Skip to main content
Top
Published in: Neurological Sciences 4/2015

01-04-2015 | Review Article

Neural correlates of consciousness: what we know and what we have to learn!

Authors: Rocco Salvatore Calabrò, Alberto Cacciola, Placido Bramanti, Demetrio Milardi

Published in: Neurological Sciences | Issue 4/2015

Login to get access

Abstract

Consciousness is a multifaceted concept with two major components: awareness of environment and of self (i.e., the content of consciousness) and wakefulness (i.e., the level of consciousness). Medically speaking, consciousness is the state of the patient’s awareness of self and environment and his responsiveness to external stimulation and inner need. A basic understanding of consciousness and its neural correlates is of major importance for all clinicians, especially those involved with patients suffering from altered states of consciousness. To this end, in this review it is shown that consciousness is dependent on the brainstem and thalamus for arousal; that basic cognition is supported by recurrent electrical activity between the cortex and the thalamus at gamma band frequencies; and that some kind of working memory must, at least fleetingly, be present for awareness to occur. New advances in neuroimaging studies are also presented in order to better understand and demonstrate the neurophysiological basis of consciousness. In particular, recent functional magnetic resonance imaging studies have offered the possibility to measure directly and non-invasively normal and severely brain damaged subjects’ brain activity, whilst diffusion tensor imaging studies have allowed evaluating white matter integrity in normal subjects and patients with disorder of consciousness.
Literature
1.
go back to reference Zeman A (2006) What do we mean by “conscious” and “aware”? Neuropsychol Rehabil 16:356–376CrossRefPubMed Zeman A (2006) What do we mean by “conscious” and “aware”? Neuropsychol Rehabil 16:356–376CrossRefPubMed
2.
go back to reference Seth AK, Baars BJ, Edelman DB (2005) Criteria for consciousness in humans and other mammals. Conscious Cogn 14:119–139CrossRefPubMed Seth AK, Baars BJ, Edelman DB (2005) Criteria for consciousness in humans and other mammals. Conscious Cogn 14:119–139CrossRefPubMed
3.
go back to reference Young GB, Wijdicks EF (2008) Consciousness: its neurological relevance. Handb Clin Neurol 90:33–36CrossRefPubMed Young GB, Wijdicks EF (2008) Consciousness: its neurological relevance. Handb Clin Neurol 90:33–36CrossRefPubMed
5.
go back to reference Massimini M, Ferrarelli F, Sarasso S, Tononi G (2012) Cortical mechanisms of loss of consciousness:insight from TMS/EEG studies. Arch Ital Biol 150:44–55PubMed Massimini M, Ferrarelli F, Sarasso S, Tononi G (2012) Cortical mechanisms of loss of consciousness:insight from TMS/EEG studies. Arch Ital Biol 150:44–55PubMed
6.
go back to reference Tononi G (2005) Consciousness, information integration, and the brain. Prog Brain Res 150:109–126CrossRefPubMed Tononi G (2005) Consciousness, information integration, and the brain. Prog Brain Res 150:109–126CrossRefPubMed
7.
go back to reference Moruzzi G, Magoun HW (1949) Brain stem reticular formation and activation of the EEG. Electroencephalogr Clin Neurophysiol 1(4):455–473CrossRefPubMed Moruzzi G, Magoun HW (1949) Brain stem reticular formation and activation of the EEG. Electroencephalogr Clin Neurophysiol 1(4):455–473CrossRefPubMed
8.
go back to reference Neylan TC (1995) Physiology of arousal: moruzzi and Magoun’s ascending reticular activating system. J Neuropsychiatry Clin Neurosci 7(2):250CrossRefPubMed Neylan TC (1995) Physiology of arousal: moruzzi and Magoun’s ascending reticular activating system. J Neuropsychiatry Clin Neurosci 7(2):250CrossRefPubMed
9.
go back to reference Laureys S (2005) The neural correlate of (un)awareness: lessons from the vegetative state. Trends Cogn Sci 9(12):556–559CrossRefPubMed Laureys S (2005) The neural correlate of (un)awareness: lessons from the vegetative state. Trends Cogn Sci 9(12):556–559CrossRefPubMed
10.
