Skip to main content
Top
Published in: Neuroradiology 1/2017

01-01-2017 | Functional Neuroradiology

A contemporary framework of language processing in the human brain in the context of preoperative and intraoperative language mapping

Authors: Erik H. Middlebrooks, Kaan Yagmurlu, Jerzey P. Szaflarski, Maryam Rahman, Baran Bozkurt

Published in: Neuroradiology | Issue 1/2017

Login to get access

Abstract

Introduction

The emergence of advanced in vivo neuroimaging methods has redefined the understanding of brain function with a shift from traditional localizationist models to more complex and widely distributed neural networks. In human language processing, the traditional localizationist models of Wernicke and Broca have fallen out of favor for a dual-stream processing system involving complex networks organized over vast areas of the dominant hemisphere. The current review explores the cortical function and white matter connections of human language processing, as well as their relevance to surgical planning.

Methods

We performed a systematic review of the literature with narrative data analysis.

Results

Although there is significant heterogeneity in the literature over the past century of exploration, modern evidence provides new insight into the true cortical function and white matter anatomy of human language. Intraoperative data and postoperative outcome studies confirm a widely distributed language network extending far beyond the traditional cortical areas of Wernicke and Broca.

Conclusions

The anatomic distribution of language networks, based on current theories, is explored to present a modern and clinically relevant interpretation of language function. Within this framework, we present current knowledge regarding the known effects of damage to both cortical and subcortical components of these language networks. Ideally, we hope this framework will provide a common language for which to base future clinical studies in human language function.
Appendix
Available only for authorised users
Literature
4.
6.
go back to reference Ius T, Angelini E, Thiebaut de Schotten M, Mandonnet E, Duffau H (2011) Evidence for potentials and limitations of brain plasticity using an atlas of functional resectability of WHO grade II gliomas: towards a “minimal common brain”. NeuroImage 56:992–1000. doi:10.1016/j.neuroimage.2011.03.022 PubMedCrossRef Ius T, Angelini E, Thiebaut de Schotten M, Mandonnet E, Duffau H (2011) Evidence for potentials and limitations of brain plasticity using an atlas of functional resectability of WHO grade II gliomas: towards a “minimal common brain”. NeuroImage 56:992–1000. doi:10.​1016/​j.​neuroimage.​2011.​03.​022 PubMedCrossRef
14.
go back to reference Logothetis NK, Augath M, Murayama Y, Rauch A, Sultan F, Goense J, Oeltermann A, Merkle H (2010) The effects of electrical microstimulation on cortical signal propagation. Nat Neurosci 13:1283–1291. doi:10.1038/nn.2631 PubMedCrossRef Logothetis NK, Augath M, Murayama Y, Rauch A, Sultan F, Goense J, Oeltermann A, Merkle H (2010) The effects of electrical microstimulation on cortical signal propagation. Nat Neurosci 13:1283–1291. doi:10.​1038/​nn.​2631 PubMedCrossRef
18.
go back to reference Devlin JT, Matthews PM, Rushworth MFS (2003) Semantic processing in the left inferior prefrontal cortex: a combined functional magnetic resonance imaging and transcranial magnetic stimulation study. J Cogn Neurosci 15:71–84. doi:10.1162/089892903321107837 PubMedCrossRef Devlin JT, Matthews PM, Rushworth MFS (2003) Semantic processing in the left inferior prefrontal cortex: a combined functional magnetic resonance imaging and transcranial magnetic stimulation study. J Cogn Neurosci 15:71–84. doi:10.​1162/​0898929033211078​37 PubMedCrossRef
