Spotlight on Nerves: Portable Multispectral Optoacoustic Imaging of Peripheral Nerve Vascularization and Morphology

Author:

Jüstel Dominik123ORCID,Irl Hedwig4ORCID,Hinterwimmer Florian5,Dehner Christoph13ORCID,Simson Walter6ORCID,Navab Nassir67ORCID,Schneider Gerhard4ORCID,Ntziachristos Vasilis137ORCID

Affiliation:

1. Institute of Biological and Medical Imaging Helmholtz Zentrum München D‐85764 Neuherberg Germany

2. Institute of Computational Biology Helmholtz Zentrum München D‐85764 Neuherberg Germany

3. Chair of Biological Imaging at the Central Institute for Translational Cancer Research (TranslaTUM) School of Medicine Technical University of Munich D‐81675 Munich Germany

4. Department of Anesthesiology and Intensive Care School of Medicine Klinikum Rechts Der Isar Technical University of Munich D‐81675 Munich Germany

5. Department of Orthopaedics and Sport Orthopaedics School of Medicine Klinikum Rechts Der Isar Technical University of Munich D‐81675 Munich Germany

6. Chair for Computer Aided Medical Procedures and Augmented Reality Technical University of Munich D‐80333 Munich Germany

7. Munich Institute of Robotics and Machine Intelligence Technical University of Munich D‐80992 Munich Germany

Abstract

AbstractVarious morphological and functional parameters of peripheral nerves and their vascular supply are indicative of pathological changes due to injury or disease. Based on recent improvements in optoacoustic image quality, the ability of multispectral optoacoustic tomography, to investigate the vascular environment and morphology of peripheral nerves is explored in vivo in a pilot study on healthy volunteers in tandem with ultrasound imaging (OPUS). The unique ability of optoacoustic imaging to visualize the vasa nervorum by observing intraneural vessels in healthy nerves is showcased in vivo for the first time. In addition, it is demonstrated that the label‐free spectral optoacoustic contrast of the perfused connective tissue of peripheral nerves can be linked to the endogenous contrast of hemoglobin and collagen. Metrics are introduced to analyze the composition of tissue based on its optoacoustic contrast and show that the high‐resolution spectral contrast reveals specific differences between nervous tissue and reference tissue in the nerve's surrounding. How this showcased extraction of peripheral nerve characteristics using multispectral optoacoustic and ultrasound imaging could offer new insights into the pathophysiology of nerve damage and neuropathies, for example, in the context of diabetes is discussed.

Publisher

Wiley

Subject

General Physics and Astronomy,General Engineering,Biochemistry, Genetics and Molecular Biology (miscellaneous),General Materials Science,General Chemical Engineering,Medicine (miscellaneous)

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