go back to reference Palmiter RD (2011) Dopamine signaling as a neural correlate of consciousness. Neuroscience 198:213–220CrossRefPubMed Palmiter RD (2011) Dopamine signaling as a neural correlate of consciousness. Neuroscience 198:213–220CrossRefPubMed
11.
go back to reference Sumner P, Nachev P, Morris P, Peters AM, Jackson SR, Kennard C, Masun H (2007) Human medial frontal cortex mediates unconscious inhibition of voluntary action. Neuron 54(5):697–711PubMedCentralCrossRefPubMed Sumner P, Nachev P, Morris P, Peters AM, Jackson SR, Kennard C, Masun H (2007) Human medial frontal cortex mediates unconscious inhibition of voluntary action. Neuron 54(5):697–711PubMedCentralCrossRefPubMed
12.
go back to reference Corr PJ (2004) Reinforcement sensitivity theory and personality. Neurosci Biobehav Rev 28:317–332CrossRefPubMed Corr PJ (2004) Reinforcement sensitivity theory and personality. Neurosci Biobehav Rev 28:317–332CrossRefPubMed
13.
go back to reference Fuentes P, Barrós-Loscertales A, Bustamante JC, Rosell P, Costumero V, Ávila C (2012) Individual differences in the behavioral inhibition system are associated with orbitofrontal cortex and precuneus gray matter volume. Cogn Affect Behav Neurosci 12:491–498CrossRefPubMed Fuentes P, Barrós-Loscertales A, Bustamante JC, Rosell P, Costumero V, Ávila C (2012) Individual differences in the behavioral inhibition system are associated with orbitofrontal cortex and precuneus gray matter volume. Cogn Affect Behav Neurosci 12:491–498CrossRefPubMed
15.
go back to reference Edlow BL, Takahashi E, Wu O, Benner T, Dai G, Bu L, Grant PE, Greer DM, Greenberg SM, Kinney HC, Folkerth RD (2012) Neuroanatomic connectivity of the human ascending arousal system critical to consciousness and its disorders. J Neuropathol Exp Neurol 71(6):531–546PubMedCentralCrossRefPubMed Edlow BL, Takahashi E, Wu O, Benner T, Dai G, Bu L, Grant PE, Greer DM, Greenberg SM, Kinney HC, Folkerth RD (2012) Neuroanatomic connectivity of the human ascending arousal system critical to consciousness and its disorders. J Neuropathol Exp Neurol 71(6):531–546PubMedCentralCrossRefPubMed
16.
go back to reference Yeo SS, Chang PH, Jang SH (2013) The ascending reticular activating system from pontine reticular formation to the thalamus in the human brain. Front Hum Neurosci 25(7):416 Yeo SS, Chang PH, Jang SH (2013) The ascending reticular activating system from pontine reticular formation to the thalamus in the human brain. Front Hum Neurosci 25(7):416
17.
go back to reference Schiff ND (2008) Central thalamic contributions to arousal regulation and neurological disorders of consciousness. Ann N Y Acad Sci 1129:105–118CrossRefPubMed Schiff ND (2008) Central thalamic contributions to arousal regulation and neurological disorders of consciousness. Ann N Y Acad Sci 1129:105–118CrossRefPubMed
18.
go back to reference Ward LM (2011) The thalamic dynamic core theory of conscious experience. Conscious Cogn 20(2):464–486CrossRefPubMed Ward LM (2011) The thalamic dynamic core theory of conscious experience. Conscious Cogn 20(2):464–486CrossRefPubMed
19.
go back to reference Chow HM, Horovitz SG, Carr WS, Picchioni D, Coddington N, Fukunaga M, Xu Y, Balkin TJ, Duyn JH, Braun AR (2013) Rhythmic alternating patterns of brain activity distinguish rapid eye movement sleep from other states of consciousness. Proc Natl Acad Sci USA 110(25):10300–10305PubMedCentralCrossRefPubMed Chow HM, Horovitz SG, Carr WS, Picchioni D, Coddington N, Fukunaga M, Xu Y, Balkin TJ, Duyn JH, Braun AR (2013) Rhythmic alternating patterns of brain activity distinguish rapid eye movement sleep from other states of consciousness. Proc Natl Acad Sci USA 110(25):10300–10305PubMedCentralCrossRefPubMed
20.
