
- TT Liu, BE280A, UCSD Fall 2007 Bioengineering 280A
- Thomas Liu, BE280A, UCSD, Fall 2007 Bioengineering 280A
- TT Liu, BE280A, UCSD Fall 2007 Bioengineering 280A
- TT Liu, BE280A, UCSD Fall 2006 Bioengineering 280A
- Velocity-Selective Arterial Spin Labeling Eric C. Wong,1,2* Matthew Cronin,1
- Thomas Liu, BE280A, UCSD, Fall 2005 Bioengineering 280A
- Calibrated fMRI in the medial temporal lobe during a memory-encoding task
- TT Liu, BE280A, UCSD, Fall 2007 Bioengineering 280A
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- TT Liu, BE280A, UCSD, Fall 2006 Bioengineering 280A
- Bioengineering 280A Principles of Biomedical Imaging
- TT Liu, BE280A, UCSD Fall 2007 Bioengineering 280A
- TT. Liu, BE280A, UCSD Fall 2005 Bioengineering 280A
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- TT Liu, BE280A, UCSD Fall 2005 Bioengineering 280A
- TT Liu BE280A, UCSD Fall 2005 Static Inhomogeneities
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- Thomas Liu, BE280A, UCSD Fall 2004 Bioengineering 280A
- TT Liu, BE280A, UCSD Fall 2008 Bioengineering 280A
- Thomas Liu, BE280A, UCSD, Fall 2005 Bioengineering 280A
- Please cite this article in press as: Bangen, K.J., et al., Differential age effects on cerebral blood flow and BOLD response to encoding: Associations with cognition and stroke risk, Neurobiol Aging (2007), doi:10.1016/j.neurobiolaging.2007.11.012
- Thomas Liu, BE280A, UCSD, Fall 2005 Bioengineering 280A
- Thomas Liu, BE280A, UCSD, Fall 2008 Bioengineering 280A
- TT Liu, BE280A, UCSD Fall 2008 Bioengineering 280A
- Bioengineering 280A Principles of
- TT Liu, BE280A, UCSD Fall 2007 Bioengineering 280A
- TT Liu, BE280A, UCSD Fall 2006 Bioengineering 280A
- TT Liu, BE280A, UCSD Fall 2005 Bioengineering 280A
- TT. Liu, BE280A, UCSD Fall 2004 Bioengineering 280A
- Thomas Liu, BE280A, UCSD, Fall 2008 Bioengineering 280A
- TT Liu, BE280A, UCSD Fall 2006 Bioengineering 280A
- TT Liu, BE280A, UCSD Fall 2008 Bioengineering 280A
- Bioengineering 280A: Principles of Biomedical Imaging 9/17/08 Fall Quarter 2008
- TT Liu, BE280A, UCSD Fall 2004 Bioengineering 280A
- Bioengineering 280ABioengineering 280A Principles ofPrinciples of
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- Caffeine alters the temporal dynamics of the visual BOLD response Thomas T. Liu,a,* Yashar Behzadi,a,b
- TT Liu, BE280A, UCSD, Fall 2005 Bioengineering 280A
- Thomas Liu, BE280A, UCSD, Fall 2007 Bioengineering 280A
- Modeling the hemodynamic response to brain activation Richard B. Buxton,* Ka^mil Uludag, David J. Dubowitz, and Thomas T. Liu
- TT Liu, BE280A, UCSD Fall 2009 Bioengineering 280A
- Thomas Liu, BE280A, UCSD, Fall 2005 Bioengineering 280A
- Caffeine reduces the activation extent and contrast-to-noise ratio of the functional cerebral blood flow response but not
- A component based noise correction method (CompCor) for BOLD and perfusion based fMRI
- T1 and T2 Selective Method for Improved SNR in CSF-Attenuated Imaging: T2-FLAIR
- TT Liu, BE280A, UCSD, Fall 2006 Bioengineering 280A
- Thomas Liu, BE280A, UCSD, Fall 2006 Bioengineering 280A
- UNIVERSITY OF CALIFORNIA, SAN DIEGO Variability in Functional Magnetic Resonance Imaging
- TT Liu BE280A, UCSD Fall 2004 Bioengineering 280A
- TT Liu, BE280A, UCSD Fall 2004 Bioengineering 280A
- BENG280A, Principles of Biomedical Imaging 10/11/04 Fall Quarter 2004
