Spectrally resolved bioluminescence optical tomography is an approach to recover images of luciferase activity within a volume using multiwavelength emission data from internal bioluminescence sources. The underlying problem of uniqueness associated with nonspectrally resolved intensity-based bioluminescence tomography is highlighted. Reconstructed images of bioluminescence are presented by using as input both simulated and real multiwavelength data from a tissue-simulating phantom. The location of the internal bioluminescence is obtained with 1 mm accuracy. Further, the amplitude of the reconstructed source is proportional to the actual bioluminescence intensity.</p
Bioluminescence imaging has shown great potential for studying and monitoring disease progression in...
The bioluminescence tomography (BLT) emerges as a novel molecular imaging technology for small anima...
The bioluminescence tomography is a novel molecular imaging technology for small animal studies. Kno...
Spectrally-resolved BioLuminescence optical Tomography (sBLT) is used to recover images of Luciferas...
Recent interest in modeling and reconstruction algorithms for Bioluminescence Tomography (BLT) has i...
Abstract: Spectrally-resolved BioLuminescence optical Tomography (sBLT) is used to recover images of...
For bioluminescence imaging studies in small animals, it is important to be able to accurately local...
UnrestrictedFor bioluminescence and fluorescence imaging studies in small animals, it is important ...
Bioluminescence tomography (BLT) is used to localize and quantify bioluminescent sources in a small ...
Bioluminescence tomography (BLT) is a rapidly developing new area of molecular imaging. The goal of ...
Bioluminescence imaging (BLI) is widely used in pre-clinical research to monitor the location and mi...
Bioluminescence imaging (BLI) is a non-contact, optical imaging technique based on measurement of e...
The development, characterisation and testing of a novel all-optical, multi-modal preclinical biomed...
Motivated by bioluminescent imaging needs for studies on gene therapy and other applications in the ...
Bioluminescent imaging (BLI) of cells expressing luciferase is a valuable noninvasive technique for ...
Bioluminescence imaging has shown great potential for studying and monitoring disease progression in...
The bioluminescence tomography (BLT) emerges as a novel molecular imaging technology for small anima...
The bioluminescence tomography is a novel molecular imaging technology for small animal studies. Kno...
Spectrally-resolved BioLuminescence optical Tomography (sBLT) is used to recover images of Luciferas...
Recent interest in modeling and reconstruction algorithms for Bioluminescence Tomography (BLT) has i...
Abstract: Spectrally-resolved BioLuminescence optical Tomography (sBLT) is used to recover images of...
For bioluminescence imaging studies in small animals, it is important to be able to accurately local...
UnrestrictedFor bioluminescence and fluorescence imaging studies in small animals, it is important ...
Bioluminescence tomography (BLT) is used to localize and quantify bioluminescent sources in a small ...
Bioluminescence tomography (BLT) is a rapidly developing new area of molecular imaging. The goal of ...
Bioluminescence imaging (BLI) is widely used in pre-clinical research to monitor the location and mi...
Bioluminescence imaging (BLI) is a non-contact, optical imaging technique based on measurement of e...
The development, characterisation and testing of a novel all-optical, multi-modal preclinical biomed...
Motivated by bioluminescent imaging needs for studies on gene therapy and other applications in the ...
Bioluminescent imaging (BLI) of cells expressing luciferase is a valuable noninvasive technique for ...
Bioluminescence imaging has shown great potential for studying and monitoring disease progression in...
The bioluminescence tomography (BLT) emerges as a novel molecular imaging technology for small anima...
The bioluminescence tomography is a novel molecular imaging technology for small animal studies. Kno...