Skip to main content
Erschienen in: Brain Topography 4/2018

07.02.2018 | Original Paper

Bridging the Gap Towards Awareness Detection in Disorders of Consciousness: An Experimental Study on the Mirror Neuron System

verfasst von: Antonino Naro, Rocco Salvatore Calabrò, Antonino Leo, Margherita Russo, Demetrio Milardi, Antonino Cannavò, Alfredo Manuli, Antonio Buda, Carmela Casella, Placido Bramanti, Alberto Cacciola, Alessia Bramanti

Erschienen in: Brain Topography | Ausgabe 4/2018

Einloggen, um Zugang zu erhalten

Abstract

Advanced functional neuroimaging approaches dealing with motor imagery have disclosed covert cognitive processes in patients with disorders of consciousness (DoC). However, motor impairment and cognitive-motor dissociation can bias such approaches. Fourteen patients with post-traumatic DoC and ten healthy controls (HC) were provided with three motor tasks related to mirror neuron system (MNS) activation (movement observation, movement execution, and passive motor imagery of a movement) while recording electroencephalographic (EEG) metrics [EEG power and Granger Casualty Index (GCI)] to detect residual signs of conscious awareness. The most relevant finding was that all HCs, all patients with Minimally Conscious State and one with Unresponsive Wakefulness Syndrome demonstrated an event-related synchronization in the gamma range over left frontal regions, with high GCI values, in the passive motor imagery condition. These data significantly correlated with the level of behavioral responsiveness measured by the Coma Recovery Scale-Revised. Thus, our findings may indicate that motor tasks related to MNS can activate frontoparietal networks, although leading to different conscious processes. Hence, MNS assessment can be usefully employed to differentiate among patients with DoC.
Literatur
Zurück zum Zitat Babiloni C, Brancucci A, Vecchio F, Arendt-Nielsen L, Chen AC, Rossini PM (2006) Anticipation of somatosensory and motor events increases centro-parietal functional coupling: an EEG coherence study. Clin Neurophysiol 117:1000–1008CrossRefPubMed Babiloni C, Brancucci A, Vecchio F, Arendt-Nielsen L, Chen AC, Rossini PM (2006) Anticipation of somatosensory and motor events increases centro-parietal functional coupling: an EEG coherence study. Clin Neurophysiol 117:1000–1008CrossRefPubMed
Zurück zum Zitat Babiloni C, Del Percio C, Vecchio F, Sebastiano F, Di Gennaro G, Quarato PP, Morace R, Pavone L, Soricelli A, Noce G, Esposito V, Rossini PM, Gallese V, Mirabella G (2016) Alpha, beta and gamma electrocorticographic rhythms in somatosensory, motor, premotor and prefrontal cortical areas differ in movement execution and observation in humans. Clin Neurophysiol 127:641–654CrossRefPubMed Babiloni C, Del Percio C, Vecchio F, Sebastiano F, Di Gennaro G, Quarato PP, Morace R, Pavone L, Soricelli A, Noce G, Esposito V, Rossini PM, Gallese V, Mirabella G (2016) Alpha, beta and gamma electrocorticographic rhythms in somatosensory, motor, premotor and prefrontal cortical areas differ in movement execution and observation in humans. Clin Neurophysiol 127:641–654CrossRefPubMed
Zurück zum Zitat Ball T, Demandt E, Mutschler I, Neitzel E, Mehring C, Vogt K et al (2008) Movement related activity in the high gamma range of the human EEG. Neuroimage 41:302–310CrossRefPubMed Ball T, Demandt E, Mutschler I, Neitzel E, Mehring C, Vogt K et al (2008) Movement related activity in the high gamma range of the human EEG. Neuroimage 41:302–310CrossRefPubMed
