Borjan Gagoski. Boston Children's Hospital. Verified email at childrens.harvard.edu. magnetric resonance imaging. Articles Cited by Public access. Title. Sort.

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NMR Biomed. (2012) 25:195–209. 10.1002/nbm.1730 [PMC free article] [Google Scholar] FULL PAPER Magnetic Resonance in Medicine 00:00–00 (2014) Accelerated 1H MRSI Using Randomly Undersampled Spiral-Based k-Space Trajectories Itthi Chatnuntawech,1* Borjan Gagoski,2 Berkin Bilgic,3 Stephen F. Cauley,3 Kawin Setsompop,3,4 and Elfar Adalsteinsson1,5,6 Purpose: To develop and evaluate the performance of an INTRODUCTION acquisition and reconstruction method for accelerated MR MR borjan.gagoski@childrens.harvard.edu and Berkin Bilgic, PhD, Building 75, 13th Street, Charlestown, MA, 02129 Search for more papers by this author Cornelius Eichner Nadine N. Graedel, Jonathan R. Polimeni, Bastien Guerin, Borjan Gagoski and Lawrence L. Wald (2015). "An anatomically realistic temperature phantom for radiofrequency heating measurements". Magnetic Resonance in Medicine 73(1):442–450 Download files.

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His early research included the implementation of fast encoding schemes for spectroscopic imaging on Siemens MR platforms. Borjan A. Gagoski,1,2y* Berkin Bilgic,2,3y* Cornelius Eichner,3,4 Himanshu Bhat,5 P. Ellen Grant,1,2 Lawrence L. Wald,2,3,6 and Kawin Setsompop2,3 Purpose: To enable highly accelerated RARE/Turbo Spin Echo (TSE) imaging using Simultaneous MultiSlice (SMS) Wave-CAIPI acquisition with reduced g … Rapid QSM Acquisition with Wave-CAIPI Berkin Bilgic 1, Borjan Gagoski2, Stephen Cauley , Audrey Fan3, Jonathan Polimeni1, Ellen Grant2, Lawrence Wald1, and Kawin Setsompop1 1Martinos Center for Biomedical Imaging, Charlestown, MA, United States, 2Boston Children's Hospital, Boston, MA, United States, 3EECS, MIT, Cambridge, MA, United States TARGET AUDIENCE: Scientists interested in highly Diffusion Weighted Imaging (derived from Magnetic Resonance Imaging) Yingying Wang, Ph.D., Borjan Gagoski, Ph.D., Danielle Sliva, Ph.D., Meaghan BibTeX @MISC{Andronesi_correlationchemical, author = {Ovidiu C. Andronesi and Lixin Shi and Haitham Hassanieh and Wolfgang Bogner and Borjan Gagoski and Aaron Hess and Dylan Tisdall and Andre Van Der Kouwe and Dina Katabi and Elfar Adalsteinsson}, title = {Correlation Chemical Shift Imaging with Sparse-FFT and Real-time Motion and Shim Correction}, year = {}} Bernhard Strasser, Lukas Hingerl, Borjan Gagoski, Philipp Moser, Gilbert Hangel, Siegfried Trattning, Wolfgang Bogner In this work three different acceleration methods, 2D-CAIPIRINHA with phase-encoding, spiral encoding and concentric circles (CONCEPT) for brain MRSI at 7T were compared. Andronesi OC, Gagoski BA, Adalsteinsson E, Sorensen AG. Correlation chemical shift imaging with low-power adiabatic pulses and constant-density spiral trajectories. NMR Biomed.

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1 Feb 2012 Ovidiu C. Andronesi , · Borjan A. Gagoski, · A. Gregory Sorensen.

Bernhard Strasser, Lukas Hingerl, Borjan Gagoski, Philipp Moser, Gilbert Hangel, Siegfried Trattning, Wolfgang Bogner. In this work three different acceleration  Borjan Gagoski, Ellen Grant Children's Hospital, Boston. Norberto Malpica, Juan Antonio Tamames, Universidad Rey Juan Carlos. Maria Teulon Gonzalez  Site PI: P. Ellen Grant, MD (BCH).

