Skip to main content
Top
Published in: Brain Structure and Function 9/2020

01-12-2020 | Original Article

A metric survey on the sagittal and coronal morphology of the precuneus in adult humans

Authors: Emiliano Bruner, Sofia Pereira-Pedro

Published in: Brain Structure and Function | Issue 9/2020

Login to get access

Abstract

The size, cortical surface area, length and height of the precuneus vary greatly in adult humans. The precuneus is also proportionally much larger in humans than in other primates, and its dorsal region is larger in our species compared with extinct hominids. Its longitudinal and vertical proportions can depend on a real cortical expansion, or on a deformation of the whole brain form due to cranial constraints. In this study, we analyse the correlation between its sagittal and coronal morphology to study the variation of its proportions along the three dimensions. Shape analysis was performed on magnetic resonance scans of 50 adult humans, through both traditional and geometric morphometrics. Results suggest that the degrees of longitudinal, vertical and lateral extension are independent, pointing at different factors involved, and concerning different cortical areas or specific connectivity pathways. This absence of correlation suggests that the individual and evolutionary morphological variations are probably due to actual brain changes, and not to general volume deformation constrained by cranial architecture. These results are discussed in the wider frame of homology and phylogenetic differences, and provide indications for further studies and more targeted surveys.
Literature
go back to reference Allen JS, Damasio H, Grabowski TJ (2002) Normal neuroanatomical variation in the human brain: an MRI-volumetric study. Am J Phys Anthropol 118:341–358PubMedCrossRef Allen JS, Damasio H, Grabowski TJ (2002) Normal neuroanatomical variation in the human brain: an MRI-volumetric study. Am J Phys Anthropol 118:341–358PubMedCrossRef
go back to reference Ardesch DJ, Scholtens LH, Li L, Preuss TM, Rilling JK, Van den Heuvel MP (2019) Evolutionary expansion of connectivity between multimodal association areas in the human brain compared with chimpanzees. Proc Natl Acad Sci USA 116:7101–7106PubMedCrossRefPubMedCentral Ardesch DJ, Scholtens LH, Li L, Preuss TM, Rilling JK, Van den Heuvel MP (2019) Evolutionary expansion of connectivity between multimodal association areas in the human brain compared with chimpanzees. Proc Natl Acad Sci USA 116:7101–7106PubMedCrossRefPubMedCentral
go back to reference Baars BJ (2002) The conscious access hypothesis: origins and recent evidence. Trends Cogn Sci 6:47–52PubMedCrossRef Baars BJ (2002) The conscious access hypothesis: origins and recent evidence. Trends Cogn Sci 6:47–52PubMedCrossRef
go back to reference Barks SK, Parr LA, Rilling JL (2015) The default mode network in chimpanzees (Pan troglodytes) is similar to that of humans. Cereb Cortex 25:538–544PubMedCrossRef Barks SK, Parr LA, Rilling JL (2015) The default mode network in chimpanzees (Pan troglodytes) is similar to that of humans. Cereb Cortex 25:538–544PubMedCrossRef
go back to reference Bruner E (2018a) Human paleoneurology and the evolution of the parietal cortex. Brain Behav Evol 91:136–147PubMedCrossRef Bruner E (2018a) Human paleoneurology and the evolution of the parietal cortex. Brain Behav Evol 91:136–147PubMedCrossRef
go back to reference Bruner E (2018b) The brain, the braincase, and the morphospace. In: Bruner E, Ogihara N, Tanabe HC (eds) Digital endocasts—from skulls to brains. Springer, Tokyo, pp 93–114CrossRef Bruner E (2018b) The brain, the braincase, and the morphospace. In: Bruner E, Ogihara N, Tanabe HC (eds) Digital endocasts—from skulls to brains. Springer, Tokyo, pp 93–114CrossRef