Zurück zum Zitat Bruno MA, Vanhaudenhuyse A, Thibaut A, Moonen G, Laureys S (2011) From unresponsive wakefulness to minimally conscious PLUS and functional locked-in syndromes. Recent advances in our understanding of disorders of consciousness. J Neurology 258:1373–1384CrossRef Bruno MA, Vanhaudenhuyse A, Thibaut A, Moonen G, Laureys S (2011) From unresponsive wakefulness to minimally conscious PLUS and functional locked-in syndromes. Recent advances in our understanding of disorders of consciousness. J Neurology 258:1373–1384CrossRef
Zurück zum Zitat Butorina A, Prokofyev A, Nazarova M, Litvak V, Stroganova T (2014) The mirror illusion induces high gamma oscillations in the absence of movement. Neuroimage 103:181–191CrossRefPubMed Butorina A, Prokofyev A, Nazarova M, Litvak V, Stroganova T (2014) The mirror illusion induces high gamma oscillations in the absence of movement. Neuroimage 103:181–191CrossRefPubMed
Zurück zum Zitat Calabrò RS, Cacciola A, Bramanti P, Milardi D (2015) Neural correlates of consciousness, what we know and what we have to learn! Neurol Sci 36:505–513CrossRefPubMed Calabrò RS, Cacciola A, Bramanti P, Milardi D (2015) Neural correlates of consciousness, what we know and what we have to learn! Neurol Sci 36:505–513CrossRefPubMed
Zurück zum Zitat Campbell ME, Cunnington R (2017) More than an imitation game: top-down modulation of the human mirror system. Neurosci Biobehav Rev 75:195–202CrossRefPubMed Campbell ME, Cunnington R (2017) More than an imitation game: top-down modulation of the human mirror system. Neurosci Biobehav Rev 75:195–202CrossRefPubMed
Zurück zum Zitat Canolty RT, Edwards E, Dalal SS, Soltani M, Nagarajan SS, Kirsch HE et al (2006) High gamma power is phase-locked to theta oscillations in humans neocortex. Science 313:1626–1628CrossRefPubMedPubMedCentral Canolty RT, Edwards E, Dalal SS, Soltani M, Nagarajan SS, Kirsch HE et al (2006) High gamma power is phase-locked to theta oscillations in humans neocortex. Science 313:1626–1628CrossRefPubMedPubMedCentral
Zurück zum Zitat Carvalho D, Teixeira S, Lucas M, Yuan TF, Chaves F, Peressutti C, Machado S, Bittencourt J, Menéndez-González M, Nardi AE, Velasques B, Cagy M, Piedade R, Ribeiro P, Arias-Carrión O (2013) The mirror neuron system in post-stroke rehabilitation. Int Arch Med 6:41CrossRefPubMedPubMedCentral Carvalho D, Teixeira S, Lucas M, Yuan TF, Chaves F, Peressutti C, Machado S, Bittencourt J, Menéndez-González M, Nardi AE, Velasques B, Cagy M, Piedade R, Ribeiro P, Arias-Carrión O (2013) The mirror neuron system in post-stroke rehabilitation. Int Arch Med 6:41CrossRefPubMedPubMedCentral
Zurück zum Zitat Case LK, Pineda J, Ramachandran VS (2015) Common coding and dynamic interactions between observed, imagined, and experienced motor and somatosensory activity. Neuropsychologia 79:233–245CrossRefPubMedPubMedCentral Case LK, Pineda J, Ramachandran VS (2015) Common coding and dynamic interactions between observed, imagined, and experienced motor and somatosensory activity. Neuropsychologia 79:233–245CrossRefPubMedPubMedCentral
Zurück zum Zitat Chen W, Shan CL, Guo B, Yuan T (2013) Mirror neuron system activation for conscious states assessment, for patients in vegetative and minimally conscious states. Med Hypotheses 81:144–145CrossRefPubMed Chen W, Shan CL, Guo B, Yuan T (2013) Mirror neuron system activation for conscious states assessment, for patients in vegetative and minimally conscious states. Med Hypotheses 81:144–145CrossRefPubMed
Zurück zum Zitat Cruse D, Chennu S, Chatelle C, Bekinschtein TA, Fernández-Espejo D, Pickard JD et al (2011) Bedside detection of awareness in the vegetative state: a cohort study. Lancet 378:2088–2094CrossRefPubMed Cruse D, Chennu S, Chatelle C, Bekinschtein TA, Fernández-Espejo D, Pickard JD et al (2011) Bedside detection of awareness in the vegetative state: a cohort study. Lancet 378:2088–2094CrossRefPubMed