22.
go back to reference Mandonnet E, Sarubbo S, Duffau H (2016) Proposal of an optimized strategy for intraoperative testing of speech and language during awake mapping. Neurosurg Rev. doi:10.1007/s10143-016-0723-x Mandonnet E, Sarubbo S, Duffau H (2016) Proposal of an optimized strategy for intraoperative testing of speech and language during awake mapping. Neurosurg Rev. doi:10.​1007/​s10143-016-0723-x
24.
go back to reference Kinoshita M, de Champfleur NM, Deverdun J, Moritz-Gasser S, Herbet G, Duffau H (2015) Role of fronto-striatal tract and frontal aslant tract in movement and speech: an axonal mapping study. Brain Struct Funct 220:3399–3412. doi:10.1007/s00429-014-0863-0 PubMedCrossRef Kinoshita M, de Champfleur NM, Deverdun J, Moritz-Gasser S, Herbet G, Duffau H (2015) Role of fronto-striatal tract and frontal aslant tract in movement and speech: an axonal mapping study. Brain Struct Funct 220:3399–3412. doi:10.​1007/​s00429-014-0863-0 PubMedCrossRef
26.
go back to reference Saito T, Muragaki Y, Maruyama T, Tamura M, Nitta M, Tsuzuki S, Konishi Y, Kamata K, Kinno R, Sakai KL, Iseki H, Kawamata T (2016) Difficulty in identification of the frontal language area in patients with dominant frontal gliomas that involve the pars triangularis. J Neurosurg 125:803–811. doi:10.3171/2015.8.jns151204 PubMedCrossRef Saito T, Muragaki Y, Maruyama T, Tamura M, Nitta M, Tsuzuki S, Konishi Y, Kamata K, Kinno R, Sakai KL, Iseki H, Kawamata T (2016) Difficulty in identification of the frontal language area in patients with dominant frontal gliomas that involve the pars triangularis. J Neurosurg 125:803–811. doi:10.​3171/​2015.​8.​jns151204 PubMedCrossRef
27.
28.
go back to reference Chang EF, Breshears JD, Raygor KP, Lau D, Molinaro AM, Berger MS (2016) Stereotactic probability and variability of speech arrest and anomia sites during stimulation mapping of the language dominant hemisphere. J Neurosurg:1–8. doi:10.3171/2015.10.jns151087 Chang EF, Breshears JD, Raygor KP, Lau D, Molinaro AM, Berger MS (2016) Stereotactic probability and variability of speech arrest and anomia sites during stimulation mapping of the language dominant hemisphere. J Neurosurg:1–8. doi:10.​3171/​2015.​10.​jns151087
30.
go back to reference Sarubbo S, De Benedictis A, Merler S, Mandonnet E, Barbareschi M, Dallabona M, Chioffi F, Duffau H (2016) Structural and functional integration between dorsal and ventral language streams as revealed by blunt dissection and direct electrical stimulation: anatomo-functional integration of language. Hum Brain Mapp. doi:10.1002/hbm.23281 Sarubbo S, De Benedictis A, Merler S, Mandonnet E, Barbareschi M, Dallabona M, Chioffi F, Duffau H (2016) Structural and functional integration between dorsal and ventral language streams as revealed by blunt dissection and direct electrical stimulation: anatomo-functional integration of language. Hum Brain Mapp. doi:10.​1002/​hbm.​23281
34.
go back to reference Duffau H, Capelle L, Denvil D, Gatignol P, Sichez N, Lopes M, Sichez JP, Van Effenterre R (2003) The role of dominant premotor cortex in language: a study using intraoperative functional mapping in awake patients. NeuroImage 20:1903–1914. doi:10.1016/S1053-8119(03)00203-9 PubMedCrossRef Duffau H, Capelle L, Denvil D, Gatignol P, Sichez N, Lopes M, Sichez JP, Van Effenterre R (2003) The role of dominant premotor cortex in language: a study using intraoperative functional mapping in awake patients. NeuroImage 20:1903–1914. doi:10.​1016/​S1053-8119(03)00203-9 PubMedCrossRef
36.
