MultiSpectral Optoacoustic Tomography (MSOT) is a fast developing imaging modality, combining the high resolution and penetration depth of ultrasound with the excellent contrast from optical imaging of tissue. Absorption and scattering of the near infrared excitation light modulates the spectral profile of light as it propagates deep into biological tissue, meaning the images obtained provide only qualitative insight into the distribution of tissue chromophores. The goal of this work is to accurately recover the spectral profile of excitation light by modelling light fluence in the data reconstruction, to enable quantitative imaging. We worked with a commercial small animal MSOT scanner and developed our light fluence correction for its' cy...
Molecular optoacoustic (photoacoustic) imaging typically relies on the spectral identification of ab...
Over the last decade fluorescent reporter technologies (both fluorescent probes and proteins) have b...
Optical absorption contrast, large imaging depth at ultrasonic resolution, and the potential of func...
MultiSpectral Optoacoustic Tomography (MSOT) is a fast developing imaging modality, combining the hi...
MultiSpectral Optoacoustic Tomography (MSOT) is a fast developing imaging modality, combining the hi...
Optoacoustic Tomography is a fast developing imaging modality, combining the high resolution and pen...
Optoacoustic Tomography is a fast developing imaging modality, combining the high resolution and pen...
Optoacoustic Tomography is a fast developing imaging modality, combining the high resolution and pen...
Optoacoustic tomography is a fast developing imaging modality, combining the high contrast available...
Optoacoustic tomography is a fast developing imaging modality, combining the high contrast available...
Optoacoustic tomography is a fast developing imaging modality, combining the high contrast available...
Optoacoustic tomography is a fast developing imaging modality, combining the high contrast available...
Optoacoustic imaging is emerging as a noninvasive imaging modality that can resolve optical contrast...
Molecular optoacoustic (photoacoustic) imaging typically relies on the spectral identification of ab...
Biomedical optoacoustics has emerged in the recent decade as a powerful tool for high-resolution vis...
Molecular optoacoustic (photoacoustic) imaging typically relies on the spectral identification of ab...
Over the last decade fluorescent reporter technologies (both fluorescent probes and proteins) have b...
Optical absorption contrast, large imaging depth at ultrasonic resolution, and the potential of func...
MultiSpectral Optoacoustic Tomography (MSOT) is a fast developing imaging modality, combining the hi...
MultiSpectral Optoacoustic Tomography (MSOT) is a fast developing imaging modality, combining the hi...
Optoacoustic Tomography is a fast developing imaging modality, combining the high resolution and pen...
Optoacoustic Tomography is a fast developing imaging modality, combining the high resolution and pen...
Optoacoustic Tomography is a fast developing imaging modality, combining the high resolution and pen...
Optoacoustic tomography is a fast developing imaging modality, combining the high contrast available...
Optoacoustic tomography is a fast developing imaging modality, combining the high contrast available...
Optoacoustic tomography is a fast developing imaging modality, combining the high contrast available...
Optoacoustic tomography is a fast developing imaging modality, combining the high contrast available...
Optoacoustic imaging is emerging as a noninvasive imaging modality that can resolve optical contrast...
Molecular optoacoustic (photoacoustic) imaging typically relies on the spectral identification of ab...
Biomedical optoacoustics has emerged in the recent decade as a powerful tool for high-resolution vis...
Molecular optoacoustic (photoacoustic) imaging typically relies on the spectral identification of ab...
Over the last decade fluorescent reporter technologies (both fluorescent probes and proteins) have b...
Optical absorption contrast, large imaging depth at ultrasonic resolution, and the potential of func...