M/EEG+FMRI BIB

[AB02] O. J. Arthurs and S. Boniface. How well do we understand the neural origins of the fMRI BOLD signal? Trends Neurosci, 25(1):27-31, 2002. [ bib | http | Abstract ]
[AB03] O. J. Arthurs and S. J. Boniface. What aspect of the fMRI BOLD signal best reflects the underlying electrophysiology in human somatosensory cortex? Clin Neurophysiol, 114(7):1203-1209, 2003. [ bib | http | Abstract ]
[ABH+04] P. Adjamian, G. R. Barnes, A. Hillebrand, I. E. Holliday, K. D. Singh, P. L. Furlong, E. Harrington, C. W. Barclay, and P. J. Route. Co-registration of magnetoencephalography with magnetic resonance imaging using bite-bar-based fiducials and surface-matching. Clin Neurophysiol, 115(3):691-698, 2004. [ bib | http | Abstract ]
[ADSM06] Jorn Anemuller, Jeng-Ren Duann, J. Sejnowski, Terrence, and Scott Makeig. Spatio-temporal dynamics in fMRI recordings revealed with complex independent component analysis. Neurocomputing, 69:1502-1512, 2006. [ bib | http | Abstract ]
[AI02] D. Attwell and C. Iadecola. The neural basis of functional brain imaging signals. Trends Neurosci, 25(12):621-625, 2002. [ bib | http | Abstract ]
[AJBMB04] O. J. Arthurs, H. Johansen-Berg, P. M. Matthews, and S. J. Boniface. Attention differentially modulates the coupling of fMRI BOLD and evoked potential signal amplitudes in the human somatosensory cortex. Exp Brain Res, 157(3):269-274, 2004. [ bib | http | Abstract ]
[AJT00] P. J. Allen, O. Josephs, and R. Turner. A method for removing imaging artifact from continuous EEG recorded during functional MRI. NeuroImage, 12(2):230-239, 2000. [ bib | http | Abstract ]
[AMT+03] K. Anami, T. Mori, F. Tanaka, Y. Kawagoe, J. Okamoto, M. Yarita, T. Ohnishi, M. Yumoto, H. Matsuda, and O. Saitoh. Stepping stone sampling for retrieving artifact-free electroencephalogram during functional magnetic resonance imaging. NeuroImage, 19(2.1):281-295, 2003. [ bib | http | Abstract ]
[APS+04] L. M. Angelone, A. Potthast, F. Segonne, S. Iwaki, J. W. Belliveau, and G. Bonmassar. Metallic electrodes and leads in simultaneous EEG-MRI: specific absorption rate (SAR) simulation studies. Bioelectromagnetics, 25(4):285-295, 2004. [ bib | http | Abstract ]
[AS04] S. P. Ahlfors and G. V. Simpson. Geometrical interpretation of fMRI-guided MEG/EEG inverse estimates. NeuroImage, 22(1):323-332, 2004. [ bib | http | Abstract ]
[ASD+99] S. P. Ahlfors, G. V. Simpson, A. M. Dale, J. W. Belliveau, A. K. Liu, A. Korvenoja, J. Virtanen, M. Huotilainen, R. B. Tootell, H. J. Aronen, and R. J. Ilmoniemi. Spatiotemporal activity of a cortical network for processing visual motion revealed by MEG and fMRI. J Neurophysiol, 82(5):2545-2555, 1999. [ bib | http | Abstract ]
[AZD98] G. K. Aguirre, E. Zarahn, and M. D'esposito. The variability of human, BOLD hemodynamic responses. NeuroImage, 8(4):360-369, 1998. [ bib | http | Abstract ]
[BAB+04] A. P. Bagshaw, Y. Aghakhani, C. G. Benar, E. Kobayashi, C. Hawco, F. Dubeau, G. B. Pike, and J. Gotman. EEG-fMRI of focal epileptic spikes: analysis with multiple haemodynamic functions and comparison with gadolinium-enhanced MR angiograms. Hum Brain Mapp, 22(3):179-192, 2004. [ bib | http | Abstract ]
[BAMM99] D. H. Brooks, G. F. Ahmad, R. S. MacLeod, and G. M. Maratos. Inverse electrocardiography by simultaneous imposition of multiple constraints. IEEE Trans Biomed Eng, 46(1):3-18, 1999. [ bib | http | Abstract ]
[BB02] J. Bodurka and P. A. Bandettini. Toward direct mapping of neuronal activity: MRI detection of ultraweak, transient magnetic field changes. Magn Reson Med, 47(6):1052-1058, 2002. [ bib | http | Abstract ]
