Novel intraoperative online functional mapping of somatosensory finger representations for targeted stimulating electrode placement
暂无分享,去创建一个
Robert W. Nickl | Adam B. Cohen | T. M. Thomas | R. W. Nickl | D. N. Candrea | M. S. Fifer | E. A. Pohlmeyer | W. S. Anderson | B. A. Wester | F. V. Tenore | G. L. Cantarero | P. A. Celnik | N. E. Crone | N. F. Ramsey | D. McMullen | C. Coogan | L. Osborn | A. Schiavi | T. Wojtasiewicz | C. Gordon | A. B. Cohen | W. Schellekens | S. Bensmaia | Teresa J. Wojtasiewicz | Brock Andrew Wester | Luke E. Osborn | Tessy M. Thomas | P. Celnik | N. Ramsey | N. Crone | E. Pohlmeyer | M. Fifer | S. Bensmaia | F. Tenore | D. McMullen | W. Anderson | B. Wester | C. Gordon | D. Candrea | W. Schellekens | G. Cantarero | Christopher G. Coogan | Daniel Candrea | Eric A. Pohlmeyer | Adam Schiavi | Teresa Wojtasiewicz
[1] Spencer Kellis,et al. Mapping of primary somatosensory cortex of the hand area using a high-density electrocorticography grid for closed-loop brain computer interface. , 2020, Journal of neural engineering.
[2] Peter J. Ifft,et al. Active tactile exploration enabled by a brain-machine-brain interface , 2011, Nature.
[3] P. D. Adelson,et al. Delineation of somatosensory finger areas using vibrotactile stimulation, an ECoG study , 2015, Brain and behavior.
[4] Daniel R Kramer,et al. Technical considerations for generating somatosensation via cortical stimulation in a closed-loop sensory/motor brain-computer interface system in humans , 2019, Journal of Clinical Neuroscience.
[5] P. Siddall,et al. New evidence for preserved somatosensory pathways in complete spinal cord injury: A fMRI study , 2018, Human brain mapping.
[6] A Villringer,et al. fMRI shows multiple somatotopic digit representations in human primary somatosensory cortex , 2000, Neuroreport.
[7] Horst Bischof,et al. A practical procedure for real-time functional mapping of eloquent cortex using electrocorticographic signals in humans , 2009, Epilepsy & Behavior.
[8] Charles M. Gaona,et al. Stable and dynamic cortical electrophysiology of induction and emergence with propofol anesthesia , 2010, Proceedings of the National Academy of Sciences.
[9] G A Ojemann,et al. Individual variability in cortical localization of language. , 1979, Journal of neurosurgery.
[10] Jon A. Mukand,et al. Neuronal ensemble control of prosthetic devices by a human with tetraplegia , 2006, Nature.
[11] Nicholas V. Annetta,et al. Restoring cortical control of functional movement in a human with quadriplegia , 2016, Nature.
[12] Michael L. Boninger,et al. Restored tactile sensation improves neuroprosthetic arm control , 2019, bioRxiv.
[13] Katiuscia Sacco,et al. Preoperative and intraoperative brain mapping for the resection of eloquent-area tumors. A prospective analysis of methodology, correlation, and usefulness based on clinical outcomes , 2010, Acta Neurochirurgica.
[14] Franck-Emmanuel Roux,et al. Functional architecture of the somatosensory homunculus detected by electrostimulation , 2017, The Journal of physiology.
[15] A. Benabid,et al. An exoskeleton controlled by an epidural wireless brain–machine interface in a tetraplegic patient: a proof-of-concept demonstration , 2019, The Lancet Neurology.
[16] M. Cavallo,et al. Awake surgery for skills preservation during a sensory area tumor resection in a clarinet player , 2020, Acta Neurologica Belgica.
[17] Luigi Tamè,et al. Locating primary somatosensory cortex in human brain stimulation studies: experimental evidence. , 2018, Journal of neurophysiology.
[18] Hiroshi Ogawa,et al. Distinction of individual finger responses in somatosensory cortex using ECoG high-gamma activation mapping , 2015, 2015 37th Annual International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC).
[19] Robert W. Nickl,et al. Intracortical Microstimulation Elicits Human Fingertip Sensations , 2020, medRxiv.