Zurück zum Zitat D’Ausilio A, Bartoli E, Maffongelli L (2015) Grasping synergies: a motor-control approach to the mirror neuron mechanism. Phys Life Rev 12:91–103CrossRefPubMed D’Ausilio A, Bartoli E, Maffongelli L (2015) Grasping synergies: a motor-control approach to the mirror neuron mechanism. Phys Life Rev 12:91–103CrossRefPubMed
Zurück zum Zitat Delorme A, Makeig S (2004) EEGLAB: an open source toolbox for analysis of single-trial EEG dynamics including independent component analysis. J Neurosci Methods 134:9–21CrossRefPubMed Delorme A, Makeig S (2004) EEGLAB: an open source toolbox for analysis of single-trial EEG dynamics including independent component analysis. J Neurosci Methods 134:9–21CrossRefPubMed
Zurück zum Zitat Desmurget M, Sirigu A (2009) A parietal-premotor network for movement intention and motor awareness. Trends Cogn Sci 13:411–419CrossRefPubMed Desmurget M, Sirigu A (2009) A parietal-premotor network for movement intention and motor awareness. Trends Cogn Sci 13:411–419CrossRefPubMed
Zurück zum Zitat Ertelt D, Small S, Solodkin A et al (2007) Action observation has a positive impact on rehabilitation of motor deficits after stroke. NeuroImage 36:164–173CrossRef Ertelt D, Small S, Solodkin A et al (2007) Action observation has a positive impact on rehabilitation of motor deficits after stroke. NeuroImage 36:164–173CrossRef
Zurück zum Zitat Fabbri-Destro M, Rizzolatti G (2008) Mirror neurons and mirror systems in monkeys and humans. Physiology 23:171–179CrossRefPubMed Fabbri-Destro M, Rizzolatti G (2008) Mirror neurons and mirror systems in monkeys and humans. Physiology 23:171–179CrossRefPubMed
Zurück zum Zitat Fadiga L, Fogassi L, Pavesi G, Rizzolatti G (1995) Motor facilitation during action observation: a magnetic stimulation study. J Neurophysiol 73:2608–2611CrossRefPubMed Fadiga L, Fogassi L, Pavesi G, Rizzolatti G (1995) Motor facilitation during action observation: a magnetic stimulation study. J Neurophysiol 73:2608–2611CrossRefPubMed
Zurück zum Zitat Formaggio E, Storti SF, Avesani M, Cerini R, Milanese F, Gasparini A, Acler M, Pozzi Mucelli R, Fiaschi A, Manganotti P (2008) EEG and fMRI coregistration to investigate the cortical oscillatory activities during finger movement. Brain Topogr 21:100–111CrossRefPubMed Formaggio E, Storti SF, Avesani M, Cerini R, Milanese F, Gasparini A, Acler M, Pozzi Mucelli R, Fiaschi A, Manganotti P (2008) EEG and fMRI coregistration to investigate the cortical oscillatory activities during finger movement. Brain Topogr 21:100–111CrossRefPubMed
Zurück zum Zitat Formisano R, D’Ippolito M, Risetti M, Riccio A, Caravasso CF, Catani S et al (2011a) Vegetative state, minimally conscious state, akinetic mutism and Parkinsonism as a continuum of recovery from disorders of consciousness: an exploratory and preliminary study. Funct Neurol 26:15–24PubMedPubMedCentral Formisano R, D’Ippolito M, Risetti M, Riccio A, Caravasso CF, Catani S et al (2011a) Vegetative state, minimally conscious state, akinetic mutism and Parkinsonism as a continuum of recovery from disorders of consciousness: an exploratory and preliminary study. Funct Neurol 26:15–24PubMedPubMedCentral
Zurück zum Zitat Formisano R, Pistoia F, Sarà M (2011b) Disorders of consciousness: a taxonomy to be changed? Brain Inj 25:638CrossRefPubMed Formisano R, Pistoia F, Sarà M (2011b) Disorders of consciousness: a taxonomy to be changed? Brain Inj 25:638CrossRefPubMed
