1994
Gradient moment nulling in fast spin echo
Hinks R, Constable R. Gradient moment nulling in fast spin echo. Magnetic Resonance In Medicine 1994, 32: 698-706. PMID: 7869891, DOI: 10.1002/mrm.1910320604.Peer-Reviewed Original ResearchDevelopment and evaluation of tracking algorithms for cardiac wall motion analysis using phase velocity MR imaging
Constable R, Rath K, Sinusas A, Gore J. Development and evaluation of tracking algorithms for cardiac wall motion analysis using phase velocity MR imaging. Magnetic Resonance In Medicine 1994, 32: 33-42. PMID: 8084235, DOI: 10.1002/mrm.1910320106.Peer-Reviewed Original ResearchFunctional NMR imaging using fast spin echo at 1.5 T
Constable R, Kennan R, Puce A, McCarthy G, Gore J. Functional NMR imaging using fast spin echo at 1.5 T. Magnetic Resonance In Medicine 1994, 31: 686-690. PMID: 8057823, DOI: 10.1002/mrm.1910310617.Peer-Reviewed Original ResearchFast Spin Echo STIR Imaging
Smith R, Constable R, Reinhold C, McCauley T, Lange R, McCarthy S. Fast Spin Echo STIR Imaging. Journal Of Computer Assisted Tomography 1994, 18: 209-213. PMID: 8126269, DOI: 10.1097/00004728-199403000-00007.Peer-Reviewed Original Research
1993
Fast spin-echo MR imaging of the cervical spine: influence of echo train length and echo spacing on image contrast and quality.
Sze G, Kawamura Y, Negishi C, Constable R, Merriam M, Oshio K, Jolesz F. Fast spin-echo MR imaging of the cervical spine: influence of echo train length and echo spacing on image contrast and quality. American Journal Of Neuroradiology 1993, 14: 1203-13. PMID: 8237705, PMCID: PMC8332763.Peer-Reviewed Original Research
1992
The Loss of Small Objects in Variable TE Imaging: Implications for FSE, RARE, and EPI
Constable R, Gore J. The Loss of Small Objects in Variable TE Imaging: Implications for FSE, RARE, and EPI. Magnetic Resonance In Medicine 1992, 28: 9-24. PMID: 1435225, DOI: 10.1002/mrm.1910280103.Peer-Reviewed Original Research
1991
A quantitative comparison of the TERA modeling and DFT magnetic resonance image reconstruction techniques
Smith M, Nichols S, Constable R, Henkelman R. A quantitative comparison of the TERA modeling and DFT magnetic resonance image reconstruction techniques. Magnetic Resonance In Medicine 1991, 19: 1-19. PMID: 2046524, DOI: 10.1002/mrm.1910190102.Peer-Reviewed Original ResearchMeSH KeywordsAlgorithmsFourier AnalysisHumansImage Processing, Computer-AssistedMagnetic Resonance ImagingModels, StructuralSoftwareConceptsImage reconstruction techniquesModeling techniquesData reconstructionImage reconstructionDiscrete Fourier transform algorithmReconstruction approachAlternative reconstruction methodTransform algorithmSuccess of modelingData setsReconstruction methodModeling methodFourier transform algorithmMagnetic resonance imagesData lengthReconstruction techniqueFinite data lengthResonance imagesProblem areasTruncation artifactsModelingAlgorithmArtifactsTwo-dimensional modelingOne-dimensional modelingContrast, Resolution, and Detectability in MR Imaging
Constable R, Henkelman R. Contrast, Resolution, and Detectability in MR Imaging. Journal Of Computer Assisted Tomography 1991, 15: 297-303. PMID: 2002111, DOI: 10.1097/00004728-199103000-00021.Peer-Reviewed Original Research