MAP Reconstruction From Spatially Correlated PET Data - Nuclear Science, IEEE Transactions on
نویسندگان
چکیده
High sensitivity 3-D PET data is often rebinned into 2-D data sets in order to reduce the computation time of reconstructions. The need to precorrect the 3-D data for attenuation, accidentals, scatter, and deadtime effects before rebinning along with the rebinning process itself changes the statistics of the data. This paper presents an approach for finding and using the statistics of Fourier rebinned (FORE) data. In particular, utilizing a space domain representation of FORE, we find the approximate covariance matrix. We also derive an improved estimate of the mean of the rebinned data with a 2-D forward projector that more accurately represents the effect of FORE on the original 3-D PET measurements. In order to incorporate dependent information, we model the data conditioned on the image as a low-order Markov field. This model is based on a quadratic approximation of the log-likelihood of dependent 2-D PET data. The dependence relationship is then incorporated into a novel maximum a posteriori (MAP) 2-D reconstruction method. Initial results show that this method offers modest MSE improvements with a reference image over Poisson-based MAP methods. Results also reveal that the use of only the improved mean leads to significant improvements in reconstructions from FORE data.
منابع مشابه
On complete-data spaces for PET reconstruction algorithms - Nuclear Science, IEEE Transactions on
As investigators consider more comprehensive measurement models for emission tomography, there will be more choices for the complete-data spaces of the associated expectation-maximization (EM) algorithms for maximumlikelihood (ML) estimation. In this paper, we show that EM algorithms based on smaller complete-data spaces will typically converge faster. We discuss two practical applications of t...
متن کاملIterative Reconstruction with Attenuation Compensation from Cone-Beam Projections Acquired via Nonpl - Nuclear Science, IEEE Transactions on
Single photon emission computed tomography (SPECT) imaging with cone-beam collimators provides improved sensitivity and spatial resolution for imaging small objects with large field-of-view detectors. It is known that Tuy’s cone-beam data sufficiency condition must be met to obtain artifact-free reconstructions. Even though Tuy’s condition was derived for an attenuation-free situation, we hypot...
متن کاملPerformance evaluation of an iterative image reconstruction algorithm for positron emission tomography.
An image reconstruction method motivated by positron emission tomography (PET) is discussed. The measurements tend to be noisy and so the reconstruction method should incorporate the statistical nature of the noise. The authors set up a discrete model to represent the physical situation and arrive at a nonlinear maximum a posteriori probability (MAP) formulation of the problem. An iterative app...
متن کاملEffect of Post-Reconstruction Gaussian Filtering on Image Quality and Myocardial Blood Flow Measurement with N-13 Ammonia PET
Objective(s): In order to evaluate the effect of post-reconstruction Gaussian filtering on image quality and myocardial blood flow (MBF) measurement by dynamic N-13 ammonia positron emission tomography (PET), we compared various reconstruction and filtering methods with image characteristics. Methods: Dynamic PET images of three patients with coronary artery disease (male-female ratio of 2:1; a...
متن کاملA bootstrap approach for analyzing the statistical properties of spect and pet images - Nuclear Science Symposium Conference Record, 2001 IEEE
We describe a non-parametric bootstrap method to estimate the statistical properties of Single Photon Emission Computed Tomography (SPECT) and Positron Emission Tomography (PET) images, whatever the type of noise in the projections and the reconstruction algorithm. Using analytical simulations and real PET data, this method is shown to accurately predict the statistical distribution, hence the ...
متن کامل