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= THIS PAGE IS NO LONGER UPDATED! =

'''As of Sept 2014, publications are now managed through our [[https://www.zotero.org/freesurfer|Zotero Library]]'''

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Additionally, this information has also been copied over to: https://partnershealthcare.sharepoint.com/sites/LCN/SitePages/Publications.aspx

<<BR>>

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 * [[https://surfer.nmr.mgh.harvard.edu/ftp/articles/dale99-recon1.pdf|Cortical Surface-Based Analysis I: Segmentation and Surface Reconstruction]], Dale, A.M., Fischl, B., Sereno, M.I., (1999). NeuroImage 9(2):179-194
 * [[https://surfer.nmr.mgh.harvard.edu/ftp/articles/fischl99b-recon2.pdf|Cortical Surface-Based Analysis II: Inflation, Flattening, and a Surface-Based Coordinate System]], Fischl, B., Sereno, M.I., Dale, A.M., (1999). NeuroImage, 9(2):195-207.
 * [[https://surfer.nmr.mgh.harvard.edu/ftp/articles/dale99-recon1.pdf|Cortical Surface-Based Analysis I: Segmentation and Surface Reconstruction]], Dale, A.M., Fischl, B., Sereno, M.I., (1999). !NeuroImage 9(2):179-194
 * [[https://surfer.nmr.mgh.harvard.edu/ftp/articles/fischl99b-recon2.pdf|Cortical Surface-Based Analysis II: Inflation, Flattening, and a Surface-Based Coordinate System]], Fischl, B., Sereno, M.I., Dale, A.M., (1999). !NeuroImage, 9(2):195-207.
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 * [[http://www.nmr.mgh.harvard.edu/~fischl/reprints/Neuroimage_Segonne_watershed.pdf|A Hybrid Approach to the Skull-Stripping Problem in MRI]], Ségonne, F., Dale, A.M., Busa, E., Glessner, M., Salvolini, U., Hahn, H.K., Fischl, B. (2004). NeuroImage, 22:1160-1075.  * [[http://www.nmr.mgh.harvard.edu/~fischl/reprints/Neuroimage_Segonne_watershed.pdf|A Hybrid Approach to the Skull-Stripping Problem in MRI]], Ségonne, F., Dale, A.M., Busa, E., Glessner, M., Salvolini, U., Hahn, H.K., Fischl, B. (2004). !NeuroImage, 22:1160-1075.
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 * [[http://www.nmr.mgh.harvard.edu/~fischl/reprints/Han_NeuroImage_2006_thickness_reliability.pdf|Reliability of MRI-derived measurements of human cerebral cortical thickness: The effects of field strength, scanner upgrade and manufacturer]], X. Han, J. Jovichich, D. Salat, A. van der Kouwe, B. Quinn, S. Czanner, E. Busa, J. Pacheco, M. Albert, R. Killiany, P. Maguire, D. Rosas, N. Makris, A. Dale, B. Dickerson, and B. Fischl, (2006) NeuroImage, 32(1):180-194.  * [[http://www.nmr.mgh.harvard.edu/~fischl/reprints/Han_NeuroImage_2006_thickness_reliability.pdf|Reliability of MRI-derived measurements of human cerebral cortical thickness: The effects of field strength, scanner upgrade and manufacturer]], X. Han, J. Jovichich, D. Salat, A. van der Kouwe, B. Quinn, S. Czanner, E. Busa, J. Pacheco, M. Albert, R. Killiany, P. Maguire, D. Rosas, N. Makris, A. Dale, B. Dickerson, and B. Fischl, (2006) !NeuroImage, 32(1):180-194.
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=== topology correction ===
 * [[http://www.nmr.mgh.harvard.edu/~fischl/reprints/segonne_subcortical_topology_miccai2003.pdf|Topology Correction of Subcortical Segmentation]], Segonne, F., E. Grimson and B. Fischl, (2003) MICCAI 2003.
 * [[http://www.nmr.mgh.harvard.edu/~fischl/reprints/segonne_ga_ipmi2005.pdf|Genetic Algorithm for the Topology Correction of Cortical Surfaces]], F. Segonne, E. Grimson, B. Fischl (2005). IPMI pp393--405.
 * [[https://surfer.nmr.mgh.harvard.edu/ftp/articles/IEEE.TMI.segonne.2007.separating.loops.pdf|Geometrically Accurate Topology-Correction of Cortical Surfaces Using Nonseparating Loops]], Segonne, F., J. Pacheco, B. Fischl, (2007) IEEE Transactions on Medical Imaging, 26(4):518-529.
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 * [[https://surfer.nmr.mgh.harvard.edu/ftp/articles/desikan06-parcellation.pdf|An automated labeling system for subdividing the human cerebral cortex on MRI scans into gyral based regions of interest]], Desikan, R.S., F. Segonne, B. Fischl, B.T. Quinn, B.C. Dickerson, D. Blacker, R.L. Buckner, A.M. Dale, R.P. Maguire, B.T. Hyman, M.S. Albert, and R.J. Killiany, (2006). NeuroImage 31(3):968-80.  * [[https://surfer.nmr.mgh.harvard.edu/ftp/articles/desikan06-parcellation.pdf|An automated labeling system for subdividing the human cerebral cortex on MRI scans into gyral based regions of interest]], Desikan, R.S., F. Segonne, B. Fischl, B.T. Quinn, B.C. Dickerson, D. Blacker, R.L. Buckner, A.M. Dale, R.P. Maguire, B.T. Hyman, M.S. Albert, and R.J. Killiany, (2006). !NeuroImage 31(3):968-80.
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 * [[https://surfer.nmr.mgh.harvard.edu/pub/articles/HBM09-Destrieux-Sulcal.pdf|A sulcal depth-based anatomical parcellation of the cerebral cortex]], Destrieux, C., B. Fischl, A. Dale, E. Halgren (2009). Human Brain Mapping 2009.  * [[https://surfer.nmr.mgh.harvard.edu/pub/articles/HBM09-Destrieux-Sulcal.pdf|A sulcal depth-based anatomical parcellation of the cerebral cortex]], C. Destrieux, B. Fischl, A. Dale, E. Halgren (2009). Human Brain Mapping 2009.
 * [[http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2937159/pdf/nihms213933.pdf|Automatic parcellation of human cortical gyri and sulci using standard anatomical nomenclature]], C. Destrieux, B. Fischl, A. Dale, E. Halgren (2010). !NeuroImage 53(1): 1-15.
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 * [[http://www.nmr.mgh.harvard.edu/~fischl/reprints/sequence_independent_segmentation_reprint.pdf|Sequence-Independent Segmentation of Magnetic Resonance Images]], Fischl, B., Salat, D.H., van der Kouwe, A.J.W., Makris, N., Ségonne, F., and Dale, A.M. (2004) NeuroImage 23:S69-S84.  * [[http://www.nmr.mgh.harvard.edu/~fischl/reprints/sequence_independent_segmentation_reprint.pdf|Sequence-Independent Segmentation of Magnetic Resonance Images]], Fischl, B., Salat, D.H., van der Kouwe, A.J.W., Makris, N., Ségonne, F., and Dale, A.M. (2004) !NeuroImage 23:S69-S84.
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=== local gyrification index (LGI) ===
 * [[http://ltswww.epfl.ch/~schaer/Schaer_TMI.pdf|A Surface-Based Approach to Quantify Local Cortical Gyrification]], Schaer, M., M. Bach Cuadra, L. Tamarit, F. Lazeyras, S. Eliez, and J.P. Thiran (2008). IEEE Transactions on Medical Imaging, Vol. 27, No. 2, February 2008. See also: [[http://www.jove.com/video/3417|JoVE video]]
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 * [[http://reuter.mit.edu/papers/reuter-robreg10.pdf|Highly Accurate Inverse Consistent Registration: A Robust Approach]], M. Reuter, H.D. Rosas, B. Fischl, (2010). NeuroImage 53 (4):1181-1196.
 * [[http://reuter.mit.edu/papers/reuter-bias11.pdf|Avoiding asymmetry-induced bias in longitudinal image processing]], M. Reuter, B. Fischl, (2011). NeuroImage 57 (1):19-21.
 * [[http://reuter.mit.edu/papers/reuter-long12.pdf|Within-Subject Template Estimation for Unbiased Longitudinal Image Analysis]], M. Reuter, N.J. Schmansky, H.D. Rosas, B. Fischl, (2012), NeuroImage 61(4):1402-1418.
 * [[http://reuter.mit.edu/papers/reuter-robreg10.pdf|Highly Accurate Inverse Consistent Registration: A Robust Approach]], M. Reuter, H.D. Rosas, B. Fischl, (2010). !NeuroImage 53 (4):1181-1196.
 * [[http://reuter.mit.edu/papers/reuter-bias11.pdf|Avoiding asymmetry-induced bias in longitudinal image processing]], M. Reuter, B. Fischl, (2011). !NeuroImage 57 (1):19-21.
 * ''Please cite this if you run the longitudinal stream in Freesurfer version 4.3 or later'': [[http://reuter.mit.edu/papers/reuter-long12.pdf|Within-Subject Template Estimation for Unbiased Longitudinal Image Analysis]], M. Reuter, N.J. Schmansky, H.D. Rosas, B. Fischl, (2012), !NeuroImage 61(4):1402-1418.
 * [[https://surfer.nmr.mgh.harvard.edu/ftp/articles/Long-LME_2012.pdf|Statistical Analysis of Longitudinal Neuroimage Data with Linear Mixed Effects Models]], J.L. Bernal-Rusiel, D.N. Greve, M. Reuter, B. Fischl, M.R. Sabuncu, !NeuroImage (2012), doi: 10.1016/j.neuroimage.2012.10.065
 * [[http://www.sciencedirect.com/science/article/pii/S1053811913005430|Spatiotemporal Linear Mixed Effects Modeling for the Mass-univariate Analysis of Longitudinal Neuroimage Data]], J.L. Bernal-Rusiel, M. Reuter, D.N. Greve, B. Fischl, M.R. Sabuncu, !NeuroImage (2013), doi: 10.1016/j.neuroimage.2013.05.049
 * [[http://www.sciencedirect.com/science/article/pii/S1053811914002705|Event Time Analysis of Longitudinal Neuroimage Data]], M.R. Sabuncu, J.L. Bernal-Rusiel, M. Reuter, D.N. Greve, B. Fischl, !NeuroImage (2014), doi: 10.1016/j.neuroimage.2014.04.015

=== tracts constrained by underlying anatomy (TRACULA) ===
 * [[http://www.frontiersin.org/Neuroinformatics/10.3389/fninf.2011.00023/abstract|Automated probabilistic reconstruction of white-matter pathways in health and disease using an atlas of the underlying anatomy]], Yendiki A, Panneck P, Srinivasan P, Stevens A, Zöllei L, Augustinack J, Wang R, Salat D, Ehrlich S, Behrens T, Jbabdi S, Gollub R and Fischl B (2011). Front. Neuroinform. 5:23. doi: 10.3389/fninf.2011.00023.
 * [[http://www.sciencedirect.com/science/article/pii/S1053811913011312|Spurious group differences due to head motion in a diffusion MRI study.]] Yendiki A, Koldewyn K, Kakunoori S, Kanwisher N, Fischl B (2013). ''!NeuroImage,'' In press.