go back to reference Bruner E, Iriki A (2016) Extending mind, visuospatial integration, and the evolution of the parietal lobes in the human genus. Quat Int 405:98–110CrossRef Bruner E, Iriki A (2016) Extending mind, visuospatial integration, and the evolution of the parietal lobes in the human genus. Quat Int 405:98–110CrossRef
go back to reference Bruner E, Rangel de Lázaro G, de la Cuétara JM, Martín-Loeches M, Colom R, Jacobs HIL (2014) Midsagittal brain variation and MRI shape analysis of the precuneus in adult individuals. J Anat 224:367–376PubMedPubMedCentralCrossRef Bruner E, Rangel de Lázaro G, de la Cuétara JM, Martín-Loeches M, Colom R, Jacobs HIL (2014) Midsagittal brain variation and MRI shape analysis of the precuneus in adult individuals. J Anat 224:367–376PubMedPubMedCentralCrossRef
go back to reference Bruner E, Román FJ, de la Cuétara JM, Martin-Loeches M, Colom R (2015a) Cortical surface area and cortical thickness in the precuneus of adult humans. Neuroscience 286:345–352PubMedCrossRef Bruner E, Román FJ, de la Cuétara JM, Martin-Loeches M, Colom R (2015a) Cortical surface area and cortical thickness in the precuneus of adult humans. Neuroscience 286:345–352PubMedCrossRef
go back to reference Bruner E, Amano H, de la Cuétara JM, Ogihara N (2015b) The brain and the braincase: a spatial analysis on the midsagittal profile in adult humans. J Anat 227:268–276PubMedPubMedCentralCrossRef Bruner E, Amano H, de la Cuétara JM, Ogihara N (2015b) The brain and the braincase: a spatial analysis on the midsagittal profile in adult humans. J Anat 227:268–276PubMedPubMedCentralCrossRef
go back to reference Bruner E, Preuss T, Chen X, Rilling J (2017a) Evidence for expansion of the precuneus in human evolution. Brain Struct Funct 222:1053–1060PubMedCrossRef Bruner E, Preuss T, Chen X, Rilling J (2017a) Evidence for expansion of the precuneus in human evolution. Brain Struct Funct 222:1053–1060PubMedCrossRef
go back to reference Bruner E, Pereira-Pedro AS, Chen X, Rilling JK (2017b) Precuneus proportions and cortical folding: a morphometric evaluation on a racially diverse human sample. Ann Anat 211:120–128PubMedCrossRef Bruner E, Pereira-Pedro AS, Chen X, Rilling JK (2017b) Precuneus proportions and cortical folding: a morphometric evaluation on a racially diverse human sample. Ann Anat 211:120–128PubMedCrossRef
go back to reference Bruner E, Esteve-Altava B, Rasskin-Gutman D (2018a) Networking brains: modeling spatial relationships of the cerebral cortex. In: Bruner E, Ogihara N, Tanabe HC (eds) Digital endocasts—from skulls to brains. Springer, Tokyo, pp 191–204CrossRef Bruner E, Esteve-Altava B, Rasskin-Gutman D (2018a) Networking brains: modeling spatial relationships of the cerebral cortex. In: Bruner E, Ogihara N, Tanabe HC (eds) Digital endocasts—from skulls to brains. Springer, Tokyo, pp 191–204CrossRef
go back to reference Bruner E, Fedato AP, Silva-Gago M, Alonso-Alcalde R, Terradillos-Bernal M, Fernández-Durantes MA, Martín-Guerra E (2018b) Cognitive archaeology, body cognition, and hand–tool interaction. Progr Brain Res 238:325–345CrossRef Bruner E, Fedato AP, Silva-Gago M, Alonso-Alcalde R, Terradillos-Bernal M, Fernández-Durantes MA, Martín-Guerra E (2018b) Cognitive archaeology, body cognition, and hand–tool interaction. Progr Brain Res 238:325–345CrossRef
go back to reference Bruner E, Esteve-Altava B, Rasskin-Gutman D (2019) A network approach to brain form, cortical topology and human evolution. Brain Struct Funct 224:2231–2245PubMedCrossRef Bruner E, Esteve-Altava B, Rasskin-Gutman D (2019) A network approach to brain form, cortical topology and human evolution. Brain Struct Funct 224:2231–2245PubMedCrossRef