go back to reference Sattin D, Covelli V, Pagani M, Giovannetti AM, Raggi A, Meucci P, Cerniauskaite M, Quintas R, Schiavolin S, Leonardi M (2014) Do diagnostic differences between vegetative state and minimally conscious state patients correspond to differences in functioning and disability profiles? Results from an observational multi-center study on patients with DOC. Eur J Phys Rehabil MED 50:1–2 Sattin D, Covelli V, Pagani M, Giovannetti AM, Raggi A, Meucci P, Cerniauskaite M, Quintas R, Schiavolin S, Leonardi M (2014) Do diagnostic differences between vegetative state and minimally conscious state patients correspond to differences in functioning and disability profiles? Results from an observational multi-center study on patients with DOC. Eur J Phys Rehabil MED 50:1–2
21.
go back to reference Andronache A, Rosazza C, Sattin D, Leonardi M, D’Incerti L, Minati L (2013) Impact of functional MRI data preprocessing pipeline on default-mode network detectability in patients with disorders of consciousness. Front Neuroinform 22(7):16 Andronache A, Rosazza C, Sattin D, Leonardi M, D’Incerti L, Minati L (2013) Impact of functional MRI data preprocessing pipeline on default-mode network detectability in patients with disorders of consciousness. Front Neuroinform 22(7):16
22.
go back to reference Jalewa J, Joshi A, McGinnity TM, Prasad G, Wong-Lin KF, Hölscher C (2014) Neural circuit interactions between the dorsal raphe nucleus and the lateral hypothalamus: an experimental and computational study. PLoS One 9(2):e88003PubMedCentralCrossRefPubMed Jalewa J, Joshi A, McGinnity TM, Prasad G, Wong-Lin KF, Hölscher C (2014) Neural circuit interactions between the dorsal raphe nucleus and the lateral hypothalamus: an experimental and computational study. PLoS One 9(2):e88003PubMedCentralCrossRefPubMed
23.
go back to reference Boly M, Seth AK, Wilke M, Ingmundson P, Baars B, Laureys S, Edelman DB, Tsuchiya N (2013) Consciousness in humans and non-human animals: recent advances and future directions. Front Psychol 4:625PubMedCentralCrossRefPubMed Boly M, Seth AK, Wilke M, Ingmundson P, Baars B, Laureys S, Edelman DB, Tsuchiya N (2013) Consciousness in humans and non-human animals: recent advances and future directions. Front Psychol 4:625PubMedCentralCrossRefPubMed
24.
go back to reference Woolf NJ, Butcher LL (2011) Cholinergic systems mediate action from movement to higher consciousness. Behav Brain Res 221(2):488–498CrossRefPubMed Woolf NJ, Butcher LL (2011) Cholinergic systems mediate action from movement to higher consciousness. Behav Brain Res 221(2):488–498CrossRefPubMed
25.
go back to reference Lucas-Meunier E, Fossier P, Baux G, Amar M (2003) Cholinergic modulation of the cortical neuronal network. Pflugers Arch 446(1):17–29PubMed Lucas-Meunier E, Fossier P, Baux G, Amar M (2003) Cholinergic modulation of the cortical neuronal network. Pflugers Arch 446(1):17–29PubMed
26.
go back to reference Troiani V, Schultz RT (2013) Amygdala, pulvinar, and inferior parietal cortex contribute to early processing of faces without awareness. Front Hum Neurosci 6(7):241 Troiani V, Schultz RT (2013) Amygdala, pulvinar, and inferior parietal cortex contribute to early processing of faces without awareness. Front Hum Neurosci 6(7):241
27.
go back to reference Williams LM, Liddell BJ, Kemp AH, Bryant RA, Meares RA, Peduto AS, Gordon E (2006) Amygdala-prefrontal dissociation of subliminal and supraliminal fear. Hum Brain Mapp 27(8):652–661CrossRefPubMed Williams LM, Liddell BJ, Kemp AH, Bryant RA, Meares RA, Peduto AS, Gordon E (2006) Amygdala-prefrontal dissociation of subliminal and supraliminal fear. Hum Brain Mapp 27(8):652–661CrossRefPubMed
29.