=== combined volumetric and surface registration (CVS) ===
 * [[https://surfer.nmr.mgh.harvard.edu/pub/articles/Postelnicu-TMI2009.pdf|Combined Volumetric and Surface Registration]], G.Postelnicu, L.Zollei, B. Fischl(2009). IEEE TRANSACTIONS ON MEDICAL IMAGING, VOL. 28, NO. 4, APRIL 2009
 * [[http://dx.doi.org/10.1016/j.neuroimage.2010.01.101|Improved Tractography Alignment Using Combined Volumetric and Surface Registration]], Lilla Zollei, Allison Stevens, Kristen Huber, Sita Kakunoori, Bruce Fischl ( 2010). doi:10.1016/j.neuroimage.2010.01.101

=== boundary-based registration (BBR) ===
 * [[https://surfer.nmr.mgh.harvard.edu/pub/articles/greve.2009.ni.63.BBR.pdf|Accurate and robust brain image alignment using boundary-based registration]], D. Greve and B. Fischl, !NeuroImage, Volume 48, Issue 1, 15 October 2009, Pages 63-72.

=== optical coherence tomography (OCT) ===
 * [[https://surfer.nmr.mgh.harvard.edu/pub/articles/2014/Augustinack.2014.NeuroimageSpecialIssue.pdf|MRI parcellation of ex vivo medial temporal lobe]], Augustinack J, Magnain C, Reuter M, van der Kouwe A, Boas D, Fischl B, (2014). !NeuroImage, 93:252-259, doi: 10.1016/j.neuroimage.2013.05.053.
 * [[https://surfer.nmr.mgh.harvard.edu/pub/articles/2014/Wang.2014.NeuroImage.SOCS.pdf|Cross-validation of serial optical coherence scanning and diffusion tensor imaging: A study on neural fiber maps in human medulla oblongata]], Wang H, Zhu J, Reuter M, Vinke L, Yendiki A, Boas D, Fischl B, Akkin T, (2014). !NeuroImage, In press, doi: 10.1016/j.neuroimage.2014.06.032.
 * [[http://www.ncbi.nlm.nih.gov/pubmed/24041872|Blockface histology with optical coherence tomography: a comparison with Nissl staining]], Magnain C, Augustinack J, Reuter M, Wachinger C, Frosch M, Ragan T, Akkin T, Wedeen V, Boas D, Fischl B, (2014). !NeuroImage, In press, doi: 10.1016/j.neuroimage.2013.08.072.