Zurück zum Zitat Formisano R, D’Ippolito M, Catani S (2013) Functional locked-in syndrome as recovery phase of vegetative state. Brain Inj 27:1332CrossRefPubMed Formisano R, D’Ippolito M, Catani S (2013) Functional locked-in syndrome as recovery phase of vegetative state. Brain Inj 27:1332CrossRefPubMed
Zurück zum Zitat Fox NA, Bakermans-Kranenburg MJ, Yoo KH, Bowman LC, Cannon EN, Vanderwert RE, Ferrari PF, van IJzendoorn MH (2016) Assessing human mirror activity with EEG mu rhythm: a meta-analysis. Psychol Bull 142:291–313CrossRefPubMed Fox NA, Bakermans-Kranenburg MJ, Yoo KH, Bowman LC, Cannon EN, Vanderwert RE, Ferrari PF, van IJzendoorn MH (2016) Assessing human mirror activity with EEG mu rhythm: a meta-analysis. Psychol Bull 142:291–313CrossRefPubMed
Zurück zum Zitat Frenkel-Toledo S, Bentin S, Perry A, Liebermann DG, Soroker N (2014) Mirror-neuron system recruitment by action observation, effects of focal brain damage on mu suppression. Neuroimage 87:127–137CrossRefPubMed Frenkel-Toledo S, Bentin S, Perry A, Liebermann DG, Soroker N (2014) Mirror-neuron system recruitment by action observation, effects of focal brain damage on mu suppression. Neuroimage 87:127–137CrossRefPubMed
Zurück zum Zitat Gallese V, Goldman A (1998) Mirror neurons and the simulation theory of mindreading. Trends Cogn Sci 2:493–501CrossRefPubMed Gallese V, Goldman A (1998) Mirror neurons and the simulation theory of mindreading. Trends Cogn Sci 2:493–501CrossRefPubMed
Zurück zum Zitat Gallese V, Fadiga L, Fogassi L, Rizzolatti G (1996) Action recognition in the premotor cortex. Brain 119:593–609CrossRefPubMed Gallese V, Fadiga L, Fogassi L, Rizzolatti G (1996) Action recognition in the premotor cortex. Brain 119:593–609CrossRefPubMed
Zurück zum Zitat Georgiopoulos M, Katsakiori P, Kefalopoulou Z, Ellul J, Chroni E, Constantoyannis C (2010) Vegetative state and minimally conscious state: a review of the therapeutic interventions. Stereotact Funct Neurosurg 88:199–207CrossRefPubMed Georgiopoulos M, Katsakiori P, Kefalopoulou Z, Ellul J, Chroni E, Constantoyannis C (2010) Vegetative state and minimally conscious state: a review of the therapeutic interventions. Stereotact Funct Neurosurg 88:199–207CrossRefPubMed
Zurück zum Zitat Geweke J (1982) Measures of conditional linear dependence and feedback between time series. J Am Stat Assoc 77:304–313CrossRef Geweke J (1982) Measures of conditional linear dependence and feedback between time series. J Am Stat Assoc 77:304–313CrossRef
Zurück zum Zitat Giacino JT, Kalmar K, Whyte J (2004) The JFK Coma Recovery Scale-Revised: measurement characteristics and diagnostic utility. Arch Phys Med Rehabil 85:2020–2029CrossRefPubMed Giacino JT, Kalmar K, Whyte J (2004) The JFK Coma Recovery Scale-Revised: measurement characteristics and diagnostic utility. Arch Phys Med Rehabil 85:2020–2029CrossRefPubMed
Zurück zum Zitat Hari R, Forss N, Avikainen S, Kirveskari E, Salenius S, Rizzolatti G (1998) Activation of human primary motor cortex during action observation: a neuromagnetic study. Proc Natl Acad Sci USA 95:15061–15065CrossRefPubMedPubMedCentral Hari R, Forss N, Avikainen S, Kirveskari E, Salenius S, Rizzolatti G (1998) Activation of human primary motor cortex during action observation: a neuromagnetic study. Proc Natl Acad Sci USA 95:15061–15065CrossRefPubMedPubMedCentral
Zurück zum Zitat Hemmelmann C, Horn M, Süsse T, Vollandt R, Weiss S (2005) New concepts of multiple tests and their use for evaluating high-dimensional EEG data. J Neurosci Methods 142:209–217CrossRefPubMed Hemmelmann C, Horn M, Süsse T, Vollandt R, Weiss S (2005) New concepts of multiple tests and their use for evaluating high-dimensional EEG data. J Neurosci Methods 142:209–217CrossRefPubMed
