Publications

146. Şişman M, Nguyen TD, Roberts AG, Romano DJ, Dimov AV, Kovanlikaya I, Spincemaille P, Wang Y . Microstructure-Informed Myelin Mapping (MIMM) from routine multi-echo gradient echo data using multiscale physics modeling of iron and myelin effects and QSM. Magn Reson Med. 2024 PMID: 39552224

145. Elanghovan P, Nguyen T, Spincemaille P, Gupta A, Wang Y, Cho J . Sensitivity assessment of QSM+qBOLD (or QQ) in detecting elevated oxygen extraction fraction (OEF) in physiological change. J Cereb Blood Flow Metab. 2024:271678X241298584 PMID: 39501700

144. Wang S, Spincemaille P, Selim M, Hasan D, Thomas AJ, Filippidis A, Wen Y, Wang Y, Soman S . CSF Susceptibility Variation in Patient With Intracranial Hemorrhage: Implications for Quantitative Susceptibility Mapping Reference Selection. J Comput Assist Tomogr. 2024 PMID: 39284122

143. Jang M, Dimov AV, Kapse K, Murnick J, Grinspan Z, Wu A, Choudhury AR, Wang Y, Spincemaille P, Nguyen TD, Limperopoulos C, Zun Z . Quantitative susceptibility mapping with source separation in normal brain development of newborns. AJNR Am J Neuroradiol. 2024 PMID: 39231612

142. Müller J, Lu PJ, Cagol A, Ruberte E, Shin HG, Ocampo-Pineda M, Chen X, Tsagkas C, Barakovic M, Galbusera R, Weigel M, Schaedelin SA, Wang Y, Nguyen TD, Spincemaille P, Kappos L, Kuhle J, Lee J, Granziera C . Quantifying Remyelination Using χ-Separation in White Matter and Cortical Multiple Sclerosis Lesions. Neurology. 2024 103(6):e209604 PMID: 39213476 PMCID: 11362958

141. Cho J, Zhang J, Spincemaille P, Zhang H, Nguyen TD, Zhang S, Gupta A, Wang Y . Multi-Echo Complex Quantitative Susceptibility Mapping and Quantitative Blood Oxygen Level-Dependent Magnitude (mcQSM + qBOLD or mcQQ) for Oxygen Extraction Fraction (OEF) Mapping. Bioengineering (Basel). 2024 11(2) PMID: 38391617 PMCID: 10886243

140. QSM Consensus Organization Committee, Bilgic B, Costagli M, Chan KS, Duyn J, Langkammer C, Lee J, Li X, Liu C, Marques JP, Milovic C, Robinson SD, Schweser F, Shmueli K, Spincemaille P, Straub S, van Zijl P, Wang Y, ISMRM Electro- Magnetic Tissue Properties Study Group . Recommended implementation of quantitative susceptibility mapping for clinical research in the brain: A consensus of the ISMRM electro-magnetic tissue properties study group. Magn Reson Med. 2024 91(5):1834-1862 PMID: 38247051 PMCID: 10950544

139. Ikram A, Sharma R, Selim M, Kim-Sun G, Shahraki T, Thomas AJ, Filippidis A, Wen Y, Spincemaille P, Wang Y, Soman S . mcTFI QSM MRI ABC/2 intracranial hemorrhage to noncontrast head CT volume measurement equivalence. J Neurol Sci. 2024 456:122859 PMID: 38171071 PMCID: 10796171

138. Roberts AG, Romano DJ, Şişman M, Dimov AV, Nguyen TD, Kovanlikaya I, Gauthier SA, Wang Y, Spincemaille P . Maximum spherical mean value filtering for whole-brain QSM. Magn Reson Med. 2024 91(4):1586-1597 PMID: 38169132 PMCID: 11416845

137. Şişman M, Nguyen TD, Roberts AG, Romano DJ, Dimov AV, Kovanlikaya I, Spincemaille P, Wang Y . Microstructure-Informed Myelin Mapping (MIMM) from Gradient Echo MRI using Stochastic Matching Pursuit. medRxiv. 2023 PMID: 37808826 PMCID: 10557811

136. Zhang J, Nguyen TD, Solomon E, Li C, Zhang Q, Li J, Zhang H, Spincemaille P, Wang Y . mcLARO: Multi-contrast learned acquisition and reconstruction optimization for simultaneous quantitative multi-parametric mapping. Magn Reson Med. 2024 91(1):344-356 PMID: 37655444

135. Spincemaille P, Prince MR . Editorial for "An Empirical Approach to Derive Water T<sub>1</sub> From Multiparametric MR Images Using an Automated Pipeline and Comparison With Liver Stiffness". J Magn Reson Imaging. 2024 59(4):1204-1205 PMID: 37522374

134. QSM Consensus Organization Committee, Bilgic B, Costagli M, Chan KS, Duyn J, Langkammer C, Lee J, Li X, Liu C, Marques JP, Milovic C, Robinson S, Schweser F, Shmueli K, Spincemaille P, Straub S, van Zijl P, Wang Y, ISMRM Electro-Magnetic Tissue Properties Study Group . Recommended Implementation of Quantitative Susceptibility Mapping for Clinical Research in The Brain: A Consensus of the ISMRM Electro-Magnetic Tissue Properties Study Group. ArXiv. 2023 PMID: 37461418 PMCID: 10350101

133. Dimov AV, Li J, Nguyen TD, Roberts AG, Spincemaille P, Straub S, Zun Z, Prince MR, Wang Y . QSM Throughout the Body. J Magn Reson Imaging. 2023 57(6):1621-1640 PMID: 36748806 PMCID: 10192074

132. Zhang J, Spincemaille P, Zhang H, Nguyen TD, Li C, Li J, Kovanlikaya I, Sabuncu MR, Wang Y . LARO: Learned acquisition and reconstruction optimization to accelerate quantitative susceptibility mapping. Neuroimage. 2023 268:119886 PMID: 36669747 PMCID: 10021353

131. Zhang Q, Lee KS, Talenfeld AD, Spincemaille P, Prince MR, Wang Y . Prediction of Lung Shunt Fraction for Yttrium-90 Treatment of Hepatic Tumors Using Dynamic Contrast Enhanced MRI with Quantitative Perfusion Processing. Tomography. 2022 8(6):2687-2697 PMID: 36412683 PMCID: 9680251

