參考文獻 |
Amblard, C., E. Lapalme, et al. (2004). Biomagnetic source detection by maximum entropy and graphical models. 51: 427-442.
Arthur, R. M. and D. B. Geselowitz (1970). Effect of inhomogeneities on the apparent location and magnitude of a cardiac current dipole source. 17: 141-6.
Baillet, S., J. C. Mosher, et al. (2001). Electromagnetic brain mapping. 18: 14-30.
Bandettini, P. A., A. Jesmanowicz, et al. (1993). Processing strategies for time-course data sets in functional MRI of the human brain. 30: 161-73.
Bandettini, P. A., E. C. Wong, et al. (1992). Time course EPI of human brain function during task activation. 25: 390-7.
Belliveau, J. W., D. N. Kennedy Jr, et al. (1991). Functional mapping of the human visual cortex by magnetic resonance imaging, AAAS. 254: 716.
Blamire, A. M., S. Ogawa, et al. (1992). Dynamic mapping of the human visual cortex by high-speed magnetic resonance imaging, JSTOR. 89: 11069-11073.
Brent, R. P. (2002). Algorithms for Minimization Without Derivatives, Courier Dover Publications.
Buxton, R. B. (2002). Introduction to Functional Magnetic Resonance Imaging: Principles and Techniques, Cambridge University Press.
Caticha, A. (2003). Relative Entropy and Inductive Inference.
Cocosco, C. A., V. Kollokian, et al. (1997). BrainWeb: Online Interface to a 3DMRI Simulated. 5: S425.
Cohen, D. (1968). Magnetoencephalography: Evidence of Magnetic Fields Produced by Alpha-Rhythm Currents. 161: 784-786.
Damadian, R. V. (1977). APPARATUS AND METHOD FOR DETECTING CANCER IN TISSUE.
DeLong, E. R., D. M. DeLong, et al. (1988). Comparing the areas under two or more correlated receiver operating characteristic curves: a nonparametric approach, JSTOR. 44: 837-845.
Fawcett, T. (2004). ROC graphs: Notes and practical considerations for researchers. 31.
Fletcher, R. (1987). Practical methods of optimization, Wiley-Interscience New York, NY, USA.
Freeman, W. J. (1975). Mass Action in the Nervous System, Academic Press, New York.
Galassi, M. and J. Davies (2005). Gnu Scientific Library: Reference Manual, Bristol: Network Theory.
Gavit, L., S. Baillet, et al. (2001). A multiresolution framework to MEG/EEG source imaging. 48: 1080-1087.
Hamalainen, M., R. Hari, et al. (1993). Magnetoencephalography—theory, instrumentation, and applications to noninvasive studies of the working human brain, APS. 65: 413-497.
Hinshaw, W. S. and A. H. Lent (1983). An introduction to NMR imaging: From the Bloch equation to the imaging equation. 71: 338-350.
Huang, N. E., S. R. Long, et al. (1996). The mechanism for frequency downshift in nonlinear wave evolution, Academic Press. 32: 59-117.
Hyvarinen, A. and E. Oja (2000). Independent component analysis: algorithms and applications. 13: 411-30.
Kado, H., M. Higuchi, et al. (1999). Magnetoencephalogram systems developed at KIT. 9: 4057-4062.
Kaufman, L. and P. J. Rousseeuw (1990). Finding groups in data. an introduction to cluster analysis.
Kohonen, T. (1988). An introduction to neural computing. 1: 3-16.
Kumar, A., D. Welti, et al. (1975). Imaging of macroscopic objects by NMR Fourier zeugmatography, Springer. 62: 34-34.
Kwong, K. K., J. W. Belliveau, et al. (1992). Dynamic magnetic resonance imaging of human brain activity during primary sensory stimulation, National Academy of Sciences. 89: 5675.
Lapalme, E., J. M. Lina, et al. (2006). Data-driven parceling and entropic inference in MEG, Elsevier. 30: 160-171.
Lauterbur, P. C. (1973). Image formation by induced local interactions: examples employing nuclear magnetic resonance. 242: 190-191.
Moonen, C. T. W. and P. A. Bandettini (1999). Functional MR angiography using in-flow and phase-contrast MR acquisition techniques. Berlin, Springer.
Nenonen, J., C. J. Purcell, et al. (1991). Magnetocardiographic functional localization using a current dipolein a realistic torso. 38: 658-664.
Nunez, P. L. and R. B. Silberstein (2000). On the Relationship of Synaptic Activity to Macroscopic Measurements: Does Co-Registration of EEG with fMRI Make Sense?, Springer. 13: 79-96.
Ogawa, S., D. W. Tank, et al. (1992). Intrinsic signal changes accompanying sensory stimulation: functional brain mapping with magnetic resonance imaging, JSTOR. 89: 5951-5955.
Okada, Y. (1983). Neurogenesis of evoked magnetic fields: 399–408.
Pai, H.-I. (2008). "sensors information." from http://www.pooh.phy.ncu.edu.tw/~meg/.
Pascual-Marqui, R. D., C. M. Michel, et al. (1994). Low resolution electromagnetic tomography: a new method for localizing electrical activity in the brain. 18: 49-65.
Sarvas, J. (1987). Basic mathematical and electromagnetic concepts of the biomagnetic inverse problem. 32: 11-22.
Scherg, M. and D. Von Cramon (1986). Evoked dipole source potentials of the human auditory cortex. 65: 344-60.
Seitz, R. J., C. Bohm, et al. (1990). Accuracy and precision of the computerized brain atlas programme for localization and quantification in positron emission tomography. 10: 443-57.
Shattuck, D. W. and R. M. Leahy (2002). BrainSuite: An automated cortical surface identification tool, Elsevier. 6: 129-142.
Shore, J. and R. Johnson (1980). Axiomatic derivation of the principle of maximum entropy and the principle of minimum cross-entropy. 26: 26-37.
Shore, J. E. and R. W. Johnson (1981). Principles of cross-entropy minimization. 27: 472–482.
Skilling, J. (1988). The axioms of maximum entropy. 1: 173–187.
Skilling, J. (1989). Maximum Entropy and Bayesian Methods in Science and Engineering, Dordrecht: Kluwer.
Smith, C. R. and W. T. Grandy (1985). Maximum-Entropy and Bayesian Methods in Inverse Problems, D Reidel Pub Co.
Wang, J. Z. (1993). Minimum-norm least-squares estimation: magnetic source images for aspherical model head. 40: 387-396.
Zimmerman, J. E., P. Thiene, et al. (2003). Design and Operation of Stable rf-Biased Superconducting Point-Contact Quantum Devices, and a Note on the Properties of Perfectly Clean Metal Contacts, AIP. 41: 1572. |