脑功能成像及在人文社会科学中的应用
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参考文献

[1]Schaltenbrand, G., Wahren, W., Hassler, R.G.Atlas for stereotaxy of the human brain:With an accompanying guide.Architectonic Organization of the Thalamic Nuclei,1977:Thieme.

[2]Talairach, J., Tournoux, P.Co-planar stereotaxic atlas of the human brain.3-Dimensional proportional system:An approach to cerebral imaging,1988.

[3]Kang, X., et al.Hemispherically-unified surface maps of human cerebral cortex:Reliability and hemispheric asymmetries.PLoS One,2012,7(9):e45582.

[4] Kang, X., Herron, T.J., Woods, D.L.Regional variation, hemispheric asymmetries and gender differences in pericortical white matter.NeuroImage, 2011,56(4).

[5] Turken, A.U., et al.Multimodal surface-based morphometry reveals diffuse cortical atrophy in traumatic brain inj ury.BMC Med Imaging, 2009,9:20.

[6] Duckworth, J.L., Stevens, R.D.Imaging brain trauma.Curr Opin Crit Care,2010,16:92-97.

[7] Kubal, W.S.Updated imaging of traumatic brain inj ury.Radiol Clin N orth Am,2012,50(1):15-41.

[8] Shenton, M.E., et al.A review of magnetic resonance imaging and diffusion tensor imaging findings in mild traumatic brain inj ury.Brain Imaging&Behavior,2012.

[9] Ogawa, S., et al.Brain magnetic-resonance-imaging with contrast dependent on blood oxygenation.Proceedings of the National Academy of Sciences of the United States of America,1990,87(24):9868-9872.

[10]Detre, J.A., et al.Perfusion imaging.Magn Reson Med,1992,23(1):37-45.

[11] Williams, D.S., et al.Magnetic resonance imaging of perfusion using spin inversion of arterial water. Proceedings of the National Academy of Sciences of the United States of America,1992,89(1):212-216.

[12] Wang, J., et al.Perfusion functional MRI reveals cerebral blood flow pattern under psychological stress.Proceedings of the National Academy of Sciences of the United States of America, 2005, 102(49):17804-17809.

[13] Wey, H.Y., Wang, D.J., Duong, T.Q.Baseline CBF, and BOLD, CBF, and CMRO2 fMRI of visual and vibrotactile stimulations in baboons.J Cereb Blood Flow Metab,2011,31(2):715-724.

[14] Wu, W.C., et al.A theoretical and experimental investigation of the tagging efficiency of pseudocontinuous arterial spin labeling.Ma g n Reson Med,2007,58(5):1020-1027.

[15] Aguirre, G.K., et al.Experimental design and the relative sensitivity of BOLD and perfusion fMRI.NeuroImage,2002,15(3):488-500.

[16] Borogovac, A., Asllani, I.Arterial spin labeling(ASL)fMRI:Advantages, theoretical constrains, and experimental challenges in neurosciences.Int J Biomed Imaging,2012,2012:818-456.

[17] Duong, T.Q., et al.High-resolution, spin-echo BOLD, and CBF fMRI at 4 and 7T.Magn Reson Med,2002,48(4):589-593.

[18] Perthen, J.E., et al.SNR and functional sensitivity of BOLD and perfusion-based fMRI using arterial spin labeling with spiral SENSE at 3 T.Magn Reson Imaging,2008,26(4):513-522.

[19] Wang, J., et al.Arterial spin labeling perfusion fMRI with very low task frequency.Magn Reson Med,2003,49(5):796-802.

[20] Friston, K.J.Commentary and opinion:II.Statistical parametric mapping:Ontology and current issues.J Cereb Blood Flow Metab,1995,15(3):361-370.

[21] Smith, S.M., et al.Advances in functional and structural MR image analysis and implementation as FSL.NeuroImage,2004,23 Suppl 1:S208-219.

[22] Fischl, B., Sereno, M.I., Dale, A.M.Cortical surface-based analysis.II:Inflation, flattening, and a surface-based coordinate system. NeuroImage,1999,9(2):195-207.

[23] Lyttelton, O., et al.An unbiased iterative group registration template for cortical surface analysis.NeuroImage,2007,34(4):1535-1544.

[24] Van Essen, D.C., et al.Functional and structural mapping of human cerebral cortex: Solutions are in the surfaces.Proceedings of the National Academy of Sciences of the United States of America, , 1998,95(3):788-795.

