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Yang, Joon Mo
Medical Device and System Lab.
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Tapered catheter-based transurethral photoacoustic and ultrasonic endoscopy of the urinary system

Author(s)
Kim, KiSikYoum, Jin YoungLee, Eun HyeGulenko, OlseksandraKim, MinjaeYoon, Bo HyunJeon, MinjiKim, Tae HyoHa, Yun-SokYang, Joon Mo
Issued Date
2022-07
DOI
10.1364/OE.461855
URI
https://scholarworks.unist.ac.kr/handle/201301/58686
Fulltext
https://opg.optica.org/oe/fulltext.cfm?uri=oe-30-15-26169&id=477751
Citation
OPTICS EXPRESS, v.30, no.15, pp.26169 - 26181
Abstract
Early diagnosis is critical for treating bladder cancer, as this cancer is very aggressive and lethal if detected too late. To address this important clinical issue, a photoacoustic tomography (PAT)-based transabdominal imaging approach was suggested in previous reports, in which its in vivo feasibility was also demonstrated based on a small animal model. However, successful translation of this approach to real clinical settings would be challenging because the human bladder is located at a depth that far exceeds the typical penetration depth of PAT (∼3 cm for in vivo cases). In this study, we developed a tapered catheter-based, transurethral photoacoustic and ultrasonic endoscopic probe with a 2.8 mm outer diameter to investigate whether the well-known benefits of PAT can be harnessed to resolve unmet urological issues, including early diagnosis of bladder cancer. To demonstrate the in vivo imaging capability of the proposed imaging probe, we performed a rabbit model-based urinary system imaging experiment and acquired a 3D microvasculature map distributed in the wall of the urinary system, which is a first in PAT, to the best of our knowledge. We believe that the results strongly support the use of this transurethral imaging approach as a feasible strategy for addressing urological diagnosis issues.
Publisher
Optical Society of America
ISSN
1094-4087
Keyword
OPTICAL COHERENCE TOMOGRAPHYBLADDER-CANCERPROSTATEPROBECYSTOSCOPYDESIGN

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