go back to reference Buckner RL, Andrews-Hanna JR, Schacter DL (2008) The brain’s default network: anatomy, function, and relevance to disease. Ann N Y Acad Sci 1124:1–38CrossRefPubMed Buckner RL, Andrews-Hanna JR, Schacter DL (2008) The brain’s default network: anatomy, function, and relevance to disease. Ann N Y Acad Sci 1124:1–38CrossRefPubMed
go back to reference Bzdok D, Heeger A, Langner R, Laird AR, Fox PT, Palomero-Gallagher N, Vogt BA, Zilles K, Eickhoff SB (2015) Subspecialization in the human posterior medial cortex. Neuroimage 106:55–71PubMedCrossRef Bzdok D, Heeger A, Langner R, Laird AR, Fox PT, Palomero-Gallagher N, Vogt BA, Zilles K, Eickhoff SB (2015) Subspecialization in the human posterior medial cortex. Neuroimage 106:55–71PubMedCrossRef
go back to reference Caminiti R, Innocenti GM, Battaglia-Mayer A (2015) Organization and evolution of parieto-frontal processing streams in macaque monkeys and humans. Neurosci Biobehav Rev 56:73–96PubMedCrossRef Caminiti R, Innocenti GM, Battaglia-Mayer A (2015) Organization and evolution of parieto-frontal processing streams in macaque monkeys and humans. Neurosci Biobehav Rev 56:73–96PubMedCrossRef
go back to reference Cavanna AE, Trimble MR (2006) The precuneus: a review of its functional anatomy and behavioural correlates. Brain 129:564–583CrossRefPubMed Cavanna AE, Trimble MR (2006) The precuneus: a review of its functional anatomy and behavioural correlates. Brain 129:564–583CrossRefPubMed
go back to reference Chamberlain R, McManus IC, Brunswick N, Rankin Q, Riley H, Kanai R (2014) Drawing on the right side of the brain: a voxel-based morphometry analysis of observational drawing. Neuroimage 96:167–173PubMedCrossRef Chamberlain R, McManus IC, Brunswick N, Rankin Q, Riley H, Kanai R (2014) Drawing on the right side of the brain: a voxel-based morphometry analysis of observational drawing. Neuroimage 96:167–173PubMedCrossRef
go back to reference Cunningham SI, Tomasi D, Volkow ND (2017) Structural and functional connectivity of the precuneus and thalamus to the default mode network. Hum Brain Map 38:938–956CrossRef Cunningham SI, Tomasi D, Volkow ND (2017) Structural and functional connectivity of the precuneus and thalamus to the default mode network. Hum Brain Map 38:938–956CrossRef
go back to reference Fransson P, Marrelec G (2008) The precuneus/posterior cingulate cortex plays a pivotal role in the default mode network: evidence from a partial correlation network analysis. Neuroimage 42:1178–1184PubMedCrossRef Fransson P, Marrelec G (2008) The precuneus/posterior cingulate cortex plays a pivotal role in the default mode network: evidence from a partial correlation network analysis. Neuroimage 42:1178–1184PubMedCrossRef
go back to reference Gamberini M, Passarelli L, Fattori P, Galletti C (2020a) Structural connectivity and functional properties of the macaque superior parietal lobule. Brain Struct Funct 225:1349–1367PubMedCrossRef Gamberini M, Passarelli L, Fattori P, Galletti C (2020a) Structural connectivity and functional properties of the macaque superior parietal lobule. Brain Struct Funct 225:1349–1367PubMedCrossRef
go back to reference Gamberini M, Passarelli L, Impieri D, Worthy KH, Burman KJ, Fattori P, Galletti C, Rosa MGP, Bakola S (2020b) Thalamic afferents emphasize the different functions of macaque precuneate areas. Brain Struct Funct 225:853–870PubMedCrossRef Gamberini M, Passarelli L, Impieri D, Worthy KH, Burman KJ, Fattori P, Galletti C, Rosa MGP, Bakola S (2020b) Thalamic afferents emphasize the different functions of macaque precuneate areas. Brain Struct Funct 225:853–870PubMedCrossRef
