Noninvasive Tracking of Embryonic Cardiac Dynamics and Development with Volumetric Optoacoustic Spectroscopy

Author:

Hatami Maryam1ORCID,Özbek Ali23,Deán‐Ben Xosé Luís23,Gutierrez Jessica1,Schill Alexander1,Razansky Daniel23,Larin Kirill V.14ORCID

Affiliation:

1. Department of Biomedical Engineering University of Houston Houston TX 77004 USA

2. Institute for Biomedical Engineering and Institute of Pharmacology and Toxicology Faculty of Medicine University of Zurich Zurich 8057 Switzerland

3. Institute for Biomedical Engineering Department of Information Technology and Electrical Engineering ETH Zurich Zurich 8092 Switzerland

4. Department of Integrative Physiology Baylor College of Medicine Houston TX 77030 USA

Abstract

AbstractNoninvasive monitoring of cardiac development can potentially prevent cardiac anomalies in adulthood. Mouse models provide unique opportunities to study cardiac development and disease in mammals. However, high‐resolution noninvasive functional analyses of murine embryonic cardiac models are challenging because of the small size and fast volumetric motion of the embryonic heart, which is deeply embedded inside the uterus. In this study, a real time volumetric optoacoustic spectroscopy (VOS) platform for whole‐heart visualization with high spatial (100 µm) and temporal (10 ms) resolutions is developed. Embryonic heart development on gestational days (GDs) 14.5–17.5 and quantify cardiac dynamics using time‐lapse‐4D image data of the heart is followed. Additionally, spectroscopic recordings enable the quantification of the blood oxygenation status in heart chambers in a label‐free and noninvasive manner. This technology introduces new possibilities for high‐resolution quantification of embryonic heart function at different gestational stages in mammalian models, offering an invaluable noninvasive method for developmental biology.

Funder

National Institutes of Health

Publisher

Wiley

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