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Depth-multiplexed optical coherence tomography dual-beam manually-actuated distortion-corrected imaging (DMDI) with a micromotor catheter

机译:带有微马达导管的深度多路光学相干断层扫描双光束手动畸变校正成像(DMDI)

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摘要

We present a new micromotor catheter implementation of dual-beam manually-actuated distortion-corrected imaging (DMDI). The new catheter called a depth-multiplexed dual-beam micromotor catheter, or mDBMC, maintains the primary advantage of unlimited field-of-view distortion-corrected imaging along the catheter axis. The mDBMC uses a polarization beam splitter and cube mirror to create two beams that scan circularly with approximately constant separation at the catheter surface. This arrangement also multiplexes both imaging channels into a single optical coherence tomography channel by offsetting them in depth, requiring half the data bandwidth compared to previous DMDI demonstrations that used two parallel image acquisition systems. Furthermore, the relatively simple scanning pattern of the two beams enables a straightforward automated distortion correction algorithm. We demonstrate the imaging capabilities of this catheter with a printed paper phantom and in a section of dragon fruit.
机译:我们提出了双束手动畸变校正成像(DMDI)的新的微电机导管实现。新的导管被称为深度多路复用双光束微电机导管,即mDBMC,保持了沿导管轴的无限视场畸变校正成像的主要优势。 mDBMC使用偏振分束器和立方镜来创建两个光束,这些光束在导管表面以大致恒定的间隔圆形扫描。这种安排还通过偏移两个成像通道的深度,将两个成像通道复用为一个光学相干断层扫描通道,与使用两个并行图像采集系统的先前DMDI演示相比,它需要一半的数据带宽。此外,两个光束的相对简单的扫描图案使直接的自动失真校正算法成为可能。我们用印刷的纸质幻影和一个火龙果展示了该导管的成像能力。

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