Rapid imaging and product screening with low-cost line-field Fourier domain optical coherence tomography

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作者
Zijian Zhang
Xingyu Yang
Zhiyi Zhao
Feng Zeng
Sicong Ye
Sara J. Baldock
Hungyen Lin
John G. Hardy
Yalin Zheng
Yaochun Shen
机构
[1] University of Liverpool,Department of Electrical Engineering and Electronics
[2] University of Liverpool,Department of Eye and Vision Sciences
[3] Lancaster University,Department of Chemistry
[4] Lancaster University,School of Engineering
[5] Lancaster University,Materials Science Institute
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Fourier domain optical coherence tomography (FD-OCT) is a well-established imaging technique that provides high-resolution internal structure images of an object at a fast speed. Modern FD-OCT systems typically operate at speeds of 40,000–100,000 A-scans/s, but are priced at least tens of thousands of pounds. In this study, we demonstrate a line-field FD-OCT (LF-FD-OCT) system that achieves an OCT imaging speed of 100,000 A-scan/s at a hardware cost of thousands of pounds. We demonstrate the potential of LF-FD-OCT for biomedical and industrial imaging applications such as corneas, 3D printed electronics, and printed circuit boards.
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