go back to reference Goldring AB, Krubitzer LA (2017) Evolution of the parietal cortex in mammals: from manipulation to tool use. In: Kaas J (ed) Evolution of nervous systems, vol 3, 2nd edn. Elsevier, Oxford, pp 259–286CrossRef Goldring AB, Krubitzer LA (2017) Evolution of the parietal cortex in mammals: from manipulation to tool use. In: Kaas J (ed) Evolution of nervous systems, vol 3, 2nd edn. Elsevier, Oxford, pp 259–286CrossRef
go back to reference Gómez-Robles A, Reyes LD, Sherwood CC (2018) Landmarking brains. In: Bruner E, Ogihara N, Tanabe HC (eds) Digital endocasts—from skulls to brains. Springer, Tokyo, pp 115–126CrossRef Gómez-Robles A, Reyes LD, Sherwood CC (2018) Landmarking brains. In: Bruner E, Ogihara N, Tanabe HC (eds) Digital endocasts—from skulls to brains. Springer, Tokyo, pp 115–126CrossRef
go back to reference Goulas A, Bastiani M, Bezgin G, Uylings HB, Roebroeck A, Stiers P (2014) Comparative analysis of the macroscale structural connectivity in the macaque and human brain. PLoS Comput Biol 10:e1003529PubMedPubMedCentralCrossRef Goulas A, Bastiani M, Bezgin G, Uylings HB, Roebroeck A, Stiers P (2014) Comparative analysis of the macroscale structural connectivity in the macaque and human brain. PLoS Comput Biol 10:e1003529PubMedPubMedCentralCrossRef
go back to reference Gray JR, Chabris CF, Braver TS (2003) Neural mechanisms of general fluid intelligence. Nat Neurosci 6:316–322PubMedCrossRef Gray JR, Chabris CF, Braver TS (2003) Neural mechanisms of general fluid intelligence. Nat Neurosci 6:316–322PubMedCrossRef
go back to reference Gunz P, Harvati K (2007) The Neanderthal “chignon”: variation, integration, and homology. J Hum Evol 52:262–274PubMedCrossRef Gunz P, Harvati K (2007) The Neanderthal “chignon”: variation, integration, and homology. J Hum Evol 52:262–274PubMedCrossRef
go back to reference Hammer Ø, Harper DAT, Ryan PD (2001) PAST: paleontological statistics software package for education and data analysis. Palaentol Electron 4:1–9 Hammer Ø, Harper DAT, Ryan PD (2001) PAST: paleontological statistics software package for education and data analysis. Palaentol Electron 4:1–9
go back to reference Heed T, Buchholz VN, Engel AK, Röder B (2015) Tactile remapping: from coordinate transformation to integration in sensorimotor processing. Trends Cogn Sci 19:251–258PubMedCrossRef Heed T, Buchholz VN, Engel AK, Röder B (2015) Tactile remapping: from coordinate transformation to integration in sensorimotor processing. Trends Cogn Sci 19:251–258PubMedCrossRef
go back to reference Huang Y, Hullfish J, De Ridder D, Vanneste S (2019) Meta-analysis of functional subdivisions within human posteromedial cortex. Brain Struct Funct 224:435–452PubMedCrossRef Huang Y, Hullfish J, De Ridder D, Vanneste S (2019) Meta-analysis of functional subdivisions within human posteromedial cortex. Brain Struct Funct 224:435–452PubMedCrossRef
go back to reference Huntenburg JM, Bazin PL, Margulies DS (2017) Large-scale gradients in human cortical organization. Trends Cogn Sci 22:21–31PubMedCrossRef Huntenburg JM, Bazin PL, Margulies DS (2017) Large-scale gradients in human cortical organization. Trends Cogn Sci 22:21–31PubMedCrossRef
go back to reference Impieri D, Zilles K, Niu M, Rapan L, Schubert N, Galletti C, Palomero-Gallagher N (2019) Receptor density pattern confirms and enhances the anatomic–functional features of the macaque superior parietal lobule areas. Brain Struct Funct 224:2733–2756PubMedPubMedCentralCrossRef Impieri D, Zilles K, Niu M, Rapan L, Schubert N, Galletti C, Palomero-Gallagher N (2019) Receptor density pattern confirms and enhances the anatomic–functional features of the macaque superior parietal lobule areas. Brain Struct Funct 224:2733–2756PubMedPubMedCentralCrossRef