Zurück zum Zitat Hobson HM, Bishop DV (2017) The interpretation of mu suppression as an index of mirror neuron activity: past, present and future. R Soc Open Sci 4:160662CrossRefPubMedPubMedCentral Hobson HM, Bishop DV (2017) The interpretation of mu suppression as an index of mirror neuron activity: past, present and future. R Soc Open Sci 4:160662CrossRefPubMedPubMedCentral
Zurück zum Zitat Iacoboni M, Dapretto M (2006) The mirror neuron system and the consequences of its dysfunction. Nat Rev Neurosci 7:942–951CrossRefPubMed Iacoboni M, Dapretto M (2006) The mirror neuron system and the consequences of its dysfunction. Nat Rev Neurosci 7:942–951CrossRefPubMed
Zurück zum Zitat Jeannerod M (2001) Neural simulation of action: a unifying mechanism for motor cognition. Neuroimage 14:103–109CrossRef Jeannerod M (2001) Neural simulation of action: a unifying mechanism for motor cognition. Neuroimage 14:103–109CrossRef
Zurück zum Zitat Koch C, Massimini M, Boly M, Tononi G (2016) Neural correlates of consciousness, progress and problems. Nat Rev Neurosci 17:307–321CrossRefPubMed Koch C, Massimini M, Boly M, Tononi G (2016) Neural correlates of consciousness, progress and problems. Nat Rev Neurosci 17:307–321CrossRefPubMed
Zurück zum Zitat Koechlin E, Ody C, Kouneiher F (2003) The architecture of cognitive control in the human prefrontal cortex. Science 302:1181–1185CrossRefPubMed Koechlin E, Ody C, Kouneiher F (2003) The architecture of cognitive control in the human prefrontal cortex. Science 302:1181–1185CrossRefPubMed
Zurück zum Zitat Koski L, Iacoboni M, Dubeau MC, Woods RP, Mazziotta JC (2003) Modulation of cortical activity during different imitative behaviors. J Neurophysiol 89:460–471CrossRefPubMed Koski L, Iacoboni M, Dubeau MC, Woods RP, Mazziotta JC (2003) Modulation of cortical activity during different imitative behaviors. J Neurophysiol 89:460–471CrossRefPubMed
Zurück zum Zitat Lago-Rodríguez A, Cheeran B, Koch G, Hortobágyi T, Fernandez-del-Olmo M (2014) The role of mirror neurons in observational motor learning: an integrative review. Eur J Hum Mov 32:82–103 Lago-Rodríguez A, Cheeran B, Koch G, Hortobágyi T, Fernandez-del-Olmo M (2014) The role of mirror neurons in observational motor learning: an integrative review. Eur J Hum Mov 32:82–103
Zurück zum Zitat Lange J, Pavlidou A, Schnitzler A (2015) Lateralized modulation of beta-band power in sensorimotor areas during action observation. Front Integr Neurosci 9:43CrossRefPubMedPubMedCentral Lange J, Pavlidou A, Schnitzler A (2015) Lateralized modulation of beta-band power in sensorimotor areas during action observation. Front Integr Neurosci 9:43CrossRefPubMedPubMedCentral
Zurück zum Zitat Lapitskaya N, Coleman MR, Nielsen JF, Gosseries O, de Noordhout AM (2009) Disorders of consciousness: further pathophysiological insights using motor cortex transcranial magnetic stimulation. Prog Brain Res 177:191–200CrossRefPubMed Lapitskaya N, Coleman MR, Nielsen JF, Gosseries O, de Noordhout AM (2009) Disorders of consciousness: further pathophysiological insights using motor cortex transcranial magnetic stimulation. Prog Brain Res 177:191–200CrossRefPubMed
Zurück zum Zitat Laureys S, Goldman S, Phillips C, Van Bogaert P, Aerts J, Luxen A et al (1999) Impaired effective cortical connectivity in vegetative state: preliminary investigation using PET. NeuroImage 9:377–382CrossRefPubMed Laureys S, Goldman S, Phillips C, Van Bogaert P, Aerts J, Luxen A et al (1999) Impaired effective cortical connectivity in vegetative state: preliminary investigation using PET. NeuroImage 9:377–382CrossRefPubMed
