The present chapter summarizes progress with optical methods that go beyond human vision. The focus is on two particular technologies: fluorescence molecular imaging and optoacoustic (photoacoustic) imaging. The rationale for the selection of these two methods is that in contrast to optical microscopy techniques, both fluorescence and optoacoustic imaging can achieve large fields of view, i.e., spanning several centimeters in two or three dimensions. Such fields of views relate better to human vision and can visualize large parts of tissue, a necessary premise for clinical detection. Conversely, optical microscopy methods only scan millimeter-sized dimensions or smaller. With such operational capacity, optical microscopy methods need to be ...
Photoacoustic (PA) imaging is a rapidly developing new biomedical imaging modality. Unlike existing ...
Optoacoustic tomography is an emerging field of medical imaging that is rapidly developing due to it...
Unlike traditional optical methods, optoacoustic imaging is less sensitive to scattering of ballisti...
The present chapter summarizes progress with optical methods that go beyond human vision. The focus ...
Among several techniques considered for surgical and endoscopic imaging, novel optical methods are e...
Optical imaging is capable of providing valuable molecular contrast, cell tracking, genetic reporter...
Since the inception of the microscope, optical imaging is serving the biological discovery for more ...
Macroscopic optical imaging has rather humble technical origins; it has been mostly implemented by p...
Among several techniques considered for surgical and endoscopic imaging, novel optical methods are e...
Optoacoustic imaging is emerging as a powerful modality for in vivo imaging of small animals and hum...
Optoacoustic imaging combines the rich contrast of optical methods with the resolution of ultrasound...
Promising new developments include the introduction of near-infrared-shifted fluorescent molecules t...
Optoacoustic imaging, or photoacoustic imaging, is insensitive to photon scattering within biologica...
Multi-Spectral Optoacoustic Tomography (MSOT) merges the power of high-resolution imaging at tissue ...
For centuries, biological discoveries were based on optical imaging, in particular microscopy but al...
Photoacoustic (PA) imaging is a rapidly developing new biomedical imaging modality. Unlike existing ...
Optoacoustic tomography is an emerging field of medical imaging that is rapidly developing due to it...
Unlike traditional optical methods, optoacoustic imaging is less sensitive to scattering of ballisti...
The present chapter summarizes progress with optical methods that go beyond human vision. The focus ...
Among several techniques considered for surgical and endoscopic imaging, novel optical methods are e...
Optical imaging is capable of providing valuable molecular contrast, cell tracking, genetic reporter...
Since the inception of the microscope, optical imaging is serving the biological discovery for more ...
Macroscopic optical imaging has rather humble technical origins; it has been mostly implemented by p...
Among several techniques considered for surgical and endoscopic imaging, novel optical methods are e...
Optoacoustic imaging is emerging as a powerful modality for in vivo imaging of small animals and hum...
Optoacoustic imaging combines the rich contrast of optical methods with the resolution of ultrasound...
Promising new developments include the introduction of near-infrared-shifted fluorescent molecules t...
Optoacoustic imaging, or photoacoustic imaging, is insensitive to photon scattering within biologica...
Multi-Spectral Optoacoustic Tomography (MSOT) merges the power of high-resolution imaging at tissue ...
For centuries, biological discoveries were based on optical imaging, in particular microscopy but al...
Photoacoustic (PA) imaging is a rapidly developing new biomedical imaging modality. Unlike existing ...
Optoacoustic tomography is an emerging field of medical imaging that is rapidly developing due to it...
Unlike traditional optical methods, optoacoustic imaging is less sensitive to scattering of ballisti...