go back to reference Amting JM, Greening SG, Mitchell DG (2010) Multiple mechanisms of consciousness: the neural correlates of emotional awareness. J Neurosci 30(30):10039–10047CrossRefPubMed Amting JM, Greening SG, Mitchell DG (2010) Multiple mechanisms of consciousness: the neural correlates of emotional awareness. J Neurosci 30(30):10039–10047CrossRefPubMed
30.
go back to reference Robinson S, Basso G, Soldati N, Sailer U, Jovicich J, Bruzzone L, Kryspin-Exner I, Bauer H, Moser E (2009) A resting state network in the motor control circuit of the basal ganglia. BMC Neurosci 10:137PubMedCentralCrossRefPubMed Robinson S, Basso G, Soldati N, Sailer U, Jovicich J, Bruzzone L, Kryspin-Exner I, Bauer H, Moser E (2009) A resting state network in the motor control circuit of the basal ganglia. BMC Neurosci 10:137PubMedCentralCrossRefPubMed
31.
go back to reference Cotterill RM (2001) Cooperation of the basal ganglia, cerebellum, sensory cerebrum and hippocampus: possible implications for cognition, consciousness, intelligence and creativity. Prog Neurobiol 64(1):1–33CrossRefPubMed Cotterill RM (2001) Cooperation of the basal ganglia, cerebellum, sensory cerebrum and hippocampus: possible implications for cognition, consciousness, intelligence and creativity. Prog Neurobiol 64(1):1–33CrossRefPubMed
32.
go back to reference Baars BJ, Ramsoy TZ, Laureys S (2003) Brain, conscious experience and the observing self. Trends Neurosci 26:671–675CrossRefPubMed Baars BJ, Ramsoy TZ, Laureys S (2003) Brain, conscious experience and the observing self. Trends Neurosci 26:671–675CrossRefPubMed
34.
go back to reference Dietrich A (2003) Functional neuroanatomy of altered states of consciousness: the transient hypofrontality hypothesis. Conscious Cogn 12(2):231–256CrossRefPubMed Dietrich A (2003) Functional neuroanatomy of altered states of consciousness: the transient hypofrontality hypothesis. Conscious Cogn 12(2):231–256CrossRefPubMed
36.
go back to reference Qin P, Di H, Liu Y, Yu S, Gong Q, Duncan N, Weng X, Laureys S, Northoff G (2010) Anterior cingulate activity and the self in disorders of consciousness. Hum Brain Mapp 31(12):1993–2002CrossRefPubMed Qin P, Di H, Liu Y, Yu S, Gong Q, Duncan N, Weng X, Laureys S, Northoff G (2010) Anterior cingulate activity and the self in disorders of consciousness. Hum Brain Mapp 31(12):1993–2002CrossRefPubMed
37.
go back to reference Cavanna AE, Trimble MR (2006) The precuneus: a review of its functional anatomy and behavioural correlates. Brain 129(pt 3):564–583CrossRefPubMed Cavanna AE, Trimble MR (2006) The precuneus: a review of its functional anatomy and behavioural correlates. Brain 129(pt 3):564–583CrossRefPubMed
38.
go back to reference Cavanna AE (2007) The precuneus and consciousness. CNS Spectr 12:545–552PubMed Cavanna AE (2007) The precuneus and consciousness. CNS Spectr 12:545–552PubMed
39.
go back to reference Vogt BA, Laureys S (2005) Posterior cingulate, precuneal and retrosplenial cortices: cytology and components of the neural network correlates of consciousness. Prog Brain Res 150:205–217PubMedCentralCrossRefPubMed Vogt BA, Laureys S (2005) Posterior cingulate, precuneal and retrosplenial cortices: cytology and components of the neural network correlates of consciousness. Prog Brain Res 150:205–217PubMedCentralCrossRefPubMed
40.
go back to reference Binder JR, Frost JA, Hammeke TA, Bellgowan PSF, Rao SM, Cox RW (1999) Conceptual processing during the conscious resting state. A functional MRI study. J Cogn Neurosci 11:80–93CrossRefPubMed Binder JR, Frost JA, Hammeke TA, Bellgowan PSF, Rao SM, Cox RW (1999) Conceptual processing during the conscious resting state. A functional MRI study. J Cogn Neurosci 11:80–93CrossRefPubMed
41.
