Since optical contrast is sensitive to functional parameters, including the hemoglobin oxygen saturation and the total concentration of hemoglobin, imaging based on optical contrast has been widely employed for the real-time monitoring of tissue oxygen consumption and hemodynamics in biological tissues. However, due to the overwhelming scattering of light in tissues, traditional optical imaging modalities cannot provide satisfactory spatial resolution. Functional photoacoustic tomography is a novel technique that combines high optical contrast and high ultrasonic resolution. Here, we present our study of a laser-based photoacoustic technique that, for the first time to our knowledge, monitors blood oxygenation in the rat brain in vivo. The ...
Photoacoustic microscopy was used to noninvasively image variations in hemoglobin oxygen saturation ...
Photoacoustic microscopy was used to noninvasively image variations in hemoglobin oxygen saturation ...
In this work, we exploit the high depth and temporal resolutions of PAM to noninvasively image the b...
Based on the multi-wavelength laser-based photoacoustic tomography, non-invasive in vivo imaging of ...
Based on the multiwavelength laser-based photoacoustic tomography, noninvasive imaging of cerebral b...
Simultaneous transcranial imaging of two functional parameters, the total concentration of hemoglobi...
Optical contrast is sensitive to physiological parameters, such as the oxygen saturation and total c...
Optical contrast is sensitive to physiological parameters, such as the oxygen saturation and total c...
In this study, we demonstrate the potential of photoacoustic tomography for the study of traumatic b...
In this study, we demonstrate the potential of photoacoustic tomography for the study of traumatic b...
Imaging techniques based on optical contrast analysis can be used to visualize dynamic and functiona...
Optical contrast is sensitive to functional parameters, including the oxygen saturation and total co...
We present a study of the functional photoacoustic imaging of tumor hypoxia in mice in vivo. Based o...
We present a study of the functional photoacoustic imaging of tumor hypoxia in mice in vivo. Based o...
Optical contrast is sensitive to functional parameters, including the oxygen saturation and total co...
Photoacoustic microscopy was used to noninvasively image variations in hemoglobin oxygen saturation ...
Photoacoustic microscopy was used to noninvasively image variations in hemoglobin oxygen saturation ...
In this work, we exploit the high depth and temporal resolutions of PAM to noninvasively image the b...
Based on the multi-wavelength laser-based photoacoustic tomography, non-invasive in vivo imaging of ...
Based on the multiwavelength laser-based photoacoustic tomography, noninvasive imaging of cerebral b...
Simultaneous transcranial imaging of two functional parameters, the total concentration of hemoglobi...
Optical contrast is sensitive to physiological parameters, such as the oxygen saturation and total c...
Optical contrast is sensitive to physiological parameters, such as the oxygen saturation and total c...
In this study, we demonstrate the potential of photoacoustic tomography for the study of traumatic b...
In this study, we demonstrate the potential of photoacoustic tomography for the study of traumatic b...
Imaging techniques based on optical contrast analysis can be used to visualize dynamic and functiona...
Optical contrast is sensitive to functional parameters, including the oxygen saturation and total co...
We present a study of the functional photoacoustic imaging of tumor hypoxia in mice in vivo. Based o...
We present a study of the functional photoacoustic imaging of tumor hypoxia in mice in vivo. Based o...
Optical contrast is sensitive to functional parameters, including the oxygen saturation and total co...
Photoacoustic microscopy was used to noninvasively image variations in hemoglobin oxygen saturation ...
Photoacoustic microscopy was used to noninvasively image variations in hemoglobin oxygen saturation ...
In this work, we exploit the high depth and temporal resolutions of PAM to noninvasively image the b...