go back to reference Jung RE, Haier RJ (2007) The parieto-frontal integration theory (P-FIT) of intelligence: converging neuroimaging evidence. Behav Brain Sci 30:135–154PubMedCrossRef Jung RE, Haier RJ (2007) The parieto-frontal integration theory (P-FIT) of intelligence: converging neuroimaging evidence. Behav Brain Sci 30:135–154PubMedCrossRef
go back to reference Kaas JH, Qi HX, Stepniewska I (2017) Evolution of the parietal-frontal networks in primates. In: Kaas J (ed) Evolution of nervous systems, vol 3, 2nd edn. Elsevier, Oxford, pp 287–297CrossRef Kaas JH, Qi HX, Stepniewska I (2017) Evolution of the parietal-frontal networks in primates. In: Kaas J (ed) Evolution of nervous systems, vol 3, 2nd edn. Elsevier, Oxford, pp 287–297CrossRef
go back to reference Kastner S, Chen Q, Jeong SK, Mruczek REB (2017) A brief comparative review of primate posterior parietal cortex: a novel hypothesis on the human toolmaker. Neuropsychology 105:123–134CrossRef Kastner S, Chen Q, Jeong SK, Mruczek REB (2017) A brief comparative review of primate posterior parietal cortex: a novel hypothesis on the human toolmaker. Neuropsychology 105:123–134CrossRef
go back to reference Klingenberg CP (2011) MorphoJ: an integrated software package for geometric morphometrics. Mol Ecol Resour 11:353–357PubMedCrossRef Klingenberg CP (2011) MorphoJ: an integrated software package for geometric morphometrics. Mol Ecol Resour 11:353–357PubMedCrossRef
go back to reference Koch G, Bonnì S, Pellicciari MC et al (2018) Transcranial magnetic stimulation of the precuneus enhances memory and neural activity in prodromal Alzheimer’s disease. Neuroimage 169:302–311PubMedCrossRef Koch G, Bonnì S, Pellicciari MC et al (2018) Transcranial magnetic stimulation of the precuneus enhances memory and neural activity in prodromal Alzheimer’s disease. Neuroimage 169:302–311PubMedCrossRef
go back to reference Lee KH, Choi YY, Gray JR, Cho SH, Chae JH, Lee S, Kim K (2006) Neural correlates of superior intelligence: stronger recruitment of posterior parietal cortex. Neuroimage 29:578–586PubMedCrossRef Lee KH, Choi YY, Gray JR, Cho SH, Chae JH, Lee S, Kim K (2006) Neural correlates of superior intelligence: stronger recruitment of posterior parietal cortex. Neuroimage 29:578–586PubMedCrossRef
go back to reference Lieberman DE, Ross C, Ravosa M (2000) The primate cranial base: ontogeny function and integration. Yrb Phys Anthropol 43:117–169CrossRef Lieberman DE, Ross C, Ravosa M (2000) The primate cranial base: ontogeny function and integration. Yrb Phys Anthropol 43:117–169CrossRef
go back to reference Maldonado IL, Mandonnet E, Duffau H (2012) Dorsal fronto-parietal connections of the human brain: a fiber dissection study of their composition and anatomical relationships. Anat Rec 295:187–195CrossRef Maldonado IL, Mandonnet E, Duffau H (2012) Dorsal fronto-parietal connections of the human brain: a fiber dissection study of their composition and anatomical relationships. Anat Rec 295:187–195CrossRef
go back to reference Marcus DS, Wang TH, Parker J, Csernansky JG, Morris JC, Buckner RL (2007) Open access series of imaging studies (OASIS): cross-sectional MRI data in young, middle aged, nondemented, and demented older adults. J Cogn Neurosci 19:1498–1507PubMedCrossRef Marcus DS, Wang TH, Parker J, Csernansky JG, Morris JC, Buckner RL (2007) Open access series of imaging studies (OASIS): cross-sectional MRI data in young, middle aged, nondemented, and demented older adults. J Cogn Neurosci 19:1498–1507PubMedCrossRef