- TT Liu, BE280A, UCSD Fall 2006 Bioengineering 280A
- Partially Parallel Imaging With Localized Sensitivities (PILS)
- Discrepancies between BOLD and flow dynamics in primary and supplementary motor areas: application of the balloon model to the
- TT Liu, BE280A, UCSD, Fall 2005 Bioengineering 280A
- TT Liu, BE280A, UCSD, Fall 2004 Bioengineering 280A
- SNR and functional sensitivity of BOLD and perfusion-based fMRI using arterial spin labeling with spiral SENSE at 3 T
- Bioengineering 280A: Principles of Biomedical Imaging 9/21/06 Fall Quarter 2006
- Thomas Liu, BE280A, UCSD, Fall 2006 Bioengineering 280A
- TT Liu, BE280A, UCSD Fall 2007 Bioengineering 280A
- Thomas Liu, BE280A, UCSD, Fall 2005 Bioengineering 280A
- Trend detection via temporal difference model predicts inferior prefrontal cortex activation during acquisition of advantageous
- Imaging Periodic Currents Using Alternating Balanced Steady-State Free Precession
- Cerebral blood flow and BOLD responses to a memory encoding task: A comparison between healthy young and elderly adults
- TT. Liu, BE280A, UCSD Fall 2004 Bioengineering 280A
- BE280A, Principles of Biomedical Imaging 11/21/06 Fall Quarter 2006
- TT Liu, BE280A, UCSD Fall 2004 Bioengineering 280A
- TT Liu, BE280A, UCSD Fall 2006 Bioengineering 280A
- TT. Liu, BE280A, UCSD Fall 2007 Bioengineering 280A
- T.T. Liu, BE280A, UCSD Fall 2004 Bioengineering 280A
- Bioengineering 280A Principles of
- Some of the mathematical expressions in (Liu and Frank 2004) were found to have errors that were missed in the review and proofing process. These errors do not change the
- TT Liu, BE280A, UCSD Fall 2004 Bioengineering 280A
- T.T. Liu, BE280A, UCSD Fall 2004 Bioengineering 280A
- Thomas Liu, BE280A, UCSD, Fall 2006 Bioengineering 280A
- T.T. Liu, BE280A, UCSD Fall 2004 Bioengineering 280A
- TT Liu, BE280A, UCSD Fall 2004 Bioengineering 280A
- TT Liu, BE280A, UCSD Fall 2007 Bioengineering 280A
- TT Liu, BE280A, UCSD Fall 2006 Bioengineering 280A
- Thomas Liu, BE280A, UCSD, Fall 2004 Bioengineering 280A
- TT Liu, BE280A, UCSD Fall 2010 Bioengineering 280A
- Thomas Liu, BE280A, UCSD, Fall 2007 Bioengineering 280A
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- Caffeine-induced uncoupling of cerebral blood flow and oxygen metabolism: A calibrated BOLD fMRI study
- BE280A, Principles of Biomedical Imaging 11/22/05 Fall Quarter 2005
- TT Liu, BE280A, UCSD Fall 2007 Bioengineering 280A
- Bioeng 280A: Principles of Biomedical Imaging 10/11/04 Fall Quarter 2004
- BENG280A, Principles of Biomedical Imaging 09/21/06 Fall Quarter 2006 HO #1
- Please cite this article in press as: Fleisher, A.S., et al., Cerebral perfusion and oxygenation differences in Alzheimer's disease risk, Neurobiol Aging (2008), doi:10.1016/j.neurobiolaging.2008.01.012
- TT Liu, BE280A, UCSD, Fall 2007 Bioengineering 280A
- Thomas Liu, BE280A, UCSD, Fall 2005 Bioengineering 280A
- Thomas Liu, BE280A, UCSD, Fall 2005 Bioengineering 280A
- ULTRA-LOW FREQUENCY MAGNETIC FIELDS IN THE SAN FRANCISCO BAY AREA
- Nonlinear Temporal Dynamics of the Cerebral Blood Flow Response
- TT Liu BE280A, UCSD Fall 2004 Bioengineering 280A
- Coupling of cerebral blood flow and oxygen consumption during physiological activation and deactivation measured with fMRI
- Thomas Liu, BE280A, UCSD, Fall 2005 Bioengineering 280A
- Thomas Liu, BE280A, UCSD, Fall 2004 Bioengineering 280A