=== positron emission tomography (PET) ===
 * [[https://surfer.nmr.mgh.harvard.edu/pub/articles/2014/greve.2014.ni.surface-km.pdf|Cortical surface-based analysis reduces bias and variance in kinetic modeling of brain PET data]], Greve D, Svarer C, Fisher P, Feng L, Hansen A, Baare W, Rosen B, Fischl B, Knudsen G, (2014). !NeuroImage, 92:225–236. doi: 10.1016/j.neuroimage.2013.12.021.
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 * [[http://www.nmr.mgh.harvard.edu/~fischl/reprints/segonne_subcortical_topology_miccai2003.pdf|Topology Correction of Subcortical Segmentation]], Segonne, F., E. Grimson and B. Fischl, (2003) MICCAI 2003.
 * [[https://surfer.nmr.mgh.harvard.edu/ftp/articles/buckner2004.pdf|A unified approach for morphometric and functional data analysis in young, old, and demented adults using automated atlas-based head size normalization: reliability and validation against manual measurement of total intracranial volume]], Buckner, R.L., D. Head, J. Parker, A.F. Fotenos, D. Marcus, J.C. Morris, and A.Z. Snyder (2004) NeuroImage 23:724-738.
 * [[https://surfer.nmr.mgh.harvard.edu/ftp/articles/jovicich_neuroimage_2006.pdf|Reliability in Multi-Site Structural MRI Studies: Effects of Gradient Non-linearity Correction on Phantom and Human Data]], Jovicich J, Czanner S, Greve D, Haley E, Kouwe A, Gollub R, Kennedy D, Schmitt F, Brown G, !MacFall J, Fischl B, Dale A., (2006) NeuroImage, 30(2): 436-443.
 * [[https://surfer.nmr.mgh.harvard.edu/ftp/articles/IEEE.TMI.segonne.2007.separating.loops.pdf|Geometrically Accurate Topology-Correction of Cortical Surfaces Using Nonseparating Loops]], Segonne, F., J. Pacheco, B. Fischl, (2007) IEEE Transactions on Medical Imaging, 26(4):518-529.
 * [[https://surfer.nmr.mgh.harvard.edu/ftp/articles/buckner2004.pdf|A unified approach for morphometric and functional data analysis in young, old, and demented adults using automated atlas-based head size normalization: reliability and validation against manual measurement of total intracranial volume]], Buckner, R.L., D. Head, J. Parker, A.F. Fotenos, D. Marcus, J.C. Morris, and A.Z. Snyder (2004) !NeuroImage 23:724-738.
 * [[https://surfer.nmr.mgh.harvard.edu/ftp/articles/jovicich_neuroimage_2006.pdf|Reliability in Multi-Site Structural MRI Studies: Effects of Gradient Non-linearity Correction on Phantom and Human Data]], Jovicich J, Czanner S, Greve D, Haley E, Kouwe A, Gollub R, Kennedy D, Schmitt F, Brown G, !MacFall J, Fischl B, Dale A., (2006) !NeuroImage, 30(2): 436-443.
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 * [[https://surfer.nmr.mgh.harvard.edu/pub/articles/MEMPR_offprint.pdf|Brain morphometry with multiecho MPRAGE]], van der Kouwe, A.J.W., T. Benner, D.H. Salat, and B. Fischl (2008). NeuroImage 40 (2008) 559-569.
 * [[https://surfer.nmr.mgh.harvard.edu/ftp/articles/hinds2008accurate.pdf|Accurate prediction of V1 location from cortical folds in a surface coordinate system]], Hinds, O.P., N. Rajendran, J.R. Polimeni, J.C. Augustinack, G. Wiggins, L.L. Wald, H.D. Rosas, A. Potthast, E.L. Schwartz and B. Fischl (2008). NeuroImage 39:1585-1599.
 * [[http://ltswww.epfl.ch/~schaer/Schaer_TMI.pdf|A Surface-Based Approach to Quantify Local Cortical Gyrification]], Schaer, M., M. Bach Cuadra, L. Tamarit, F. Lazeyras, S. Eliez, and J.P. Thiran (2008). IEEE Transactions on Medical Imaging, Vol. 27, No. 2, February 2008. See also: [[http://www.jove.com/video/3417|JoVE video]]
 * [[https://surfer.nmr.mgh.harvard.edu/pub/articles/MEMPR_offprint.pdf|Brain morphometry with multiecho MPRAGE]], van der Kouwe, A.J.W., T. Benner, D.H. Salat, and B. Fischl (2008). !NeuroImage 40 (2008) 559-569.
 * [[https://surfer.nmr.mgh.harvard.edu/ftp/articles/hinds2008accurate.pdf|Accurate prediction of V1 location from cortical folds in a surface coordinate system]], Hinds, O.P., N. Rajendran, J.R. Polimeni, J.C. Augustinack, G. Wiggins, L.L. Wald, H.D. Rosas, A. Potthast, E.L. Schwartz and B. Fischl (2008). !NeuroImage 39:1585-1599.
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 * [[https://surfer.nmr.mgh.harvard.edu/pub/articles/reliability_wonderlick.pdf|Reliability of MRI-derived cortical and subcortical morphometric measures: Effects of pulse sequence, voxel geometry, and parallel imaging]], Wonderlick, J.S., D.A. Ziegler, P. Hosseini-Varnamkhasti, J.J. Locascio, A. Bakkour, A. van der Kouwe, C. Triantafyllou, S. Corkin, and B.C. Dickerson. NeuroImage 44 (2009) 1324–1333.
 * [[https://surfer.nmr.mgh.harvard.edu/pub/articles/Jovicich_NI_2009.pdf|MRI-derived measurements of human subcortical, ventricular and intracranial brain volumes: Reliability effects of scan sessions, acquisition sequences, data analyses, scanner upgrade, scanner vendors and field strengths]], Jovicich, J., S. Czanner, X. Han, D. Salat, A. van der Kouwe, B. Quinn, J. Pacheco, M. Albert, R. Killiany, D. Blacker, P. Maguire, D. Rosas, N. Makris, R. Gollub, A. Dale, B.C. Dickerson, and B. Fischl (2009). NeuroImage 46 (2009) 177–192.
 * [[https://surfer.nmr.mgh.harvard.edu/pub/articles/reliability_wonderlick.pdf|Reliability of MRI-derived cortical and subcortical morphometric measures: Effects of pulse sequence, voxel geometry, and parallel imaging]], Wonderlick, J.S., D.A. Ziegler, P. Hosseini-Varnamkhasti, J.J. Locascio, A. Bakkour, A. van der Kouwe, C. Triantafyllou, S. Corkin, and B.C. Dickerson. !NeuroImage 44 (2009) 1324–1333.
 * [[https://surfer.nmr.mgh.harvard.edu/pub/articles/Jovicich_NI_2009.pdf|MRI-derived measurements of human subcortical, ventricular and intracranial brain volumes: Reliability effects of scan sessions, acquisition sequences, data analyses, scanner upgrade, scanner vendors and field strengths]], Jovicich, J., S. Czanner, X. Han, D. Salat, A. van der Kouwe, B. Quinn, J. Pacheco, M. Albert, R. Killiany, D. Blacker, P. Maguire, D. Rosas, N. Makris, R. Gollub, A. Dale, B.C. Dickerson, and B. Fischl (2009). !NeuroImage 46 (2009) 177–192.
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 * [[https://surfer.nmr.mgh.harvard.edu/pub/articles/greve.2009.ni.63.BBR.pdf|Accurate and robust brain image alignment using boundary-based registration]], D. Greve and B. Fischl, NeuroImage, Volume 48, Issue 1, 15 October 2009, Pages 63-72.
