Cortical hot spots and labyrinths: Why cortical neuromodulation for episodic migraine should be personalized
暂无分享,去创建一个
Sebastian D. Boie | M. Dahlem | N. Hadjikhani | I. Bojak | J. Kurths | Frederike Kneer | Bern S Schmidt | S. Boie | Jürgen Kurths
[1] Bennie ten Haken,et al. How does spreading depression spread? Physiology and modeling , 2014, Reviews in the neurosciences.
[2] Edgar Santos,et al. Radial, spiral and reverberating waves of spreading depolarization occur in the gyrencephalic brain , 2014, NeuroImage.
[3] Rajiv Chopra,et al. Trans-cranial opening of the blood-brain barrier in targeted regions using a stereotaxic brain atlas and focused ultrasound energy , 2014, Journal of therapeutic ultrasound.
[4] J. Kurths,et al. Understanding migraine using dynamic network biomarkers , 2014, Cephalalgia : an international journal of headache.
[5] Markus A. Dahlem,et al. Dynamics from Seconds to Hours in Hodgkin-Huxley Model with Time-Dependent Ion Concentrations and Buffer Reservoirs , 2014, PLoS Comput. Biol..
[6] M. Dahlem,et al. Nucleation of reaction-diffusion waves on curved surfaces , 2014, 1403.1716.
[7] A. Charles,et al. Distinctive anatomical and physiological features of migraine aura revealed by 18 years of recording. , 2013, Brain : a journal of neurology.
[8] Peter T. Fox,et al. PET-Based Confirmation of Orientation Sensitivity of TMS-Induced Cortical Activation in Humans , 2013, Brain Stimulation.
[9] Eckehard Schöll,et al. Bistable Dynamics Underlying Excitability of Ion Homeostasis in Neuron Models , 2013, PLoS Comput. Biol..
[10] J. Kurths,et al. Towards dynamical network biomarkers in neuromodulation of episodic migraine , 2013, Translational neuroscience.
[11] H. Diener. Novel Approaches in Migraine Treatment , 2013 .
[12] Brian Litt,et al. Drug discovery: A jump-start for electroceuticals , 2013, Nature.
[13] R. Graf,et al. Propagation of cortical spreading depolarization in the human cortex after malignant stroke , 2013, Neurology.
[14] M. Dahlem,et al. Migraine generator network and spreading depression dynamics as neuromodulation targets in episodic migraine. , 2013, Chaos.
[15] Z. Sen,et al. Spreading Depression Triggers Headache by Activating Neuronal Panx1 Channels , 2013, Science.
[16] J. Schoenen,et al. Transcutaneous Vagus Nerve Stimulation (tVNS) for headache prophylaxis: initial experience , 2013, The Journal of Headache and Pain.
[17] M. Dahlem,et al. Transient Localized Wave Patterns and Their Application to Migraine , 2012, Journal of mathematical neuroscience.
[18] Jan Tusch,et al. Predicted Selective Increase of Cortical Magnification Due to Cortical Folding , 2012, Journal of mathematical neuroscience.
[19] Abhishek Datta,et al. tDCS‐Induced Analgesia and Electrical Fields in Pain‐Related Neural Networks in Chronic Migraine , 2012, Headache.
[20] P. Sándor,et al. Acute confusional migraine: our knowledge to date , 2012, Expert review of neurotherapeutics.
[21] L. Schimansky-Geier,et al. Self-terminating wave patterns and self-organized pacemakers in a phenomenological model of spreading depression , 2012, Brain Research.
[22] Thom F. Oostendorp,et al. Towards a model-based integration of co-registered electroencephalography/functional magnetic resonance imaging data with realistic neural population meshes , 2011, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences.
[23] James Kozloski,et al. An Ultrascalable Solution to Large-scale Neural Tissue Simulation , 2011, Front. Neuroinform..
[24] J. Dreier. The role of spreading depression, spreading depolarization and spreading ischemia in neurological disease , 2011, Nature Medicine.
[25] D. Kleinfeld,et al. Topological basis for the robust distribution of blood to rodent neocortex , 2010, Proceedings of the National Academy of Sciences.