go back to reference Plaza M, Gatignol P, Cohen H, Berger B, Duffau H (2008) A discrete area within the left dorsolateral prefrontal cortex involved in visual-verbal incongruence judgment. Cereb Cortex 18:1253–1259. doi:10.1093/cercor/bhm169 PubMedCrossRef Plaza M, Gatignol P, Cohen H, Berger B, Duffau H (2008) A discrete area within the left dorsolateral prefrontal cortex involved in visual-verbal incongruence judgment. Cereb Cortex 18:1253–1259. doi:10.​1093/​cercor/​bhm169 PubMedCrossRef
37.
go back to reference Kho KH, Rutten G-JM, Leijten FSS, van der Schaaf A, van Rijen PC, Ramsey NF (2007) Working memory deficits after resection of the dorsolateral prefrontal cortex predicted by functional magnetic resonance imaging and electrocortical stimulation mapping: case report. J Neurosurg Pediatr 106:501–505. doi:10.3171/ped.2007.106.6.501 CrossRef Kho KH, Rutten G-JM, Leijten FSS, van der Schaaf A, van Rijen PC, Ramsey NF (2007) Working memory deficits after resection of the dorsolateral prefrontal cortex predicted by functional magnetic resonance imaging and electrocortical stimulation mapping: case report. J Neurosurg Pediatr 106:501–505. doi:10.​3171/​ped.​2007.​106.​6.​501 CrossRef
38.
go back to reference Noonan KA, Jefferies E, Visser M, Lambon Ralph MA (2013) Going beyond inferior prefrontal involvement in semantic control: evidence for the additional contribution of dorsal angular gyrus and posterior middle temporal cortex. J Cogn Neurosci 25:1824–1850. doi:10.1162/jocn_a_00442 PubMedCrossRef Noonan KA, Jefferies E, Visser M, Lambon Ralph MA (2013) Going beyond inferior prefrontal involvement in semantic control: evidence for the additional contribution of dorsal angular gyrus and posterior middle temporal cortex. J Cogn Neurosci 25:1824–1850. doi:10.​1162/​jocn_​a_​00442 PubMedCrossRef
39.
go back to reference Bozkurt B, Yagmurlu K, Middlebrooks EH, Karadag A, Ovalioglu TC, Jagadeesan B, Sandhu G, Tanriover N, Grande AW (2016) The microsurgical and tractographic anatomy of the supplementary motor area complex in human. World Neurosurg 95:99–107. doi:10.1016/j.wneu.2016.07.072 PubMedCrossRef Bozkurt B, Yagmurlu K, Middlebrooks EH, Karadag A, Ovalioglu TC, Jagadeesan B, Sandhu G, Tanriover N, Grande AW (2016) The microsurgical and tractographic anatomy of the supplementary motor area complex in human. World Neurosurg 95:99–107. doi:10.​1016/​j.​wneu.​2016.​07.​072 PubMedCrossRef
46.
48.
go back to reference van Geemen K, Herbet G, Moritz-Gasser S, Duffau H (2014) Limited plastic potential of the left ventral premotor cortex in speech articulation: evidence from intraoperative awake mapping in glioma patients: ventral premotor cortex and speech. Hum Brain Mapp 35:1587–1596. doi:10.1002/hbm.22275 PubMedCrossRef van Geemen K, Herbet G, Moritz-Gasser S, Duffau H (2014) Limited plastic potential of the left ventral premotor cortex in speech articulation: evidence from intraoperative awake mapping in glioma patients: ventral premotor cortex and speech. Hum Brain Mapp 35:1587–1596. doi:10.​1002/​hbm.​22275 PubMedCrossRef
49.
go back to reference Bizzi A, Nava S, Ferrè F, Castelli G, Aquino D, Ciaraffa F, Broggi G, DiMeco F, Piacentini S (2012) Aphasia induced by gliomas growing in the ventrolateral frontal region: assessment with diffusion MR tractography, functional MR imaging and neuropsychology. Cortex J Devoted Study Nerv Syst Behav 48:255–272. doi:10.1016/j.cortex.2011.11.015 CrossRef Bizzi A, Nava S, Ferrè F, Castelli G, Aquino D, Ciaraffa F, Broggi G, DiMeco F, Piacentini S (2012) Aphasia induced by gliomas growing in the ventrolateral frontal region: assessment with diffusion MR tractography, functional MR imaging and neuropsychology. Cortex J Devoted Study Nerv Syst Behav 48:255–272. doi:10.​1016/​j.​cortex.​2011.​11.​015 CrossRef
