TY - JOUR
T1 - Toward high performance endoscopic optical coherence tomography — technologies and applications
AU - Chantawannakul, Jarinyagon
AU - Shang, Chenyu
AU - Xu, Chao
AU - Zhang, Ruiyang
AU - Zhang, Tinghua
AU - Han, Songlin
AU - Chen, Defu
AU - Yuan, Wu
N1 - Publisher Copyright:
© 2026 The Author(s)
PY - 2026
Y1 - 2026
N2 - Endoscopic optical coherence tomography (OCT) integrates fiber-optic interferometry with miniaturized catheter-based probes to enable high-resolution, real-time, and minimally invasive volumetric imaging of internal tissue microstructures. Since its first demonstrations in the late 1990s, endoscopic OCT has evolved from early feasibility studies into a clinically valuable tool for tissue characterization and disease diagnosis. Over the past decade, the field has undergone a transformative shift toward high-performance systems, driven by advances in probe miniaturization, ultrahigh-resolution optics, extended-depth-of-focus designs, multimodal integration, and intelligent control strategies, such as robotic actuation and novel steering methods. This review provides a comprehensive overview of recent advances in endoscopic OCT from both technological and translational perspectives. First, we review the evolution of the field and key enabling technologies, including miniaturized probe architectures, high-resolution and extended-depth-of-focus imaging strategies, multimodal platforms, and intelligent or robotic systems. Second, we summarize established and emerging applications across major organ systems and several novel interventional settings. Finally, we discuss persistent technical challenges and outline promising future directions.
AB - Endoscopic optical coherence tomography (OCT) integrates fiber-optic interferometry with miniaturized catheter-based probes to enable high-resolution, real-time, and minimally invasive volumetric imaging of internal tissue microstructures. Since its first demonstrations in the late 1990s, endoscopic OCT has evolved from early feasibility studies into a clinically valuable tool for tissue characterization and disease diagnosis. Over the past decade, the field has undergone a transformative shift toward high-performance systems, driven by advances in probe miniaturization, ultrahigh-resolution optics, extended-depth-of-focus designs, multimodal integration, and intelligent control strategies, such as robotic actuation and novel steering methods. This review provides a comprehensive overview of recent advances in endoscopic OCT from both technological and translational perspectives. First, we review the evolution of the field and key enabling technologies, including miniaturized probe architectures, high-resolution and extended-depth-of-focus imaging strategies, multimodal platforms, and intelligent or robotic systems. Second, we summarize established and emerging applications across major organ systems and several novel interventional settings. Finally, we discuss persistent technical challenges and outline promising future directions.
KW - High-resolution imaging
KW - intelligent endoscopy
KW - multimodal imaging
KW - probe miniaturization
UR - https://www.scopus.com/pages/publications/105044855466
U2 - 10.1142/S1793545826300168
DO - 10.1142/S1793545826300168
M3 - Article
AN - SCOPUS:105044855466
SN - 1793-5458
JO - Journal of Innovative Optical Health Sciences
JF - Journal of Innovative Optical Health Sciences
M1 - 2630016
ER -