130. Lee K, Ellison B, Selim M, Long NH, Filippidis A, Thomas AJ, Spincemaille P, Wang Y, Soman S . Quantitative susceptibility mapping improves cerebral microbleed detection relative to susceptibility-weighted images. J Neuroimaging. 2023 33(1):138-146 PMID: 36168880

129. Zhang Q, Luo X, Zhou L, Nguyen TD, Prince MR, Spincemaille P, Wang Y . Fluid Mechanics Approach to Perfusion Quantification: Vasculature Computational Fluid Dynamics Simulation, Quantitative Transport Mapping (QTM) Analysis of Dynamics Contrast Enhanced MRI, and Application in Nonalcoholic Fatty Liver Disease Classification. IEEE Trans Biomed Eng. 2023 70(3):980-990 PMID: 36107908

128. Kuchcinski G, Patin L, Lopes R, Leroy M, Delbeuck X, Rollin-Sillaire A, Lebouvier T, Wang Y, Spincemaille P, Tourdias T, Hacein-Bey L, Devos D, Pasquier F, Leclerc X, Pruvo JP, Verclytte S . Quantitative susceptibility mapping demonstrates different patterns of iron overload in subtypes of early-onset Alzheimer's disease. Eur Radiol. 2023 33(1):184-195 PMID: 35881183

127. Rahmanzadeh R, Galbusera R, Lu PJ, Bahn E, Weigel M, Barakovic M, Franz J, Nguyen TD, Spincemaille P, Schiavi S, Daducci A, La Rosa F, Absinta M, Sati P, Bach Cuadra M, Radue EW, Leppert D, Kuhle J, Kappos L, Brück W, Reich DS, Stadelmann C, Wang Y, Granziera C . A New Advanced MRI Biomarker for Remyelinated Lesions in Multiple Sclerosis. Ann Neurol. 2022 92(3):486-502 PMID: 35713309 PMCID: 9527017

126. Dimov AV, Nguyen TD, Gillen KM, Marcille M, Spincemaille P, Pitt D, Gauthier SA, Wang Y . Susceptibility source separation from gradient echo data using magnitude decay modeling. J Neuroimaging. 2022 32(5):852-859 PMID: 35668022

125. Parikh NS, Kamel H, Zhang C, Kumar S, Rosenblatt R, Spincemaille P, Gupta A, Cohen DE, de Leon MJ, Gottesman RF, Iadecola C . Association between liver fibrosis and incident dementia in the UK Biobank study. Eur J Neurol. 2022 29(9):2622-2630 PMID: 35666174 PMCID: 9986963

124. Zhang H, Nguyen TD, Zhang J, Marcille M, Spincemaille P, Wang Y, Gauthier SA, Sweeney EM . QSMRim-Net: Imbalance-aware learning for identification of chronic active multiple sclerosis lesions on quantitative susceptibility maps. Neuroimage Clin. 2022 34:102979 PMID: 35247730 PMCID: 8892132

123. Kim J, Nguyen TD, Zhang J, Gauthier SA, Marcille M, Zhang H, Cho J, Spincemaille P, Wang Y . Subsecond accurate myelin water fraction reconstruction from FAST-T<sub>2</sub> data with 3D UNET. Magn Reson Med. 2022 87(6):2979-2988 PMID: 35092094

122. Huang W, Zhang Q, Wu G, Chen P, Li J, McCabe Gillen K, Spincemaille P, Chiang GC, Gupta A, Wang Y, Chen F . Corrigendum to "DCE-MRI quantitative transport mapping for noninvasively detecting hypoxia inducible factor-1α, epidermal growth factor receptor overexpression, and Ki-67 in nasopharyngeal carcinoma patients" [Radiother Oncol (2021) 164:146-154]. Radiother Oncol. 2022 169:168 PMID: 35012820

121. Xie H, Zhuang H, Guo Y, Sharma RD, Zhang Q, Li J, Lu S, Xu L, Chan Q, Yoneda T, Spincemaille P, Zhang H, Guo H, Prince MR, Yu C, Wang Y . The appearance of magnetic susceptibility objects in SWI phase depends on object size: Comparison with QSM and CT. Clin Imaging. 2022 82:67-72 PMID: 34798560

120. Zhang Q, Spincemaille P, Drotman M, Chen C, Eskreis-Winkler S, Huang W, Zhou L, Morgan J, Nguyen TD, Prince MR, Wang Y . Quantitative transport mapping (QTM) for differentiating benign and malignant breast lesion: Comparison with traditional kinetics modeling and semi- quantitative enhancement curve characteristics. Magn Reson Imaging. 2022 86:86-93 PMID: 34748928 PMCID: 8726426

119. Cho J, Zhang J, Spincemaille P, Zhang H, Hubertus S, Wen Y, Jafari R, Zhang S, Nguyen TD, Dimov AV, Gupta A, Wang Y . QQ-NET - using deep learning to solve quantitative susceptibility mapping and quantitative blood oxygen level dependent magnitude (QSM+qBOLD or QQ) based oxygen extraction fraction (OEF) mapping. Magn Reson Med. 2022 87(3):1583-1594 PMID: 34719059 PMCID: 9133659

118. Zhang H, Zhang J, Li C, Sweeney EM, Spincemaille P, Nguyen TD, Gauthier SA, Wang Y, Marcille M . ALL-Net: Anatomical information lesion-wise loss function integrated into neural network for multiple sclerosis lesion segmentation. Neuroimage Clin. 2021 32:102854 PMID: 34666289 PMCID: 8521204

117. Li J, Huang W, Luo X, Wen Y, Cho J, Kovanlikaya I, Gauthier SA, Nguyen TD, Spincemaille P, Wang Y . The central vein sign in multiple sclerosis lesions: Susceptibility relaxation optimization from a routine MRI multiecho gradient echo sequence. J Neuroimaging. 2022 32(1):48-56 PMID: 34664747

116. Huang W, Zhang Q, Wu G, Chen PP, Li J, McCabe Gillen K, Spincemaille P, Chiang GC, Gupta A, Wang Y, Chen F . DCE-MRI quantitative transport mapping for noninvasively detecting hypoxia inducible factor-1α, epidermal growth factor receptor overexpression, and Ki-67 in nasopharyngeal carcinoma patients. Radiother Oncol. 2021 164:146-154 PMID: 34592360

115. Cho J, Nguyen TD, Huang W, Sweeney EM, Luo X, Kovanlikaya I, Zhang S, Gillen KM, Spincemaille P, Gupta A, Gauthier SA, Wang Y . Brain oxygen extraction fraction mapping in patients with multiple sclerosis. J Cereb Blood Flow Metab. 2022 42(2):338-348 PMID: 34558996 PMCID: 9122515

