit (<1dB) with a sensitivity of 99.1 dB for a 1.7 mW sample arm power. Suppression of fixed-pattern noise artifacts is shown up to 39.0 dB which effectively removes all artifacts from the OFDI-images. The clinical potential of the system is shown by the detection of choroidal blood flow in a healthy volunteer and the detection of tissue reperfusion in a patient after a retinal pigment epithelium and choroid transplantation.

摘要

在光学频域成像(OFDI)中,由于扫频光源激光器、干涉仪和数据采集硬件存在微小的不稳定性,干涉条纹的测量无法完全重复。由此导致的波数采样变化使得在OFDI中进行相位分辨检测和去除固定模式噪声具有挑战性。在本文中,通过一种新的后处理方法解决了这个问题,该方法使用同时记录的校准信号将干涉条纹重新采样到完全相同的波数空间。此方法在1μm波长的高速(100kHz)高分辨率(6.5μm)OFDI系统中实现,并用于去除固定模式噪声伪影以及在人脉络膜中进行相位分辨血流测量。该系统在采样臂功率为1.7mW时,性能接近散粒噪声极限(<1dB),灵敏度为99.1dB。固定模式噪声伪影的抑制高达39.0dB,有效去除了OFDI图像中的所有伪影。通过在健康志愿者中检测脉络膜血流以及在视网膜色素上皮和脉络膜移植后的患者中检测组织再灌注,展示了该系统的临床潜力。

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