51.
60.
go back to reference Vergani F, Lacerda L, Martino J, Attems J, Morris C, Mitchell P, Thiebaut de Schotten M, Dell’Acqua F (2014) White matter connections of the supplementary motor area in humans. J Neurol Neurosurg Psychiatry 85:1377–1385. doi:10.1136/jnnp-2013-307492 PubMedCrossRef Vergani F, Lacerda L, Martino J, Attems J, Morris C, Mitchell P, Thiebaut de Schotten M, Dell’Acqua F (2014) White matter connections of the supplementary motor area in humans. J Neurol Neurosurg Psychiatry 85:1377–1385. doi:10.​1136/​jnnp-2013-307492 PubMedCrossRef
61.
go back to reference Binder JR, Frost JA, Hammeke TA, Cox RW, Rao SM, Prieto T (1997) Human brain language areas identified by functional magnetic resonance imaging. J Neurosci 17:353–362PubMed Binder JR, Frost JA, Hammeke TA, Cox RW, Rao SM, Prieto T (1997) Human brain language areas identified by functional magnetic resonance imaging. J Neurosci 17:353–362PubMed
62.
64.
go back to reference Rosenberg K, Nossek E, Liebling R, Fried I, Shapira-Lichter I, Hendler T, Ram Z (2010) Prediction of neurological deficits and recovery after surgery in the supplementary motor area: a prospective study in 26 patients: clinical article. J Neurosurg 113:1152–1163. doi:10.3171/2010.6.JNS1090 PubMedCrossRef Rosenberg K, Nossek E, Liebling R, Fried I, Shapira-Lichter I, Hendler T, Ram Z (2010) Prediction of neurological deficits and recovery after surgery in the supplementary motor area: a prospective study in 26 patients: clinical article. J Neurosurg 113:1152–1163. doi:10.​3171/​2010.​6.​JNS1090 PubMedCrossRef
65.
go back to reference Nelson L, Lapsiwala S, Haughton VM, Noyes J, Sadrzadeh AH, Moritz CH, Meyerand ME, Badie B (2002) Preoperative mapping of the supplementary motor area in patients harboring tumors in the medial frontal lobe. J Neurosurg 97:1108–1114. doi:10.3171/jns.2002.97.5.1108 PubMedCrossRef Nelson L, Lapsiwala S, Haughton VM, Noyes J, Sadrzadeh AH, Moritz CH, Meyerand ME, Badie B (2002) Preoperative mapping of the supplementary motor area in patients harboring tumors in the medial frontal lobe. J Neurosurg 97:1108–1114. doi:10.​3171/​jns.​2002.​97.​5.​1108 PubMedCrossRef
71.
73.
go back to reference Sabsevitz DS, Swanson SJ, Hammeke TA, Spanaki MV, Possing ET, Morris GL, Mueller WM, Binder JR (2003) Use of preoperative functional neuroimaging to predict language deficits from epilepsy surgery. Neurology 60:1788–1792PubMedCrossRef Sabsevitz DS, Swanson SJ, Hammeke TA, Spanaki MV, Possing ET, Morris GL, Mueller WM, Binder JR (2003) Use of preoperative functional neuroimaging to predict language deficits from epilepsy surgery. Neurology 60:1788–1792PubMedCrossRef
75.
go back to reference Binder JR, Gross WL, Allendorfer JB, Bonilha L, Chapin J, Edwards JC, Grabowski TJ, Langfitt JT, Loring DW, Lowe MJ, Koenig K, Morgan PS, Ojemann JG, Rorden C, Szaflarski JP, Tivarus ME, Weaver KE (2011) Mapping anterior temporal lobe language areas with fMRI: a multicenter normative study. NeuroImage 54:1465–1475. doi:10.1016/j.neuroimage.2010.09.048 PubMedCrossRef Binder JR, Gross WL, Allendorfer JB, Bonilha L, Chapin J, Edwards JC, Grabowski TJ, Langfitt JT, Loring DW, Lowe MJ, Koenig K, Morgan PS, Ojemann JG, Rorden C, Szaflarski JP, Tivarus ME, Weaver KE (2011) Mapping anterior temporal lobe language areas with fMRI: a multicenter normative study. NeuroImage 54:1465–1475. doi:10.​1016/​j.​neuroimage.​2010.​09.​048 PubMedCrossRef
78.