[26] R. Kötter,et al. Connecting Mean Field Models of Neural Activity to EEG and fMRI Data , 2010, Brain Topography.
[27] R. Lipton,et al. Single-pulse transcranial magnetic stimulation for acute treatment of migraine with aura: a randomised, double-blind, parallel-group, sham-controlled trial , 2010, The Lancet Neurology.
[28] Cenk Ayata,et al. Cortical Spreading Depression and Migraine , 2010, Current neurology and neuroscience reports.
[29] L. Schimansky-Geier,et al. Dynamical structures in binary media of potassium-driven neurons. , 2009, Physical review. E, Statistical, nonlinear, and soft matter physics.
[30] Wolfgang Hanke,et al. Two-dimensional wave patterns of spreading depolarization: retracting, re-entrant, and stationary waves ✩ , 2009, 0903.0800.
[31] Nouchine Hadjikhani,et al. Migraine Aura: Retracting Particle-Like Waves in Weakly Susceptible Cortex , 2008, PloS one.
[32] R. Purdy. Migraine with and without aura share the same pathogenic mechanisms , 2008, Neurological Sciences.
[33] N. Hadjikhani. Relevance of cortical thickness in migraine sufferers , 2008, Expert review of neurotherapeutics.
[34] N. Hadjikhani,et al. Migraine Aura and Related Phenomena: Beyond Scotomata and Scintillations , 2007, Cephalalgia : an international journal of headache.
[35] C. Granziera,et al. Thickening in the somatosensory cortex of patients with migraine , 2007, Neurology.
[36] Ehud Rivlin,et al. A comparison of Gaussian and mean curvature estimation methods on triangular meshes of range image data , 2007, Comput. Vis. Image Underst..
[37] W. Bangerth,et al. deal.II—A general-purpose object-oriented finite element library , 2007, TOMS.
[38] Robert M. Miura,et al. Cortical spreading depression: An enigma , 2007 .
[39] R. Lipton,et al. The Global Burden of Headache: A Documentation of Headache Prevalence and Disability Worldwide , 2007, Cephalalgia : an international journal of headache.
[40] C. Granziera,et al. Anatomical Alterations of the Visual Motion Processing Network in Migraine with and without Aura , 2006, PLoS medicine.
[41] H. Barbas,et al. Developmental mechanics of the primate cerebral cortex , 2005, Anatomy and Embryology.
[42] Alan C. Evans,et al. Automated 3-D extraction and evaluation of the inner and outer cortical surfaces using a Laplacian map and partial volume effect classification , 2005, NeuroImage.
[43] Mark W. Woolrich,et al. Advances in functional and structural MR image analysis and implementation as FSL , 2004, NeuroImage.
[44] M. Dahlem,et al. A computational perspective on migraine aura , 2004, Progress in Neurobiology.
[45] Markus Dahlem,et al. Reaction‐diffusion waves in neuronal tissue and the window of cortical excitability , 2004 .
[46] N. Manz,et al. Fabrication of quasi-two-dimensional, heterogeneously curved Belousov–Zhabotinsky systems , 2003 .
[47] Markus Bär,et al. Dependence of the spiral rotation frequency on the surface curvature of reaction-diffusion systems , 2003 .
[48] Markus A. Dahlem,et al. Migraine aura dynamics after reverse retinotopic mapping of weak excitation waves in the primary visual cortex , 2003, Biological Cybernetics.
[49] M. Jenkinson,et al. In vivo identification of human cortical areas using high-resolution MRI: An approach to cerebral structure–function correlation , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[50] N. V. Davydov,et al. Critical properties of autowaves propagating on deformed cylindrical surfaces , 2003 .
[51] O. Steinbock,et al. Critical properties of excitation waves on curved surfaces: Curvature-dependent loss of excitability , 2002 .
[52] B. Kendall. Nonlinear Dynamics and Chaos , 2001 .
[53] P. Morosan,et al. Probabilistic Mapping and Volume Measurement of Human Primary Auditory Cortex , 2001, NeuroImage.
[54] V. Davydov,et al. Drift of spiral waves on nonuniformly curved surfaces , 2000 .
[55] Steinbock,et al. Excitation fronts on a periodically modulated curved surface , 2000, Physical review letters.
