We are happy to welcome Joachim Gerike to the art photonics GmbH team as our new Product Line Manager. With a Dipl.-Ing. in Mechanical Engineering from Technische Universität Braunschweig and a career in the optical industry dating back to 1996, Joachim brings decades of highly specialized expertise to our operations. His extensive background covers everything […]
When your research or production takes you into extreme environments, maintaining perfect optical transmission should never be a hurdle. At art photonics GmbH, we invite you to explore our FlexiRay® Vacuum Fiber Optic Feedthroughs - engineered to provide a highly flexible, continuous optical path directly into your vacuum or pressurized chambers. Whether you are conducting […]
We are pleased to announce that our R&D Manager, Alexander Novikov, will be attending JASIS 2026. If you are planning to attend the event and are looking to optimize your Process Analytical Technology (PAT), this is an excellent opportunity to connect. At art photonics GmbH, we act as the fiber optic bridge between your complex […]
We are happy to welcome attendees of the EPIC Technology Meeting on Photonics for Quantum Technologies to our Berlin headquarters. On Monday, 15 June 2026, as part of the Program A company visits, we open our doors to give you a firsthand look at our production environment. We engineer and manufacture our mid-IR fiber solutions […]
art photonics GmbH, founded in Berlin in September 1998, is one of the worldwide leaders in development and production of specialty fiber products for a broad spectrum from 300 nm to 16 µm. Unique technologies of Polycrystalline Mid InfraRed (PIR-) fibers and Metal coated Silica fibers are used for assembly of various spectroscopy probes for medical diagnostics and industrial process control, in volume production of fiber for medical and industrial lasers, for different fiber bundles, etc. Since January 2024 art photonics GmbH is a member of NYNOMIC GROUP.
Innovative “Raman – needle” fiber optic probe for tumour delineation in the oral cavity
Posted on:
20 March 2020
Here we report the development of a new “Raman-needle” fiber probe, which was designed and manufactured as part of the RaSure project, funded by the EU “Eurostars” program.
About RaSure project:
Oral cavity cancer is a major public health issue, with annually 300.000 new cases. Surgery is the mainstay of treatment, but adequate tumour removal is not achieved in 85% of the cases. This affects survival and leads to additional treatment of patients by radiotherapy or chemotherapy. The hands and eyes of the surgeon are insufficient for tumour delineation in the oral cavity. Significant improvement is needed to improve the surgical success rate. In frames of RaSure, a fully automated Raman spectroscopic device is under development to achieve complete tumour removal in oral cancer surgeries. The product will consist of a dedicated Raman-based tissue inspection device, the operational system and disposable fiber-optic needle probes.
The consortium, which includes three companies: art photonics GmbH, RiverD International BV and Erasmus MC was tasked to develop a fully automated Raman spectroscopic device to help surgeons achieve complete tumour removal in oral cavity cancer surgeries. The device is inspecting removed tissue to check if the tumour has been removed with a sufficient boundary of healthy tissue during the surgery. If not, the device will inform the surgeon where extra tissue should be removed to achieve complete tumour removal. The role of art photonicsGmbH is the development of the unique disposable Raman-needle fiber probe that can be inserted into the tissue multiple times and measure without loss of quality of the results.
The innovative needle probe is satisfied the strict requirements from clinicians: tiny diameter (less than 1 mm), biocompatible materials and robustness. The above-mentioned features allow Raman probe to be inserted into the tissue sample multiple times. The Raman needle probe prototypes were extensively tested together with consortium partners in Erasmus MD and in Charité Clinic in operational theatre. The prototypes on fresh resected human tongue samples are showed reliable performance in recognition of cancer and non-cancer samples. The differentiation between tumour (T) and normal (N) parts of tongue are clearly visible both on Raman spectra and on PCA models. The results are perfectly corresponding to the information received from surgeon.
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