go back to reference Crone JS, Soddu A, Höller Y, Vanhaudenhuyse A, Schurz M, Bergmann J, Schmid E, Trinka E, Laureys S, Kronbichler M (2014) Altered network properties of the fronto-parietal network and the thalamus in impaired consciousness. Neuroimage Clin 4:240–248PubMedCentralCrossRefPubMed Crone JS, Soddu A, Höller Y, Vanhaudenhuyse A, Schurz M, Bergmann J, Schmid E, Trinka E, Laureys S, Kronbichler M (2014) Altered network properties of the fronto-parietal network and the thalamus in impaired consciousness. Neuroimage Clin 4:240–248PubMedCentralCrossRefPubMed
42.
go back to reference Negrao BL, Viljoen M (2009) Neural correlates of consciousness. Afr J Psychiatry (Johannesbg) 12(4):265–269 Negrao BL, Viljoen M (2009) Neural correlates of consciousness. Afr J Psychiatry (Johannesbg) 12(4):265–269
43.
go back to reference Heine L, Soddu A, Gómez F, Vanhaudenhuyse A, Tshibanda L, Thonnard M, Charland-Verville V, Kirsch M, Laureys S, Demertzi A (2012) Resting state networks and consciousness: alterations of multiple resting state network connectivity in physiological, pharmacological, and pathological consciousness States. Front Psychol 3:295PubMedCentralCrossRefPubMed Heine L, Soddu A, Gómez F, Vanhaudenhuyse A, Tshibanda L, Thonnard M, Charland-Verville V, Kirsch M, Laureys S, Demertzi A (2012) Resting state networks and consciousness: alterations of multiple resting state network connectivity in physiological, pharmacological, and pathological consciousness States. Front Psychol 3:295PubMedCentralCrossRefPubMed
44.
go back to reference Bob P, Zimmerman EM, Hamilton EA, Sheftel JG, Bajo SD, Raboch J, Golla M, Konopka LM (2012) Conscious attention, meditation, and bilateral information transfer. Clin EEG Neurosci 44(1):39–43CrossRefPubMed Bob P, Zimmerman EM, Hamilton EA, Sheftel JG, Bajo SD, Raboch J, Golla M, Konopka LM (2012) Conscious attention, meditation, and bilateral information transfer. Clin EEG Neurosci 44(1):39–43CrossRefPubMed
46.
go back to reference Silva S, Alacoque X, Fourcade O, Samii K, Marque P, Woods R, Mazziotta J, Chollet F, Loubinoux I (2010) Wakefulness and loss of awareness: brain and brainstem interaction in the vegetative state. Neurology 74(4):313–320PubMedCentralCrossRefPubMed Silva S, Alacoque X, Fourcade O, Samii K, Marque P, Woods R, Mazziotta J, Chollet F, Loubinoux I (2010) Wakefulness and loss of awareness: brain and brainstem interaction in the vegetative state. Neurology 74(4):313–320PubMedCentralCrossRefPubMed
47.
go back to reference Laureys S, Goldman S, Phillips C, Van Bogaert P, Aerts J et al (1999) Impaired effective cortical connectivity in vegetative state: preliminary investigation using PET. Neuroimage 9(4):377–382CrossRefPubMed Laureys S, Goldman S, Phillips C, Van Bogaert P, Aerts J et al (1999) Impaired effective cortical connectivity in vegetative state: preliminary investigation using PET. Neuroimage 9(4):377–382CrossRefPubMed
48.
go back to reference Guldenmund P, Vanhaudenhuyse A, Boly M, Laureys S, Soddu A (2012) A default mode of brain function in altered states of consciousness. Arch Ital Biol 150(2–3):107–121PubMed Guldenmund P, Vanhaudenhuyse A, Boly M, Laureys S, Soddu A (2012) A default mode of brain function in altered states of consciousness. Arch Ital Biol 150(2–3):107–121PubMed
49.