 * [[https://surfer.nmr.mgh.harvard.edu/pub/articles/Postelnicu-TMI2009.pdf|Combined Volumetric and Surface Registration]], G.Postelnicu, L.Zollei, B. Fischl(2009). IEEE TRANSACTIONS ON MEDICAL IMAGING, VOL. 28, NO. 4, APRIL 2009
 * [[https://surfer.nmr.mgh.harvard.edu/pub/articles/graphcuts_NI2010.pdf|Skull Stripping Using Graph Cuts]], S.A. Sadananthan, W. Zheng, M.W.L. Chee, and V. Zagorodnov (2010). NeuroImage, 49:1, 225–239, 2010.
 * [[https://surfer.nmr.mgh.harvard.edu/pub/articles/graphcuts_NI2010.pdf|Skull Stripping Using Graph Cuts]], S.A. Sadananthan, W. Zheng, M.W.L. Chee, and V. Zagorodnov (2010). !NeuroImage, 49:1, 225–239, 2010.
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 * [[http://www.frontiersin.org/Neuroinformatics/10.3389/fninf.2011.00023/abstract|Automated probabilistic reconstruction of white-matter pathways in health and disease using an atlas of the underlying anatomy]], Yendiki A, Panneck P, Srinivasan P, Stevens A, Zöllei L, Augustinack J, Wang R, Salat D, Ehrlich S, Behrens T, Jbabdi S, Gollub R and Fischl B (2011). Front. Neuroinform. 5:23. doi: 10.3389/fninf.2011.00023.
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 * [[https://surfer.nmr.mgh.harvard.edu/pub/articles/SabuncuTMI2012.pdf|The Relevance Voxel Machine (RVoxM): A Self-tuning Bayesian Model for Informative Image-based Prediction]], Sabuncu M, Van Leemput K (2012). IEEE Trans Med Imaging, [Epub ahead of print].
 * [[http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3694571/|On Removing Interpolation and Resampling Artifacts in Rigid Image Registration]], Aganj I, Yeo BTT, Sabuncu MR, Fischl B, (2013). IEEE Transactions on Image Processing, 22(2):816--827, doi: 10.1109/TIP.2012.2224356.
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 * [[http://www.ncbi.nlm.nih.gov/pubmed/22248573|FreeSurfer]], Bruce Fischl. NeuroImage, 2012 Jan 10.  * [[http://www.sciencedirect.com/science/article/pii/S1053811912000389|FreeSurfer]], Fischl B (2012). !NeuroImage 62(2):774-781.
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== Citations == == Studies ==
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 * [[http://www.upo.es/neuroaging/es/Images/publications/pdf/Neuroimage_2008a.pdf|Detection of focal changes in human cortical thickness: Spherical wavelets thresholding versus Gaussian smoothing.]] Bernal-Rusiel JL, Atienza M, Cantero JL (2008). Neuroimage, 41:1278-1292.
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 * [[http://www.nitrc.org/docman/view.php/438/902/Neuroimage%202010.pdf|Determining the optimal level of smoothing in cortical thickness analysis: a hierarchical approach based on sequential statistical thresholding.]] Bernal-Rusiel JL, Atienza M, Cantero JL (2010). Neuroimage, 52:158-171.
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 * [[http://www.sciencedirect.com/science/article/pii/S1053811912003229|Focal cortical damage parallels cognitive impairment in minimal hepatic encephalopathy.]] Montoliu C, Gonzalez-Escamilla G, Atienza M, Urios A, Gonzalez O, Wassel A, Aliaga R, Giner-Duran R, Serra MA, Rodrigo JM, Belloch V, Felipo V, Cantero JL (2012). Neuroimage, 61:1165-1175.
 * [[http://onlinelibrary.wiley.com/doi/10.1002/hbm.22120/full|Sample size estimates for well-powered cross-sectional cortical thickness studies.]] Pardoe, H. R., Abbott, D. F., Jackson, G. D. and The Alzheimer's Disease Neuroimaging Initiative (2012), Hum. Brain Mapp.. doi: 10.1002/hbm.22120.
 * [[http://www.sciencedirect.com/science/article/pii/S0920121113000107|A neurodevelopmental basis for BECTS: Evidence from structural MRI.]] Pardoe, H. R., Berg, A. T., Archer, J. S., Fulbright, R. K., and Jackson, G. D. (2013). Epilepsy Research. doi: 10.1016/j.eplepsyres.2012.11.008
 * [[http://neurology.org/content/80/20/1895.short|Sodium valproate use is associated with reduced parietal lobe thickness and brain volume.]] Pardoe, H. R., Berg, A. T., and Jackson, G. D. (2013). Neurology, 80 (20): 1895 - 1900. doi: 10.1212/WNL.0b013e318292a2e5
 * [[http://www.sciencedirect.com/science/article/pii/S2213158213000740|Impact of regional cortical andsubcortical changes on processing speed in cerebral small vessel disease.]] Righart, R., Duering, M., Gonik, M., Jouvent, E., Reyes, S., Hervé, D., Chabriat, H., & Dichgans, M. (2013). Neuroimage: Clinical, In press. http://dx.doi.org/10.1016/j.nicl.2013.06.006
 * [[http://www.ncbi.nlm.nih.gov/pubmed/23054230|Incident subcortical infarcts induce focal thinning in connected cortical areas.]] Duering, M., Righart, R., Csanadi, E., Jouvent, E., Hervé, D., Chabriat, H., Dichgans, M. (2012). Neurology, 79, 2025-2028
 * [[http://link.springer.com/article/10.1007/s12021-014-9229-2|Validation of FreeSurfer-Estimated Brain Cortical Thickness: Comparison with Histologic Measurements.]] Cardinale F., Chinnici G., Bramerio M., Mai R., Sartori I., Cossu M., Lo Russo G., Castana L., Colombo N., Caborni C., De Momi E., Ferrigno G. (2014). Neuroinformatics, doi: 10.1007/s12021-014-9229-2
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 * [[http://www.ncbi.nlm.nih.gov/pubmed/19717458|A common MECP2 haplotype associates with reduced cortical surface area in humans in two independent populations]], Joyner AH, J CR, Bloss CS, Bakken TE, Rimol LM, Melle I, Agartz I, Djurovic S, Topol EJ, Schork NJ, Andreassen OA, Dale AM. Proc Natl Acad Sci U S A. 2009 Sep 8;106(36):15483-8.   * [[http://www.ncbi.nlm.nih.gov/pubmed/19717458|A common MECP2 haplotype associates with reduced cortical surface area in humans in two independent populations]], Joyner AH, J CR, Bloss CS, Bakken TE, Rimol LM, Melle I, Agartz I, Djurovic S, Topol EJ, Schork NJ, Andreassen OA, Dale AM. Proc Natl Acad Sci U S A. 2009 Sep 8;106(36):15483-8.
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 * [[http://surfer.nmr.mgh.harvard.edu/pub/articles/winkler2012_facewisearea.pdf|Measuring and comparing brain cortical surface area and other areal quantities.]] Winkler AM, Sabuncu MR, Yeo BT, Fischl B, Greve DN, Kochunov P, Nichols TE, Blangero J, Glahn DC (2012). Neuroimage 61(4):1428-43.

