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Needle-compatible miniaturized optoelectronic sensor for pancreatic cancer detection.


ABSTRACT: Pancreatic cancer is one of the deadliest cancers, with a 5-year survival rate of <10%. The current approach to confirming a tissue diagnosis, endoscopic ultrasound-guided fine-needle aspiration (EUS-FNA), requires a time-consuming, qualitative cytology analysis and may be limited because of sampling error. We designed and engineered a miniaturized optoelectronic sensor to assist in situ, real-time, and objective evaluation of human pancreatic tissues during EUS-FNA. A proof-of-concept prototype sensor, compatible with a 19-gauge hollow-needle commercially available for EUS-FNA, was constructed using microsized optoelectronic chips and microfabrication techniques to perform multisite tissue optical sensing. In our bench-top verification and pilot validation during surgery on freshly excised human pancreatic tissues (four patients), the fabricated sensors showed a comparable performance to our previous fiber-based system. The flexibility in source-detector configuration using microsized chips potentially allows for various light-based sensing techniques inside a confined channel such as a hollow needle or endoscopy.

SUBMITTER: Lee SY 

PROVIDER: S-EPMC7679167 | biostudies-literature | 2020 Nov

REPOSITORIES: biostudies-literature

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Needle-compatible miniaturized optoelectronic sensor for pancreatic cancer detection.

Lee Seung Yup SY   Pakela Julia M JM   Na Kyounghwan K   Shi Jiaqi J   McKenna Barbara J BJ   Simeone Diane M DM   Yoon Euisik E   Scheiman James M JM   Mycek Mary-Ann MA  

Science advances 20201120 47


Pancreatic cancer is one of the deadliest cancers, with a 5-year survival rate of <10%. The current approach to confirming a tissue diagnosis, endoscopic ultrasound-guided fine-needle aspiration (EUS-FNA), requires a time-consuming, qualitative cytology analysis and may be limited because of sampling error. We designed and engineered a miniaturized optoelectronic sensor to assist in situ, real-time, and objective evaluation of human pancreatic tissues during EUS-FNA. A proof-of-concept prototype  ...[more]

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