[[abstract]]Iterative reconstruction (IR) algorithms can reduce artifacts caused by filtered backprojection (FBP) or convolution backprojection (CBP). Recently, the computational effects required for IR of positron emission tomography (PET) studies have been reduced to make it practically appealing. We have made an implementation of the improved Maximum Likelihood-Expectation Maximization (ML-EM) algorithm. The transition matrix was generated based on the geometry of the instrument. Phantoms of 6 line sources and 19 line sources were used to test our accelerated ML-EM algorithms against the FBP method. The singles were used to calculate the random coincidence rates by a well known formula and were compared to the randoms obtained by another...
Proceeding of: 2005 IEEE Nuclear Science Symposium Conference Record, Puerto Rico, 23-29 Oct. 2005Sm...
Most positron emission tomography (PET) emission scans are corrected for accidental coincidence (AC)...
[[abstract]]©2002 MC NTHU - Quantitative positron emission tomography (PET) using statistical techni...
[[abstract]]A maximum likelihood-expectation maximization (ML-EM) reconstruction algorithm has been ...
Medical Imaging systems such as positron emission tomography (PET) and electronically collimated sin...
Medical Imaging systems such as positron emission tomography (PET) and electronically collimated sin...
Most PET scans are compensated for accidental coincidence (AC) events by real-time subtraction of de...
<div><p>Random coincidences degrade the image in Positron Emission Tomography, PET. To compensate fo...
[[abstract]]©1998 SPIE - Iterative methods for the reconstruction of PET images can produce results ...
[[abstract]]©2002 Elsevier - Iterative methods for the reconstruction of positron emission tomograph...
Emission computed tomography (ECT), including positron emission tomography (PET) and single photon e...
Emission computed tomography (ECT), including positron emission tomography (PET) and single photon e...
Positron emission tomography (PET) measurements are usually precorrected for accidental coincidence ...
Positron emission tomography (PET) measurements are usually precorrected for accidental coincidence ...
Random coincidences (randoms) are frequently a major source of image degradation and quantitative i...
Proceeding of: 2005 IEEE Nuclear Science Symposium Conference Record, Puerto Rico, 23-29 Oct. 2005Sm...
Most positron emission tomography (PET) emission scans are corrected for accidental coincidence (AC)...
[[abstract]]©2002 MC NTHU - Quantitative positron emission tomography (PET) using statistical techni...
[[abstract]]A maximum likelihood-expectation maximization (ML-EM) reconstruction algorithm has been ...
Medical Imaging systems such as positron emission tomography (PET) and electronically collimated sin...
Medical Imaging systems such as positron emission tomography (PET) and electronically collimated sin...
Most PET scans are compensated for accidental coincidence (AC) events by real-time subtraction of de...
<div><p>Random coincidences degrade the image in Positron Emission Tomography, PET. To compensate fo...
[[abstract]]©1998 SPIE - Iterative methods for the reconstruction of PET images can produce results ...
[[abstract]]©2002 Elsevier - Iterative methods for the reconstruction of positron emission tomograph...
Emission computed tomography (ECT), including positron emission tomography (PET) and single photon e...
Emission computed tomography (ECT), including positron emission tomography (PET) and single photon e...
Positron emission tomography (PET) measurements are usually precorrected for accidental coincidence ...
Positron emission tomography (PET) measurements are usually precorrected for accidental coincidence ...
Random coincidences (randoms) are frequently a major source of image degradation and quantitative i...
Proceeding of: 2005 IEEE Nuclear Science Symposium Conference Record, Puerto Rico, 23-29 Oct. 2005Sm...
Most positron emission tomography (PET) emission scans are corrected for accidental coincidence (AC)...
[[abstract]]©2002 MC NTHU - Quantitative positron emission tomography (PET) using statistical techni...