Long-range, wide-field swept-source optical coherence tomography with GPU accelerated digital lock-in Doppler
Dan MacDougall1, Joshua Farrell1, Jeremy Brown2
1School of Biomedical Engineering, Dalhousie University, 5981 University Ave, Halifax NS, B3H4R2, Canada.
Abstract:
We present the design, implementation and validation of a swept-source optical coherence tomography (OCT) system for real-time imaging of the human middle ear in live patients. Our system consists of a highly phase-stable Vernier-tuned distributed Bragg-reflector laser along with a real-time processing engine implemented on a graphics processing unit. We use the system to demonstrate, for the first time in live subjects, real-time Doppler measurements of middle ear vibration in response to sound, video rate 2D B-mode imaging of the middle ear and 3D volumetric B-mode imaging. All measurements were performed non-invasively through the intact tympanic membrane demonstrating that the technology is readily translatable to the clinic.


