Multimodal probe for optical coherence tomography epidetection and micron-scale indentation

We present a multimodal ferrule-top sensor designed to perform the integrated epidetection of Optical Coherence Tomography (OCT) depth-profiles and micron-scale indentation by all-optical detection. By scanning a sample under the probe, we can obtain structural cross-section images and identify a re...

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Veröffentlicht in:Journal of innovative optical health science 2017-11, Vol.10 (6), p.1742007-1742007-9
Hauptverfasser: Bartolini, L., Feroldi, F., Weda, J. J. A., Slaman, M., de Boer, J. F., Iannuzzi, D.
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Sprache:eng
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Zusammenfassung:We present a multimodal ferrule-top sensor designed to perform the integrated epidetection of Optical Coherence Tomography (OCT) depth-profiles and micron-scale indentation by all-optical detection. By scanning a sample under the probe, we can obtain structural cross-section images and identify a region-of-interest in a nonhomogeneous sample. Then, with the same probe and setup, we can immediately target that area with a series of spherical-indentation measurements, in which the applied load is known with a μ N precision, the indentation depth with sub- μ m precision and a maximum contact radius of 100 μ m. Thanks to the visualization of the internal structure of the sample, we can gain a better insight into the observed mechanical behavior. The ability to impart a small, confined load, and perform OCT A -scans at the same time, could lead to an alternative, high transverse resolution, Optical Coherence Elastography (OCE) sensor.
ISSN:1793-5458
1793-7205
DOI:10.1142/S179354581742007X