[25] Fischl, B., et al.Cortical folding patterns and predicting cytoarchitecture. Cereb Cortex,2008,18(8):1973-1980.

[26] Toga, A.W., et al.Towards multimodal atlases of the human brain. Nat Rev Neurosci,2006,7(12):952-966.

[27] Van Essen, D.C.Surface-based approaches to spatial localization and registration in primate cerebral cortex.NeuroImage,2004,23 Suppl 1:S97-107.

[28] Van Essen, D.C.A Population-Average, Landmark-and Surface-based(PALS)atlas of human cerebral cortex.NeuroImage,2005,28 (3):635-662.

[29] Evans, A.C., et al.3 D statistical neuroanatomical models from 305 MRI volumes. in Proc.IEEE Nuclear Science Symposium and Medical Imaging Conference, 1993.

[30] Friston, K.J., et al.Spatial registration and normalization of images. Human Brain Mapping,1995,2:165-189.

[31] Talairach, J., Tournoux, P.Co-planar stereotaxic atlas of the human brain:A 3-dimensional proportional system, an approach to cerebral imaging.1988, Stuttgart; New York:G.Thieme; Thieme Medical Publishers.viii, 122.

[32] Dinov, I.D., et al.LONI visualization environment.J Digit Imaging, 2006,19(2):148-158.

[33] Fischl, B., et al.High-resolution intersubj ect averaging and a coordinate system for the cortical surface.Human Brain Mapping,1999,8(4):272-284.

[34] Goebel, R.BrainVoyager:Past, present, future.NeuroImage,2012, 62(2):748-756.

[35] Saad, Z.S., et al.Functional imaging analysis contest(FIAC)analysis according to AFNI and SUMA.Human Brain Mapping,2006,27(5):417-424.

[36] Van Essen, D.C., et al.An integrated software suite for surface-based analyses of cerebral cortex.J Am Med Inform Assoc,2001, 8(5):443-459.

[37] Ju, L., et al.Quantitative evaluation of three cortical surface flattening methods.NeuroImage,2005,28(4):869-880.

[38] Brett, M., Johnsrude, I.S., Owen, A.M.The problem of functional localization in the human brain.Nat Rev Neurosci,2002,3(3):243-249.

[39] Kang, X., et al.Local landmark-based mapping of human auditory cortex.Neuroimage,2004,22(4):1657-1670.

[40] Van Essen, D.C.A tension-based theory of morphogenesis and compact wiring in the central nervous system.Nature,1997,385(6614):313-318.

[41] Van Essen, D.C., et al.Cortical parcellations of the macaque monkey analyzed on surface-based atlases.Cereb Cortex,2011.

[42] Zhong, J., Phua, D.Y., Qiu, A.Quantitative evaluation of LDDMM, FreeSurfer, and CARET for cortical surface mapping. NeuroImage,2010,52(1):131-141.

[43] Qiu, A., Miller, M.I.Cortical hemisphere registration via large deformation diffeomorphic metric curve mapping.Med Image Comput Comput Assist Interv,2007,10(Pt 1):186-193.

[44] Halchenko, Y.O., Hanke, M.Open is not enough.Let's take the next step:An integrated, community-driven computing platform for neuroscience.Front Neuroinform,2012,6:22.

[45] Anticevic, A., et al.Comparing surface-based and volume-based analyses of functional neuroimaging data in patients with schizophrenia. NeuroImage, 2008,41(3):835-848.

[46] Van Essen, D.C., et al.Functional and structural mapping of human cerebral cortex: Solutions are in the surfaces.Proceedings of the National Academy of Sciences,1998,95(3):788-795.

[47] Argall, B.D., Saad, Z.S., Beauchamp, M.S.Simplified intersubject averaging on the cortical surface using SUMA.Human Brain Mapping, 2006,27(1):14-27.

[48] Hagler Jr, D.J., Saygin, A.P., Sereno, M.I.Smoothing and cluster thresholding for cortical surface-based group analysis of fMRI data. NeuroImage,2006,33(4):1093-1103.

[49] Jo, H.J., et al.Spatial accuracy of fMRI activation influenced by volume-and surface-based spatial smoothing techniques.NeuroImage, 2007,34(2):550-564.

[50] Van Essen, D.C.A population-average, landmark-and surface-based (PALS)atlas of human cerebral cortex.NeuroImage,2005,28(3):635-662.