114. Murray KD, Uddin MN, Tivarus ME, Sahin B, Wang HZ, Singh MV, Qiu X, Wang L, Spincemaille P, Wang Y, Maggirwar SB, Zhong J, Schifitto G . Increased risk for cerebral small vessel disease is associated with quantitative susceptibility mapping in HIV infected and uninfected individuals. Neuroimage Clin. 2021 32:102786 PMID: 34500428 PMCID: 8429957

113. Dimov AV, Nguyen TD, Spincemaille P, Sweeney EM, Zinger N, Kovanlikaya I, Kopell BH, Gauthier SA, Wang Y . Global cerebrospinal fluid as a zero-reference regularization for brain quantitative susceptibility mapping. J Neuroimaging. 2022 32(1):141-147 PMID: 34480496 PMCID: 8752493

112. Rashid T, Abdulkadir A, Nasrallah IM, Ware JB, Liu H, Spincemaille P, Romero JR, Bryan RN, Heckbert SR, Habes M . DEEPMIR: a deep neural network for differential detection of cerebral microbleeds and iron deposits in MRI. Sci Rep. 2021 11(1):14124 PMID: 34238951 PMCID: 8266884

111. Champagne AA, Wen Y, Selim M, Filippidis A, Thomas AJ, Spincemaille P, Wang Y, Soman S . Quantitative Susceptibility Mapping for Staging Acute Cerebral Hemorrhages: Comparing the Conventional and Multiecho Complex Total Field Inversion magnetic resonance imaging MR Methods. J Magn Reson Imaging. 2021 54(6):1843-1854 PMID: 34117811

110. Cho J, Spincemaille P, Nguyen TD, Gupta A, Wang Y . Temporal clustering, tissue composition, and total variation for mapping oxygen extraction fraction using QSM and quantitative BOLD. Magn Reson Med. 2021 86(5):2635-2646 PMID: 34110656 PMCID: 10337202

109. Wen Y, Spincemaille P, Nguyen T, Cho J, Kovanlikaya I, Anderson J, Wu G, Yang B, Fung M, Li K, Kelley D, Benhamo N, Wang Y . Multiecho complex total field inversion method (mcTFI) for improved signal modeling in quantitative susceptibility mapping. Magn Reson Med. 2021 86(4):2165-2178 PMID: 34028868

108. Eskreis-Winkler S, Simon K, Reichman M, Spincemaille P, Nguyen TD, Christos PJ, Drotman M, Prince MR, Pinker K, Sutton EJ, Morris EA, Wang Y . Multispectral Imaging for Metallic Biopsy Marker Detection During MRI-Guided Breast Biopsy: A Feasibility Study for Clinical Translation. Front Oncol. 2021 11:605014 PMID: 33828972 PMCID: 8020905

107. Parker DB, Spincemaille P, Razlighi QR . Attenuation of motion artifacts in fMRI using discrete reconstruction of irregular fMRI trajectories (DRIFT). Magn Reson Med. 2021 86(3):1586-1599 PMID: 33797118

106. Lu PJ, Yoo Y, Rahmanzadeh R, Galbusera R, Weigel M, Ceccaldi P, Nguyen TD, Spincemaille P, Wang Y, Daducci A, La Rosa F, Bach Cuadra M, Sandkühler R, Nael K, Doshi A, Fayad ZA, Kuhle J, Kappos L, Odry B, Cattin P, Gibson E, Granziera C . GAMER MRI: Gated-attention mechanism ranking of multi-contrast MRI in brain pathology. Neuroimage Clin. 2021 29:102522 PMID: 33360973 PMCID: 7773673

105. Zhou L, Zhang Q, Spincemaille P, Nguyen TD, Morgan J, Dai W, Li Y, Gupta A, Prince MR, Wang Y . Quantitative transport mapping (QTM) of the kidney with an approximate microvascular network. Magn Reson Med. 2021 85(4):2247-2262 PMID: 33210310 PMCID: 7839791

104. Jafari R, Spincemaille P, Zhang J, Nguyen TD, Luo X, Cho J, Margolis D, Prince MR, Wang Y . Deep neural network for water/fat separation: Supervised training, unsupervised training, and no training. Magn Reson Med. 2021 85(4):2263-2277 PMID: 33107127 PMCID: 7809709

103. Balasubramanian PS, Spincemaille P, Guo L, Huang W, Kovanlikaya I, Wang Y . Spatially Adaptive Regularization in Total Field Inversion for Quantitative Susceptibility Mapping. iScience. 2020 23(10):101553 PMID: 33083722 PMCID: 7522736

102. Zhang S, Cho J, Nguyen TD, Spincemaille P, Gupta A, Zhu W, Wang Y . Initial Experience of Challenge-Free MRI-Based Oxygen Extraction Fraction Mapping of Ischemic Stroke at Various Stages: Comparison With Perfusion and Diffusion Mapping. Front Neurosci. 2020 14:535441 PMID: 33041755 PMCID: 7525031

101. Jafari R, Hectors SJ, Koehne de González AK, Spincemaille P, Prince MR, Brittenham GM, Wang Y . Integrated quantitative susceptibility and R<sub>2</sub> * mapping for evaluation of liver fibrosis: An ex vivo feasibility study. NMR Biomed. 2021 34(1):e4412 PMID: 32959425 PMCID: 7768551

100. Cho J, Ma Y, Spincemaille P, Pike GB, Wang Y . Cerebral oxygen extraction fraction: Comparison of dual-gas challenge calibrated BOLD with CBF and challenge-free gradient echo QSM+qBOLD. Magn Reson Med. 2021 85(2):953-961 PMID: 32783233 PMCID: 7722021

99. Li G, Wu R, Tong R, Bo B, Zhao Y, Gillen KM, Spincemaille P, Ku Y, Du Y, Wang Y, Wang X, Li J . Quantitative Measurement of Metal Accumulation in Brain of Patients With Wilson's Disease. Mov Disord. 2020 35(10):1787-1795 PMID: 32681698

98. Nguyen TD, Wen Y, Du J, Liu Z, Gillen K, Spincemaille P, Gupta A, Yang Q, Wang Y . Quantitative susceptibility mapping of carotid plaques using nonlinear total field inversion: Initial experience in patients with significant carotid stenosis. Magn Reson Med. 2020 84(3):1501-1509 PMID: 32141644

