Lipid deposition can be assessed with combined intravascular photoacoustic/ultrasound (IVPA/US) imaging. To date, the clinical translation of IVPA/US imaging has been stalled by a low imaging speed and catheter complexity. In this paper, we demonstrate imaging of lipid targets in swine coronary arteries in vivo, at a clinically useful frame rate of 20 s−1. We confirmed image contrast for atherosclerotic plaque in human samples ex vivo. The system is on a mobile platform and provides real-time data visualization during acquisition. We achieved an IVPA signal-to-noise ratio of 20 dB. These data show that clinical translation of IVPA is possible in principle.ChemE/Advanced Soft MatterImPhys/Acoustical Wavefield Imagin
Intravascular photoacoustic (IVPA) imaging technology enables the visualization of pathological char...
Lipid deposition inside the arterial wall is a key indicator of plaque vulnerability. An intravascul...
AbstractSpectroscopic intravascular photoacoustic imaging (sIVPA) has shown promise to detect and di...
Lipid deposition can be assessed with combined intravascular photoacoustic/ultrasound (IVPA/US) imag...
Atherosclerosis is the major form of cardiovascular disease, which has been the number one cause of ...
Intravascular photoacoustic-ultrasound (IVPA-US) imaging is an emerging hybrid modality for the dete...
textabstractThe rupture of vulnerable atherosclerotic plaque is the most frequent cause of acute car...
We demonstrate intravascular photoacoustic imaging of human coronary atherosclerotic plaque. The dat...
The presence of lipids in atherosclerotic coronary lesions is an important determinant of their pote...
textabstractThe lipid content in plaques is an important marker for identifying atherosclerotic lesi...
A pressing need exists to detect vulnerable plaque in CVD, the number one killer in the United State...
Intravascular photoacoustic imaging at 1.7 μm spectral band has shown promising capabilities for lip...
Coronary heart disease is the leading cause of death in the United States and the incidence is proje...
Lipid deposition inside the arterial wall is a hallmark of plaque vulnerability. Based on overtone a...
Abstract.The catheter-based intravascular photoacoustic (IVPA) imaging for diagnosing atherosclerosi...
Intravascular photoacoustic (IVPA) imaging technology enables the visualization of pathological char...
Lipid deposition inside the arterial wall is a key indicator of plaque vulnerability. An intravascul...
AbstractSpectroscopic intravascular photoacoustic imaging (sIVPA) has shown promise to detect and di...
Lipid deposition can be assessed with combined intravascular photoacoustic/ultrasound (IVPA/US) imag...
Atherosclerosis is the major form of cardiovascular disease, which has been the number one cause of ...
Intravascular photoacoustic-ultrasound (IVPA-US) imaging is an emerging hybrid modality for the dete...
textabstractThe rupture of vulnerable atherosclerotic plaque is the most frequent cause of acute car...
We demonstrate intravascular photoacoustic imaging of human coronary atherosclerotic plaque. The dat...
The presence of lipids in atherosclerotic coronary lesions is an important determinant of their pote...
textabstractThe lipid content in plaques is an important marker for identifying atherosclerotic lesi...
A pressing need exists to detect vulnerable plaque in CVD, the number one killer in the United State...
Intravascular photoacoustic imaging at 1.7 μm spectral band has shown promising capabilities for lip...
Coronary heart disease is the leading cause of death in the United States and the incidence is proje...
Lipid deposition inside the arterial wall is a hallmark of plaque vulnerability. Based on overtone a...
Abstract.The catheter-based intravascular photoacoustic (IVPA) imaging for diagnosing atherosclerosi...
Intravascular photoacoustic (IVPA) imaging technology enables the visualization of pathological char...
Lipid deposition inside the arterial wall is a key indicator of plaque vulnerability. An intravascul...
AbstractSpectroscopic intravascular photoacoustic imaging (sIVPA) has shown promise to detect and di...