go back to reference Ostrowsky K, Desestret V, Ryvlin P, Coste S, Mauguière F (2002) Direct electrical stimulations of the temporal pole in human. Epileptic Disord 4(Suppl 1):S23–S27PubMed Ostrowsky K, Desestret V, Ryvlin P, Coste S, Mauguière F (2002) Direct electrical stimulations of the temporal pole in human. Epileptic Disord 4(Suppl 1):S23–S27PubMed
87.
go back to reference Lopes R, Nunes RG, Simões MR, Secca MF, Leal A (2015) The visual word form area remains in the dominant hemisphere for language in late-onset left occipital lobe epilepsies: a postsurgery analysis of two cases. Epilepsy Behav 46:91–98. doi:10.1016/j.yebeh.2015.04.019 PubMedCrossRef Lopes R, Nunes RG, Simões MR, Secca MF, Leal A (2015) The visual word form area remains in the dominant hemisphere for language in late-onset left occipital lobe epilepsies: a postsurgery analysis of two cases. Epilepsy Behav 46:91–98. doi:10.​1016/​j.​yebeh.​2015.​04.​019 PubMedCrossRef
91.
go back to reference Abou-Khalil R, Wertz RT, Abou-Khalil BW, Welch LW, Blumenkopf B (1996) Basal temporal language area: evidence from cortical stimulation and surgical ablation. In: Lemme ML (ed) Clinical Aphasiology, vol 24. PRO-ED, Austin, pp. 173–180 Abou-Khalil R, Wertz RT, Abou-Khalil BW, Welch LW, Blumenkopf B (1996) Basal temporal language area: evidence from cortical stimulation and surgical ablation. In: Lemme ML (ed) Clinical Aphasiology, vol 24. PRO-ED, Austin, pp. 173–180
94.
go back to reference Maldonado IL, Moritz-Gasser S, de Champfleur NM, Bertram L, Moulinié G, Duffau H (2011) Surgery for gliomas involving the left inferior parietal lobule: new insights into the functional anatomy provided by stimulation mapping in awake patients: clinical article. J Neurosurg 115:770–779. doi:10.3171/2011.5.JNS112 PubMedCrossRef Maldonado IL, Moritz-Gasser S, de Champfleur NM, Bertram L, Moulinié G, Duffau H (2011) Surgery for gliomas involving the left inferior parietal lobule: new insights into the functional anatomy provided by stimulation mapping in awake patients: clinical article. J Neurosurg 115:770–779. doi:10.​3171/​2011.​5.​JNS112 PubMedCrossRef
97.
go back to reference Lu H, Jensen JH, Ramani A, Helpern JA (2006) Three-dimensional characterization of non-gaussian water diffusion in humans using diffusion kurtosis imaging. NMR Biomed 19:236–247. doi:10.1002/nbm.1020 PubMedCrossRef Lu H, Jensen JH, Ramani A, Helpern JA (2006) Three-dimensional characterization of non-gaussian water diffusion in humans using diffusion kurtosis imaging. NMR Biomed 19:236–247. doi:10.​1002/​nbm.​1020 PubMedCrossRef
98.
go back to reference Duffau H, Gatignol P, Mandonnet E, Capelle L, Taillandier L (2008) Intraoperative subcortical stimulation mapping of language pathways in a consecutive series of 115 patients with grade II glioma in the left dominant hemisphere. J Neurosurg 109:461–471. doi:10.3171/JNS/2008/109/9/0461 PubMedCrossRef Duffau H, Gatignol P, Mandonnet E, Capelle L, Taillandier L (2008) Intraoperative subcortical stimulation mapping of language pathways in a consecutive series of 115 patients with grade II glioma in the left dominant hemisphere. J Neurosurg 109:461–471. doi:10.​3171/​JNS/​2008/​109/​9/​0461 PubMedCrossRef
99.
go back to reference Leclercq D, Duffau H, Delmaire C, Capelle L, Gatignol P, Ducros M, Chiras J, Lehéricy S (2010) Comparison of diffusion tensor imaging tractography of language tracts and intraoperative subcortical stimulations: clinical article. J Neurosurg 112:503–511. doi:10.3171/2009.8.JNS09558 PubMedCrossRef Leclercq D, Duffau H, Delmaire C, Capelle L, Gatignol P, Ducros M, Chiras J, Lehéricy S (2010) Comparison of diffusion tensor imaging tractography of language tracts and intraoperative subcortical stimulations: clinical article. J Neurosurg 112:503–511. doi:10.​3171/​2009.​8.​JNS09558 PubMedCrossRef