97. Zhang J, Liu Z, Zhang S, Zhang H, Spincemaille P, Nguyen TD, Sabuncu MR, Wang Y . Fidelity imposed network edit (FINE) for solving ill-posed image reconstruction. Neuroimage. 2020 211:116579 PMID: 31981779 PMCID: 7093048

96. Deh K, Zaman M, Vedvyas Y, Liu Z, Gillen KM, O' Malley P, Bedretdinova D, Nguyen T, Lee R, Spincemaille P, Kim J, Wang Y, Jin MM . Validation of MRI quantitative susceptibility mapping of superparamagnetic iron oxide nanoparticles for hyperthermia applications in live subjects. Sci Rep. 2020 10(1):1171 PMID: 31980695 PMCID: 6981186

95. Wen Y, Weinsaft JW, Nguyen TD, Liu Z, Horn EM, Singh H, Kochav J, Eskreis- Winkler S, Deh K, Kim J, Prince MR, Wang Y, Spincemaille P . Free breathing three-dimensional cardiac quantitative susceptibility mapping for differential cardiac chamber blood oxygenation - initial validation in patients with cardiovascular disease inclusive of direct comparison to invasive catheterization. J Cardiovasc Magn Reson. 2019 21(1):70 PMID: 31735165 PMCID: 6859622

94. Eskreis-Winkler S, Simon K, Reichman M, Spincemaille P, Nguyen T, Kee Y, Cho J, Christos PJ, Drotman M, Prince MR, Morris EA, Wang Y . Dipole modeling of multispectral signal for detecting metallic biopsy markers during MRI-guided breast biopsy: a pilot study. Magn Reson Med. 2020 83(4):1380-1389 PMID: 31631408 PMCID: 6949365

93. Spincemaille P, Anderson J, Wu G, Yang B, Fung M, Li K, Li S, Kovanlikaya I, Gupta A, Kelley D, Benhamo N, Wang Y . Quantitative Susceptibility Mapping: MRI at 7T versus 3T. J Neuroimaging. 2020 30(1):65-75 PMID: 31625646 PMCID: 6954973

92. Cho J, Zhang S, Kee Y, Spincemaille P, Nguyen TD, Hubertus S, Gupta A, Wang Y . Cluster analysis of time evolution (CAT) for quantitative susceptibility mapping (QSM) and quantitative blood oxygen level-dependent magnitude (qBOLD)-based oxygen extraction fraction (OEF) and cerebral metabolic rate of oxygen (CMRO<sub>2</sub> ) mapping. Magn Reson Med. 2020 83(3):844-857 PMID: 31502723 PMCID: 6879790

91. Guo Y, Liu Z, Wen Y, Spincemaille P, Zhang H, Jafari R, Zhang S, Eskreis-Winkler S, Gillen KM, Yi P, Feng Q, Feng Y, Wang Y . Quantitative susceptibility mapping of the spine using in-phase echoes to initialize inhomogeneous field and R2* for the nonconvex optimization problem of fat-water separation. NMR Biomed. 2019 32(11):e4156 PMID: 31424131

90. Liu Z, Wen Y, Spincemaille P, Zhang S, Yao Y, Nguyen TD, Wang Y . Automated adaptive preconditioner for quantitative susceptibility mapping. Magn Reson Med. 2020 83(1):271-285 PMID: 31402519 PMCID: 6778703

89. Spincemaille P, Liu Z, Zhang S, Kovanlikaya I, Ippoliti M, Makowski M, Watts R, de Rochefort L, Venkatraman V, Desmond P, Santin MD, Lehéricy S, Kopell BH, Péran P, Wang Y . Clinical Integration of Automated Processing for Brain Quantitative Susceptibility Mapping: Multi-Site Reproducibility and Single-Site Robustness. J Neuroimaging. 2019 29(6):689-698 PMID: 31379055 PMCID: 6814493

88. Zhang S, Liu Z, Nguyen TD, Yao Y, Gillen KM, Spincemaille P, Kovanlikaya I, Gupta A, Wang Y . Clinical feasibility of brain quantitative susceptibility mapping. Magn Reson Imaging. 2019 60:44-51 PMID: 30954651 PMCID: 6535129

87. Qiu W, Li D, Jin X, Liu F, Nguyen TD, Prince MR, Wang Y, Spincemaille P . Sliding motion compensated low-rank plus sparse (SMC-LS) reconstruction for high spatiotemporal free-breathing liver 4D DCE-MRI. Magn Reson Imaging. 2019 58:56-66 PMID: 30658071 PMCID: 6411681

86. Jafari R, Sheth S, Spincemaille P, Nguyen TD, Prince MR, Wen Y, Guo Y, Deh K, Liu Z, Margolis D, Brittenham GM, Kierans AS, Wang Y . Rapid automated liver quantitative susceptibility mapping. J Magn Reson Imaging. 2019 50(3):725-732 PMID: 30637892 PMCID: 6929208

85. Li G, Zhai G, Zhao X, An H, Spincemaille P, Gillen KM, Ku Y, Wang Y, Huang D, Li J . 3D texture analyses within the substantia nigra of Parkinson's disease patients on quantitative susceptibility maps and R2∗ maps. Neuroimage. 2019 188:465-472 PMID: 30578927

84. Lin F, Prince MR, Spincemaille P, Wang Y . Patents on Quantitative Susceptibility Mapping (QSM) of Tissue Magnetism. Recent Pat Biotechnol. 2019 13(2):90-113 PMID: 30556508

83. Li D, Zhong W, Deh KM, Nguyen T, Prince MR, Wang Y, Spincemaille P . Discontinuity Preserving Liver MR Registration with 3D Active Contour Motion Segmentation. IEEE Trans Biomed Eng. 2018 PMID: 30418878 PMCID: 6565504

82. Deh K, Kawaji K, Bulk M, Van Der Weerd L, Lind E, Spincemaille P, McCabe Gillen K, Van Auderkerke J, Wang Y, Nguyen TD . Multicenter reproducibility of quantitative susceptibility mapping in a gadolinium phantom using MEDI+0 automatic zero referencing. Magn Reson Med. 2019 81(2):1229-1236 PMID: 30284727 PMCID: 6289704

81. Bandt SK, de Rochefort L, Chen W, Dimov AV, Spincemaille P, Kopell BH, Gupta A, Wang Y . Clinical Integration of Quantitative Susceptibility Mapping Magnetic Resonance Imaging into Neurosurgical Practice. World Neurosurg. 2019 122:e10-e19 PMID: 30201583