[BBC+02] F. Babiloni, C. Babiloni, F. Carducci, C. Del Gratta, G. L. Romani, P. M. Rossini, and F. Cincotti. Cortical source estimate of combined high resolution EEG and fMRI data related to voluntary movements. Methods Inf Med, 41(5):443-450, 2002. [ bib | Abstract ]
[BBC+03] F. Babiloni, C. Babiloni, F. Carducci, G. L. Romani, P. M. Rossini, L. M. Angelone, and F. Cincotti. Multimodal integration of high-resolution EEG and functional magnetic resonance imaging data: a simulation study. NeuroImage, 19(1):1-15, 2003. [ bib | Abstract ]
[BB06] M. Burke and Buhrle Ch. BOLD response during uncoupling of neuronal activity and CBF. Neuroimage, 32(1):1-8, 2006. [ bib | http | Abstract ]
[BCB+05] F. Babiloni, F. Cincotti, C. Babiloni, F. Carducci, D. Mattia, L. Astolfi, A. Basilisco, P.M. Rossini, L. Ding, Y. Ni, J. Cheng, K. Christine, J. Sweeney, and B. He. Estimation of the cortical functional connectivity with the multimodal integration of high-resolution EEG and fMRI data by directed transfer function. Neuroimage, 24(1):118-131, 2005. [ bib | http | Abstract ]
[BDM+05] M. Brazdil, M. Dobsik, M. Mikl, P. Hlustik, P. Daniel, M. Pazourkova, P. Krupa, and I. Rektor. Combined event-related fMRI and intracerebral ERP study of an auditory oddball task. Neuroimage, 26(1):285-93, 2005. [ bib | http | Abstract ]
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[BM92] P. J. Besl and N. D. McKay. A method for registration of 3-D shapes. IEEE Trans. Pattern Anal. Machine Intell., 14(2), February 1992. [ bib ]
[BET+97] R. Beisteiner, M. Erdler, C. Teichtmeister, M. Diemling, E. Moser, V. Edward, and L. Deecke. Magnetoencephalography may help to improve functional MRI brain mapping. Eur J Neurosci, 9(5):1072-1077, 1997. [ bib | http | Abstract ]
[BF97] R. B. Buxton and L. R. Frank. A model for the coupling between cerebral blood flow and oxygen metabolism during neural stimulation. J Cereb Blood Flow Metab, 17(1):64-72, 1997. [ bib | http | Abstract ]
[BGH+05] M. J. Brookes, A. M. Gibson, S. D. Hall, P. L. Furlong, G. R. Barnes, A. Hillebrand, K. D. Singh, I. E. Holliday, S. T. Francis, and P. G. Morris. GLM-beamformer method demonstrates stationary field, alpha ERD and gamma ERS co-localisation with fMRI BOLD response in visual cortex. Neuroimage, 26(1):302-8, 2005. [ bib | http | Abstract ]
[BKD+05] A.P. Bagshaw, E. Kobayashi, F. Dubeau, G.B. Pike, and J. Gotman. Correspondence between EEG-fMRI and EEG dipole localisation of interictal discharges in focal epilepsy. Neuroimage, 2005. [ bib | http | Abstract ]
[BKM+91] J.W. Belliveau, D.N. Kennedy, Jr, R.C. McKinstry, B.R. Buchbinder, R.M. Weisskoff, M.S. Cohen, J.M. Vevea, T.J. Brady, and B.R. Rosen. Functional mapping of the human visual cortex by magnetic resonance imaging. Science, 254(5032):716-719, 1991. [ bib | http | Abstract ]
[BL05] Y. Behzadi and T.T. Liu. An arteriolar compliance model of the cerebral blood flow response to neural stimulus. Neuroimage, 25(4):1100-11, 2005. [ bib | http | Abstract ]
[BL06] N. Bregadze and A. Lavric. ERP differences with vs. without concurrent fMRI. Int J Psychophysiol, 2006. [ bib | http | Abstract ]
[BNK+95] S. B. Baumann, D. C. Noll, D. S. Kondziolka, W. Schneider, T. E. Nichols, M. A. Mintun, J. D. Lewine, H. Yonas, W. W. Orrison, Jr, and R. J. Sclabassi. Comparison of functional magnetic resonance imaging with positron emission tomography and magnetoencephalography to identify the motor cortex in a patient with an arteriovenous malformation. J Image Guid Surg, 1(4):191-197, 1995. [ bib | http | Abstract ]