- TT Liu, BE280A, UCSD Fall 2004 Bioengineering 280A
- Bioengineering 280A Principles of
- Thomas Liu, BE280A, UCSD, Fall 2006 Bioengineering 280A
- Thomas Liu, BE280A, UCSD, Fall 2005 Bioengineering 280A
- TT Liu, BE280A, UCSD Fall 2006 Bioengineering 280A
- TT Liu, BE280A, UCSD Fall 2009 Bioengineering 280A
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- Thomas Liu, BE280A, UCSD, Fall 2008 Bioengineering 280A
- CRITICAL REVIEW Measurement of cerebral perfusion with arterial spin
- TT Liu, BE280A, UCSD Fall 2006 Bioengineering 280A
- TT Liu, BE280A, UCSD, Fall 2006 Bioengineering 280A
- Neuropsychol Rev (2007) 17:107125 DOI 10.1007/s11065-007-9028-8
- a0005 Perfusion MRI T T Liu, E C Wong, and R B Buxton, University of
- Physiological noise reduction for arterial spin labeling functional MRI Khaled Restom,a,b
- TT Liu, BE280A, UCSD Fall 2005 Bioengineering 280A
- TT Liu, BE280A, UCSD, Fall 2005 Bioengineering 280A
- TT Liu, BE280A, UCSD Fall 2007 Bioengineering 280A
- Quantification of Regional Pulmonary Blood Flow Using D.S. Bolar,1
- Bioengineering 280A: Principles of Biomedical Imaging 9/19/09 Fall Quarter 2009
- CRITICAL REVIEW Measurement of cerebral perfusion with arterial
- TT Liu, BE280A, UCSD Fall 2006 Bioengineering 280A
- A signal processing model for arterial spin labeling functional MRI Thomas T. Liua,* and Eric C. Wonga,b
- TT Liu, BE280A, UCSD Fall 2008 Bioengineering 280A
- 1458 IEEE TRANSACTIONS ON SIGNAL PROCESSING, VOL. 48, NO. 5, MAY 2000 be used in a variety of problems associated with transient signal pro-
- Magnetic Resonance in Medicine 56:891906 (2006) Bayesian Inference of Hemodynamic Changes
- Technical note Optimal phase difference reconstruction: comparison of two methods
- Manuscript Information Grant/Project/Contract/Support Information
- An arteriolar compliance model of the cerebral blood flow response to neural stimulus
- UNIVERSITY OF CALIFORNIA, SAN DIEGO Image based physiological noise correction
- BENG280A, Principles of Biomedical Imaging 09/23/04 Fall Quarter 2004 HO #1
- TT. Liu, BE280A, UCSD Fall 2005 Bioengineering 280A
- TT Liu, BE280A, UCSD Fall 2005 Bioengineering 280A
- Thomas Liu, BE280A, UCSD, Fall 2007 Bioengineering 280A
- Thomas Liu, BE280A, UCSD, Fall 2008 Bioengineering 280A
- TT Liu, BE280A, UCSD, Fall 2008 Bioengineering 280A
- Thomas Liu, BE280A, UCSD, Fall 2004 Bioengineering 280A
- Positron Emission Tomography Physics, Instrumentation, Data Analysis
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- TT. Liu, BE280A, UCSD Fall 2008 Bioengineering 280A
- Bioengineering 280A Principles of Biomedical Imaging
- TT Liu, BE280A, UCSD Fall 2010 Bioengineering 280A
- TT Liu, BE280A, UCSD Fall 2005 Bioengineering 280A
- Thomas Liu, BE280A, UCSD, Fall 2006 Bioengineering 280A
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- TT Liu, BE280A, UCSD Fall 2008 Bioengineering 280A
- Thomas Liu, BE280A, UCSD, Fall 2008 Bioengineering 280A
- TT Liu, BE280A, UCSD, Fall 2008 Bioengineering 280A
- TT Liu, BE280A, UCSD Fall 2009 Bioengineering 280A
- TT. Liu, BE280A, UCSD Fall 2006 Bioengineering 280A
- TT Liu, BE280A, UCSD Fall 2007 Bioengineering 280A
- Caffeine reduces the initial dip in the visual BOLD response at 3 T Yashar Behzadia,b
- TT Liu, BE280A, UCSD Fall 2004 Bioengineering 280A
- Thomas T. Liu Center for Functional Magnetic Resonance Imaging