Role of beat noise in limiting the sensitivity of optical coherence tomography

The sensitivity and dynamic range of optical coherence tomography (OCT) are calculated for instruments utilizing two common interferometer configurations and detection schemes. Previous researchers recognized that the performance of dual-balanced OCT instruments is severely limited by beat noise, wh...

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Published in:Journal of the Optical Society of America. A, Optics, image science, and vision Vol. 23; no. 11; p. 2747
Main Authors: Haskell, Richard C, Liao, David, Pivonka, Adam E, Bell, Tera L, Haberle, Brendan R, Hoeling, Barbara M, Petersen, Daniel C
Format: Journal Article
Language:English
Published: United States 01-11-2006
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Abstract The sensitivity and dynamic range of optical coherence tomography (OCT) are calculated for instruments utilizing two common interferometer configurations and detection schemes. Previous researchers recognized that the performance of dual-balanced OCT instruments is severely limited by beat noise, which is generated by incoherent light backscattered from the sample. However, beat noise has been ignored in previous calculations of Michelson OCT performance. Our measurements of instrument noise confirm the presence of beat noise even in a simple Michelson interferometer configuration with a single photodetector. Including this noise, we calculate the dynamic range as a function of OCT light source power, and find that instruments employing balanced interferometers and balanced detectors can achieve a sensitivity up to six times greater than those based on a simple Michelson interferometer, thereby boosting image acquisition speed by the same factor for equal image quality. However, this advantage of balanced systems is degraded for source powers greater than a few milliwatts. We trace the concept of beat noise back to an earlier paper.
AbstractList The sensitivity and dynamic range of optical coherence tomography (OCT) are calculated for instruments utilizing two common interferometer configurations and detection schemes. Previous researchers recognized that the performance of dual-balanced OCT instruments is severely limited by beat noise, which is generated by incoherent light backscattered from the sample. However, beat noise has been ignored in previous calculations of Michelson OCT performance. Our measurements of instrument noise confirm the presence of beat noise even in a simple Michelson interferometer configuration with a single photodetector. Including this noise, we calculate the dynamic range as a function of OCT light source power, and find that instruments employing balanced interferometers and balanced detectors can achieve a sensitivity up to six times greater than those based on a simple Michelson interferometer, thereby boosting image acquisition speed by the same factor for equal image quality. However, this advantage of balanced systems is degraded for source powers greater than a few milliwatts. We trace the concept of beat noise back to an earlier paper.
Author Petersen, Daniel C
Pivonka, Adam E
Haskell, Richard C
Haberle, Brendan R
Liao, David
Bell, Tera L
Hoeling, Barbara M
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  givenname: Daniel C
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Snippet The sensitivity and dynamic range of optical coherence tomography (OCT) are calculated for instruments utilizing two common interferometer configurations and...
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StartPage 2747
SubjectTerms Computer-Aided Design
Equipment Design
Equipment Failure Analysis
Image Interpretation, Computer-Assisted - methods
Reproducibility of Results
Sensitivity and Specificity
Tomography, Optical Coherence - instrumentation
Tomography, Optical Coherence - methods
Title Role of beat noise in limiting the sensitivity of optical coherence tomography
URI https://www.ncbi.nlm.nih.gov/pubmed/17047700
Volume 23
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