[BNSZ05] A. Babajani, M. H. Nekooei, and H. Soltanian-Zadeh. Integrated MEG and fMRI model: synthesis and analysis. Brain Topogr, 18(2):101-13, 2005. [ bib | http | Abstract ]
[BPJ+02] G. Bonmassar, P. L. Purdon, I. P. Jaaskelainen, K. Chiappa, V. Solo, E. N. Brown, and J. W. Belliveau. Motion and ballistocardiogram artifact removal for interleaved recording of EEG and EPs during MRI. NeuroImage, 16(4):1127-1141, 2002. [ bib | http | Abstract ]
[BRLL07] Y. Behzadi, K. Restom, J. Liau, and T. T. Liu. A component based noise correction method (CompCor) for BOLD and perfusion based fMRI. Neuroimage, 2007. [ bib | http | Abstract ]
[BRM+01] S. Baillet, J.J. Riera, G. Marin, J.F. Mangin, J. Aubert, and L. Garnero. Evaluation of inverse methods and head models for EEG source localization using a human skull phantom. Phys Med Biol, 46(1):77-96, 2001. [ bib | http | Abstract ]
[BSZ06] A. Babajani and H. Soltanian-Zadeh. Integrated MEG/EEG and fMRI model based on neural masses. IEEE Trans Biomed Eng, 53(9):1794-801, 2006. [ bib | http | Abstract ]
[BSL+01] G. Bonmassar, D. P. Schwartz, A. K. Liu, K. K. Kwong, A. M. Dale, and J. W. Belliveau. Spatiotemporal brain imaging of visual-evoked activity using interleaved EEG and fMRI recordings. NeuroImage, 13(6.1):1035-1043, 2001. [ bib | Abstract ]
[BW97] P. A. Bandettini and E. C. Wong. A hypercapnia-based normalization method for improved spatial localization of human brain activation with fMRI. NMR Biomed, 10(4-5):197-203, 1997. [ bib | http | Abstract ]
[CAS+05] E. Comi, P. Annovazzi, A. M. Silva, M. Cursi, V. Blasi, M. Cadioli, A. Inuggi, A. Falini, G. Comi, and L. Leocani. Visual evoked potentials may be recorded simultaneously with fMRI scanning: A validation study. Hum Brain Mapp, 24(4):291-8, 2005. [ bib | http | Abstract ]
[CCHJ06] J. K. Choi, Y. I. Chen, E. Hamel, and B. G. Jenkins. Brain hemodynamic changes mediated by dopamine receptors: Role of the cerebral microvasculature in dopamine-mediated neurovascular coupling. Neuroimage, 2006. [ bib | http | Abstract ]
[CGL03] K. Caesar, L. Gold, and M. Lauritzen. Context sensitivity of activity-dependent increases in cerebral blood flow. Proc Natl Acad Sci U S A, 100(7):4239-44, 2003. [ bib | http | Abstract ]
[CGSE01] M. S. Cohen, R. I. Goldman, J. Stern, and J. Engel, Jr. Simultaneous EEG and fMRI made easy. NeuroImage, 13(6 Supp.1):S6, January 2001. [ bib | http ]
[CPM+03] P. Ciuciu, J. B. Poline, G. Marrelec, J. Idier, C. Pallier, and H. Benali. Unsupervised robust nonparametric estimation of the hemodynamic response function for any fMRI experiment. IEEE Trans Med Imaging, 22(10):1235-1251, 2003. [ bib | http | Abstract ]
[CPST98] A.F. Cannestra, N. Pouratian, M.H. Shomer, and A.W. Toga. Refractory periods observed by intrinsic signal and fluorescent dye imaging. J Neurophysiol, 80(3):1522-32, 1998. [ bib | http | Abstract ]
[CRBF02] C. Christmann, M. Ruf, D. F. Braus, and H. Flor. Simultaneous electroencephalography and functional magnetic resonance imaging of primary and secondary somatosensory cortex in humans after electrical stimulation. Neurosci Lett, 333(1):69-73, 2002. [ bib | http | Abstract ]
[CRS+04] E. R. Cohen, E. Rostrup, K. Sidaros, T. E. Lund, O. B. Paulson, K. Ugurbil, and S. G. Kim. Hypercapnic normalization of BOLD fMRI: comparison across field strengths and pulse sequences. Neuroimage, 23(2):613-24, 2004. [ bib | http | Abstract ]
