The lipid content in plaques is an important marker for identifying atherosclerotic lesions and disease states. Intravascular photoacoustic (IVPA) imaging can be used to visualize lipids in the artery. In this study, we further investigated lipid detection in the 1.7-μm spectral range. By exploiting the relative difference between the IVPA signal strengths at 1718 and 1734 nm, we could successfully detect and differentiate between the plaque lipids and peri-adventitial fat in human coronary arteries ex vivo. Our study demonstrates that IVPA imaging can positively identify atherosclerotic plaques using only two wavelengths, which could enable rapid data acquisition in vivo
Lipid deposition inside the arterial wall is a key indicator of plaque vulnerability. An intravascul...
Atherosclerosis is the major form of cardiovascular disease, which has been the number one cause of ...
AbstractBackgroundHistologic studies have demonstrated that lipid content and its spatial distributi...
textabstractThe lipid content in plaques is an important marker for identifying atherosclerotic lesi...
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...
Heart disease is the leading cause of death in the United States and worldwide. Each year over 370,0...
The presence of lipids in atherosclerotic coronary lesions is an important determinant of their pote...
Lipid deposition inside the arterial wall is a hallmark of plaque vulnerability. Based on overtone a...
textabstractSpectroscopic intravascular photoacoustic imaging (sIVPA) has shown promise to detect an...
The natural history of atherosclerosis is marked by changes in the lipid biochemistry in the disease...
A pressing need exists to detect vulnerable plaque in CVD, the number one killer in the United State...
Intravascular photoacoustic-ultrasound (IVPA-US) imaging is an emerging hybrid modality for the dete...
We introduce a method for photoacoustic imaging of the carotid artery, tailored toward detection of ...
The rupture of vulnerable atherosclerotic plaque is the most frequent cause of acute cardiovascular ...
Lipid deposition inside the arterial wall is a key indicator of plaque vulnerability. An intravascul...
Atherosclerosis is the major form of cardiovascular disease, which has been the number one cause of ...
AbstractBackgroundHistologic studies have demonstrated that lipid content and its spatial distributi...
textabstractThe lipid content in plaques is an important marker for identifying atherosclerotic lesi...
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...
Heart disease is the leading cause of death in the United States and worldwide. Each year over 370,0...
The presence of lipids in atherosclerotic coronary lesions is an important determinant of their pote...
Lipid deposition inside the arterial wall is a hallmark of plaque vulnerability. Based on overtone a...
textabstractSpectroscopic intravascular photoacoustic imaging (sIVPA) has shown promise to detect an...
The natural history of atherosclerosis is marked by changes in the lipid biochemistry in the disease...
A pressing need exists to detect vulnerable plaque in CVD, the number one killer in the United State...
Intravascular photoacoustic-ultrasound (IVPA-US) imaging is an emerging hybrid modality for the dete...
We introduce a method for photoacoustic imaging of the carotid artery, tailored toward detection of ...
The rupture of vulnerable atherosclerotic plaque is the most frequent cause of acute cardiovascular ...
Lipid deposition inside the arterial wall is a key indicator of plaque vulnerability. An intravascul...
Atherosclerosis is the major form of cardiovascular disease, which has been the number one cause of ...
AbstractBackgroundHistologic studies have demonstrated that lipid content and its spatial distributi...