80. Gorman AW, Deh KM, Schwiedrzik CM, White JR, Groman EV, Fisher CA, Gillen KM, Spincemaille P, Rasmussen S, Prince MR, Voss HU, Freiwald WA, Wang Y . Brain Iron Distribution after Multiple Doses of Ultra-small Superparamagnetic Iron Oxide Particles in Rats. Comp Med. 2018 68(2):139-147 PMID: 29663939 PMCID: 5897970

79. Ippoliti M, Adams LC, Winfried B, Hamm B, Spincemaille P, Wang Y, Makowski MR . Quantitative susceptibility mapping across two clinical field strengths: Contrast-to-noise ratio enhancement at 1.5T. J Magn Reson Imaging. 2018 48(5):1410-1420 PMID: 29659131

78. Deh K, Ponath GD, Molvi Z, Parel GT, Gillen KM, Zhang S, Nguyen TD, Spincemaille P, Ma Y, Gupta A, Gauthier SA, Pitt D, Wang Y . Magnetic susceptibility increases as diamagnetic molecules breakdown: Myelin digestion during multiple sclerosis lesion formation contributes to increase on QSM. J Magn Reson Imaging. 2018 48(5):1281-1287 PMID: 29517817 PMCID: 6129234

77. Cho J, Kee Y, Spincemaille P, Nguyen TD, Zhang J, Gupta A, Zhang S, Wang Y . Cerebral metabolic rate of oxygen (CMRO<sub>2</sub> ) mapping by combining quantitative susceptibility mapping (QSM) and quantitative blood oxygenation level-dependent imaging (qBOLD). Magn Reson Med. 2018 80(4):1595-1604 PMID: 29516537 PMCID: 6097883

76. Liu Z, Spincemaille P, Yao Y, Zhang Y, Wang Y . MEDI+0: Morphology enabled dipole inversion with automatic uniform cerebrospinal fluid zero reference for quantitative susceptibility mapping. Magn Reson Med. 2018 79(5):2795-2803 PMID: 29023982 PMCID: 5821583

75. Jafari R, Chhabra S, Prince MR, Wang Y, Spincemaille P . Vastly accelerated linear least-squares fitting with numerical optimization for dual-input delay-compensated quantitative liver perfusion mapping. Magn Reson Med. 2018 79(4):2415-2421 PMID: 28833534 PMCID: 5811380

74. Wen Y, Nguyen TD, Liu Z, Spincemaille P, Zhou D, Dimov A, Kee Y, Deh K, Kim J, Weinsaft JW, Wang Y . Cardiac quantitative susceptibility mapping (QSM) for heart chamber oxygenation. Magn Reson Med. 2018 79(3):1545-1552 PMID: 28653375 PMCID: 5743772

73. Kee Y, Cho J, Deh K, Liu Z, Spincemaille P, Wang Y . Coherence enhancement in quantitative susceptibility mapping by means of anisotropic weighting in morphology enabled dipole inversion. Magn Reson Med. 2018 79(2):1172-1180 PMID: 28556244

72. Wang Y, Spincemaille P, Liu Z, Dimov A, Deh K, Li J, Zhang Y, Yao Y, Gillen KM, Wilman AH, Gupta A, Tsiouris AJ, Kovanlikaya I, Chiang GC, Weinsaft JW, Tanenbaum L, Chen W, Zhu W, Chang S, Lou M, Kopell BH, Kaplitt MG, Devos D, Hirai T, Huang X, Korogi Y, Shtilbans A, Jahng GH, Pelletier D, Gauthier SA, Pitt D, Bush AI, Brittenham GM, Prince MR . Clinical quantitative susceptibility mapping (QSM): Biometal imaging and its emerging roles in patient care. J Magn Reson Imaging. 2017 46(4):951-971 PMID: 28295954 PMCID: 5592126

71. Zhang J, Cho J, Zhou D, Nguyen TD, Spincemaille P, Gupta A, Wang Y . Quantitative susceptibility mapping-based cerebral metabolic rate of oxygen mapping with minimum local variance. Magn Reson Med. 2018 79(1):172-179 PMID: 28295523

70. Dimov AV, Liu Z, Spincemaille P, Prince MR, Du J, Wang Y . Bone quantitative susceptibility mapping using a chemical species-specific R2* signal model with ultrashort and conventional echo data. Magn Reson Med. 2018 79(1):121-128 PMID: 28261863

69. Kee Y, Deh K, Dimov A, Spincemaille P, Wang Y . Primal-dual and forward gradient implementation for quantitative susceptibility mapping. Magn Reson Med. 2017 78(6):2416-2427 PMID: 28251685

68. Nguyen TD, Spincemaille P, Gauthier SA, Wang Y . Rapid whole brain myelin water content mapping without an external water standard at 1.5T. Magn Reson Imaging. 2017 39:82-88 PMID: 28077267

67. Zhou D, Cho J, Zhang J, Spincemaille P, Wang Y . Susceptibility underestimation in a high-susceptibility phantom: Dependence on imaging resolution, magnitude contrast, and other parameters. Magn Reson Med. 2017 78(3):1080-1086 PMID: 27699883

66. Eskreis-Winkler S, Zhou D, Liu T, Gupta A, Gauthier SA, Wang Y, Spincemaille P . On the influence of zero-padding on the nonlinear operations in Quantitative Susceptibility Mapping. Magn Reson Imaging. 2017 35:154-159 PMID: 27587225 PMCID: 5160043

65. Juluru K, Talal AH, Yantiss RK, Spincemaille P, Weidman EK, Giambrone AE, Jalili S, Sourbron SP, Dyke JP . Diagnostic accuracy of intracellular uptake rates calculated using dynamic Gd- EOB-DTPA-enhanced MRI for hepatic fibrosis stage. J Magn Reson Imaging. 2017 45(4):1177-1185 PMID: 27527820 PMCID: 5313385

64. Liu Z, Kee Y, Zhou D, Wang Y, Spincemaille P . Preconditioned total field inversion (TFI) method for quantitative susceptibility mapping. Magn Reson Med. 2017 78(1):303-315 PMID: 27464893 PMCID: 5274595

63. Boddu S, Brylka D, Dutruel SP, Spincemaille P, Prince MR . Quantitative evaluation of gadoxetate hepatocyte phase homogeneity: potential imaging markers for detection of early cirrhosis. Clin Imaging. 2016 40(5):979-86 PMID: 27288740