[CWT01] K. Cheng, R. A. Waggoner, and K. Tanaka. Human ocular dominance columns as revealed by high-field functional magnetic resonance imaging. Neuron, 32(2):359-74, 2001. [ bib | http | Abstract ]
[Coh97] M. S. Cohen. Parametric analysis of fMRI data using linear systems methods. NeuroImage, 6(2):93-103, 1997. [ bib | http | Abstract ]
[DDA+03] A. Devor, A. K. Dunn, M. L. Andermann, I. Ulbert, D. A. Boas, and A. M. Dale. Coupling of total hemoglobin concentration, oxygenation, and neural activity in rat somatosensory cortex. Neuron, 39(2):353-359, 2003. [ bib | Abstract ]
[DF03] P. Dechent and J. Frahm. Functional somatotopy of finger representations in human primary motor cortex. Hum Brain Mapp, 18(4):272-283, 2003. [ bib | http | Abstract ]
[DF06] T. Deneux and O. Faugeras. Using nonlinear models in fMRI data analysis: Model selection and activation detection. Neuroimage, 32(4):1669-89, 2006. [ bib | http | Abstract ]
[DFS99] A. M. Dale, B. Fischl, and M. I. Sereno. Cortical surface-based analysis. I. Segmentation and surface reconstruction. NeuroImage, 9(2):179-194, 1999. [ bib | http | Abstract ]
[DGDPF+02] C. Del Gratta, S. Della Penna, A. Ferretti, R. Franciotti, V. Pizzella, A. Tartaro, K. Torquati, L. Bonomo, G. L. Romani, and P. M. Rossini. Topographic organization of the human primary and secondary somatosensory cortices: comparison of fMRI and MEG findings. Neuroimage, 17(3):1373-83, 2002. [ bib | http | Abstract ]
[DH01] A. M. Dale and E. Halgren. Spatiotemporal mapping of brain activity by integration of multiple imaging modalities. Curr Opin Neurobiol, 11(2):202-208, 2001. [ bib | Abstract ]
[DM04] A. Delorme and S. Makeig. EEGLAB: an open source toolbox for analysis of single-trial EEG dynamics including independent component analysis. J Neurosci Methods, 134(1):9-21, 2004. [ bib | http | Abstract ]
[DRB+06] J. S. Damoiseaux, S. A. Rombouts, F. Barkhof, P. Scheltens, C. J. Stam, S. M. Smith, and C. F. Beckmann. Consistent resting-state networks across healthy subjects. Proc Natl Acad Sci U S A, 103(37):13848-53, 2006. [ bib | http | Abstract ]
[DShFL03] B. Diehl, A. Salek-haddadi, D. R. Fish, and L. Lemieux. Mapping of spikes, slow waves, and motor tasks in a patient with malformation of cortical development using simultaneous EEG and fMRI. Magn Reson Imaging, 21(10):1167-73, 2003. [ bib | http | Abstract ]
[DSRK00] E.A. Disbrow, D.A. Slutsky, T.P. Roberts, and L.A. Krubitzer. Functional MRI at 1.5 tesla: a comparison of the blood oxygenation level-dependent signal and electrophysiology. Proc Natl Acad Sci U S A, 97(17):9718-23, 2000. [ bib | http | Abstract ]
[DSS+07] S. Debener, A. Strobel, B. Sorger, J. Peters, C. Kranczioch, A. K. Engel, and R. Goebel. Improved quality of auditory event-related potentials recorded simultaneously with 3-T fMRI: Removal of the ballistocardiogram artefact. Neuroimage, 34(2):587-97, 2007. [ bib | http | Abstract ]
[DUS+05] S. Debener, M. Ullsperger, M. Siegel, K. Fiehler, D. Y. von Cramon, and A. K. Engel. Trial-by-trial coupling of concurrent electroencephalogram and functional magnetic resonance imaging identifies the dynamics of performance monitoring. J Neurosci, 25(50):11730-7, 2005. [ bib | http | Abstract ]
[DUSE06] S. Debener, M. Ullsperger, M. Siegel, and A. K. Engel. Single-trial EEG-fMRI reveals the dynamics of cognitive function. Trends Cogn Sci, 10(12):558-63, 2006. [ bib | http | Abstract ]
[DXW+06] E. Duff, J. Xiong, B. Wang, R. Cunnington, P. Fox, and G. Egan. Complex spatio-temporal dynamics of fMRI BOLD: A study of motor learning. Neuroimage, 2006. [ bib | http | Abstract ]