go back to reference Levy DE, Sidtis JJ, Rottenberg DA, Jarden JO, Strother SC, Dhawan V et al (1897) Differences in cerebral blood flow and glucose utilization in vegetative versus locked-in patients. Ann Neurol 22(6):673–682CrossRef Levy DE, Sidtis JJ, Rottenberg DA, Jarden JO, Strother SC, Dhawan V et al (1897) Differences in cerebral blood flow and glucose utilization in vegetative versus locked-in patients. Ann Neurol 22(6):673–682CrossRef
50.
go back to reference Neuner I, Arrubla J, Werner CJ, Hitz K, Boers F, Kawohl W, Shah NJ (2014) The default mode network and eeg regional spectral power: a simultaneous fMRI-EEG Study. PLoS One 9(2): e88214PubMedCentralCrossRefPubMed Neuner I, Arrubla J, Werner CJ, Hitz K, Boers F, Kawohl W, Shah NJ (2014) The default mode network and eeg regional spectral power: a simultaneous fMRI-EEG Study. PLoS One 9(2): e88214PubMedCentralCrossRefPubMed
51.
go back to reference Vanhaudenhuyse A, Noirhomme Q, Tshibanda LJF, Bruno MA, Boveroux P, Schnakers C, Soddu A, Perlbarg V, Ledoux D, Brichant JF, Moonen G, Maquet P, Greicius MD, Laureys S, Boly M (2010) Default network connectivity reflects the level of consciousness in non-communicative brain-damaged patients. Brain 133:161–171PubMedCentralCrossRefPubMed Vanhaudenhuyse A, Noirhomme Q, Tshibanda LJF, Bruno MA, Boveroux P, Schnakers C, Soddu A, Perlbarg V, Ledoux D, Brichant JF, Moonen G, Maquet P, Greicius MD, Laureys S, Boly M (2010) Default network connectivity reflects the level of consciousness in non-communicative brain-damaged patients. Brain 133:161–171PubMedCentralCrossRefPubMed
52.
go back to reference Soddu A, Vanhaudenhuyse A, Demertzi A, Bruno MA, Tshibanda L, Di H, Boly M, Papa M, Laureys S, Noirhomme Q (2011) Resting state activity in patients with disorders of consciousness. Funct Neurol 26(1):37–43PubMedCentralPubMed Soddu A, Vanhaudenhuyse A, Demertzi A, Bruno MA, Tshibanda L, Di H, Boly M, Papa M, Laureys S, Noirhomme Q (2011) Resting state activity in patients with disorders of consciousness. Funct Neurol 26(1):37–43PubMedCentralPubMed
53.
go back to reference Cauda F, Micon BM, Sacco K et al (2009) Disrupted intrinsic functional connectivity in the vegetative state. J Neurol Neurosurg Psychiatry 80:9–431 Cauda F, Micon BM, Sacco K et al (2009) Disrupted intrinsic functional connectivity in the vegetative state. J Neurol Neurosurg Psychiatry 80:9–431
54.
go back to reference Di Perri C, Thibaut A, Heine L, Soddu A, Demertzi A, Laureys S (2014) Measuring consciousness in coma and related states. World J Radiol 6(8):589–597PubMedCentralCrossRefPubMed Di Perri C, Thibaut A, Heine L, Soddu A, Demertzi A, Laureys S (2014) Measuring consciousness in coma and related states. World J Radiol 6(8):589–597PubMedCentralCrossRefPubMed
55.
go back to reference Hein L, Soddu A, Gómez F, Vanhaudenhuyse A, Tshibanda L, Thonnard M, Charland-Verville V, Kirsch M, Laureys S, Demertzi A (2012) Resting state networks and consciousness: alterations of multiple resting state network connectivity in physiological, pharmacological, and pathological consciousness States. Front Psychol 3:295 Hein L, Soddu A, Gómez F, Vanhaudenhuyse A, Tshibanda L, Thonnard M, Charland-Verville V, Kirsch M, Laureys S, Demertzi A (2012) Resting state networks and consciousness: alterations of multiple resting state network connectivity in physiological, pharmacological, and pathological consciousness States. Front Psychol 3:295
56.