[51] Balasubramanian, M., Polimeni, J.R., Schwartz, E.L.Near-isometric flattening of brain surfaces.NeuroImage,2010,51(2):694-703.

[52] Hurdal, M.K., Stephenson, K.Cortical cartography using the discrete conformal approach of circle packings. NeuroImage, 2004, 23:S119-S128.

[53] Jouandet, M.L., et al.Brainprints:Computer-generated two-dimensional maps of the human cerebral cortex in vivo.J Cognitive Neurosci, 1989,1:88-117.

[54] Modha, D.S.A conceptual cortical surface atlas.PLoS One,2009,4 (6):e5693.

[55] Wandell, B.A., Chial, S., Backus, B.T.Visualization and measurement of the cortical surface.J Cogn Neurosci,2000,12(5):739-752.

[56] Feeman, T.Equal area world maps:A case study.SIAM Review, 2000,42(1):109-114.

[57] Yang, Q.H., Snyder, J.P., Tobler, W.R.Map proj ection transformation:Principles and applications / Qihe H.Yang, John P.Snyder, Waldo R.Tobler.2000, Taylor & Francis.

[58] Goldberg, D.M., J.R.Gott III, Flexion and skewness in map projections of the Earth.Cartographica,2007,42(4):297-318.

[59] Sultan, F., et al.Flat map areal topography in Macaca mulatta based on combined MRI and histology.Magn Reson Imaging,2010,28(8):1159-1164.

[60]Tobler, W.R.The hyperelliptic and other new pseudo cylindrical equal area map projections.Journal of Geophysical Research, 1973,78 (11):1753-1759.

[61] Desikan, R.S., et al.An automated labeling system for subdividing the human cerebral cortex on MRI scans into gyral based regions of interest.NeuroImage,2006,31(3):968-980.

[62] Destrieux, C., et al.Automatic parcellation of human cortical gyri and sulci using standard anatomical nomenclature.NeuroImage,2010, 53(1):1-15.

[63] Kang, X., Herron, T.J., Woods, D.L.Regional variation, hemispheric asymmetries and gender differences in pericortical white matter. NeuroImage, 2011,56(4):2011-2023.

[64] Sadananthan, S.A., et al.Skull stripping using graph cuts.NeuroImage, 2010,49(1):225-239.

[65] Fennema-Notestine, C., et al.Quantitative evaluation of automated skull-stripping methods applied to contemporary and legacy images:Effects of diagnosis, bias correction, and slice location.Human Brain Mapping,2006,27(2):99-113.

[66] Niitsu, M., Tohno, E., Itai, Y.Fat suppression strategies in enhanced MR imaging of the breast:Comparison of SPIR and water excitation sequences.J Magn Reson Imaging,2003,18(3):310-314.

[67] Glaser, C., et al.Optimization and validation of a rapid high-resolution T1-w 3D FLASH water excitation MRI sequence for the quantitative assessment of articular cartilage volume and thickness.Magn Reson Imaging,2001,19(2):177-185.

[68] Henkelman, R.M., Stanisz, G.J., Graham, S.J.Magnetization transfer in MRI:A review.NMR Biomed,2001,14(2):57-64.

[69] Wolff, S.D., Balaban, R.S.Magnetization transfer imaging:Practical aspects and clinical applications.Radiology,1994,192(3):593-599.

[70] Devlin, J.T., et al.Functional asymmetry for auditory processing in human primary auditory cortex. J Neurosci, 2003, 23(37):11516-11522.

[71] Mazziotta, J., et al.A probabilistic atlas and reference system for the human brain:International Consortium for Brain Mapping(ICBM). Philos Trans R Soc Lond B Biol Sci,2001,356(1412):1293-1322.

[72] Toga, A.W., Thompson, P.M.Mapping brain asymmetry.Nat Rev Neurosci,2003,4(1):37-48.

[73] Kang, X., et al.Hemispheric asymmetries in cortical and subcortical anatomy.Laterality:Asymmetries of Body, Brain and Cognition,2015.

[74] Cate, A.D., et al.Intermodal attention modulates visual processing in dorsal and ventral streams.NeuroImage,2012,63(3):1295-1304.

[75] Cate, A.D., et al.Auditory attention activates peripheral visual cortex. P LoS One,2009,4(2):e4645.

[76] Rinne, T., et al.Attention modulates sound processing in human auditory cortex but not the inferior colliculus.Neuroreport,2007,18 (13):1311-1314.