100.
go back to reference Makris N, Kennedy DN, McInerney S, Sorensen AG, Wang R, Caviness VS, Pandya DN (2005) Segmentation of subcomponents within the superior longitudinal fascicle in humans: a quantitative, in vivo, DT-MRI study. Cereb Cortex 15:854–869. doi:10.1093/cercor/bhh186 PubMedCrossRef Makris N, Kennedy DN, McInerney S, Sorensen AG, Wang R, Caviness VS, Pandya DN (2005) Segmentation of subcomponents within the superior longitudinal fascicle in humans: a quantitative, in vivo, DT-MRI study. Cereb Cortex 15:854–869. doi:10.​1093/​cercor/​bhh186 PubMedCrossRef
101.
go back to reference Martino J, De Witt Hamer PC, Berger MS, Lawton MT, Arnold CM, de Lucas EM, Duffau H (2013) Analysis of the subcomponents and cortical terminations of the perisylvian superior longitudinal fasciculus: a fiber dissection and DTI tractography study. Brain Struct Funct 218:105–121. doi:10.1007/s00429-012-0386-5 PubMedCrossRef Martino J, De Witt Hamer PC, Berger MS, Lawton MT, Arnold CM, de Lucas EM, Duffau H (2013) Analysis of the subcomponents and cortical terminations of the perisylvian superior longitudinal fasciculus: a fiber dissection and DTI tractography study. Brain Struct Funct 218:105–121. doi:10.​1007/​s00429-012-0386-5 PubMedCrossRef
103.
go back to reference Güngör A, Baydin S, Middlebrooks EH, Tanriover N, Isler C, Rhoton AL (2016) The white matter tracts of the cerebrum in ventricular surgery and hydrocephalus. J Neurosurg 1–27. doi:10.3171/2016.1.JNS152082 Güngör A, Baydin S, Middlebrooks EH, Tanriover N, Isler C, Rhoton AL (2016) The white matter tracts of the cerebrum in ventricular surgery and hydrocephalus. J Neurosurg 1–27. doi:10.​3171/​2016.​1.​JNS152082
104.
go back to reference Thiebaut de Schotten M, Dell’Acqua F, Forkel SJ, Simmons A, Vergani F, Murphy DGM, Catani M (2011) A lateralized brain network for visuospatial attention. Nat Neurosci 14:1245–1246. doi:10.1038/nn.2905 PubMedCrossRef Thiebaut de Schotten M, Dell’Acqua F, Forkel SJ, Simmons A, Vergani F, Murphy DGM, Catani M (2011) A lateralized brain network for visuospatial attention. Nat Neurosci 14:1245–1246. doi:10.​1038/​nn.​2905 PubMedCrossRef
105.
go back to reference De Benedictis A, Duffau H, Paradiso B, Grandi E, Balbi S, Granieri E, Colarusso E, Chioffi F, Marras CE, Sarubbo S (2014) Anatomo-functional study of the temporo-parieto-occipital region: dissection, tractographic and brain mapping evidence from a neurosurgical perspective. J Anat 225:132–151. doi:10.1111/joa.12204 PubMedPubMedCentralCrossRef De Benedictis A, Duffau H, Paradiso B, Grandi E, Balbi S, Granieri E, Colarusso E, Chioffi F, Marras CE, Sarubbo S (2014) Anatomo-functional study of the temporo-parieto-occipital region: dissection, tractographic and brain mapping evidence from a neurosurgical perspective. J Anat 225:132–151. doi:10.​1111/​joa.​12204 PubMedPubMedCentralCrossRef
107.
go back to reference Almairac F, Herbet G, Moritz-Gasser S, de Champfleur NM, Duffau H (2015) The left inferior fronto-occipital fasciculus subserves language semantics: a multilevel lesion study. Brain Struct Funct 220:1983–1995. doi:10.1007/s00429-014-0773-1 PubMedCrossRef Almairac F, Herbet G, Moritz-Gasser S, de Champfleur NM, Duffau H (2015) The left inferior fronto-occipital fasciculus subserves language semantics: a multilevel lesion study. Brain Struct Funct 220:1983–1995. doi:10.​1007/​s00429-014-0773-1 PubMedCrossRef
108.
109.