go back to reference Naci L, Cusack R, Anello M, Owen AM (2014) A common neural code for similar conscious experiences in different individuals. Proc Natl Acad Sci USA 111(39):14277–14282PubMedCentralCrossRefPubMed Naci L, Cusack R, Anello M, Owen AM (2014) A common neural code for similar conscious experiences in different individuals. Proc Natl Acad Sci USA 111(39):14277–14282PubMedCentralCrossRefPubMed
57.
go back to reference Voss HU, Uluc AM, Dyke JP, Watts R, Kobylarz RJ et al (2006) Possible axonal regrowth in late recovery from the minimally conscious state. J Clin Invest 116(7):2005–2011PubMedCentralCrossRefPubMed Voss HU, Uluc AM, Dyke JP, Watts R, Kobylarz RJ et al (2006) Possible axonal regrowth in late recovery from the minimally conscious state. J Clin Invest 116(7):2005–2011PubMedCentralCrossRefPubMed
58.
go back to reference Tollard E, Galanaud D, Perlbarg V, Sanchez-Pena P, Le Fur Y et al (2009) Experience of diffusion tensor imaging and 1H spectroscopy for outcome prediction in severe traumatic brain injury: preliminary results. Crit Care Med 37(4):1448–1455CrossRefPubMed Tollard E, Galanaud D, Perlbarg V, Sanchez-Pena P, Le Fur Y et al (2009) Experience of diffusion tensor imaging and 1H spectroscopy for outcome prediction in severe traumatic brain injury: preliminary results. Crit Care Med 37(4):1448–1455CrossRefPubMed
59.
go back to reference Perlbarg V, Puybasset L, Tollard E, Lehericy S, Benali H et al (2009) Relation between brain lesion location and clinical outcome in patients with severe traumatic brain injury: a diffusion tensor imaging study using voxel-based approaches. Hum Brain Mapp 30(12):3924–3933CrossRefPubMed Perlbarg V, Puybasset L, Tollard E, Lehericy S, Benali H et al (2009) Relation between brain lesion location and clinical outcome in patients with severe traumatic brain injury: a diffusion tensor imaging study using voxel-based approaches. Hum Brain Mapp 30(12):3924–3933CrossRefPubMed
60.
go back to reference Huisman TA, Schwamm LH, Schaefer PW, Koroshetz WJ, Shetty-Alva N et al (2004) Diffusion tensor imaging as potential biomarker of white matter injury in diffuse axonal injury. AJNR Am J Neuroradiol 25(3):370–376PubMed Huisman TA, Schwamm LH, Schaefer PW, Koroshetz WJ, Shetty-Alva N et al (2004) Diffusion tensor imaging as potential biomarker of white matter injury in diffuse axonal injury. AJNR Am J Neuroradiol 25(3):370–376PubMed
61.
go back to reference Xu J, Rasmussen IA, Lagopoulos J, Håberg A (2007) Diffuse axonal injury in severe traumatic brain injury visualized using high-resolution diffusion tensor imaging. J Neurotrauma 24(5):753–765CrossRefPubMed Xu J, Rasmussen IA, Lagopoulos J, Håberg A (2007) Diffuse axonal injury in severe traumatic brain injury visualized using high-resolution diffusion tensor imaging. J Neurotrauma 24(5):753–765CrossRefPubMed
62.
63.
go back to reference Schiff ND (2006) Multimodal neuroimaging approaches to disorders of consciousness. J Head Trauma Rehabil 21(5):388–397CrossRefPubMed Schiff ND (2006) Multimodal neuroimaging approaches to disorders of consciousness. J Head Trauma Rehabil 21(5):388–397CrossRefPubMed
64.
go back to reference Tshibanda L, Vanhaudenhuyse A, Galanaud D, Boly M, Laureys S, Puybasset L (2009) Magnetic resonance spectroscopy and diffusion tensor imaging in coma survivors: promises and pitfalls. Prog Brain Res 177:215–229CrossRefPubMed Tshibanda L, Vanhaudenhuyse A, Galanaud D, Boly M, Laureys S, Puybasset L (2009) Magnetic resonance spectroscopy and diffusion tensor imaging in coma survivors: promises and pitfalls. Prog Brain Res 177:215–229CrossRefPubMed
65.