[77] Kang, X., et al.Diffusion properties of cortical and pericortical tissue: Regional variations, reliability and methodological issues. Magn Reson Imaging,2012,30(8):1111-1122.

[78] Kang, X., Herron, T.J., Woods, D.L.Regional variation, hemispheric asymmetries and gender differences in pericortical white matter. NeuroImage,2011,56(4):2011-2023.

[79] Herron, T., Kang, X., Woods, D.Sex differences in cortical and subcortical human brain anatomy F1000Research,2015,4(88).

[80] Fischl, B., Dale, A.M.Measuring the thickness of the human cerebral cortex from magnetic resonance images.Proceedings of the National Academy of Sciences of the United States of America, 2000,97(20):11050-11055.

[81] Haidar, H., Soul, J.S.Measurement of cortical thickness in 3D brain MRI data: Validation of the Laplacian method.J Neuroimaging, 2006,16(2):146-153.

[82] Pereira, J.B., et al.Assessment of cortical degeneration in patients with parkinson's disease by voxel-based morphometry, cortical folding, and cortical thickness.Human Brain Mapping,2011.

[83] Van Essen, D., Drury, H.Structural and functional analyses of human cerebral cortex using a surface-based atlas.Journal of Neuroscience, 1997,17(18):7079-7102.

[84] Fischl, B., Sereno, M.I., Dale, A.M.Cortical surface-based analysis:II:Inflation, flattening, and a surface-based coordinate system.NeuroImage, 1999,9(2):195-207.

[85] Pienaar, R., et al.A methodology for analyzing curvature in the developing brain from preterm to adult.Int J Imaging Syst Technol, 2008,18(1):42-68.

[86] Winkler, A.M., et al.Measuring and comparing brain cortical surface area and other areal quantities.NeuroImage,2012,61(4):1428-1443.

[87] Salat, D.H., et al.Thinning of the cerebral cortex in aging.Cereb Cortex,2004,14(7):721-730.

[88] Janauskaite, L., et al.Thickness of cerebral cortex measured using anatomical mesoscopic imaging and magnetic resonance imaging. Medicina(Kaunas),2008,44(2):126-130.

[89] Hamilton, L.S., et al.Asymmetries of cortical thickness:Effects of handedness, sex, and schizophrenia.Neuroreport,2007,18(14):1427-1431.

[90] Luders, E., et al.Hemispheric asymmetries in cortical thickness. Cereb Cortex,2006,16(8):1232-1238.

[91] Fischl, B., et al.Whole brain segmentation:Automated labeling of neuroanatomical structures in the human brain.N euron,2002,33(3):341-355.

[92] Fischl, B., et al.Sequence-independent segmentation of magnetic resonance images.NeuroImage,2004,23 Suppl 1:S69-84.

[93] Le Bihan, D.Looking into the functional architecture of the brain with diffusion MRI.Nat Rev Neurosci,2003,4(6):469-480.

[94] Vrenken, H., et al.Diffusely abnormal white matter in progressive multiple sclerosis:In vivo quantitative MR imaging characterization and comparison between disease types.AJ NR Am J Neuroradiol,2010, 31(3):541-548.

[95] Schiavone, F., et al.Imaging age-related cognitive decline:A comparison of diffusion tensor and magnetization transfer MRI.J Magn Reson Imaging,2009,29(1):23-30.

[96] Bastin, M.E., et al.Diffusion tensor and magnetization transfer MRI measurements of periventricular white matter hyperintensities in old age.Neurobiol Aging,2009,30(1):125-136.

[97] Kang, X., et al.Improving the resolution of functional brain imaging:Analyzing functional data in anatomical space.Magn Reson Imaging, 2007,25(7):1070-1078.

[98] Rinne, T., et al.Distributed cortical networks for focused auditory attention and distraction.Neurosci Lett,2007,416(3):247-251.

[99] Woods, D.L., et al.Functional maps of human auditory cortex:Effects of acoustic features and attention.PLoS One,2009,4(4):e5183.

[100] Zhang, S., et al.Functional and anatomical properties of human visual cortical fields.Vision Res,2015,109(Pt A):107-121.

[101] Woods, D.L., et al.Phonological processing in human auditory cortical fields.Front Hum Neurosci,2011,5:42.

[102] Woods, D.L., et al.Functional properties of human auditory cortical fields.Frontiers in Systems Neuroscience,2010,4:12.