Zenalux Partners with Tulane University

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Researchers at the Tulane University School of Medicine are also deploying the Zenascope system to monitor histological and physiological changes in wounded tissues in response to investigational regenerative therapies.“We are very pleased that this research partnership provides us with additional application paths for the Zenascope, and we look forward to detailing the findings of the studies in the near future.” The Zenascope PC1, an ultraviolet-visible spectrometer that achieves quantitative optical spectroscopy in turbid media, uses standard spectroscopic measurement hardware, proprietary software, and patented algorithms to achieve rapid, quantitative, and non-destructive analysis of biological tissue characteristics (biomarkers) that reflect the underlying function and composition of biological tissue.The specialized, real-time, diagnostic device shines white light on opaque target media, and then measures and analyzes the reflected signal.The ability of the system to provide rapid feedback and its ease-of-use have allowed us to track tissue oxygenation in individual animals over time, and has provided another set of useful endpoints for our work.” This work was presented at the World Congress of Endourology in October.Researchers at the Tulane University School of Medicine are also deploying the Zenascope system to monitor histological and physiological changes in wounded tissues in response to investigational regenerative therapies.“We are thrilled to be collaborating with yet another prestigious institution through our Research Partnership Program,” said Dr. Jesko von Windheim, CEO of Zenalux.“We are very pleased that this research partnership provides us with additional application paths for the Zenascope, and we look forward to detailing the findings of the studies in the near future.”The Zenascope PC1, an ultraviolet-visible spectrometer that achieves quantitative optical spectroscopy in turbid media, uses standard spectroscopic measurement hardware, proprietary software, and patented algorithms to achieve rapid, quantitative, and non-destructive analysis of biological tissue characteristics (biomarkers) that reflect the underlying function and composition of biological tissue.The specialized, real-time, diagnostic device shines white light on opaque target media, and then measures and analyzes the reflected signal.

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