[ECM+07] T. Eichele, V. D. Calhoun, M. Moosmann, K. Specht, M. L. Jongsma, R. Q. Quiroga, H. Nordby, and K. Hugdahl. Unmixing concurrent EEG-fMRI with parallel independent component analysis. Int J Psychophysiol, 2007. [ bib | http | Abstract ]
[ESM+05] T. Eichele, K. Specht, M. Moosmann, M. L. Jongsma, R. Q. Quiroga, H. Nordby, and K. Hugdahl. Assessing the spatiotemporal evolution of neuronal activation with single-trial event-related potentials and functional MRI. Proc Natl Acad Sci U S A, 102(49):17798-803, 2005. [ bib | http | Abstract ]
[FBW98] L. R. Frank, R. B. Buxton, and E. C. Wong. Probabilistic analysis of functional magnetic resonance imaging data. Magn Reson Med, 39(1):132-148, 1998. [ bib | http | Abstract ]
[FFJ+98] K. J. Friston, P. Fletcher, O. Josephs, A. Holmes, M. D. Rugg, and R. Turner. Event-related fMRI: characterizing differential responses. NeuroImage, 7(1):30-40, 1998. [ bib | http | Abstract ]
[FG03] E. Formisano and R. Goebel. Tracking cognitive processes with functional MRI mental chronometry. Curr Opin Neurobiol, 13(2):174-181, 2003. [ bib | http | Abstract ]
[FMJ03] J. J. Foxe, M. E. McCourt, and D. C. Javitt. Right hemisphere control of visuospatial attention: line-bisection judgments evaluated with high-density electrical mapping and source analysis. NeuroImage, 19(3):710-726, 2003. [ bib | http | Abstract ]
[FMTP00] K. J. Friston, A. Mechelli, R. Turner, and C. J. Price. Nonlinear responses in fMRI: the Balloon model, Volterra kernels, and other hemodynamics. NeuroImage, 12(4):466-477, 2000. [ bib | Abstract ]
[FOG04] J.R. Foucher, H. Otzenberger, and D. Gounot. Where arousal meets attention: a simultaneous fMRI and EEG recording study. Neuroimage, 22(2):688-697, 2004. [ bib | http | Abstract ]
[FWKW99] M. Fuchs, M. Wagner, T. Kohler, and H.A. Wischmann. Linear and nonlinear current density reconstructions. J Clin Neurophysiol, 16(3):267-295, 1999. [ bib | http | Abstract ]
[FWW+98] M. Fuchs, M. Wagner, H. A. Wischmann, T. Kohler, A. Theissen, R. Drenckhahn, and H. Buchner. Improving source reconstructions by combining bioelectric and biomagnetic data. Electroencephalogr Clin Neurophysiol, 107(2):93-111, 1998. [ bib | http | Abstract ]
[Fri02] K. J. Friston. Bayesian estimation of dynamical systems: an application to fMRI. Neuroimage, 16(2):513-30, 2002. [ bib | http | Abstract ]
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[GCG+03] G. Garreffa, M. Carni, G. Gualniera, G. B. Ricci, L. Bozzao, D. De Carli, P. Morasso, P. Pantano, C. Colonnese, V. Roma, and B. Maraviglia. Real-time MR artifacts filtering during continuous EEG/fMRI acquisition. Magn Reson Imaging, 21(10):1175-1189, 2003. [ bib | http | Abstract ]
[GNH00] C. Goutte, F. A. Nielsen, and L. K. Hansen. Modeling the haemodynamic response in fMRI using smooth FIR filters. IEEE Trans Med Imaging, 19(12):1188-201, 2000. [ bib | http | Abstract ]
[GNP+06] P. Grummich, C. Nimsky, E. Pauli, M. Buchfelder, and O. Ganslandt. Combining fMRI and MEG increases the reliability of presurgical language localization: A clinical study on the difference between and congruence of both modalities. Neuroimage, 2006. [ bib | http | Abstract ]
[GPAF03] D. R. Gitelman, W. D. Penny, J. Ashburner, and K. J. Friston. Modeling regional and psychophysiologic interactions in fMRI: the importance of hemodynamic deconvolution. NeuroImage, 19(1):200-207, 2003. [ bib | http | Abstract ]
[GPK+07] S. I. Goncalves, P. J. Pouwels, J. P. Kuijer, R. M. Heethaar, and J. C. de Munck. Artifact removal in co-registered EEG/fMRI by selective average subtraction. Clin Neurophysiol, 2007. [ bib | http | Abstract ]