62. Durand M, Jain M, Robinson B, Aronowitz E, El Douahy Y, Leung R, Scherr DS, Ng A, Donzeau D, Amiel J, Spincemaille P, Villers A, Ballon DJ . Magnetic resonance microscopy may enable distinction between normal histomorphological features and prostate cancer in the resected prostate gland. BJU Int. 2017 119(3):414-423 PMID: 27154761

61. Zhang J, Zhou D, Nguyen TD, Spincemaille P, Gupta A, Wang Y . Cerebral metabolic rate of oxygen (CMRO<sub>2</sub> ) mapping with hyperventilation challenge using quantitative susceptibility mapping (QSM). Magn Reson Med. 2017 77(5):1762-1773 PMID: 27120518

60. Tilsen S, Spincemaille P, Xu B, Doerschuk P, Luh WM, Feldman E, Wang Y . Anticipatory Posturing of the Vocal Tract Reveals Dissociation of Speech Movement Plans from Linguistic Units. PLoS One. 2016 11(1):e0146813 PMID: 26760511 PMCID: 4711920

59. Wisnieff C, Liu T, Wang Y, Spincemaille P . The influence of molecular order and microstructure on the R2* and the magnetic susceptibility tensor. Magn Reson Imaging. 2016 34(5):682-9 PMID: 26692502 PMCID: 4860046

58. Nguyen TD, Deh K, Monohan E, Pandya S, Spincemaille P, Raj A, Wang Y, Gauthier SA . Feasibility and reproducibility of whole brain myelin water mapping in 4 minutes using fast acquisition with spiral trajectory and adiabatic T2prep (FAST-T2) at 3T. Magn Reson Med. 2016 76(2):456-65 PMID: 26331978 PMCID: 5486993

57. Persson N, Wu J, Zhang Q, Liu T, Shen J, Bao R, Ni M, Liu T, Wang Y, Spincemaille P . Age and sex related differences in subcortical brain iron concentrations among healthy adults. Neuroimage. 2015 122:385-98 PMID: 26216277 PMCID: 4737643

56. Zhu Y, Liu J, Weinsaft J, Spincemaille P, Nguyen TD, Prince MR, Bao S, Xie Y, Wang Y . Free-Breathing 3D Imaging of Right Ventricular Structure and Function Using Respiratory and Cardiac Self-Gated Cine MRI. Biomed Res Int. 2015 2015:819102 PMID: 26185764 PMCID: 4491385

55. Deh K, Nguyen TD, Eskreis-Winkler S, Prince MR, Spincemaille P, Gauthier S, Kovanlikaya I, Zhang Y, Wang Y . Reproducibility of quantitative susceptibility mapping in the brain at two field strengths from two vendors. J Magn Reson Imaging. 2015 42(6):1592-600 PMID: 25960320 PMCID: 4661140

54. Cooper MA, Nguyen TD, Xu B, Prince MR, Elad M, Wang Y, Spincemaille P . Patch based reconstruction of undersampled data (PROUD) for high signal-to-noise ratio and high frame rate contrast enhanced liver imaging. Magn Reson Med. 2015 74(6):1587-97 PMID: 25483782 PMCID: 4458243

53. Dong J, Liu T, Chen F, Zhou D, Dimov A, Raj A, Cheng Q, Spincemaille P, Wang Y . Simultaneous phase unwrapping and removal of chemical shift (SPURS) using graph cuts: application in quantitative susceptibility mapping. IEEE Trans Med Imaging. 2015 34(2):531-40 PMID: 25312917

52. Zhang J, Liu T, Gupta A, Spincemaille P, Nguyen TD, Wang Y . Quantitative mapping of cerebral metabolic rate of oxygen (CMRO2 ) using quantitative susceptibility mapping (QSM). Magn Reson Med. 2015 74(4):945-52 PMID: 25263499 PMCID: 4375095

51. Cooper MA, Nguyen TD, Spincemaille P, Prince MR, Weinsaft JW, Wang Y . How accurate is MOLLI T1 mapping in vivo? Validation by spin echo methods. PLoS One. 2014 9(9):e107327 PMID: 25211243 PMCID: 4161413

50. Eskreis-Winkler S, Deh K, Gupta A, Liu T, Wisnieff C, Jin M, Gauthier SA, Wang Y, Spincemaille P . Multiple sclerosis lesion geometry in quantitative susceptibility mapping (QSM) and phase imaging. J Magn Reson Imaging. 2015 42(1):224-9 PMID: 25174493 PMCID: 4733654

49. Dimov AV, Liu T, Spincemaille P, Ecanow JS, Tan H, Edelman RR, Wang Y . Joint estimation of chemical shift and quantitative susceptibility mapping (chemical QSM). Magn Reson Med. 2015 73(6):2100-10 PMID: 24947227 PMCID: 4874185

48. Xu B, Spincemaille P, Liu T, Prince MR, Dutruel S, Gupta A, Thimmappa ND, Wang Y . Quantification of cerebral perfusion using dynamic quantitative susceptibility mapping. Magn Reson Med. 2015 73(4):1540-8 PMID: 24733457

47. Liu J, Nguyen TD, Zhu Y, Spincemaille P, Prince MR, Weinsaft JW, Saloner D, Wang Y . Self-gated free-breathing 3D coronary CINE imaging with simultaneous water and fat visualization. PLoS One. 2014 9(2):e89315 PMID: 24586682 PMCID: 3930724

46. Zhou D, Liu T, Spincemaille P, Wang Y . Background field removal by solving the Laplacian boundary value problem. NMR Biomed. 2014 27(3):312-9 PMID: 24395595

45. Wen Y, Zhou D, Liu T, Spincemaille P, Wang Y . An iterative spherical mean value method for background field removal in MRI. Magn Reson Med. 2014 72(4):1065-71 PMID: 24254415 PMCID: 4026360

44. Xu B, Liu T, Spincemaille P, Prince M, Wang Y . Flow compensated quantitative susceptibility mapping for venous oxygenation imaging. Magn Reson Med. 2014 72(2):438-45 PMID: 24006187 PMCID: 3979497

43. Wang S, Liu T, Chen W, Spincemaille P, Wisnieff C, Tsiouris AJ, Zhu W, Pan C, Zhao L, Wang Y . Noise Effects in Various Quantitative Susceptibility Mapping Methods. IEEE Trans Biomed Eng. 2013 60(12):3441-8 PMID: 23751950 PMCID: 5553691