[56] M. Erb,et al. fMRI Evaluation of Somatotopic Representation in Human Primary Motor Cortex , 2000, NeuroImage.
[57] N. V. Davydov,et al. Ring-shaped autowaves on curved surfaces , 2000 .
[58] A. Schleicher,et al. Broca's region revisited: Cytoarchitecture and intersubject variability , 1999, The Journal of comparative neurology.
[59] A. Dale,et al. Cortical Surface-Based Analysis II: Inflation, Flattening, and a Surface-Based Coordinate System , 1999, NeuroImage.
[60] Anders M. Dale,et al. Cortical Surface-Based Analysis I. Segmentation and Surface Reconstruction , 1999, NeuroImage.
[61] K. Zilles,et al. Structural divisions and functional fields in the human cerebral cortex 1 Published on the World Wide Web on 20 February 1998. 1 , 1998, Brain Research Reviews.
[62] Henning Scheich,et al. Statistical methods in functional magnetic resonance imaging with respect to nonstationary time‐series: Auditory cortex activity , 1997, Magnetic resonance in medicine.
[63] Mathias Bode,et al. Interacting Pulses in Three-Component Reaction-Diffusion Systems on Two-Dimensional Domains , 1997 .
[64] D. Purves,et al. Correlated Size Variations in Human Visual Cortex, Lateral Geniculate Nucleus, and Optic Tract , 1997, The Journal of Neuroscience.
[65] T. Maekawa. Computation of Shortest Paths on Free-Form Parametric Surfaces , 1996 .
[66] A. Toga,et al. Three-Dimensional Statistical Analysis of Sulcal Variability in the Human Brain , 1996, The Journal of Neuroscience.
[67] P. Goldman-Rakic,et al. Cytoarchitectonic definition of prefrontal areas in the normal human cortex: II. Variability in locations of areas 9 and 46 and relationship to the Talairach Coordinate System. , 1995, Cerebral cortex.
[68] O. Grüsser. Migraine phosphenes and the retino-cortical magnification factor , 1995, Vision Research.
[69] Mathias Bode,et al. Pattern formation in reaction-diffusion systems—dissipative solitons in physical systems , 1995 .
[70] Mikhailov,et al. Bifurcation to traveling spots in reaction-diffusion systems. , 1994, Physical review letters.
[71] A. Lehmenkühler,et al. Spreading depression can be restricted to distinct depths of the rat cerebral cortex , 1993, Neuroscience Letters.
[72] Richard S. J. Frackowiak,et al. Area V5 of the human brain: evidence from a combined study using positron emission tomography and magnetic resonance imaging. , 1993, Cerebral cortex.
[73] V. S. Zykov,et al. Spiral autowaves in a round excitable medium , 1993 .
[74] V. S. Zykov,et al. Kinematics of spiral waves on nonuniformly curved surfaces , 1991 .
[75] Kenneth Showalter,et al. Chemical waves on spherical surfaces , 1989, Nature.
[76] H C Tuckwell,et al. A mathematical model for spreading cortical depression. , 1978, Biophysical journal.
[77] W. H. Dobelle,et al. The topography and variability of the primary visual cortex in man. , 1974, Journal of neurosurgery.
[78] E. Pöppel. Fortification illusion during an attack of ophthalmic migraine , 1973, Naturwissenschaften.
[79] Shamoon Jamshed,et al. Introduction to CFD , 2015, HiPC 2015.
[80] Antônio-Carlos G. Almeida,et al. Modeling extracellular space electrodiffusion during Leão's spreading depression , 2004, IEEE Trans. Biomed. Eng..
[81] F. Wilkinson. Auras and other hallucinations: windows on the visual brain. , 2004, Progress in Brain Research.
[82] K. Zilles,et al. The calcarine sulcus as an estimate of the total volume of human striate cortex: a morphometric study of reliability and intersubject variability. , 1996, Journal fur Hirnforschung.
[83] Alexander S. Mikhailov,et al. Complex dynamics of spiral waves and motion of curves , 1994 .
[84] H C Tuckwell,et al. Simplified reaction-diffusion equations for potassium and calcium ion concentrations during spreading cortical depression. , 1981, The International journal of neuroscience.