[GSEC00] R. I. Goldman, J. M. Stern, J. Engel, Jr, and M. S. Cohen. Acquiring simultaneous EEG and functional MRI. Clin Neurophysiol, 111(11):1974-1980, 2000. [ bib | http | Abstract ]
[GSEC02] R. I. Goldman, J. M. Stern, J. Engel, Jr, and M. S. Cohen. Simultaneous EEG and fMRI of the alpha rhythm. Neuroreport, 13(18):2487-2492, 2002. [ bib | http | Abstract ]
[GdMV+03] S. I. Goncalves, J. C. de Munck, J. P. Verbunt, F. Bijma, R. M. Heethaar, and F. Lopes da Silva. In vivo measurement of the brain and skull resistivities using an EIT-based method and realistic models for the head. IEEE Trans Biomed Eng, 50(6):754-767, 2003. [ bib | http | Abstract ]
[GdMP+05] S.I. Goncalves, J.C. de Munck, P.J. Pouwels, R. Schoonhoven, J.P. Kuijer, N.M. Maurits, J.M. Hoogduin, E.J. Van Someren, R.M. Heethaar, and F.H. Lopes da Silva. Correlating the alpha rhythm to BOLD using simultaneous EEG/fMRI: Inter-subject variability. Neuroimage, 2005. [ bib | http | Abstract ]
[GdPMMM+04] R. Grave de Peralta Menendez, M. M. Murray, C. M. Michel, R. Martuzzi, and S. L. Gonzalez Andino. Electrical neuroimaging based on biophysical constraints. NeuroImage, 21(2):527-539, 2004. [ bib | http | Abstract ]
[Glo99] G. H. Glover. Deconvolution of impulse response in event-related BOLD fMRI. NeuroImage, 9(4):416-429, 1999. [ bib | http | Abstract ]
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[HB03] A. Hillebrand and G. R. Barnes. The use of anatomical constraints with MEG beamformers. NeuroImage, 20(4):2302-2313, 2003. [ bib | http | Abstract ]
[HHBM+95] F. R. Huang-Hellinger, H. C. Breiter, G. McCormack, M. S. Cohen, K. K. Kwong, J. P. Sutton, R. L. Savoy, R. M. Weisskoff, T. L. Davis, J. R. Baker, J. W. Belliveau, and B. R. Rosen. Simultaneous functional magnetic resonance imaging and electrophysiological recording. Hum Brain Mapp, 3:13-25, 1995. [ bib | Abstract ]
[HCHHJ95] R. A. Hill, K. H. Chiappa, F. Huang-Hellinger, and B. G. Jenkins. EEG during MR imaging: differentiation of movement artifact from paroxysmal cortical activity. Neurology, 45(10):1942-1943, 1995. [ bib | http ]
[HD07] C. S. Herrmann and S. Debener. Simultaneous recording of EEG and BOLD responses: A historical perspective. Int J Psychophysiol, 2007. [ bib | http | Abstract ]
[HFT00] B. Horwitz, K. J. Friston, and J. G. Taylor. Neural modeling and functional brain imaging: an overview. Neural Netw, 13(8-9):829-846, 2000. [ bib | Abstract ]
[HHD+06] T. J. Huppert, R. D. Hoge, S. G. Diamond, M. A. Franceschini, and D. A. Boas. A temporal comparison of BOLD, ASL, and NIRS hemodynamic responses to motor stimuli in adult humans. Neuroimage, 29(2):368-82, 2006. [ bib | http | Abstract ]
[HHP05] Y. O. Halchenko, S. J. Hanson, and B. A. Pearlmutter. Multimodal Integration: fMRI, MRI, EEG, MEG, chapter 8, pages 223-265. Signal Processing and Communications. Dekker, 2005. [ bib | Abstract ]
[HHW03] J. Hu, J. Hu, and Y. Wang. Application of weighted minimum-norm estimation with Tikhonov regularization for neuromagnetic source imaging. Sheng Wu Yi Xue Gong Cheng Xue Za Zhi, 20(1):157-161, 2003. [ bib | Abstract ]
[HM01] S. A. Huettel and G. McCarthy. Regional differences in the refractory period of the hemodynamic response: an event-related fMRI study. NeuroImage, 14(5):967-976, 2001. [ bib | http | Abstract ]
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Short introductory to MEG. Covers difference between EEG and MEG. Has a photo of 1st SQUID MEG at MIT
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