The recently developed optoacoustic tomography systems have attained volumetric frame rates exceeding 100 Hz, thus opening up new venues for studying previously invisible biological dynamics. Further gains in temporal resolution can potentially be achieved via partial data acquisition, though a priori knowledge on the acquired data is essential for rendering accurate reconstructions using compressed sensing approaches. In this work, we suggest a machine learning method based on principal component analysis for high-frame-rate volumetric cardiac imaging using only a few tomographic optoacoustic projections. The method is particularly effective for discerning periodic motion, as demonstrated herein by non-invasive imaging of a beating mouse h...
State-of-the-art optoacoustic tomographic imaging systems have been shown to attain three-dimensiona...
The rapidly evolving field of optoacoustic (photoacoustic) imaging and tomography is driven by a con...
The fast heart rate (∼7 Hz) of the mouse makes cardiac imaging and functional analysis difficult...
The recently developed optoacoustic tomography systems have attained volumetric frame rates exceedin...
The recently developed optoacoustic tomography systems have attained volumetric frame rates exceedin...
Extraction of murine cardiac functional parameters on a beat-by-beat basis remains challenging with ...
Volumetric optoacoustic tomography has been shown to provide unprecedented capabilities for ultrafas...
Extraction of murine cardiac functional parameters on a beat-by-beat basis is limited with the exist...
Functional imaging of mouse models of cardiac health and disease provides a major contribution to ou...
The Langendorff-perfused heart technique has become the model of choice for multiparametric optical ...
Propagation of electromechanical waves in excitable heart muscles follows complex spatiotemporal pat...
The Langendorff-perfused heart technique has become the model of choice for multiparametric optical ...
State-of-the-art optoacoustic tomographic imaging systems have been shown to attain three-dimensiona...
Optoacoustic (OA) imaging technology has become a widely used tool in various preclinical and clinic...
Understanding the mechanisms of cardiac disorders largely depends on availability of multi-dimension...
State-of-the-art optoacoustic tomographic imaging systems have been shown to attain three-dimensiona...
The rapidly evolving field of optoacoustic (photoacoustic) imaging and tomography is driven by a con...
The fast heart rate (∼7 Hz) of the mouse makes cardiac imaging and functional analysis difficult...
The recently developed optoacoustic tomography systems have attained volumetric frame rates exceedin...
The recently developed optoacoustic tomography systems have attained volumetric frame rates exceedin...
Extraction of murine cardiac functional parameters on a beat-by-beat basis remains challenging with ...
Volumetric optoacoustic tomography has been shown to provide unprecedented capabilities for ultrafas...
Extraction of murine cardiac functional parameters on a beat-by-beat basis is limited with the exist...
Functional imaging of mouse models of cardiac health and disease provides a major contribution to ou...
The Langendorff-perfused heart technique has become the model of choice for multiparametric optical ...
Propagation of electromechanical waves in excitable heart muscles follows complex spatiotemporal pat...
The Langendorff-perfused heart technique has become the model of choice for multiparametric optical ...
State-of-the-art optoacoustic tomographic imaging systems have been shown to attain three-dimensiona...
Optoacoustic (OA) imaging technology has become a widely used tool in various preclinical and clinic...
Understanding the mechanisms of cardiac disorders largely depends on availability of multi-dimension...
State-of-the-art optoacoustic tomographic imaging systems have been shown to attain three-dimensiona...
The rapidly evolving field of optoacoustic (photoacoustic) imaging and tomography is driven by a con...
The fast heart rate (∼7 Hz) of the mouse makes cardiac imaging and functional analysis difficult...