Zurück zum Zitat Lechinger J, Chwala-Schlegel N, Fellinger R, Donis J, Michitsch G, Pichler G, Schabus M (2013) Mirroring of a simple motor behavior in disorders of consciousness. Clin Neurophysiol 124:27–34CrossRefPubMed Lechinger J, Chwala-Schlegel N, Fellinger R, Donis J, Michitsch G, Pichler G, Schabus M (2013) Mirroring of a simple motor behavior in disorders of consciousness. Clin Neurophysiol 124:27–34CrossRefPubMed
Zurück zum Zitat Marino S, Lanzafame P, Sessa E, Bramanti A, Bramanti P (2010) The effect of L-Dopa administration on pursuit ocular movements in suspected Parkinson’s disease. Neurol Sci 31:381–385CrossRefPubMed Marino S, Lanzafame P, Sessa E, Bramanti A, Bramanti P (2010) The effect of L-Dopa administration on pursuit ocular movements in suspected Parkinson’s disease. Neurol Sci 31:381–385CrossRefPubMed
Zurück zum Zitat Mattiassi AD, Mele S, Ticini LF, Urgesi C (2014) Conscious and unconscious representations of observed actions in the human motor system. J Cogn Neurosci 26:2028–2041CrossRefPubMed Mattiassi AD, Mele S, Ticini LF, Urgesi C (2014) Conscious and unconscious representations of observed actions in the human motor system. J Cogn Neurosci 26:2028–2041CrossRefPubMed
Zurück zum Zitat Mehta UM, Waghmare AV, Thirthalli J, Venkatasubramanian G, Gangadhar BN (2015) Is the human mirror neuron system plastic? Evidence from a transcranial magnetic stimulation study. Asian J Psychiatr 17:71–77CrossRefPubMed Mehta UM, Waghmare AV, Thirthalli J, Venkatasubramanian G, Gangadhar BN (2015) Is the human mirror neuron system plastic? Evidence from a transcranial magnetic stimulation study. Asian J Psychiatr 17:71–77CrossRefPubMed
Zurück zum Zitat Molnar-Szakacs I, Uddin LQ (2013) Self-processing and the default mode network: interactions with the mirror neuron system. Front Hum Neurosci 7:571CrossRefPubMedPubMedCentral Molnar-Szakacs I, Uddin LQ (2013) Self-processing and the default mode network: interactions with the mirror neuron system. Front Hum Neurosci 7:571CrossRefPubMedPubMedCentral
Zurück zum Zitat Monti MM, Vanhaudenhuyse A, Coleman MR, Boly M, Pickard JD, Tshibanda L, Owen AM, Laureys S (2010) Willful modulation of brain activity in disorders of consciousness. N Engl J Med 362:579–589CrossRefPubMed Monti MM, Vanhaudenhuyse A, Coleman MR, Boly M, Pickard JD, Tshibanda L, Owen AM, Laureys S (2010) Willful modulation of brain activity in disorders of consciousness. N Engl J Med 362:579–589CrossRefPubMed
Zurück zum Zitat Moore CL, Yamamoto K (2012) Beyond words: movement observation and analysis. Routledge, LondonCrossRef Moore CL, Yamamoto K (2012) Beyond words: movement observation and analysis. Routledge, LondonCrossRef
Zurück zum Zitat Muthukumaraswamy SD (2010) Functional properties of human primary motor cortex gamma oscillations. J Neurophysiol 104:2873–2885CrossRefPubMed Muthukumaraswamy SD (2010) Functional properties of human primary motor cortex gamma oscillations. J Neurophysiol 104:2873–2885CrossRefPubMed
Zurück zum Zitat Neuper C, Scherer R, Wriessnegger S, Pfurtscheller G (2009) Motor imagery and action observation: modulation of sensorimotor brain rhythms during mental control of a brain-computer interface. Clin Neurophysiol 120:239–247CrossRefPubMed Neuper C, Scherer R, Wriessnegger S, Pfurtscheller G (2009) Motor imagery and action observation: modulation of sensorimotor brain rhythms during mental control of a brain-computer interface. Clin Neurophysiol 120:239–247CrossRefPubMed
