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Multi-modal anatomical Optical Coherence Tomography and CT for in vivo Dynamic Upper Airway Imaging.

Publication ,  Conference
Balakrishnan, S; Bu, R; Price, H; Zdanski, C; Oldenburg, AL
Published in: Proceedings of SPIE--the International Society for Optical Engineering
February 2017

We describe a novel, multi-modal imaging protocol for validating quantitative dynamic airway imaging performed using anatomical Optical Coherence Tomography (aOCT). The aOCT system consists of a catheter-based aOCT probe that is deployed via a bronchoscope, while a programmable ventilator is used to control airway pressure. This setup is employed on the bed of a Siemens Biograph CT system capable of performing respiratory-gated acquisitions. In this arrangement the position of the aOCT catheter may be visualized with CT to aid in co-registration. Utilizing this setup we investigate multiple respiratory pressure parameters with aOCT, and respiratory-gated CT, on both ex vivo porcine trachea and live, anesthetized pigs. This acquisition protocol has enabled real-time measurement of airway deformation with simultaneous measurement of pressure under physiologically relevant static and dynamic conditions- inspiratory peak or peak positive airway pressures of 10-40 cm H2O, and 20-30 breaths per minute for dynamic studies. We subsequently compare the airway cross sectional areas (CSA) obtained from aOCT and CT, including the change in CSA at different stages of the breathing cycle for dynamic studies, and the CSA at different peak positive airway pressures for static studies. This approach has allowed us to improve our acquisition methodology and to validate aOCT measurements of the dynamic airway for the first time. We believe that this protocol will prove invaluable for aOCT system development and greatly facilitate translation of OCT systems for airway imaging into the clinical setting.

Duke Scholars

Published In

Proceedings of SPIE--the International Society for Optical Engineering

DOI

EISSN

1996-756X

ISSN

0277-786X

Publication Date

February 2017

Volume

10039

Start / End Page

1003907

Related Subject Headings

  • 5102 Atomic, molecular and optical physics
  • 4009 Electronics, sensors and digital hardware
  • 4006 Communications engineering
 

Citation

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MLA
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Balakrishnan, S., Bu, R., Price, H., Zdanski, C., & Oldenburg, A. L. (2017). Multi-modal anatomical Optical Coherence Tomography and CT for in vivo Dynamic Upper Airway Imaging. In Proceedings of SPIE--the International Society for Optical Engineering (Vol. 10039, p. 1003907). https://doi.org/10.1117/12.2250348
Balakrishnan, Santosh, Ruofei Bu, Hillel Price, Carlton Zdanski, and Amy L. Oldenburg. “Multi-modal anatomical Optical Coherence Tomography and CT for in vivo Dynamic Upper Airway Imaging.” In Proceedings of SPIE--the International Society for Optical Engineering, 10039:1003907, 2017. https://doi.org/10.1117/12.2250348.
Balakrishnan S, Bu R, Price H, Zdanski C, Oldenburg AL. Multi-modal anatomical Optical Coherence Tomography and CT for in vivo Dynamic Upper Airway Imaging. In: Proceedings of SPIE--the International Society for Optical Engineering. 2017. p. 1003907.
Balakrishnan, Santosh, et al. “Multi-modal anatomical Optical Coherence Tomography and CT for in vivo Dynamic Upper Airway Imaging.Proceedings of SPIE--the International Society for Optical Engineering, vol. 10039, 2017, p. 1003907. Epmc, doi:10.1117/12.2250348.
Balakrishnan S, Bu R, Price H, Zdanski C, Oldenburg AL. Multi-modal anatomical Optical Coherence Tomography and CT for in vivo Dynamic Upper Airway Imaging. Proceedings of SPIE--the International Society for Optical Engineering. 2017. p. 1003907.

Published In

Proceedings of SPIE--the International Society for Optical Engineering

DOI

EISSN

1996-756X

ISSN

0277-786X

Publication Date

February 2017

Volume

10039

Start / End Page

1003907

Related Subject Headings

  • 5102 Atomic, molecular and optical physics
  • 4009 Electronics, sensors and digital hardware
  • 4006 Communications engineering