 * [[http://surfer.nmr.mgh.harvard.edu/pub/articles/2014/Cereb.Cortex-2014-Vuoksimaa-cercor_bhu018.pdf|The Genetic Association Between Neocortical Volume and General Cognitive Ability Is Driven by Global Surface Area Rather Than Thickness.]] Vuoksimaa E, Panizzon MS, Chen C, Fiecas M, Eyler LT, Fennema-Notestine C, Hagler DJ, Fischl B, Franz CE, Jak A, Lyons MJ, Neale MC, Rinker DA, Thompson WK, Tsuang MT, Dale AM, and Kremen WS (2014). Cerebral Cortex. doi: 10.1093/cercor/bhu018.
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 * [[https://surfer.nmr.mgh.harvard.edu/pub/articles/NSY4802.pdf|Cognitive reserve moderates the association between hippocampal volume and episodic memory in middle age]], Vuoksimaa, E., Panizzon, M., Chen, C., Eyler, L., Fennema-Notestine, C., Fiecas, M., Fischl, B., Franz, C., Grant, M., Jak, A., Lyons, M., Neale, M., Thompson, W., Tsuang, M., Xian, H., Dale, A., Kremen, W. 2013 Neuropsychologia 51:1124-1131
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 * [[https://surfer.nmr.mgh.harvard.edu/ftp/articles/2011/2011_-_Smith_et_al._-_Neurology.pdf|Correlations between MRI white matter lesion location and executive function and episodic memory]], E E Smith, D H Salat, J Jeng, C R !McCreary, B Fischl, J D Schmahmann, B C Dickerson, A Viswanathan, M S Albert, D Blacker, S M Greenberg (2011). Neurology 76(17):1492-9. DOI:10.1212/WNL.0b013e318217e7c8.
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=== entorhinal cortex ===
 * [[http://www.ncbi.nlm.nih.gov/pubmed/23668971|Brain morphometry reproducibility in multi-center 3T MRI studies: a comparison of cross-sectional and longitudinal segmentations]], Jovicich J, Marizzoni M, Sala-Llonch R, Bosch B, Bartrés-Faz D, Arnold J, Benninghoff J, Wiltfang J, Roccatagliata L, Nobili F, Hensch T, Tränkner A, Schönknecht P, Leroy M, Lopes R, Bordet R, Chanoine V, Ranjeva JP, Didic M, Gros-Dagnac H, Payoux P, Zoccatelli G, Alessandrini F, Beltramello A, Bargalló N, Blin O, Frisoni GB; !PharmaCog Consortium (2013). Neuroimage. 2013 Dec;83:472-84. doi: 10.1016/j.neuroimage.2013.05.007.
 * [[http://dx.doi.org/10.1016/j.neuroimage.2014.01.058|Hippocampal volume change measurement: Quantitative assessment of the reproducibility of expert manual outlining and the automated methods FreeSurfer and FIRST]],Mulder ER, de Jong RA, Knol DL, van Schijndel RA, Cover KS, Visser PJ, Barkhof F, Vrenken H; !NeuroImage, vol. 92, pp 169-181, 2014.