go back to reference Fernández-Miranda JC, Rhoton AL, Kakizawa Y, Choi C, Álvarez-Linera J (2008) The claustrum and its projection system in the human brain: a microsurgical and tractographic anatomical study: laboratory investigation. J Neurosurg 108:764–774. doi:10.3171/JNS/2008/108/4/0764 PubMedCrossRef Fernández-Miranda JC, Rhoton AL, Kakizawa Y, Choi C, Álvarez-Linera J (2008) The claustrum and its projection system in the human brain: a microsurgical and tractographic anatomical study: laboratory investigation. J Neurosurg 108:764–774. doi:10.​3171/​JNS/​2008/​108/​4/​0764 PubMedCrossRef
113.
go back to reference Schmahmann JD, Pandya DN, Wang R, Dai G, D’Arceuil HE, de Crespigny AJ, Wedeen VJ (2007) Association fibre pathways of the brain: parallel observations from diffusion spectrum imaging and autoradiography. Brain 130:630–653. doi:10.1093/brain/awl359 PubMedCrossRef Schmahmann JD, Pandya DN, Wang R, Dai G, D’Arceuil HE, de Crespigny AJ, Wedeen VJ (2007) Association fibre pathways of the brain: parallel observations from diffusion spectrum imaging and autoradiography. Brain 130:630–653. doi:10.​1093/​brain/​awl359 PubMedCrossRef
114.
116.
go back to reference Zemmoura I, Herbet G, Moritz-Gasser S, Duffau H (2015) New insights into the neural network mediating reading processes provided by cortico-subcortical electrical mapping: neural basis of reading. Hum Brain Mapp 36:2215–2230. doi:10.1002/hbm.22766 PubMedCrossRef Zemmoura I, Herbet G, Moritz-Gasser S, Duffau H (2015) New insights into the neural network mediating reading processes provided by cortico-subcortical electrical mapping: neural basis of reading. Hum Brain Mapp 36:2215–2230. doi:10.​1002/​hbm.​22766 PubMedCrossRef
118.
go back to reference Wang Y, Fernandez-Miranda JC, Verstynen T, Pathak S, Schneider W, Yeh F-C (2013) Rethinking the role of the middle longitudinal fascicle in language and auditory pathways. Cereb Cortex 23:2347–2356. doi:10.1093/cercor/bhs225 PubMedCrossRef Wang Y, Fernandez-Miranda JC, Verstynen T, Pathak S, Schneider W, Yeh F-C (2013) Rethinking the role of the middle longitudinal fascicle in language and auditory pathways. Cereb Cortex 23:2347–2356. doi:10.​1093/​cercor/​bhs225 PubMedCrossRef
119.
go back to reference Makris N, Preti MG, Wassermann D, Rathi Y, Papadimitriou GM, Yergatian C, Dickerson BC, Shenton ME, Kubicki M (2013) Human middle longitudinal fascicle: segregation and behavioral-clinical implications of two distinct fiber connections linking temporal pole and superior temporal gyrus with the angular gyrus or superior parietal lobule using multi-tensor tractography. Brain Imaging Behav 7:335–352. doi:10.1007/s11682-013-9235-2 PubMedCrossRef Makris N, Preti MG, Wassermann D, Rathi Y, Papadimitriou GM, Yergatian C, Dickerson BC, Shenton ME, Kubicki M (2013) Human middle longitudinal fascicle: segregation and behavioral-clinical implications of two distinct fiber connections linking temporal pole and superior temporal gyrus with the angular gyrus or superior parietal lobule using multi-tensor tractography. Brain Imaging Behav 7:335–352. doi:10.​1007/​s11682-013-9235-2 PubMedCrossRef
120.
go back to reference Makris N, Preti MG, Asami T, Pelavin P, Campbell B, Papadimitriou GM, Kaiser J, Baselli G, Westin CF, Shenton ME, Kubicki M (2013) Human middle longitudinal fascicle: variations in patterns of anatomical connections. Brain Struct Funct 218:951–968. doi:10.1007/s00429-012-0441-2 PubMedCrossRef Makris N, Preti MG, Asami T, Pelavin P, Campbell B, Papadimitriou GM, Kaiser J, Baselli G, Westin CF, Shenton ME, Kubicki M (2013) Human middle longitudinal fascicle: variations in patterns of anatomical connections. Brain Struct Funct 218:951–968. doi:10.​1007/​s00429-012-0441-2 PubMedCrossRef
122.
