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Infrared photonics for healthcare: A roadmap for proactive and predictive health management

Borislav Hinkov, Johannes Kunsch, Werner Mäntele, Lukasz Sterczewski, Ángel Sánchez-Illana, Jaume Béjar-Grimalt, Víctor Navarro-Esteve, David Perez-Guaita, Alexander Mittelstädt, Philippa Clark, Valentino Lepro, Sergius Janik, Thorsten Lubinski, Luis Felipe das Chagas e Silva de Carvalho, Hugh James Byrne, Filiz Korkmaz, Michael Kaluza, Mattia Saita, Lars Melchior, Alicja Dabrowska, Georg Ramer, Bernhard Lendl, Nathalie Woitzik, Klaus Gerwert, Peter Gardner, Hugues Tariel, Olivier Sire, Margaux Petay, Elisabeth Holub, Markus Brandstetter, Kristina Duswald, Verena Karl, Florian Meirer, Lukas Kenner, Gabriela Flores Rangel, Boris Mizaikoff, Mohamed Sy, Aamir Farooq, Liudmila Voronina, Marinus Huber, Tarek Eissa, Katharina Dietmann, Lorenzo Gatto, Mihaela Žigman, Joseph Rebel, Frank Fleischmann, Jakub Mnich, Jarosław Sotor, Bassam Saadany, Matthias Budden, Thomas Gebert, Marco Schossig, Shankar Baliga, Timothy Olsen, Christopher Harrower, Ivan Zorin, Chiara Lindner, Shigeki Takeuchi, Sven Ramelow, Paul Gattinger, David Stark, Réka-Eszter Vass, Killian Keller, Alessio Cargioli, Mattias Beck, Jérôme Faist, Robert Weih, Josephine Nauschütz, Julian Scheuermann, Jordan Fordyce, Johannes Koeth, Ka Fai Mak, Alexander Weigel, Ryszard Piramidowicz, Stanisław Stopiński, Mircea Guina, Jukka Viheriälä, Felix Jaeschke, Polina Fomina, Alexander Novikov, Viacheslav Artyushenko, Ivan Sinev, Nikita Glebov, Berkay Dagli, Hatice Altug

arXiv:2602.08248Published February 9, 20260 citations
  • physics.app-ph

Abstract

The field of infrared (IR) photonics is currently undergoing remarkable progress, moving rapidly towards practical sensing applications demanded by medical therapy and diagnostics (theranostics). The Developments can be divided into three main categories: (i) novel devices and measurement concepts including advanced updates of classical approaches that push medical sensing into the spotlight; (ii) new demonstrations of photonic integrated circuit (PIC-)based IR devices enabling highly miniaturized sensors for point-of-care application as well as medical and wellness wearables; and (iii) technologically-mature IR demonstrators that enable first medical sensing and treatment applications. This roadmap paper provides a consolidated overview of this highly dynamic and interdisciplinary research field with a focus on the major roadblocks that limit the widespread adoption of IR photonics in large-scale medical diagnostics. Special attention is given to the ambivalence between the molecular-level spectroscopic interpretation and a broader health-state assessment, highlighting the need for a common framework. Additionally, the paper discusses the critical importance of unified measurement standards, calibration protocols, and medical certification processes to ensure the validity of experimental results, reproducibility, and clinical trust, particularly when novel experimental techniques and AI algorithms are involved. Perspectives from major past and current contributors to application-oriented IR photonics will be provided.

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