BibTeX @ARTICLE{Zelinski07comparisonof, author = {Adam C. Zelinski and Lawrence L. Wald and Kawin Setsompop and Vijayanand Alagappan and Borjan A. Gagoski and Vivek K Goyal and Franz Hebrank and Ulrich Fontius and Franz Schmitt and Elfar Adalsteinsson and Charlestown Ma}, title = {Comparison of three algorithms for solving linearized systems of parallel excitation RF waveform design equations

Borjan gagoski

Articles Cited by Public access. Title. Sort. by Borjan Gagoski High-field magnetic resonance imaging (MRI) has the challenge of inhomogeneous B(1)(+), and consequently inhomogeneous flip angle distribution, which causes spatially dependent contrast and makes clinical diagnosis difficult.

Borjan gagoski

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He came to MIT in the Fall of 2004, finishing his MS degree at 2006, and PhD in 2011. His early research included the implementation of fast encoding schemes for spectroscopic imaging on Siemens MR platforms. Borjan A. Gagoski,1,2y* Berkin Bilgic,2,3y* Cornelius Eichner,3,4 Himanshu Bhat,5 P. Ellen Grant,1,2 Lawrence L. Wald,2,3,6 and Kawin Setsompop2,3 Purpose: To enable highly accelerated RARE/Turbo Spin Echo (TSE) imaging using Simultaneous MultiSlice (SMS) Wave-CAIPI acquisition with reduced g … Rapid QSM Acquisition with Wave-CAIPI Berkin Bilgic 1, Borjan Gagoski2, Stephen Cauley , Audrey Fan3, Jonathan Polimeni1, Ellen Grant2, Lawrence Wald1, and Kawin Setsompop1 1Martinos Center for Biomedical Imaging, Charlestown, MA, United States, 2Boston Children's Hospital, Boston, MA, United States, 3EECS, MIT, Cambridge, MA, United States TARGET AUDIENCE: Scientists interested in highly Diffusion Weighted Imaging (derived from Magnetic Resonance Imaging) Yingying Wang, Ph.D., Borjan Gagoski, Ph.D., Danielle Sliva, Ph.D., Meaghan BibTeX @MISC{Andronesi_correlationchemical, author = {Ovidiu C. Andronesi and Lixin Shi and Haitham Hassanieh and Wolfgang Bogner and Borjan Gagoski and Aaron Hess and Dylan Tisdall and Andre Van Der Kouwe and Dina Katabi and Elfar Adalsteinsson}, title = {Correlation Chemical Shift Imaging with Sparse-FFT and Real-time Motion and Shim Correction}, year = {}} Bernhard Strasser, Lukas Hingerl, Borjan Gagoski, Philipp Moser, Gilbert Hangel, Siegfried Trattning, Wolfgang Bogner In this work three different acceleration methods, 2D-CAIPIRINHA with phase-encoding, spiral encoding and concentric circles (CONCEPT) for brain MRSI at 7T were compared. Andronesi OC, Gagoski BA, Adalsteinsson E, Sorensen AG. Correlation chemical shift imaging with low-power adiabatic pulses and constant-density spiral trajectories. NMR Biomed.

Articles Cited by Public access. Title. Sort.
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FULL PAPER Magnetic Resonance in Medicine 00:00–00 (2014) Accelerated 1H MRSI Using Randomly Undersampled Spiral-Based k-Space Trajectories Itthi Chatnuntawech,1* Borjan Gagoski,2 Berkin Bilgic,3 Stephen F. Cauley,3 Kawin Setsompop,3,4 and Elfar Adalsteinsson1,5,6 Purpose: To develop and evaluate the performance of an INTRODUCTION acquisition and reconstruction method for accelerated MR MR

Cerebral perfusion in neonates with congenital heart disease is a clinical concern. Combined measures of MRI and NIRS can provide complementary information to improve monitoring. We compare multimodal measures of cerebral hemodynamics in this group.