42. Kawaji K, Spincemaille P, Nguyen TD, Thimmappa N, Cooper MA, Prince MR, Wang Y . Direct coronary motion extraction from a 2D fat image navigator for prospectively gated coronary MR angiography. Magn Reson Med. 2014 71(2):599-607 PMID: 23504975

41. Wisnieff C, Liu T, Spincemaille P, Wang S, Zhou D, Wang Y . Magnetic susceptibility anisotropy: cylindrical symmetry from macroscopically ordered anisotropic molecules and accuracy of MRI measurements using few orientations. Neuroimage. 2013 70:363-76 PMID: 23296181 PMCID: 3580080

40. Agrawal MD, Spincemaille P, Mennitt KW, Xu B, Wang Y, Dutruel SP, Prince MR . Improved hepatic arterial phase MRI with 3-second temporal resolution. J Magn Reson Imaging. 2013 37(5):1129-36 PMID: 23197440

39. Li J, Chang S, Liu T, Wang Q, Cui D, Chen X, Jin M, Wang B, Pei M, Wisnieff C, Spincemaille P, Zhang M, Wang Y . Reducing the object orientation dependence of susceptibility effects in gradient echo MRI through quantitative susceptibility mapping. Magn Reson Med. 2012 68(5):1563-9 PMID: 22851199 PMCID: 3493252

38. Weinsaft JW, Spincemaille P . BOLD new directions in myocardial ischemia imaging-myocardial oxygenation assessment by cardiac magnetic resonance. J Am Coll Cardiol. 2012 59(22):1965-7 PMID: 22624836

37. Liu T, Wisnieff C, Lou M, Chen W, Spincemaille P, Wang Y . Nonlinear formulation of the magnetic field to source relationship for robust quantitative susceptibility mapping. Magn Reson Med. 2013 69(2):467-76 PMID: 22488774

36. Xu B, Spincemaille P, Chen G, Agrawal M, Nguyen TD, Prince MR, Wang Y . Fast 3D contrast enhanced MRI of the liver using temporal resolution acceleration with constrained evolution reconstruction. Magn Reson Med. 2013 69(2):370-81 PMID: 22442108

35. Nguyen TD, Wisnieff C, Cooper MA, Kumar D, Raj A, Spincemaille P, Wang Y, Vartanian T, Gauthier SA . T2 prep three-dimensional spiral imaging with efficient whole brain coverage for myelin water quantification at 1.5 tesla. Magn Reson Med. 2012 67(3):614-21 PMID: 22344579

34. Cooper MA, Nguyen TD, Spincemaille P, Prince MR, Weinsaft JW, Wang Y . Flip angle profile correction for T₁ and T₂ quantification with look-locker inversion recovery 2D steady-state free precession imaging. Magn Reson Med. 2012 68(5):1579-85 PMID: 22294428 PMCID: 3342445

33. Liu T, Xu W, Spincemaille P, Avestimehr AS, Wang Y . Accuracy of the morphology enabled dipole inversion (MEDI) algorithm for quantitative susceptibility mapping in MRI. IEEE Trans Med Imaging. 2012 31(3):816-24 PMID: 22231170 PMCID: 3613569

32. Liu T, Surapaneni K, Lou M, Cheng L, Spincemaille P, Wang Y . Cerebral microbleeds: burden assessment by using quantitative susceptibility mapping. Radiology. 2012 262(1):269-78 PMID: 22056688 PMCID: 3244668

31. Liu J, Liu T, de Rochefort L, Ledoux J, Khalidov I, Chen W, Tsiouris AJ, Wisnieff C, Spincemaille P, Prince MR, Wang Y . Morphology enabled dipole inversion for quantitative susceptibility mapping using structural consistency between the magnitude image and the susceptibility map. Neuroimage. 2012 59(3):2560-8 PMID: 21925276 PMCID: 3254812

30. Codella NC, Spincemaille P, Prince M, Wang Y . A radial self-calibrated (RASCAL) generalized autocalibrating partially parallel acquisition (GRAPPA) method using weight interpolation. NMR Biomed. 2011 24(7):844-54 PMID: 21834008 PMCID: 3241961

29. Kawaji K, Nguyen TD, Zou Z, Reig B, Winchester PA, Shih A, Spincemaille P, Prince MR, Wang Y . Three-dimensional flow-independent balanced steady-state free precession vessel wall MRI of the popliteal artery: preliminary experience and comparison with flow-dependent black-blood techniques. J Magn Reson Imaging. 2011 34(3):696-701 PMID: 21769963 PMCID: 3197870

28. Spincemaille P, Liu J, Nguyen T, Prince MR, Wang Y . Z intensity-weighted position self-respiratory gating method for free-breathing 3D cardiac CINE imaging. Magn Reson Imaging. 2011 29(6):861-8 PMID: 21524873 PMCID: 3118868

27. Liu T, Liu J, de Rochefort L, Spincemaille P, Khalidov I, Ledoux JR, Wang Y . Morphology enabled dipole inversion (MEDI) from a single-angle acquisition: comparison with COSMOS in human brain imaging. Magn Reson Med. 2011 66(3):777-83 PMID: 21465541

26. Liu T, Khalidov I, de Rochefort L, Spincemaille P, Liu J, Tsiouris AJ, Wang Y . A novel background field removal method for MRI using projection onto dipole fields (PDF). NMR Biomed. 2011 24(9):1129-36 PMID: 21387445 PMCID: 3628923

25. Singh G, Raj A, Kressler B, Nguyen TD, Spincemaille P, Zabih R, Wang Y . A fast Edge-preserving Bayesian reconstruction method for Parallel Imaging applications in cardiac MRI. Magn Reson Med. 2011 65(1):184-9 PMID: 20939095 PMCID: 3005027

24. Liu T, Spincemaille P, de Rochefort L, Wong R, Prince M, Wang Y . Unambiguous identification of superparamagnetic iron oxide particles through quantitative susceptibility mapping of the nonlinear response to magnetic fields. Magn Reson Imaging. 2010 28(9):1383-9 PMID: 20688448 PMCID: 2963706

23. Liu J, Spincemaille P, Codella NC, Nguyen TD, Prince MR, Wang Y . Respiratory and cardiac self-gated free-breathing cardiac CINE imaging with multiecho 3D hybrid radial SSFP acquisition. Magn Reson Med. 2010 63(5):1230-7 PMID: 20432294 PMCID: 3071925