go back to reference Margulies DS, Vincent JL, Kelly C, Lohmann G, Uddin LQ, Biswal BB, Villringer A, Castellanos FX, Milham MP, Petrides M (2009) Precuneus shares intrinsic functional architecture in humans and monkeys. Proc Natl Acad Sci USA 106:20069–20074PubMedCrossRefPubMedCentral Margulies DS, Vincent JL, Kelly C, Lohmann G, Uddin LQ, Biswal BB, Villringer A, Castellanos FX, Milham MP, Petrides M (2009) Precuneus shares intrinsic functional architecture in humans and monkeys. Proc Natl Acad Sci USA 106:20069–20074PubMedCrossRefPubMedCentral
go back to reference Miller LE, Montroni L, Koun E, Salemme R, Hayward V, Farnè A (2018) Sensing with tools extends somatosensory processing beyond the body. Nature 561:239PubMedCrossRef Miller LE, Montroni L, Koun E, Salemme R, Hayward V, Farnè A (2018) Sensing with tools extends somatosensory processing beyond the body. Nature 561:239PubMedCrossRef
go back to reference Miller LE, Fabio C, Ravenda V, Bahmad S, Koun E, Salemme R, Luauté J, Bolognini N, Hayward V, Farnè A (2019) Somatosensory cortex efficiently processes touch located beyond the body. Curr Biol 29:4276–4283PubMedCrossRef Miller LE, Fabio C, Ravenda V, Bahmad S, Koun E, Salemme R, Luauté J, Bolognini N, Hayward V, Farnè A (2019) Somatosensory cortex efficiently processes touch located beyond the body. Curr Biol 29:4276–4283PubMedCrossRef
go back to reference Parvizi J, Van Hoesen GW, Buckwalter J, Damasio A (2006) Neural connections of the posteromedial cortex in the macaque. Proc Natl Acad Sci USA 103:1563–1568PubMedCrossRefPubMedCentral Parvizi J, Van Hoesen GW, Buckwalter J, Damasio A (2006) Neural connections of the posteromedial cortex in the macaque. Proc Natl Acad Sci USA 103:1563–1568PubMedCrossRefPubMedCentral
go back to reference Passarelli L, Rosa MG, Bakola S, Gamberini M, Worthy KH, Fattori P, Galletti C (2018) Uniformity and diversity of cortical projections to precuneate areas in the macaque monkey: what defines area PGm? Cereb Cortex 28:1700–1717PubMedCrossRef Passarelli L, Rosa MG, Bakola S, Gamberini M, Worthy KH, Fattori P, Galletti C (2018) Uniformity and diversity of cortical projections to precuneate areas in the macaque monkey: what defines area PGm? Cereb Cortex 28:1700–1717PubMedCrossRef
go back to reference Pereira-Pedro AS, Bruner E (2016) Sulcal pattern, extension, and morphology of the precuneus in adult humans. Ann Anat 208:85–93PubMedCrossRef Pereira-Pedro AS, Bruner E (2016) Sulcal pattern, extension, and morphology of the precuneus in adult humans. Ann Anat 208:85–93PubMedCrossRef
go back to reference Pereira-Pedro AS, Rilling JL, Chen X, Preuss TM, Bruner E (2017) Midsagittal brain variation among non-human primates: insights into evolutionary expansion of the human precuneus. Brain Behav Evol 90:255–263PubMedCrossRef Pereira-Pedro AS, Rilling JL, Chen X, Preuss TM, Bruner E (2017) Midsagittal brain variation among non-human primates: insights into evolutionary expansion of the human precuneus. Brain Behav Evol 90:255–263PubMedCrossRef
go back to reference Pereira-Pedro AS, Bruner E, Gunz P, Neubauer S (2020) A morphometric comparison of the parietal lobe in modern humans and Neanderthals. J Hum Evol 142:102770PubMedCrossRef Pereira-Pedro AS, Bruner E, Gunz P, Neubauer S (2020) A morphometric comparison of the parietal lobe in modern humans and Neanderthals. J Hum Evol 142:102770PubMedCrossRef
go back to reference Scheperjans F, Eickhoff SB, Hömke L, Mohlberg H, Hermann K, Amunts K, Zilles K (2008) Probabilistic maps, morphometry, and variability of cytoarchitectonic areas in the human superior parietal cortex. Cereb Cortex 18:2141–2157PubMedPubMedCentralCrossRef Scheperjans F, Eickhoff SB, Hömke L, Mohlberg H, Hermann K, Amunts K, Zilles K (2008) Probabilistic maps, morphometry, and variability of cytoarchitectonic areas in the human superior parietal cortex. Cereb Cortex 18:2141–2157PubMedPubMedCentralCrossRef
