A major challenge in thoracic PET imaging is respiratory motion, which degrades image quality to the extent that it can affect subsequent diagnosis and patient management. This paper presents an approach to overcoming this problem using a deformable registration algorithm for respiratory gated PET images. Registration is based entirely on PET images without increasing the radiation burden. A Markov random field regularizer is introduced to the registration, which penalizes noisy deformation fields. Experimental results on both simulated and real data show that regularized registration effectively suppresses the noise in images, yielding satisfactory deformation fields. In addition, motion correction using the registration algorithm signific...
Accurate attenuation correction of emission data is mandatory for quantitative analysis of PET image...
Accurate attenuation correction of emission data is mandatory for quantitative analysis of PET image...
Respiratory gating in lung PET imaging to compensate for respiratory motion artifacts is a current r...
Artifacts caused by patient breathing and movement during PET data acquisition affect image quality....
Respiratory gating in lung PET imaging to compensate for respiratory motion artifacts is a current r...
Respiratory gating in lung PET imaging to compensate for respiratory motion artifacts is a current r...
Abstract. Positron emission tomography (PET) is a molecular imaging technique which is now widely es...
Respiratory and cardiac motion leads to image degradation in Positron Emission Tomography (PET), whi...
Lung motion due to respiration causes image degradation in medical imaging, especially in nuclear me...
Positron emission tomography (PET) is a molecular imaging technique which provides important functio...
Positron emission tomography (PET) is a molecular imaging technique which provides important functio...
Positron emission tomography (PET) is a molecular imaging technique which provides important functio...
PET image degradation imposed by patient respiratory motion is a well-established problem in clinica...
Accurate attenuation correction of emission data is mandatory for quantitative analysis of PET image...
Respiratory motion artifact is one of the factors limiting the diagnostic accuracy of SPECT or PET. ...
Accurate attenuation correction of emission data is mandatory for quantitative analysis of PET image...
Accurate attenuation correction of emission data is mandatory for quantitative analysis of PET image...
Respiratory gating in lung PET imaging to compensate for respiratory motion artifacts is a current r...
Artifacts caused by patient breathing and movement during PET data acquisition affect image quality....
Respiratory gating in lung PET imaging to compensate for respiratory motion artifacts is a current r...
Respiratory gating in lung PET imaging to compensate for respiratory motion artifacts is a current r...
Abstract. Positron emission tomography (PET) is a molecular imaging technique which is now widely es...
Respiratory and cardiac motion leads to image degradation in Positron Emission Tomography (PET), whi...
Lung motion due to respiration causes image degradation in medical imaging, especially in nuclear me...
Positron emission tomography (PET) is a molecular imaging technique which provides important functio...
Positron emission tomography (PET) is a molecular imaging technique which provides important functio...
Positron emission tomography (PET) is a molecular imaging technique which provides important functio...
PET image degradation imposed by patient respiratory motion is a well-established problem in clinica...
Accurate attenuation correction of emission data is mandatory for quantitative analysis of PET image...
Respiratory motion artifact is one of the factors limiting the diagnostic accuracy of SPECT or PET. ...
Accurate attenuation correction of emission data is mandatory for quantitative analysis of PET image...
Accurate attenuation correction of emission data is mandatory for quantitative analysis of PET image...
Respiratory gating in lung PET imaging to compensate for respiratory motion artifacts is a current r...