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Ultrahigh speed endoscopic swept source optical coherence tomography using a VCSEL light source and micromotor catheter

机译:使用VCsEL光源和微电机导管的超高速内窥镜扫描光学相干断层扫描

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摘要

We developed an ultrahigh speed endoscopic swept source optical coherence tomography (OCT) system for clinical gastroenterology using a vertical-cavity surface-emitting laser (VCSEL) and micromotor based imaging catheter, which provided an imaging speed of 600 kHz axial scan rate and 8 μm axial resolution in tissue. The micromotor catheter was 3.2 mm in diameter and could be introduced through the 3.7 mm accessory port of an endoscope. Imaging was performed at 400 frames per second with an 8 μm spot size using a pullback to generate volumetric data over 16 mm with a pixel spacing of 5 μm in the longitudinal direction. Three-dimensional OCT (3D-OCT) imaging was performed in patients with a cross section of pathologies undergoing standard upper and lower endoscopy at the Veterans Affairs Boston Healthcare System (VABHS). Patients with Barrett’s esophagus, dysplasia, and inflammatory bowel disease were imaged. The use of distally actuated imaging catheters allowed OCT imaging with more flexibility such as volumetric imaging in the terminal ileum and the assessment of the hiatal hernia using retroflex imaging. The high rotational stability of the micromotor enabled 3D volumetric imaging with micron scale volumetric accuracy for both en face and cross-sectional imaging. The ability to perform 3D OCT imaging in the GI tract with microscopic accuracy should enable a wide range of studies to investigate the ability of OCT to detect pathology as well as assess treatment response.
机译:我们使用垂直腔表面发射激光器(VCSEL)和基于微电机的成像导管开发了用于临床胃肠病学的超高速内窥镜扫掠源光学相干断层扫描(OCT)系统,该成像管提供600 kHz轴向扫描速率和8μm的成像速度组织中的轴向分辨率。微型马达导管的直径为3.2毫米,可以通过内窥镜的3.7毫米附件端口插入。使用拉回以每秒8微米的斑点大小以400帧/秒的速度执行成像,以生成超过16毫米的体积数据,纵向像素间距为5微米。在退伍军人事务波士顿医疗系统(VABHS)中,对接受标准上下内窥镜检查的病理横截面患者进行三维OCT(3D-OCT)成像。对患有Barrett食道,异型增生和炎性肠病的患者进行了成像。使用远端驱动的成像导管可以使OCT成像具有更大的灵活性,例如在回肠末端进行体积成像以及使用逆反射成像对食管裂孔疝进行评估。微型电机的高旋转稳定性可实现3D体积成像,无论是正面成像还是横截面成像,都具有微米级的体积精度。在胃肠道中以微观精度执行3D OCT成像的能力应能够进行广泛的研究,以研究OCT检测病理的能力以及评估治疗反应。

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