go back to reference Schneider CA, Rasband WS, Eliceiri KW (2012) NIH Image to Image J: 25 years of image analysis. Nat Meth 9:671–675CrossRef Schneider CA, Rasband WS, Eliceiri KW (2012) NIH Image to Image J: 25 years of image analysis. Nat Meth 9:671–675CrossRef
go back to reference Tanaka S, Kirino E (2017) Reorganization of the thalamocortical network in musicians. Brain Res 1664:48–54PubMedCrossRef Tanaka S, Kirino E (2017) Reorganization of the thalamocortical network in musicians. Brain Res 1664:48–54PubMedCrossRef
go back to reference Vaishnavi SN, Vlassenko AG, Rundle MM, Snyder AZ, Mintun MA, Raichle ME (2010) Regional aerobic glycolysis in the human brain. Proc Natl Acad Sci USA 107:17757–17762PubMedCrossRefPubMedCentral Vaishnavi SN, Vlassenko AG, Rundle MM, Snyder AZ, Mintun MA, Raichle ME (2010) Regional aerobic glycolysis in the human brain. Proc Natl Acad Sci USA 107:17757–17762PubMedCrossRefPubMedCentral
go back to reference Wenderoth N, Debaere F, Sunaert S, Swinnen SP (2005) The role of anterior cingulate cortex and precuneus in the coordination of motor behaviour. Eur J Neurosci 22:235–246PubMedCrossRef Wenderoth N, Debaere F, Sunaert S, Swinnen SP (2005) The role of anterior cingulate cortex and precuneus in the coordination of motor behaviour. Eur J Neurosci 22:235–246PubMedCrossRef
go back to reference Wu Y, Sun D, Wang Y, Ou WY, S, (2016) Segmentation of the cingulum bundle in the human brain: a new perspective based on DSI tractography and fiber dissection study. Front Neuroanat 10:84PubMedPubMedCentral Wu Y, Sun D, Wang Y, Ou WY, S, (2016) Segmentation of the cingulum bundle in the human brain: a new perspective based on DSI tractography and fiber dissection study. Front Neuroanat 10:84PubMedPubMedCentral
go back to reference Yang Z, Chang C, Xu T, Jiang L, Handwerker DA, Castellanos FX, Milham MP, Bandettini PA, Zuo XN (2014) Connectivity trajectory across lifespan differentiates the precuneus from the default network. Neuroimage 89:45–56PubMedCrossRef Yang Z, Chang C, Xu T, Jiang L, Handwerker DA, Castellanos FX, Milham MP, Bandettini PA, Zuo XN (2014) Connectivity trajectory across lifespan differentiates the precuneus from the default network. Neuroimage 89:45–56PubMedCrossRef
go back to reference Zelditch ML, Swidersky DL, Sheets HD, Fink WL (2004) Geometric morphometrics for biologists. Elsevier, San Diego Zelditch ML, Swidersky DL, Sheets HD, Fink WL (2004) Geometric morphometrics for biologists. Elsevier, San Diego
go back to reference Zhang S, Li CR (2012) Functional connectivity mapping of the human precuneus by resting state fMRI. Neuroimage 59:3548–3562PubMedCrossRef Zhang S, Li CR (2012) Functional connectivity mapping of the human precuneus by resting state fMRI. Neuroimage 59:3548–3562PubMedCrossRef
go back to reference Zilles K, Palomero-Gallagher N (2001) Cyto-, myelo-, and receptor architectonics of the human parietal cortex. Neuroimage 14:S8–S20CrossRefPubMed Zilles K, Palomero-Gallagher N (2001) Cyto-, myelo-, and receptor architectonics of the human parietal cortex. Neuroimage 14:S8–S20CrossRefPubMed
Metadata
Title
A metric survey on the sagittal and coronal morphology of the precuneus in adult humans
Authors
Emiliano Bruner
Sofia Pereira-Pedro
Publication date
01-12-2020
Publisher
Springer Berlin Heidelberg
Published in
Brain Structure and Function / Issue 9/2020
Print ISSN: 1863-2653
Electronic ISSN: 1863-2661
DOI
https://doi.org/10.1007/s00429-020-02152-0

Other articles of this Issue 9/2020

Brain Structure and Function 9/2020 Go to the issue