[20] A. Schwartz,et al. High-performance neuroprosthetic control by an individual with tetraplegia , 2013, The Lancet.
[21] In-Uk Song,et al. Simultaneous acoustic stimulation of human primary and secondary somatosensory cortices using transcranial focused ultrasound , 2016, BMC Neuroscience.
[22] E. Mandonnet,et al. Technical principles of direct bipolar electrostimulation for cortical and subcortical mapping in awake craniotomy. , 2017, Neuro-Chirurgie.
[23] J. Kaas,et al. Multiple representations of the body within the primary somatosensory cortex of primates. , 1979, Science.
[24] Nathan E. Crone,et al. BCI2000Web and WebFM: Browser-Based Tools for Brain Computer Interfaces and Functional Brain Mapping , 2019, Front. Neurosci..
[25] J. Randall Flanagan,et al. Coding and use of tactile signals from the fingertips in object manipulation tasks , 2009, Nature Reviews Neuroscience.
[26] Daniel R Kramer,et al. Engineering Artificial Somatosensation Through Cortical Stimulation in Humans , 2018, Front. Syst. Neurosci..
[27] Adeen Flinker,et al. Spatial-temporal functional mapping of language at the bedside with electrocorticography , 2016, Neurology.
[28] Heidi Johansen-Berg,et al. Revealing the neural fingerprints of a missing hand , 2016, eLife.
[29] G. Westling,et al. Preserved somatosensory conduction in a patient with complete cervical spinal cord injury. , 2015, Journal of rehabilitation medicine.
[30] Heidi Johansen-Berg,et al. Investigating the Stability of Fine-Grain Digit Somatotopy in Individual Human Participants , 2016, The Journal of Neuroscience.
[31] Kapil D. Katyal,et al. Individual finger control of a modular prosthetic limb using high-density electrocorticography in a human subject , 2016, Journal of neural engineering.
[32] N. Logothetis,et al. Direct electrical stimulation of human cortex — the gold standard for mapping brain functions? , 2011, Nature Reviews Neuroscience.
[33] Stephen T. Foldes,et al. Intracortical microstimulation of human somatosensory cortex , 2016, Science Translational Medicine.
[34] Christoph Guger,et al. Rapid and minimum invasive functional brain mapping by real-time visualization of high gamma activity during awake craniotomy. , 2014, World neurosurgery.
[35] S. Bandinelli,et al. Motor reorganization after upper limb amputation in man. A study with focal magnetic stimulation. , 1991, Brain : a journal of neurology.
[36] S. Francis,et al. Within-Digit Functional Parcellation of Brodmann Areas of the Human Primary Somatosensory Cortex Using Functional Magnetic Resonance Imaging at 7 Tesla , 2012, The Journal of Neuroscience.
[37] Neal P. Fox,et al. Direct electrical stimulation of human cortex evokes high gamma activity that predicts conscious somatosensory perception , 2018, Journal of neural engineering.
[38] Wei Wang,et al. Human perception of electrical stimulation on the surface of somatosensory cortex , 2017, PloS one.
[39] M. Berger,et al. Impact of intraoperative stimulation brain mapping on glioma surgery outcome: a meta-analysis. , 2012, Journal of clinical oncology : official journal of the American Society of Clinical Oncology.
[40] Gerwin Schalk,et al. Intraoperative mapping of expressive language cortex using passive real-time electrocorticography , 2016, Epilepsy & Behavior Case Reports.
[41] Daniel R Kramer,et al. Proprioceptive and cutaneous sensations in humans elicited by intracortical microstimulation , 2018, eLife.
[42] David A. Friedenberg,et al. Restoring the Sense of Touch Using a Sensorimotor Demultiplexing Neural Interface , 2020, Cell.
[43] Anish A. Sarma,et al. Clinical translation of a high-performance neural prosthesis , 2015, Nature Medicine.
[44] R. Andersen,et al. Decoding motor imagery from the posterior parietal cortex of a tetraplegic human , 2015, Science.
[45] W. Penfield,et al. SOMATIC MOTOR AND SENSORY REPRESENTATION IN THE CEREBRAL CORTEX OF MAN AS STUDIED BY ELECTRICAL STIMULATION , 1937 .