In current medical diagnostic procedures, biopsy and observing abnormal changes in tissue remain the golden standard; however, information needed for diagnosis takes days to obtain. Combining optical imaging and diagnostics offer great promise to address unmet clinical needs. A non-invasive optical imaging approaches enable earlier onset of treatment, reduced therapy costs, reduced recurrence rates and less patient discomfort.
Up to now, the 4 optical methods at play were applied as standalone techniques, each targeting one biomarker. However, recently it has been shown that the clinical diagnosis is significantly improved by this multimodal biomedical imaging which comes closer to identifying how diseased tissue has developed, and at what stage it is in. And when it comes to cancer, or cellular-level functional imaging, it is being considered the next generation technology within diagnostics.
By introducing new multi-modal optical imaging, the overarching vision is that MIB improves the diagnostic performance of bladder cancer allowing earlier onset of treatment and thereby reducing the recurrence rate by at least 10%, which currently is 50% after 12 months follow-up. Due to the currently high recurrence rate, there is a need for a high number of expensive follow-up procedures. By improving diagnosis and, therefore, reducing recurrence rate, the need for follow-up procedures is reduced, and patient quality of life will improve drastically.
The project relies on the development of new compact light sources, high-speed imaging systems, and novel probes for endoscopes being combined and applied clinically. The consortium comprises world-leading academic organisations in a strong, unique partnership with innovative SMEs and clinical end-users. Although requiring further development, MIB has made significant progress in the technical development of the imaging platform, and, in addition, completed first steps towards validation with lab tests prior to the planned animal and human testing. The consortium conducted a clinical study successfully with patients using the developed technology.