Open Access
20 April 2020 Low-cost, ultracompact handheld optical coherence tomography probe for in vivo oral maxillofacial tissue imaging
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Abstract

Significance: Optical coherence tomography (OCT) has proven useful for detecting various oral maxillofacial abnormalities. To apply it to clinical applications including biopsy guidance and routine screening, a handheld imaging probe is indispensable. OCT probes reported for oral maxillofacial imaging were either based on a bulky galvanometric mirror pair (not compact or long enough) or a distal-end microelectromechanical systems (MEMS) scanner (raised safety concerns), or adapted from fiber-optic catheters (ill-suited for oral cavity geometry).

Aim: To develop a handheld probe featuring great compactness and excellent maneuverability for oral maxillofacial tissue imaging.

Approach: A dual-axis MEMS scanner was deployed at the proximal end of the probe and the scanned beam was relayed to the distal end through a 4f configuration. Such design provides both a perfect dual-axis telecentric scan and excellent compactness.

Results: A handheld probe with a rigid part 70 mm in length and 7 mm in diameter and weighing 25 g in total was demonstrated through both ex vivo and in vivo experiments, including structural visualization of various oral maxillofacial tissues and monitoring the recovery process of an oral mucosa canker sore.

Conclusions: The proposed probe exhibits excellent maneuverability and imaging performance showing great potential in clinical applications.

CC BY: © The Authors. Published by SPIE under a Creative Commons Attribution 4.0 Unported License. Distribution or reproduction of this work in whole or in part requires full attribution of the original publication, including its DOI.
Kaiyan Li, Zihan Yang, Wenxuan Liang, Jianwei Shang, Yanmei Liang, and Suiren Wan "Low-cost, ultracompact handheld optical coherence tomography probe for in vivo oral maxillofacial tissue imaging," Journal of Biomedical Optics 25(4), 046003 (20 April 2020). https://doi.org/10.1117/1.JBO.25.4.046003
Received: 10 September 2019; Accepted: 1 April 2020; Published: 20 April 2020
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CITATIONS
Cited by 20 scholarly publications.
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KEYWORDS
Optical coherence tomography

Microelectromechanical systems

Tissues

In vivo imaging

Mirrors

Scanners

Tissue optics

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