Skip to main content
Erschienen in: Journal of Neural Transmission 6/2010

01.06.2010 | Biological Child and Adolescent Psychiatry-Original Article

Development of neural correlates of empathy from childhood to early adulthood: an fMRI study in boys and adult men

verfasst von: E. Greimel, M. Schulte-Rüther, G. R. Fink, M. Piefke, B. Herpertz-Dahlmann, K. Konrad

Erschienen in: Journal of Neural Transmission | Ausgabe 6/2010

Einloggen, um Zugang zu erhalten

Abstract

Although empathy is rooted early in life, the ability to understand and share the emotions of others continues to develop after childhood. Here, we aimed at exploring developmental changes in the neural mechanisms underlying empathy from childhood to early adulthood. Using functional magnetic resonance imaging, 47 healthy male subjects aged 8–27 years were investigated during an explicit empathy task. Emotional faces were presented and participants were either asked to infer the emotional state from the face (other-task) or to judge their own emotional response to the face (self-task). A perceptual decision on the width of faces was used as a control condition. Age-related activity increases were observed in the fusiform gyrus and inferior frontal gyrus, depending on whether subjects attributed emotions to self or other. During the self-task, activity in the right precuneus and right intraparietal sulcus decreased as a function of age. No age-related differences were observed in behavioral performance measures. Increased activity in the fusiform gyrus and in the frontal component of the human mirror neuron system with increasing age may be explained by greater experience and expertise accumulated during socio-emotional interactions. Greater recruitment of right parietal structures in younger as compared to older subjects might reflect developmental differences in the cognitive strategies to infer one’s own emotional response. This study is the first to show developmental changes in the neural mechanisms supporting empathy. Our findings may have important implications for the development of novel therapeutic interventions in clinical conditions characterized by empathy deficits, such as autism spectrum disorder.
Anhänge
Nur mit Berechtigung zugänglich
Fußnoten
1
Norms refer to the English version. No population norms are available for the German translation of the Griffith Empathy Measure, which was used in the present study. Mean scores of norms for the Griffith Empathy Measure are estimated from separate scores for younger children (7–10 years) and older children and adolescents (>11 years).
 
2
Norms refer to the English version. No population norms are available for the German translation of the Balanced Emotional Empathy Scale, which was used in the present study.
 
