Matches in SemOpenAlex for { <https://semopenalex.org/work/W2006886350> ?p ?o ?g. }
- W2006886350 endingPage "7226" @default.
- W2006886350 startingPage "7209" @default.
- W2006886350 abstract "Single photon emission computed tomography (SPECT) myocardial perfusion imaging remains a critical tool in the diagnosis of coronary artery disease. However, after more than three decades of use, photon detection efficiency remains poor and unchanged. This is due to the continued reliance on parallel-hole collimators first introduced in 1964. These collimators possess poor geometric efficiency. Here we present the performance evaluation results of a newly designed multipinhole collimator with 20 pinhole apertures (PH20) for commercial SPECT systems. Computer simulations and numerical observer studies were used to assess the noise, bias and diagnostic imaging performance of a PH20 collimator in comparison with those of a low energy high resolution (LEHR) parallel-hole collimator. Ray-driven projector/backprojector pairs were used to model SPECT imaging acquisitions, including simulation of noiseless projection data and performing MLEM/OSEM image reconstructions. Poisson noise was added to noiseless projections for realistic projection data. Noise and bias performance were investigated for five mathematical cardiac and torso (MCAT) phantom anatomies imaged at two gantry orbit positions (19.5 and 25.0 cm). PH20 and LEHR images were reconstructed with 300 MLEM iterations and 30 OSEM iterations (ten subsets), respectively. Diagnostic imaging performance was assessed by a receiver operating characteristic (ROC) analysis performed on a single MCAT phantom; however, in this case PH20 images were reconstructed with 75 pixel-based OSEM iterations (four subsets). Four PH20 projection views from two positions of a dual-head camera acquisition and 60 LEHR projections were simulated for all studies. At uniformly-imposed resolution of 12.5 mm, significant improvements in SNR and diagnostic sensitivity (represented by the area under the ROC curve, or AUC) were realized when PH20 collimators are substituted for LEHR parallel-hole collimators. SNR improves by factors of 1.94–2.34 for the five patient anatomies and two orbital positions studied. For the ROC analysis the PH20 AUC is larger than the LEHR AUC with a p-value of 0.0067. Bias performance, however, decreases with the use of PH20 collimators. Systematic analyses showed PH20 collimators present improved diagnostic imaging performance over LEHR collimators, requiring only collimator exchange on existing SPECT cameras for their use." @default.
- W2006886350 created "2016-06-24" @default.
- W2006886350 creator A5005183671 @default.
- W2006886350 creator A5005599924 @default.
- W2006886350 creator A5030987407 @default.
- W2006886350 creator A5037811438 @default.
- W2006886350 creator A5073105215 @default.
- W2006886350 creator A5078648367 @default.
- W2006886350 creator A5083031592 @default.
- W2006886350 date "2013-09-24" @default.
- W2006886350 modified "2023-10-16" @default.
- W2006886350 title "Design and performance evaluation of a 20-aperture multipinhole collimator for myocardial perfusion imaging applications" @default.
- W2006886350 cites W1967702256 @default.
- W2006886350 cites W1969196151 @default.
- W2006886350 cites W1980500808 @default.
- W2006886350 cites W1986107962 @default.
- W2006886350 cites W2008121884 @default.
- W2006886350 cites W2013457550 @default.
- W2006886350 cites W2018970384 @default.
- W2006886350 cites W2036611617 @default.
- W2006886350 cites W2038630766 @default.
- W2006886350 cites W2039471471 @default.
- W2006886350 cites W2042757640 @default.
- W2006886350 cites W2043867182 @default.
- W2006886350 cites W2043884149 @default.
- W2006886350 cites W2046327373 @default.
- W2006886350 cites W2067829201 @default.
- W2006886350 cites W2069629287 @default.
- W2006886350 cites W2071712064 @default.
- W2006886350 cites W2072892285 @default.
- W2006886350 cites W2081597892 @default.