=== tracts constrained by underlying anatomy (TRACULA) ===
 * [[http://www.sciencedirect.com/science/article/pii/S0022510X12002845 | Vascular cognitive impairment - an ill-defined concept with the need to define its vascular component.,]] S. S. Seiler, M. M. Cavalieri, and R. R. Schmidt, J Neurol Sci, vol. 322, no. 1, pp. 11–16, Nov. 2012.
 * [[http://www.nature.com/mp/journal/vaop/ncurrent/full/mp2012188a.html | Elevated serum measures of lipid peroxidation and abnormal prefrontal white matter in euthymic bipolar adults: toward peripheral biomarkers of bipolar disorder,]] A. Versace, A. C. Andreazza, L. T. Young, J. C. Fournier, J. R. C. Almeida, R. S. Stiffler, J. C. Lockovich, H. A. Aslam, M. H. Pollock, H. Park, V. L. Nimgaonkar, D. J. Kupfer, and M. L. Phillips, Mol. Psychiatry, Jan. 2013.
 * [[http://cercor.oxfordjournals.org/content/early/2013/04/12/cercor.bht089.abstract | Influence of the BDNF Genotype on Amygdalo-Prefrontal White Matter Microstructure is Linked to Nonconscious Attention Bias to Threat,]] J. M. Carlson, J. Cha, E. Harmon-Jones, L. R. Mujica-Parodi, and G. Hajcak, Cerebral Cortex, vol. 0, no. 2013, pp. 891–89, Apr. 2013.
 * [[http://www.jneurosci.org/content/33/33/13251.abstract | Tracking the Roots of Reading Ability: White Matter Volume and Integrity Correlate with Phonological Awareness in Prereading and Early-Reading Kindergarten Children,]] Z. M. Saygin, E. S. Norton, D. E. Osher, S. D. Beach, A. B. Cyr, O. Ozernov-Palchik, A. Yendiki, B. Fischl, N. Gaab, and J. D. E. Gabrieli, Journal of Neuroscience, vol. 33, no. 33, pp. 13251–13258, Aug. 2013.
 * [[http://www.sciencedirect.com/science/article/pii/S0165027014000028 | Tractography in Amyotrophic Lateral Sclerosis using a novel probabilistic tool: a study with tract-based reconstruction compared to voxel-based approach,]] A. Sarica, A. Cerasa, R. Vasta, P. Perrotta, P. Valentino, G. Mangone, P. H. Guzzi, F. Rocca, M. Nonnis, M. Cannataro, and A. Quattrone, J. Neurosci. Methods, Jan. 2014.
 * [[https://surfer.nmr.mgh.harvard.edu/ftp/articles/2014/Koldewyn_Kanwisher.2014.PNAS.pdf | Differences in the right inferior longitudinal fasciculus but no general disruption of white matter tracts in children with autism spectrum disorder,]] K. Koldewyn, A. Yendiki, S. Weigelt, H. Gweona, J. Julian, H. Richardson, C. Malloy, R. Saxe, B. Fischl, and N. Kanwisher, PNAS, Jan. 2014. DOI: 10.1073/pnas.1324037111
 * [[http://www.jneurosci.org/content/34/11/4043.abstract | Circuit-Wide Structural and Functional Measures Predict Ventromedial Prefrontal Cortex Fear Generalization: Implications for Generalized Anxiety Disorder,]] J. Cha, T. Greenberg, J. M. Carlson, D. J. !DeDora, G. Hajcak, and L. R. Mujica-Parodi, Journal of Neuroscience, vol. 34, no. 11, pp. 4043-53, Mar. 2014.
 * [[http://pubmedcentralcanada.ca/pmcc/articles/PMC3609908/ | Tractography reveals diffuse white matter abnormalities in Myotonic Dystrophy Type 1,]] J. R. Wozniak, B. A. Mueller, K. O. Lim, L. S. Hemmy, J. W. Day, J. Neurol. Sci., Apr. 2014.
 * [[http://journal.frontiersin.org/Journal/10.3389/fnhum.2014.00307/abstract | The relation between structural and functional connectivity depends on age and on task goals,]] J. H. Ford and E. Kensinger, Front. Human Neurosci., 8:307, Apr. 2014.
 * [[http://www.sciencedirect.com/science/article/pii/S0006899314003606 | Superior longitudinal fasciculus and language functioning in healthy aging,]] K. M. Madhavan, T. !McQueeny, S. R. Howe, P. Shear, and J. Szaflarski, Brain Research, vol. 1562, pp. 11–22, May 2014.
 * [[http://jpn.ca/wp-content/uploads/2014/08/39-4-130280.pdf | White matter tractography in early psychosis: clinical and neurocognitive associations,]] S. N. Hatton, J. Lagopoulos, D. F. Hermens, I. B. Hickie, E. Scott, and M. R. Bennett, J Psych. Neurosci., 2014.

