Department of Biomedical Engineering, Florida International University, Miami, Florida.
Invest Ophthalmol Vis Sci. 2013 Dec 9;54(13):7998-8003. doi: 10.1167/iovs.13-12318.
To test the capability of a novel dual-beam Doppler optical coherence tomography (OCT) technique for simultaneous in vivo measurement of the Doppler angle and, thus, the absolute retinal blood velocity and the retinal flow rate, without the influence of motion artifacts.
A novel dual-beam Doppler spectral domain OCT (SD-OCT) was developed. The two probing beams are separated with a controllable distance along an arbitrary direction, both of which are controlled by two independent 2D optical scanners. Two sets of optical Doppler tomography (ODT) images are acquired simultaneously. The Doppler angle of each blood vessel segment is calculated from the relative coordinates of the centers of the blood vessel in the two corresponding ODT images. The absolute blood flow velocity and the volumetric blood flow rate can then be calculated. To measure the total retinal blood flow, we used a circular scan pattern centered at the optic disc to obtain two sets of concentric OCT/ODT images simultaneously.
We imaged two normal human subjects at ages of 48 and 34 years. The total retinal blood flow rates of the two human subjects were calculated to be 47.01 μL/min (older subject) and 51.37 μL/min (younger subject), respectively. Results showed that the performance of this imaging system is immune to eye movement, since the two sets of ODT images were acquired simultaneously.
The dual-beam OCT/ODT system is successful in measuring the absolute retinal blood velocity and the volumetric flow rate. The advantage of the technique is that the two sets of ODT images used for the calculation are acquired simultaneously, which eliminates the influence of eye motion and ensures the accuracy of the calculated hemodynamic parameters.
测试一种新型双光束多普勒光相干断层扫描(OCT)技术的能力,该技术可同时在体内测量多普勒角度,从而测量绝对视网膜血流速度和视网膜血流量,而不受运动伪影的影响。
开发了一种新型双光束多普勒光谱域 OCT(SD-OCT)。两个探测光束沿着任意方向分离一个可控的距离,它们都由两个独立的 2D 光学扫描仪控制。同时采集两组光学多普勒断层扫描(ODT)图像。从两个相应的 ODT 图像中血管中心的相对坐标计算每个血管段的多普勒角度。然后可以计算出绝对血流速度和体积血流率。为了测量总视网膜血流,我们使用以视盘为中心的圆形扫描模式同时获得两组同心 OCT/ODT 图像。
我们对两名年龄分别为 48 岁和 34 岁的正常人类受试者进行了成像。两名人类受试者的总视网膜血流率分别计算为 47.01 μL/min(年龄较大的受试者)和 51.37 μL/min(年龄较小的受试者)。结果表明,由于同时采集了两组 ODT 图像,该成像系统的性能不受眼球运动的影响。
双光束 OCT/ODT 系统成功地测量了绝对视网膜血流速度和体积流量率。该技术的优点是用于计算的两组 ODT 图像是同时采集的,这消除了眼球运动的影响,并确保了计算出的血流动力学参数的准确性。