Time domain diffuse Raman spectroscopy using single pixel detection

Author:

Bossi AlessandroORCID,Sekar Sanathana Konugolu Venkata1ORCID,Lacerenza Michele2,Gandolfi Valerio,Šušnjar Stefan34,Lanka Pranav1ORCID,D’Andrea CosimoORCID,Vanna Renzo5ORCID,Valentini Gianluca5ORCID,Farina Andrea5ORCID,Pifferi Antonio5ORCID

Affiliation:

1. Tyndall National Institute

2. PIONIRS s.r.l. Milano

3. SpectraCure AB

4. Lund University

5. CNR-Institute for Photonics and Nanotechnologies (CNR-IFN)

Abstract

Diffuse Raman spectroscopy (DIRS) extends the high chemical specificity of Raman scattering to in-depth investigation of thick biological tissues. We present here a novel approach for time-domain diffuse Raman spectroscopy (TD-DIRS) based on a single-pixel detector and a digital micromirror device (DMD) within an imaging spectrometer for wavelength encoding. This overcomes the intrinsic complexity and high cost of detection arrays with ps-resolving time capability. Unlike spatially offset Raman spectroscopy (SORS) or frequency offset Raman spectroscopy (FORS), TD-DIRS exploits the time-of-flight distribution of photons to probe the depth of the Raman signal at a single wavelength with a single source-detector separation. We validated the system using a bilayer tissue-bone mimicking phantom composed of a 1 cm thick slab of silicone overlaying a calcium carbonate specimen and demonstrated a high differentiation of the two Raman signals. We reconstructed the Raman spectra of the two layers, offering the potential for improved and quantitative material analysis. Using a bilayer phantom made of porcine muscle and calcium carbonate, we proved that our system can retrieve Raman peaks even in the presence of autofluorescence typical of biomedical tissues. Overall, our novel TD-DIRS setup proposes a cost-effective and high-performance approach for in-depth Raman spectroscopy in diffusive media.

Funder

Ministero dell'Università e della Ricerca

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics,Biotechnology

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