=== cortical region localization ===
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 * [[http://surfer.nmr.mgh.harvard.edu/pub/articles/Augustinack_predicting_perirhinal_2013.pdf|Predicting the location of human perirhinal cortex, Brodmann's area 35, from MRI]], Augustinack JC, Huber KE, Stevens AA, Roy M, Frosch MP, van der Kouwe AJW, Wald LL, Van Leemput K, !McKee AC, Fischl B. NeuroImage 64(2013), 32-42.
 * [[https://surfer.nmr.mgh.harvard.edu/pub/articles/2014/Augustinack.2014.NeuroimageSpecialIssue.pdf|MRI parcellation of ex vivo medial temporal lobe]], Augustinack J, Magnain C, Reuter M, van der Kouwe A, Boas D, Fischl B, (2014). !NeuroImage, 93:252-259, doi: 10.1016/j.neuroimage.2013.05.053.
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 * [[http://www.sciencedirect.com/science/article/pii/S1053811913005053|The Minimal Preprocessing Pipelines for the Human Connectome Project]], Glasser, MF, Sotiropoulos, SN, Wilson, JA, Coalson, TS, Fischl B, Andersson, JL, Xu, J, Jbabdi, S, Webster, M, Polimeni, JR, Van Essen, DC, Jenkinson, M, WU-Minn HCP Consortium. Neuroimage. 2013, in press.
 * [[http://www.sciencedirect.com/science/article/pii/S1053811913010690|Estimates of segregation and overlap of functional connectivity networks in the human cerebral cortex]], Yeo, BTT, Krienen, FM, Chee, MWL, Buckner, RL (2014). Neuroimage, 88:212-227. doi: 10.1016/j.neuroimage.2013.10.046