Zurück zum Zitat Oberman LM, Pineda JA, Ramachandran VS (2007) The human mirror neuron system, a link between action observation and social skills. Soc Cogn Affect Neurosci 2:62–66CrossRefPubMedPubMedCentral Oberman LM, Pineda JA, Ramachandran VS (2007) The human mirror neuron system, a link between action observation and social skills. Soc Cogn Affect Neurosci 2:62–66CrossRefPubMedPubMedCentral
Zurück zum Zitat Owen AM, Coleman MR, Boly M, Davis MH, Laureys S, Pickard JD (2006) Detecting awareness in the vegetative state. Science 313:1402–1403CrossRefPubMed Owen AM, Coleman MR, Boly M, Davis MH, Laureys S, Pickard JD (2006) Detecting awareness in the vegetative state. Science 313:1402–1403CrossRefPubMed
Zurück zum Zitat Pfurtscheller G, Stancak A Jr, Neuper C (1996) Event-related synchronization (ERS) in the alpha band: an electrophysiological correlate of cortical idling: a review. Int J Psychophysiol 24:39–46CrossRefPubMed Pfurtscheller G, Stancak A Jr, Neuper C (1996) Event-related synchronization (ERS) in the alpha band: an electrophysiological correlate of cortical idling: a review. Int J Psychophysiol 24:39–46CrossRefPubMed
Zurück zum Zitat Pineda JA (2009) Mirror neuron systems: the role of mirroring processes in social cognition. Humana Press, New YorkCrossRef Pineda JA (2009) Mirror neuron systems: the role of mirroring processes in social cognition. Humana Press, New YorkCrossRef
Zurück zum Zitat Pistoia F, Sacco S, Carolei A, Sarà M (2013) Corticomotor facilitation in vegetative state: results of a pilot study. Arch Phys Med Rehabil 94:1599–1606CrossRefPubMed Pistoia F, Sacco S, Carolei A, Sarà M (2013) Corticomotor facilitation in vegetative state: results of a pilot study. Arch Phys Med Rehabil 94:1599–1606CrossRefPubMed
Zurück zum Zitat Rizzolatti G (2005) The mirror neuron system and its function in humans. Anat Embryol (Berlin) 210:419–421CrossRef Rizzolatti G (2005) The mirror neuron system and its function in humans. Anat Embryol (Berlin) 210:419–421CrossRef
Zurück zum Zitat Rizzolatti G, Sinigaglia C (2010) The functional role of the parieto-frontal mirror circuit: interpretations and misinterpretations. Nat Rev Neurosci 11:264–274CrossRefPubMed Rizzolatti G, Sinigaglia C (2010) The functional role of the parieto-frontal mirror circuit: interpretations and misinterpretations. Nat Rev Neurosci 11:264–274CrossRefPubMed
Zurück zum Zitat Rizzolatti G, Fadiga L, Gallese V, Fogassi L (1996) Premotor cortex and the recognition of motor actions. Cogn Brain Res 3:131–141CrossRef Rizzolatti G, Fadiga L, Gallese V, Fogassi L (1996) Premotor cortex and the recognition of motor actions. Cogn Brain Res 3:131–141CrossRef
Zurück zum Zitat Rizzolatti G, Fogassi L, Gallese V (2001) Neurophysiological mechanisms underlying the understanding and imitation of action. Nat Rev Neurosci 2:661–670CrossRefPubMed Rizzolatti G, Fogassi L, Gallese V (2001) Neurophysiological mechanisms underlying the understanding and imitation of action. Nat Rev Neurosci 2:661–670CrossRefPubMed
Zurück zum Zitat Rizzolatti G, Cattaneo L, Fabbri-Destro M, Rozzi S (2014) Cortical mechanisms underlying the organization of goal-directed actions and mirror neuron-based action understanding. Physiol Rev 94:655–706CrossRefPubMed Rizzolatti G, Cattaneo L, Fabbri-Destro M, Rozzi S (2014) Cortical mechanisms underlying the organization of goal-directed actions and mirror neuron-based action understanding. Physiol Rev 94:655–706CrossRefPubMed
Zurück zum Zitat Sarasso S, Rosanova M, Casali AG, Casarotto S, Fecchio M, Boly M, Gosseries O, Tononi G, Laureys S, Massimini M (2014) Quantifying cortical EEG responses to TMS in (un)consciousness. Clin EEG Neurosci 45:40–49CrossRefPubMed Sarasso S, Rosanova M, Casali AG, Casarotto S, Fecchio M, Boly M, Gosseries O, Tononi G, Laureys S, Massimini M (2014) Quantifying cortical EEG responses to TMS in (un)consciousness. Clin EEG Neurosci 45:40–49CrossRefPubMed