Literatur
Zurück zum Zitat Achenbach TM (1993) Empirically based taxonomy: how to use syndromes and profile types derived from the CBCL from 4 to 18, TRF, and WSR. University of Vermont, Department of Psychiatry, Burlington Achenbach TM (1993) Empirically based taxonomy: how to use syndromes and profile types derived from the CBCL from 4 to 18, TRF, and WSR. University of Vermont, Department of Psychiatry, Burlington
Zurück zum Zitat Adams GR (1983) Social competence during adolescence: social sensitivity, locus of control, empathy, and peer popularity. J Youth Adolesc 12:203–211CrossRef Adams GR (1983) Social competence during adolescence: social sensitivity, locus of control, empathy, and peer popularity. J Youth Adolesc 12:203–211CrossRef
Zurück zum Zitat Adams GR, Schvaneveldt JD, Jenson GO (1979) Sex, age and perceived competency as correlates of empathic ability in adolescence. Adolescence 14:811–818 Adams GR, Schvaneveldt JD, Jenson GO (1979) Sex, age and perceived competency as correlates of empathic ability in adolescence. Adolescence 14:811–818
Zurück zum Zitat Aylward EH, Park JE, Field KM, Parsons AC, Richards TL, Cramer SC, Meltzoff AN (2005) Brain activation during face perception: evidence of a developmental change. J Cogn Neurosci 17:308–319CrossRefPubMed Aylward EH, Park JE, Field KM, Parsons AC, Richards TL, Cramer SC, Meltzoff AN (2005) Brain activation during face perception: evidence of a developmental change. J Cogn Neurosci 17:308–319CrossRefPubMed
Zurück zum Zitat Bastiaansen JACJ, Thioux M, Keysers C (2009) Evidence for mirror systems in emotions. Philos Trans R Soc Lond B Biol Sci 364:2391–2404CrossRefPubMed Bastiaansen JACJ, Thioux M, Keysers C (2009) Evidence for mirror systems in emotions. Philos Trans R Soc Lond B Biol Sci 364:2391–2404CrossRefPubMed
Zurück zum Zitat Blakemore S-J, den Ouden H, Choudhury S, Frith C (2007) Adolescent development of the neural circuitry for thinking about intentions. SCAN 2:130–139PubMed Blakemore S-J, den Ouden H, Choudhury S, Frith C (2007) Adolescent development of the neural circuitry for thinking about intentions. SCAN 2:130–139PubMed
Zurück zum Zitat Buccino G, Binkofski F, Fink GR, Fadiga L, Fogassi L, Gallese V, Seitz RJ, Zilles K, Rizzolatti G, Freund HJ (2001) Action observation activates premotor and parietal areas in a somatotopic manner: an fMRI study. Eur J Neurosci 13:400–404PubMed Buccino G, Binkofski F, Fink GR, Fadiga L, Fogassi L, Gallese V, Seitz RJ, Zilles K, Rizzolatti G, Freund HJ (2001) Action observation activates premotor and parietal areas in a somatotopic manner: an fMRI study. Eur J Neurosci 13:400–404PubMed
Zurück zum Zitat Büchel C, Wise RJS, Mummery CJ, Poline J-B, Friston KJ (1996) Nonlinear regression in parametric activation studies. Neuroimage 4:60–66CrossRefPubMed Büchel C, Wise RJS, Mummery CJ, Poline J-B, Friston KJ (1996) Nonlinear regression in parametric activation studies. Neuroimage 4:60–66CrossRefPubMed
Zurück zum Zitat Burnett S, Bird G, Moll J, Frith C, Blakemore S-J (2009) Development during adolescence of the neural processing of social emotion. J Cogn Neurosci 21:1736–1750CrossRefPubMed Burnett S, Bird G, Moll J, Frith C, Blakemore S-J (2009) Development during adolescence of the neural processing of social emotion. J Cogn Neurosci 21:1736–1750CrossRefPubMed
Zurück zum Zitat Calvo-Merino B, Glaser DE, Grèzes J, Passingham RE, Haggard P (2004) Action observation and acquired motor skills: an fMRI study with expert dancers. Cereb Cortex 15:1243–1249CrossRefPubMed Calvo-Merino B, Glaser DE, Grèzes J, Passingham RE, Haggard P (2004) Action observation and acquired motor skills: an fMRI study with expert dancers. Cereb Cortex 15:1243–1249CrossRefPubMed
Zurück zum Zitat Carr L, Iacoboni M, Dubeau M-C, Mazziotta JC, Lenzi GL (2003) Neural mechanisms of empathy in humans: a relay from neural systems for imitation to limbic areas. Proc Natl Acad Sci USA 100:5497–5502CrossRefPubMed Carr L, Iacoboni M, Dubeau M-C, Mazziotta JC, Lenzi GL (2003) Neural mechanisms of empathy in humans: a relay from neural systems for imitation to limbic areas. Proc Natl Acad Sci USA 100:5497–5502CrossRefPubMed
Zurück zum Zitat 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
Zurück zum Zitat Cross ES, Hamilton AF, Grafton ST (2006) Building a motor simulation de novo: observation of dance by dancers. Neuroimage 31:1257–1267CrossRefPubMed Cross ES, Hamilton AF, Grafton ST (2006) Building a motor simulation de novo: observation of dance by dancers. Neuroimage 31:1257–1267CrossRefPubMed
Zurück zum Zitat Dadds MR, Hunter K, Hawes DJ, Frost ADJ, Vassallo S, Bunn P, Merz S, El Masry J (2008) A measure of affective and cognitive empathy in children using parent ratings. Child Psychiatry Hum Dev 39:111–122CrossRefPubMed Dadds MR, Hunter K, Hawes DJ, Frost ADJ, Vassallo S, Bunn P, Merz S, El Masry J (2008) A measure of affective and cognitive empathy in children using parent ratings. Child Psychiatry Hum Dev 39:111–122CrossRefPubMed
Zurück zum Zitat Dapretto M, Davies MS, Pfeifer JH, Scott AA, Sigman M, Bookheimer SY, Iacoboni M (2006) Understanding emotions in others: mirror neuron dysfunction in children with autism spectrum disorders. Nat Neurosci 9:28–30CrossRefPubMed Dapretto M, Davies MS, Pfeifer JH, Scott AA, Sigman M, Bookheimer SY, Iacoboni M (2006) Understanding emotions in others: mirror neuron dysfunction in children with autism spectrum disorders. Nat Neurosci 9:28–30CrossRefPubMed