go back to reference De Witt Hamer PC, Moritz-Gasser S, Gatignol P, Duffau H (2011) Is the human left middle longitudinal fascicle essential for language? A brain electrostimulation study. Hum Brain Mapp 32:962–973. doi:10.1002/hbm.21082 PubMedCrossRef De Witt Hamer PC, Moritz-Gasser S, Gatignol P, Duffau H (2011) Is the human left middle longitudinal fascicle essential for language? A brain electrostimulation study. Hum Brain Mapp 32:962–973. doi:10.​1002/​hbm.​21082 PubMedCrossRef
128.
go back to reference Greenblatt SH (1973) Alexia without agraphia or hemianopsia. Anatomical analysis of an autopsied case. Brain 96:307–316PubMedCrossRef Greenblatt SH (1973) Alexia without agraphia or hemianopsia. Anatomical analysis of an autopsied case. Brain 96:307–316PubMedCrossRef
129.
131.
go back to reference Kinoshita M, Shinohara H, Hori O, Ozaki N, Ueda F, Nakada M, Hamada J, Hayashi Y (2012) Association fibers connecting the Broca center and the lateral superior frontal gyrus: a microsurgical and tractographic anatomy: clinical article. J Neurosurg 116:323–330. doi:10.3171/2011.10.JNS11434 PubMedCrossRef Kinoshita M, Shinohara H, Hori O, Ozaki N, Ueda F, Nakada M, Hamada J, Hayashi Y (2012) Association fibers connecting the Broca center and the lateral superior frontal gyrus: a microsurgical and tractographic anatomy: clinical article. J Neurosurg 116:323–330. doi:10.​3171/​2011.​10.​JNS11434 PubMedCrossRef
132.
go back to reference Catani M, Mesulam MM, Jakobsen E, Malik F, Martersteck A, Wieneke C, Thompson CK, Thiebaut de Schotten M, Dell’Acqua F, Weintraub S, Rogalski E (2013) A novel frontal pathway underlies verbal fluency in primary progressive aphasia. Brain 136:2619–2628. doi:10.1093/brain/awt163 PubMedPubMedCentralCrossRef Catani M, Mesulam MM, Jakobsen E, Malik F, Martersteck A, Wieneke C, Thompson CK, Thiebaut de Schotten M, Dell’Acqua F, Weintraub S, Rogalski E (2013) A novel frontal pathway underlies verbal fluency in primary progressive aphasia. Brain 136:2619–2628. doi:10.​1093/​brain/​awt163 PubMedPubMedCentralCrossRef
133.
go back to reference Kemerdere R, de Champfleur NM, Deverdun J, Cochereau J, Moritz-Gasser S, Herbet G, Duffau H (2016) Role of the left frontal aslant tract in stuttering: a brain stimulation and tractographic study. J Neurol 263:157–167. doi:10.1007/s00415-015-7949-3 PubMedCrossRef Kemerdere R, de Champfleur NM, Deverdun J, Cochereau J, Moritz-Gasser S, Herbet G, Duffau H (2016) Role of the left frontal aslant tract in stuttering: a brain stimulation and tractographic study. J Neurol 263:157–167. doi:10.​1007/​s00415-015-7949-3 PubMedCrossRef
134.
go back to reference Naeser MA, Palumbo CL, Helm-Estabrooks N, Stiassny-Eder D, Albert ML (1989) Severe nonfluency in aphasia. Role of the medial subcallosal fasciculus and other white matter pathways in recovery of spontaneous speech. Brain 112:1–38. doi:10.1093/brain/112.1.1 PubMedCrossRef Naeser MA, Palumbo CL, Helm-Estabrooks N, Stiassny-Eder D, Albert ML (1989) Severe nonfluency in aphasia. Role of the medial subcallosal fasciculus and other white matter pathways in recovery of spontaneous speech. Brain 112:1–38. doi:10.​1093/​brain/​112.​1.​1 PubMedCrossRef
Metadata
Title
A contemporary framework of language processing in the human brain in the context of preoperative and intraoperative language mapping
Authors
Erik H. Middlebrooks
Kaan Yagmurlu
Jerzey P. Szaflarski
Maryam Rahman
Baran Bozkurt
Publication date
01-01-2017
Publisher
Springer Berlin Heidelberg
Published in
Neuroradiology / Issue 1/2017
Print ISSN: 0028-3940
Electronic ISSN: 1432-1920
DOI
https://doi.org/10.1007/s00234-016-1772-0

Other articles of this Issue 1/2017

Neuroradiology 1/2017 Go to the issue