Two different optical fiber probes for combined Raman and fluorescence spectroscopic measurements were designed, developed and used for tissue diagnostics. Two visible laser diodes were used for fluorescence spectroscopy, whereas a laser diode emitting in the NIR was used for Raman spectroscopy. The two probes were based on fiber bundles with a central multimode optical fiber, used for delivering light to the tissue, and 24 surrounding optical fibers for signal collection. Both fluorescence and Raman spectra were acquired using the same detection unit, based on a cooled CCD camera, connected to a spectrograph. The two probes were successfully employed for diagnosing melanocytic lesions in a good agreement with common routine histology. The obtained results demonstrated that the multimodal approach is crucial for improving diagnostic capabilities. Further investigations were performed on colon and brain tissue samples in order to have a benchmark for diagnosing a broader range of tissue lesions and malignancies. The system presented here can improve diagnostic capabilities on a broad range of tissues and has the potential of being used for endoscopic inspections in the near future. © (2014) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.

Multimodal fiber probe spectroscopy for tissue diagnostics applications: a combined Raman-fluorescence approachBiomedical Vibrational Spectroscopy VI: Advances in Research and Industry / Riccardo Cicchi;Suresh Anand;Susanna Rossari;Alessandro Sturiale;Flavio Giordano;Vincenzo De Giorgi;Vincenza Maio;Daniela Massi;Gabriella Nesi;Anna Maria Buccoliero;Francesco Tonelli;Renzo Guerrini;Nicola Pimpinelli;Francesco S. Pavone. - ELETTRONICO. - 8939:(2014), pp. 89390U-89390U-6. (Intervento presentato al convegno Conference on Biomedical Vibrational Spectroscopy VI - Advances in Research and Industry) [10.1117/12.2037024].

Multimodal fiber probe spectroscopy for tissue diagnostics applications: a combined Raman-fluorescence approachBiomedical Vibrational Spectroscopy VI: Advances in Research and Industry

CICCHI, RICCARDO;ROSSARI, SUSANNA;Giordano, Flavio;MAIO, VINCENZA;Daniela Massi;NESI, GABRIELLA;BUCCOLIERO, ANNA MARIA;TONELLI, FRANCESCO;GUERRINI, RENZO;PIMPINELLI, NICOLA;PAVONE, FRANCESCO SAVERIO
2014

Abstract

Two different optical fiber probes for combined Raman and fluorescence spectroscopic measurements were designed, developed and used for tissue diagnostics. Two visible laser diodes were used for fluorescence spectroscopy, whereas a laser diode emitting in the NIR was used for Raman spectroscopy. The two probes were based on fiber bundles with a central multimode optical fiber, used for delivering light to the tissue, and 24 surrounding optical fibers for signal collection. Both fluorescence and Raman spectra were acquired using the same detection unit, based on a cooled CCD camera, connected to a spectrograph. The two probes were successfully employed for diagnosing melanocytic lesions in a good agreement with common routine histology. The obtained results demonstrated that the multimodal approach is crucial for improving diagnostic capabilities. Further investigations were performed on colon and brain tissue samples in order to have a benchmark for diagnosing a broader range of tissue lesions and malignancies. The system presented here can improve diagnostic capabilities on a broad range of tissues and has the potential of being used for endoscopic inspections in the near future. © (2014) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
2014
Biomedical Vibrational Spectroscopy VI: Advances in Research and IndustryBiomedical Vibrational Spectroscopy VI: Advances in Research and Industry
Conference on Biomedical Vibrational Spectroscopy VI - Advances in Research and Industry
Riccardo Cicchi;Suresh Anand;Susanna Rossari;Alessandro Sturiale;Flavio Giordano;Vincenzo De Giorgi;Vincenza Maio;Daniela Massi;Gabriella Nesi;Anna Maria Buccoliero;Francesco Tonelli;Renzo Guerrini;Nicola Pimpinelli;Francesco S. Pavone
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Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/872321
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