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Handheld ultrahigh speed swept source optical coherence tomography instrument using a MEMS scanning mirror

机译:使用MEMS扫描镜的手持式超高速扫频光源光学相干断层扫描仪

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摘要

We developed an ultrahigh speed, handheld swept source optical coherence tomography (SS-OCT) ophthalmic instrument using a 2D MEMS mirror. A vertical cavity surface-emitting laser (VCSEL) operating at 1060 nm center wavelength yielded a 350 kHz axial scan rate and 10 µm axial resolution in tissue. The long coherence length of the VCSEL enabled a 3.08 mm imaging range with minimal sensitivity roll-off in tissue. Two different designs with identical optical components were tested to evaluate handheld OCT ergonomics. An iris camera aided in alignment of the OCT beam through the pupil and a manual fixation light selected the imaging region on the retina. Volumetric and high definition scans were obtained from 5 undilated normal subjects. Volumetric OCT data was acquired by scanning the 2.4 mm diameter 2D MEMS mirror sinusoidally in the fast direction and linearly in the orthogonal slow direction. A second volumetric sinusoidal scan was obtained in the orthogonal direction and the two volumes were processed with a software algorithm to generate a merged motion-corrected volume. Motion-corrected standard 6 x 6 mm2 and wide field 10 x 10 mm2 volumetric OCT data were generated using two volumetric scans, each obtained in 1.4 seconds. High definition 10 mm and 6 mm B-scans were obtained by averaging and registering 25 B-scans obtained over the same position in 0.57 seconds. One of the advantages of volumetric OCT data is the generation of en face OCT images with arbitrary cross sectional B-scans registered to fundus features. This technology should enable screening applications to identify early retinal disease, before irreversible vision impairment or loss occurs. Handheld OCT technology also promises to enable applications in a wide range of settings outside of the traditional ophthalmology or optometry clinics including pediatrics, intraoperative, primary care, developing countries, and military medicine.
机译:我们使用2D MEMS反射镜开发了超高速手持扫频光源光学相干断层扫描(SS-OCT)眼科仪器。在中心波长为1060 nm的垂直腔表面发射激光器(VCSEL)在组织中产生350 kHz的轴向扫描速率和10 µm的轴向分辨率。 VCSEL的长相干长度可实现3.08 mm的成像范围,并且在组织中的灵敏度下降最小。测试了具有相同光学组件的两种不同设计,以评估手持式OCT的人体工程学。虹膜照相机帮助通过瞳孔的OCT光束对准和手动注视光选择了视网膜上的成像区域。从5名未扩张的正常受试者中进行了体积和高清晰度扫描。通过在快速方向上以正弦波形式并在正交慢速方向上以线性方式扫描2.4 mm直径的2D MEMS反射镜,可以获得体积OCT数据。在正交方向上进行第二次体积正弦扫描,并使用软件算法处理两个体积,以生成合并的运动校正体积。使用两次体积扫描生成运动校正的标准6 x 6 mm 2 和宽视野10 x 10 mm 2 体积OCT数据,每次扫描均在1.4秒内获得。高清晰度的10毫米和6毫米B扫描是通过在0.57秒内对在同一位置获得的25个B扫描进行平均和配准而获得的。体积OCT数据的优点之一是生成OOC正面图像,并带有注册到眼底特征的任意横截面B扫描。这项技术应该使筛查应用能够在不可逆的视力损害或丧失发生之前识别早期的视网膜疾病。手持式OCT技术还有望在传统的眼科或验光诊所之外的各种环境中应用,包括儿科,术中,初级保健,发展中国家和军事医学。

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