go back to reference Gawryluk JR, D’Arcy RC, Connolly JF, Weaver DF (2010) Improving the clinical assessment of consciousness with advances in electrophysiological and neuroimaging techniques. BMC Neurol 10:11PubMedCentralCrossRefPubMed Gawryluk JR, D’Arcy RC, Connolly JF, Weaver DF (2010) Improving the clinical assessment of consciousness with advances in electrophysiological and neuroimaging techniques. BMC Neurol 10:11PubMedCentralCrossRefPubMed
66.
go back to reference Chang MC, Kim SH, Kim OL, Bai DS, Jang SH (2010) The relation between fornix injury and memory impairment in patients with diffuse axonal injury: a diffusion tensor imaging study. NeuroRehabilitation 26:347–353PubMed Chang MC, Kim SH, Kim OL, Bai DS, Jang SH (2010) The relation between fornix injury and memory impairment in patients with diffuse axonal injury: a diffusion tensor imaging study. NeuroRehabilitation 26:347–353PubMed
67.
go back to reference Puig J, Pedraza S, Blasco G, Daunis IEJ, Prats A, Prados F et al (2010) Wallerian degeneration in the corticospinal tract evaluated by diffusion tensor imaging correlates with motor deficit 30 days after middle cerebral artery ischemic stroke. AJNR Am J Neuroradiol 31:1324–1330CrossRefPubMed Puig J, Pedraza S, Blasco G, Daunis IEJ, Prats A, Prados F et al (2010) Wallerian degeneration in the corticospinal tract evaluated by diffusion tensor imaging correlates with motor deficit 30 days after middle cerebral artery ischemic stroke. AJNR Am J Neuroradiol 31:1324–1330CrossRefPubMed
68.
go back to reference Laouchedi M, Galanaud D, Delmaire C, Fernandez-Vidal S, Messé A, Mesmoudi S, Oulebsir Boumghar F, Pélégrini-Issac M, Puybasset L, Benali H, Perlbarg V (2014) Deafferentation in thalamic and pontine areas in severe traumatic brain injury. J. Neuroradiol doi 10:1016 Laouchedi M, Galanaud D, Delmaire C, Fernandez-Vidal S, Messé A, Mesmoudi S, Oulebsir Boumghar F, Pélégrini-Issac M, Puybasset L, Benali H, Perlbarg V (2014) Deafferentation in thalamic and pontine areas in severe traumatic brain injury. J. Neuroradiol doi 10:1016
69.
go back to reference Milardi D, Gaeta M, Bramanti P, Milazzo C, Finocchio G, Arrigo A, Santoro G, Trimarchi F, Quartarone A, Anastasi G (2013) Cortical and subcortical connections of the human claustrum revealed in vivo by constrained spherical deconvolution tractography. Cereb Cortex. doi:10.1093/cercor/bht231 PubMed Milardi D, Gaeta M, Bramanti P, Milazzo C, Finocchio G, Arrigo A, Santoro G, Trimarchi F, Quartarone A, Anastasi G (2013) Cortical and subcortical connections of the human claustrum revealed in vivo by constrained spherical deconvolution tractography. Cereb Cortex. doi:10.​1093/​cercor/​bht231 PubMed
70.
go back to reference Tournier JD, Calamante F, Connelly A (2007) Robust determination of the fibre orientation distribution in diffusion MRI: non-negativity constrained super-resolved spherical deconvolution. Neuroimage 35(4):1459–1472CrossRefPubMed Tournier JD, Calamante F, Connelly A (2007) Robust determination of the fibre orientation distribution in diffusion MRI: non-negativity constrained super-resolved spherical deconvolution. Neuroimage 35(4):1459–1472CrossRefPubMed
Metadata
Title
Neural correlates of consciousness: what we know and what we have to learn!
Authors
Rocco Salvatore Calabrò
Alberto Cacciola
Placido Bramanti
Demetrio Milardi
Publication date
01-04-2015
Publisher
Springer Milan
Published in
Neurological Sciences / Issue 4/2015
Print ISSN: 1590-1874
Electronic ISSN: 1590-3478
DOI
https://doi.org/10.1007/s10072-015-2072-x

Other articles of this Issue 4/2015

Neurological Sciences 4/2015 Go to the issue