- W2006886350 cites W2102289986 @default.
- W2006886350 cites W2108145991 @default.
- W2006886350 cites W2109146178 @default.
- W2006886350 cites W2111203235 @default.
- W2006886350 cites W2111445764 @default.
- W2006886350 cites W2119946154 @default.
- W2006886350 cites W2121570028 @default.
- W2006886350 cites W2125824059 @default.
- W2006886350 cites W2131904643 @default.
- W2006886350 cites W2133391477 @default.
- W2006886350 cites W2143797228 @default.
- W2006886350 cites W2144004122 @default.
- W2006886350 cites W2146837447 @default.
- W2006886350 cites W2154744699 @default.
- W2006886350 cites W2155337416 @default.
- W2006886350 cites W2156030504 @default.
- W2006886350 cites W2161366386 @default.
- W2006886350 cites W2169411314 @default.
- W2006886350 cites W4317522786 @default.
- W2006886350 doi "https://doi.org/10.1088/0031-9155/58/20/7209" @default.
- W2006886350 hasPubMedCentralId "https://www.ncbi.nlm.nih.gov/pmc/articles/3855225" @default.
- W2006886350 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/24061162" @default.
- W2006886350 hasPublicationYear "2013" @default.
- W2006886350 type Work @default.
- W2006886350 sameAs 2006886350 @default.
- W2006886350 citedByCount "16" @default.
- W2006886350 countsByYear W20068863502013 @default.
- W2006886350 countsByYear W20068863502014 @default.
- W2006886350 countsByYear W20068863502015 @default.
- W2006886350 countsByYear W20068863502016 @default.
- W2006886350 countsByYear W20068863502017 @default.
- W2006886350 countsByYear W20068863502019 @default.
- W2006886350 countsByYear W20068863502020 @default.
- W2006886350 countsByYear W20068863502022 @default.
- W2006886350 countsByYear W20068863502023 @default.
- W2006886350 crossrefType "journal-article" @default.
- W2006886350 hasAuthorship W2006886350A5005183671 @default.
- W2006886350 hasAuthorship W2006886350A5005599924 @default.
- W2006886350 hasAuthorship W2006886350A5030987407 @default.
- W2006886350 hasAuthorship W2006886350A5037811438 @default.
- W2006886350 hasAuthorship W2006886350A5073105215 @default.
- W2006886350 hasAuthorship W2006886350A5078648367 @default.
- W2006886350 hasAuthorship W2006886350A5083031592 @default.
- W2006886350 hasBestOaLocation W20068863502 @default.
- W2006886350 hasConcept C104293457 @default.
- W2006886350 hasConcept C11413529 @default.
- W2006886350 hasConcept C115961682 @default.
- W2006886350 hasConcept C120665830 @default.
- W2006886350 hasConcept C121332964 @default.
- W2006886350 hasConcept C141379421 @default.
- W2006886350 hasConcept C154945302 @default.
- W2006886350 hasConcept C205372480 @default.
- W2006886350 hasConcept C2779200277 @default.
- W2006886350 hasConcept C2780441642 @default.
- W2006886350 hasConcept C2984398910 @default.
- W2006886350 hasConcept C2989005 @default.
- W2006886350 hasConcept C31972630 @default.
- W2006886350 hasConcept C41008148 @default.
- W2006886350 hasConcept C57493831 @default.
- W2006886350 hasConcept C71924100 @default.
- W2006886350 hasConcept C99498987 @default.
- W2006886350 hasConceptScore W2006886350C104293457 @default.
- W2006886350 hasConceptScore W2006886350C11413529 @default.
- W2006886350 hasConceptScore W2006886350C115961682 @default.
- W2006886350 hasConceptScore W2006886350C120665830 @default.
- W2006886350 hasConceptScore W2006886350C121332964 @default.
- W2006886350 hasConceptScore W2006886350C141379421 @default.