The fundamental limitations of photoacoustic microscopy for detecting optically absorbing molecules are investigated both theoretically and experimentally. We experimentally demonstrate noise-equivalent detection sensitivities of 160,000 methylene blue molecules (270 zeptomol or 2.7×10^(−19) mol) and 86,000 oxygenated hemoglobin molecules (140 zeptomol) using narrowband continuous-wave photoacoustics. The ultimate sensitivity of photoacoustics is fundamentally limited by thermal noise, which can present in the acoustic detection system as well as in the medium itself. Under the optimized conditions described herein and using commercially available detectors, photoacoustic microscopy can detect as few as 100s of oxygenated hemoglobin molecul...
As light intensity increases in photoacoustic imaging, the saturation of optical absorption and the ...
Fluorescence imaging has been employed as the gold-standard in molecular imaging. However, despite i...
Photoacoustic tomography, which detects non-radiative decay, is an emerging biomedical imaging modal...
The fundamental limitations of photoacoustic microscopy for detecting optically absorbing molecules ...
Recently, a number of optical imaging modalities have achieved single molecule sensitivity, includin...
Photoacoustic technology offers great promise for molecular imaging in vivo since it offers signific...
Optical absorption is closely associated with many physiologically important parameters, such as the...
By acoustically detecting the optical absorption contrast, photoacoustic (PA) tomography (PAT) has b...
Photoacoustic (PA) microscopy (PAM) can image optical absorption contrast with ultrasonic spatial re...
AbstractPhotoacoustic (PA) detection of single absorbing targets such as nanoparticles or cells can ...
[[abstract]]What we believe to be a novel multipass, acoustically open photoacoustic detector design...
Photoacoustic microscopy (PAM) has been shown to be a valuable tool for quantifying hemoglobin oxyge...
We show that it is possible to obtain high optical contrast photoacoustic images of tissue with 0.55...
The quantized vibration of chemical bonds provides a way of detecting specific molecules in a comple...
We developed second-generation (G2) optical-resolution photoacoustic microscopy (OR-PAM). Incorporat...
As light intensity increases in photoacoustic imaging, the saturation of optical absorption and the ...
Fluorescence imaging has been employed as the gold-standard in molecular imaging. However, despite i...
Photoacoustic tomography, which detects non-radiative decay, is an emerging biomedical imaging modal...
The fundamental limitations of photoacoustic microscopy for detecting optically absorbing molecules ...
Recently, a number of optical imaging modalities have achieved single molecule sensitivity, includin...
Photoacoustic technology offers great promise for molecular imaging in vivo since it offers signific...
Optical absorption is closely associated with many physiologically important parameters, such as the...
By acoustically detecting the optical absorption contrast, photoacoustic (PA) tomography (PAT) has b...
Photoacoustic (PA) microscopy (PAM) can image optical absorption contrast with ultrasonic spatial re...
AbstractPhotoacoustic (PA) detection of single absorbing targets such as nanoparticles or cells can ...
[[abstract]]What we believe to be a novel multipass, acoustically open photoacoustic detector design...
Photoacoustic microscopy (PAM) has been shown to be a valuable tool for quantifying hemoglobin oxyge...
We show that it is possible to obtain high optical contrast photoacoustic images of tissue with 0.55...
The quantized vibration of chemical bonds provides a way of detecting specific molecules in a comple...
We developed second-generation (G2) optical-resolution photoacoustic microscopy (OR-PAM). Incorporat...
As light intensity increases in photoacoustic imaging, the saturation of optical absorption and the ...
Fluorescence imaging has been employed as the gold-standard in molecular imaging. However, despite i...
Photoacoustic tomography, which detects non-radiative decay, is an emerging biomedical imaging modal...