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用于稳定光学相干断层扫描内窥镜成像的光纤悬臂压电管扫描仪的半谐振操作。

Semi-resonant operation of a fiber-cantilever piezotube scanner for stable optical coherence tomography endoscope imaging.

作者信息

Moon Sucbei, Lee Sang-Won, Rubinstein Marc, Wong Brian J F, Chen Zhongping

机构信息

Beckman Laser Institute, University of California, Irvine, Irvine, CA 92612, USA.

出版信息

Opt Express. 2010 Sep 27;18(20):21183-97. doi: 10.1364/OE.18.021183.

Abstract

A forward-view optical coherence tomography (OCT) scanning catheter has been developed based on a fiber-cantilever piezotube scanner by using a semi-resonant scan strategy for a better scan performance. A compact endoscope catheter was fabricated by using a tubular piezoelectric actuator with quartered electrodes in combination with a resonant fiber cantilever. A cantilever weight was attached to the fiber cantilever to reduce the resonance frequency down to 63 Hz, well in the desirable range for Fourier-domain OCT. The resonant-cantilever scanner was driven at semi-resonance frequencies that were well out of the resonance peak but within a range of partial resonance. This driving strategy has been found to minimize the phase difference between the two scan axes for a better scan stability against environmental perturbations as well as for a driving simplicity. By driving the two axes at slightly different frequencies, a low-order Lissajous pattern has been obtained for a 2D area scan. 3D OCT images have been successfully acquired in an acquisition time of 1.56 seconds for a tomogram volume of 2.2 × 2.2 × 2.1 mm(3). They were reconstructed without any scan calibration by extracting the scan timing from the image data. In addition, it has been found that the Lissajous scan strategy provides a means to compensate the relative axial motion of a sample for a correct imaged morphology.

摘要

基于光纤悬臂压电管扫描仪,采用半共振扫描策略以实现更好的扫描性能,开发出了一种前视光学相干断层扫描(OCT)扫描导管。通过将带有四分电极的管状压电致动器与共振光纤悬臂相结合,制造出了一种紧凑型内窥镜导管。在光纤悬臂上附着了一个悬臂配重,将共振频率降低至63Hz,该频率处于傅里叶域OCT的理想范围内。共振悬臂扫描仪在半共振频率下驱动,该频率远离共振峰值但处于部分共振范围内。已发现这种驱动策略可使两个扫描轴之间的相位差最小化,从而在抵抗环境干扰方面实现更好的扫描稳定性,并且驱动方式简单。通过以略微不同的频率驱动两个轴,获得了用于二维区域扫描的低阶李萨如图形。对于2.2×2.2×2.1mm³的断层图像体积,在1.56秒的采集时间内成功采集到了三维OCT图像。通过从图像数据中提取扫描定时,无需任何扫描校准即可对其进行重建。此外,已发现李萨如扫描策略提供了一种补偿样品相对轴向运动以获得正确成像形态的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ea08/3408930/985343b36e8e/oe-18-20-21183-g001.jpg

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