=== ROI-based analysis ===
 * [[http://www.frontiersin.org/Journal/DownloadFile.ashx?pdf=1&FileId=152253&articleId=23050&Version=1&ContentTypeId=21&FileName=fnhum-06-00292.pdf|Effects of mindful-attention and compassion meditation training on amygdala response to emotional stimuli in an ordinary, non-meditative state]], Desbordes, G., Negi, L.T., Pace T.W.W., Wallace, B.A., Raison, C.L., Schwartz, E.L. Frontiers in Human Neuroscience. 2012. 6:292. doi: 10.3389/fnhum.2012.00292.
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=== CBF - cerebral blood flow ===
 * [[https://surfer.nmr.mgh.harvard.edu/pub/articles/kolasinski_2013.pdf|Radial and tangential neuronal migration pathways in the human fetal brain: Anatomically distinct patterns of diffusion MRI coherence]], James Kolasinski, Emi Takahashi, Allison A. Stevens, Thomas Benner, Bruce Fischl, Lilla Zöllei, P. Ellen Grant. NeuroImage 79 (2013) 412-422. doi: 10.1016/j.neuroimage.2013.04.125

=== cerebral blood flow (CBF) ===
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=== validation / evaluation === ----
== Validation / Evaluation ==
----
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 * [[https://surfer.nmr.mgh.harvard.edu/ftp/articles/Morey_2010_HBM.pdf|Scan–rescan reliability of subcortical brain volumes derived from automated segmentation.]] Morey, R. A., Selgrade, E. S., Wagner, H. R., Huettel, S. A., Wang, L. and !McCarthy, G. (2010) Hum. Brain Mapp., 31: 1751–1762.
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 * [[http://www.ncbi.nlm.nih.gov/pubmed/23261638|Cortical thickness determination of the human brain using high resolution 3T and 7T MRI data]], Lüsebrink F, Wollrab A, Speck O. (2013). Neuroimage. 2013 Apr 15;70:122-31. 10.1016/j.neuroimage.2012.12.016. Epub 2012 Dec 20.
 * [[http://www.sciencedirect.com/science/article/pii/S1053811909011276|Atrophy patterns in Alzheimer's disease and semantic dementia: A comparison of FreeSurfer and manual volumetric measurements]], Manja Lehmann, Abdel Douiri, Lois G. Kim, Marc Modat, Dennis Chan, Sebastien Ourselin, Josephine Barnes, Nick C. Fox (2010). NeuroImage Volume 49, Issue 3, 1 February 2010, Pages 2264–2274.
 * [[http://www.sciencedirect.com/science/article/pii/S1053811914000895|Hippocampal volume change measurement: Quantitative assessment of the reproducibility of expert manual outlining and the automated methods FreeSurfer and FIRST]], Emma Muldera, Remko de Jonga, Dirk Knolc, Ronald van Schijndela, Keith Covere, Pieter Visserf, Frederik Barkhofa, Hugo Vrenkenb, for the Alzheimer's Disease Neuroimaging Initiative 1 (2014). NeuroImage Volume 92, 15 May 2014, Pages 169–181. DOI: 10.1016/j.neuroimage.2014.01.058.
 * [[http://link.springer.com/article/10.1007/s12021-014-9229-2|Validation of FreeSurfer-Estimated Brain Cortical Thickness: Comparison with Histologic Measurements.]] Cardinale F., Chinnici G., Bramerio M., Mai R., Sartori I., Cossu M., Lo Russo G., Castana L., Colombo N., Caborni C., De Momi E., Ferrigno G. (2014). Neuroinformatics, doi: 10.1007/s12021-014-9229-2

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Methods


Published material describing the methods used in FreeSurfer (please cite our software!, see also boilerplate text):

surface reconstruction

inter-subject spherical averaging

thickness measurement

topology correction

cortical parcellation

subcortical segmentation

local gyrification index (LGI)

longitudinal processing

tracts constrained by underlying anatomy (TRACULA)

combined volumetric and surface registration (CVS)

boundary-based registration (BBR)

optical coherence tomography (OCT)

positron emission tomography (PET)

history

  • FreeSurfer, Fischl B (2012). NeuroImage 62(2):774-781.


Studies


Published material citing Freesurfer:

(If you have a citation you would like to include in this list please e-mail your request to vinke[at]nmr.mgh.harvard.edu)

cortical thickness

cortical surface area

local gyrification index (LGI)

clinical biomarkers

volumetric

white matter

longitudinal

tracts constrained by underlying anatomy (TRACULA)

cortical region localization

cortical surface shape and folding analysis

surface-based analysis (SBA)

ROI-based analysis

SBA vs. VBM

diffusion analysis

cerebral blood flow (CBF)

cortical flat-patches

FS-FAST


Validation / Evaluation


Publications (last edited 2021-05-03 08:49:05 by DevaniCordero)