22. Brown R, Nguyen TD, Spincemaille P, Cham MD, Choi G, Winchester PA, Prince MR, Wang Y . Effect of blood flow on double inversion recovery vessel wall MRI of the peripheral arteries: quantitation with T2 mapping and comparison with flow- insensitive T2-prepared inversion recovery imaging. Magn Reson Med. 2010 63(3):736-44 PMID: 20187182 PMCID: 2921169

21. de Rochefort L, Liu T, Kressler B, Liu J, Spincemaille P, Lebon V, Wu J, Wang Y . Quantitative susceptibility map reconstruction from MR phase data using bayesian regularization: validation and application to brain imaging. Magn Reson Med. 2010 63(1):194-206 PMID: 19953507

20. Kressler B, de Rochefort L, Liu T, Spincemaille P, Jiang Q, Wang Y . Nonlinear regularization for per voxel estimation of magnetic susceptibility distributions from MRI field maps. IEEE Trans Med Imaging. 2010 29(2):273-81 PMID: 19502123 PMCID: 2874210

19. Brown R, Nguyen TD, Spincemaille P, Prince MR, Wang Y . In vivo quantification of femoral-popliteal compression during isometric thigh contraction: Assessment using MR angiography. J Magn Reson Imaging. 2009 29(5):1116-24 PMID: 19388112 PMCID: 2679167

18. de Rochefort L, Nguyen T, Brown R, Spincemaille P, Choi G, Weinsaft J, Prince MR, Wang Y . In vivo quantification of contrast agent concentration using the induced magnetic field for time-resolved arterial input function measurement with MRI. Med Phys. 2008 35(12):5328-39 PMID: 19175092

17. Nguyen TD, Spincemaille P, Cham MD, Weinsaft JW, Prince MR, Wang Y . Free-breathing 3-dimensional steady-state free precession coronary magnetic resonance angiography: comparison of four navigator gating techniques. Magn Reson Imaging. 2009 27(6):807-14 PMID: 19152775 PMCID: 2727666

16. Liu T, Spincemaille P, de Rochefort L, Kressler B, Wang Y . Calculation of susceptibility through multiple orientation sampling (COSMOS): a method for conditioning the inverse problem from measured magnetic field map to susceptibility source image in MRI. Magn Reson Med. 2009 61(1):196-204 PMID: 19097205

15. Nguyen TD, de Rochefort L, Spincemaille P, Cham MD, Weinsaft JW, Prince MR, Wang Y . Effective motion-sensitizing magnetization preparation for black blood magnetic resonance imaging of the heart. J Magn Reson Imaging. 2008 28(5):1092-100 PMID: 18972350 PMCID: 2666444

14. Nguyen TD, Spincemaille P, Cham MD, Weinsaft JW, Prince MR, Wang Y . Free-breathing 3D steady-state free precession coronary magnetic resonance angiography: comparison of diaphragm and cardiac fat navigators. J Magn Reson Imaging. 2008 28(2):509-14 PMID: 18666215 PMCID: 2691648

13. Spincemaille P, Nguyen TD, Prince MR, Wang Y . Kalman filtering for real-time navigator processing. Magn Reson Med. 2008 60(1):158-68 PMID: 18581354

12. Nguyen TD, Spincemaille P, Weinsaft JW, Ho BY, Cham MD, Prince MR, Wang Y . A fast navigator-gated 3D sequence for delayed enhancement MRI of the myocardium: comparison with breathhold 2D imaging. J Magn Reson Imaging. 2008 27(4):802-8 PMID: 18302233

11. Spincemaille P, Hai ZX, Cheng L, Prince M, Wang Y . Motion artifact suppression in breath hold 3D contrast enhanced magnetic resonance angiography using ECG ordering. Conf Proc IEEE Eng Med Biol Soc. 2006 2006:739-42 PMID: 17946855

10. Singh G, Nguyen T, Kressler B, Spincemaille P, Raj A, Zabih R, Wang Y . Improved signal-to-noise ratio in parallel coronary artery magnetic resonance angiography using graph cuts based Bayesian reconstruction. Conf Proc IEEE Eng Med Biol Soc. 2006 2006:703-6 PMID: 17946852

9. Kressler B, Spincemaille P, Nguyen TD, Cheng L, Xi Hai Z, Prince MR, Wang Y . Three-dimensional cine imaging using variable-density spiral trajectories and SSFP with application to coronary artery angiography. Magn Reson Med. 2007 58(3):535-43 PMID: 17763360

8. Brown R, Wang Y, Spincemaille P, Lee RF . On the noise correlation matrix for multiple radio frequency coils. Magn Reson Med. 2007 58(2):218-24 PMID: 17654588

7. Spincemaille P, Brown R, Qian Y, Wang Y . Optimal coil array design: the two-coil case. Magn Reson Imaging. 2007 25(5):671-7 PMID: 17540279

6. Nguyen TD, Spincemaille P, Vaidya A, Prince MR, Lu ZR, Wang Y . Contrast-enhanced magnetic resonance angiography with biodegradable (Gd- DTPA)-cystamine copolymers: comparison with MS-325 in a swine model. Mol Pharm. 2006 3(5):558-65 PMID: 17009855

5. Kressler B, Spincemaille P, Prince MR, Wang Y . Reduction of reconstruction time for time-resolved spiral 3D contrast-enhanced magnetic resonance angiography using parallel computing. Magn Reson Med. 2006 56(3):704-8 PMID: 16892189

4. Nguyen TD, Spincemaille P, Prince MR, Wang Y . Cardiac fat navigator-gated steady-state free precession 3D magnetic resonance angiography of coronary arteries. Magn Reson Med. 2006 56(1):210-5 PMID: 16767743

3. Spincemaille P, Nguyen TD, Wang Y . View ordering for magnetization prepared steady state free precession acquisition: application in contrast-enhanced MR angiography. Magn Reson Med. 2004 52(3):461-6 PMID: 15334562

2. Kolmogorov V, Nguyen TD, Nuval A, Spincemaille P, Prince MR, Zabih R, Wang Y . Multiprocessor scheduling implementation of the simultaneous multiple volume (SMV) navigator method. Magn Reson Med. 2004 52(2):362-7 PMID: 15282819

1. Nguyen TD, Spincemaille P, Wang Y . Improved magnetization preparation for navigator steady-state free precession 3D coronary MR angiography. Magn Reson Med. 2004 51(6):1297-300 PMID: 15170854