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Circumferential-scanning endoscopic optical coherence tomography probe based on a circular array of six 2-axis MEMS mirrors

机译:基于六个2轴MEMS镜的圆形阵列的周向扫描内窥镜光学相干断层扫描探头

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摘要

We present a novel circumferential-scan endoscopic optical coherence tomography (OCT) probe by using a circular array of six electrothermal microelectromechanical (MEMS) mirrors and six C-lenses. The MEMS mirrors have a 0.5 mm × 0.5 mm mirror plate and a chip size of 1.5 mm × 1.3 mm. Each MEMS mirror can scan up to 45° at a voltage of less than 12 V. Six of those mirrors have been successfully packaged to a probe head; full circumferential scans have been demonstrated. Furthermore, each scan unit is composed of a MEMS mirror and a C-lens and the six scan units can be designed with different focal lengths to adapt for lesions with uneven surfaces. Configured with a swept source OCT system, this MEMS array-based circumferential scanning probe has been applied to image a swine’s small intestine wrapped on a 20 mm-diameter glass tube. The OCT imaging result shows that this new MEMS endoscopic OCT has promising applications in large tubular organs.
机译:我们通过使用六个电热微机电(MEMS)镜和六个C透镜的圆形阵列,提出了一种新型的圆周扫描内窥镜光学相干断层扫描(OCT)探针。 MEMS反射镜具有0.5 mm×0.5 mm的镜板和1.5 mm×1.3 mm的芯片尺寸。每个MEMS反射镜可以在低于12 V的电压下扫描高达45°。其中六个反射镜已成功封装到探头中;已经证明了全周扫描。此外,每个扫描单元都由一个MEMS反射镜和一个C透镜组成,六个扫描单元可以设计成具有不同的焦距,以适应表面不平坦的病变。这款基于MEMS阵列的周向扫描探头配置有扫频光源OCT系统,已被用于对包裹在直径20毫米的玻璃管上的猪的小肠成像。 OCT成像结果表明,这种新型MEMS内窥镜OCT在大型管状器官中具有广阔的应用前景。

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