Zurück zum Zitat Schiff ND (2010) Recovery of consciousness after brain injury: a mesocircuit hypothesis. Trends Neurosci 33:1–9CrossRefPubMed Schiff ND (2010) Recovery of consciousness after brain injury: a mesocircuit hypothesis. Trends Neurosci 33:1–9CrossRefPubMed
Zurück zum Zitat Schiff ND (2015) Cognitive Motor Dissociation Following Severe Brain Injuries. JAMA Neurol 72:1413–1415CrossRefPubMed Schiff ND (2015) Cognitive Motor Dissociation Following Severe Brain Injuries. JAMA Neurol 72:1413–1415CrossRefPubMed
Zurück zum Zitat Schippers MB, Keysers C (2011) Mapping the flow of information within the putative mirror neuron system during gesture observation. Neuroimage 57:37–44CrossRefPubMed Schippers MB, Keysers C (2011) Mapping the flow of information within the putative mirror neuron system during gesture observation. Neuroimage 57:37–44CrossRefPubMed
Zurück zum Zitat Schnakers C, Giacino JT, Løvstad M, Habbal D, Boly M, Di H et al (2015) Preserved covert cognition in non-communicative patients with severe brain injury? Neurorehabil Neural Repair 29:308–317CrossRefPubMed Schnakers C, Giacino JT, Løvstad M, Habbal D, Boly M, Di H et al (2015) Preserved covert cognition in non-communicative patients with severe brain injury? Neurorehabil Neural Repair 29:308–317CrossRefPubMed
Zurück zum Zitat The Multi-Society Task Force on PVS (1994) Medical aspects of the persistent vegetative state. N Engl J Med. 330:1499–1508CrossRef The Multi-Society Task Force on PVS (1994) Medical aspects of the persistent vegetative state. N Engl J Med. 330:1499–1508CrossRef
Zurück zum Zitat Umiltà MA, Kohler E, Gallese V, Fogassi L, Fadiga L, Keysers C et al (2001) I know what you are doing: a neurophysiological study. Neuron 31:155–165CrossRefPubMed Umiltà MA, Kohler E, Gallese V, Fogassi L, Fadiga L, Keysers C et al (2001) I know what you are doing: a neurophysiological study. Neuron 31:155–165CrossRefPubMed
Zurück zum Zitat Vanhaudenhuyse A, Noirhomme Q, Tshibanda LJ, 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 133:161–171CrossRefPubMed Vanhaudenhuyse A, Noirhomme Q, Tshibanda LJ, 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 133:161–171CrossRefPubMed
Zurück zum Zitat Wriessnegger SC, Leeb R, Kaiser V, Neuper C, Müller-Putz GR (2013) Watching object related movements modulates mirror-like activity in parietal brain regions. Clin Neurophysiol 124:1596–1604CrossRefPubMed Wriessnegger SC, Leeb R, Kaiser V, Neuper C, Müller-Putz GR (2013) Watching object related movements modulates mirror-like activity in parietal brain regions. Clin Neurophysiol 124:1596–1604CrossRefPubMed
Metadaten
Titel
Bridging the Gap Towards Awareness Detection in Disorders of Consciousness: An Experimental Study on the Mirror Neuron System
verfasst von
Antonino Naro
Rocco Salvatore Calabrò
Antonino Leo
Margherita Russo
Demetrio Milardi
Antonino Cannavò
Alfredo Manuli
Antonio Buda
Carmela Casella
Placido Bramanti
Alberto Cacciola
Alessia Bramanti
Publikationsdatum
07.02.2018
Verlag
Springer US
Erschienen in
Brain Topography / Ausgabe 4/2018
Print ISSN: 0896-0267
Elektronische ISSN: 1573-6792
DOI
https://doi.org/10.1007/s10548-018-0628-9

Weitere Artikel der Ausgabe 4/2018

Brain Topography 4/2018 Zur Ausgabe

Leitlinien kompakt für die Neurologie

Mit medbee Pocketcards sicher entscheiden.

Seit 2022 gehört die medbee GmbH zum Springer Medizin Verlag

Update Neurologie

Bestellen Sie unseren Fach-Newsletter und bleiben Sie gut informiert.