Zurück zum Zitat Davis M (1980) A multidimensional approach to individual differences in empathy. JSAS 10:85 Davis M (1980) A multidimensional approach to individual differences in empathy. JSAS 10:85
Zurück zum Zitat Davis MD, Franzoi SL (1991) Stability and change in adolescent self-consciousness and empathy. J Res Pers 25:70–87CrossRef Davis MD, Franzoi SL (1991) Stability and change in adolescent self-consciousness and empathy. J Res Pers 25:70–87CrossRef
Zurück zum Zitat Decety J, Jackson PL (2004) The functional architecture of human empathy. Behav Cogn Neurosci Rev 3:71–100CrossRefPubMed Decety J, Jackson PL (2004) The functional architecture of human empathy. Behav Cogn Neurosci Rev 3:71–100CrossRefPubMed
Zurück zum Zitat Decety J, Moriguchi Y (2007) The empathic brain and its dysfunction in psychiatric populations: implications for intervention across different clinical conditions. Biopsychosoc Med 16:1–22 Decety J, Moriguchi Y (2007) The empathic brain and its dysfunction in psychiatric populations: implications for intervention across different clinical conditions. Biopsychosoc Med 16:1–22
Zurück zum Zitat Decety J, Michalska K, Akitsuki Y (2008) Who caused the pain? An fMRI investigation of empathy and intentionality in children. Neuropsychologia 46:2607–2614CrossRefPubMed Decety J, Michalska K, Akitsuki Y (2008) Who caused the pain? An fMRI investigation of empathy and intentionality in children. Neuropsychologia 46:2607–2614CrossRefPubMed
Zurück zum Zitat Decety J, Michalska KJ, Akitsuki Y, Lahey BB (2009) Atypical empathic responses in adolescents with aggressive conduct disorder: A functional MRI investigation. Biol Psychiatry 80:203–211CrossRef Decety J, Michalska KJ, Akitsuki Y, Lahey BB (2009) Atypical empathic responses in adolescents with aggressive conduct disorder: A functional MRI investigation. Biol Psychiatry 80:203–211CrossRef
Zurück zum Zitat Deeley Q, Daly EM, Azuma R, Surguladze S, Giampietro V, Brammer MJ, Hallahan B, Dunbar RIM, Phillips ML, Murphy DGM (2008) Changes in male brain responses to emotional faces from adolescence to middle age. Neuroimage 40:389–397CrossRefPubMed Deeley Q, Daly EM, Azuma R, Surguladze S, Giampietro V, Brammer MJ, Hallahan B, Dunbar RIM, Phillips ML, Murphy DGM (2008) Changes in male brain responses to emotional faces from adolescence to middle age. Neuroimage 40:389–397CrossRefPubMed
Zurück zum Zitat Derogatis LR (1993) Brief Symptom Inventory (BSI), administration, scoring, and procedures manual. National Computer Services, Minneapolis Derogatis LR (1993) Brief Symptom Inventory (BSI), administration, scoring, and procedures manual. National Computer Services, Minneapolis
Zurück zum Zitat Eickhoff SB, Stephan KE, Mohlberg H, Grefkes C, Fink GR, Amunts K, Zilles K (2005) A new SPM toolbox for combining probabilistic cytoarchitectonic maps and functional imaging data. Neuroimage 25:1325–1335CrossRefPubMed Eickhoff SB, Stephan KE, Mohlberg H, Grefkes C, Fink GR, Amunts K, Zilles K (2005) A new SPM toolbox for combining probabilistic cytoarchitectonic maps and functional imaging data. Neuroimage 25:1325–1335CrossRefPubMed
Zurück zum Zitat Ekman P, Friesen W, Hager J (2002) Facial action coding system. Research Nexus, Salt Lake City, UT Ekman P, Friesen W, Hager J (2002) Facial action coding system. Research Nexus, Salt Lake City, UT
Zurück zum Zitat Gauthier I, Tarr MJ, Anderson AW, Skudlarski P, Gore JC (1999) Activation of the middle fusiform “face are” increases with expertise in recognizing novel objects. Nat Neurosci 2:568–573CrossRefPubMed Gauthier I, Tarr MJ, Anderson AW, Skudlarski P, Gore JC (1999) Activation of the middle fusiform “face are” increases with expertise in recognizing novel objects. Nat Neurosci 2:568–573CrossRefPubMed
Zurück zum Zitat Giedd JN, Blumenthal J, Jeffries NO, Castellanos FX, Liu H, Zijdenbos A, Paus T, Evans AC, Rapoport JL (1999) Brain development during childhood and adolescence: a longitudinal MRI study. Nat Neurosci 2:861–863CrossRefPubMed Giedd JN, Blumenthal J, Jeffries NO, Castellanos FX, Liu H, Zijdenbos A, Paus T, Evans AC, Rapoport JL (1999) Brain development during childhood and adolescence: a longitudinal MRI study. Nat Neurosci 2:861–863CrossRefPubMed
Zurück zum Zitat Gitelman DR (2002) ILAB: a program for postexperimental eye movement analysis. Behav Res Meth Inst C 34:605–612 Gitelman DR (2002) ILAB: a program for postexperimental eye movement analysis. Behav Res Meth Inst C 34:605–612
Zurück zum Zitat Greimel E, Schulte-Rüther M, Kircher T, Kamp-Becker I, Remschmidt H, Fink GR, Herpertz-Dahlmann B, Konrad K (2010) Neural mechanisms of empathy in adolescents with autism spectrum disorder and their fathers. Neuroimage 49:1055–1065CrossRefPubMed Greimel E, Schulte-Rüther M, Kircher T, Kamp-Becker I, Remschmidt H, Fink GR, Herpertz-Dahlmann B, Konrad K (2010) Neural mechanisms of empathy in adolescents with autism spectrum disorder and their fathers. Neuroimage 49:1055–1065CrossRefPubMed
Zurück zum Zitat Guyer AE, Monk CS, McClure-Tone EB, Nelson EE, Roberson-Nay R, Adler AD, Fromm SJ, Leibenluft E, Pine DS, Ernst M (2008) A developmental examination of amygdala response to facial expressions. J Cogn Neurosci 20:1565–1582CrossRefPubMed Guyer AE, Monk CS, McClure-Tone EB, Nelson EE, Roberson-Nay R, Adler AD, Fromm SJ, Leibenluft E, Pine DS, Ernst M (2008) A developmental examination of amygdala response to facial expressions. J Cogn Neurosci 20:1565–1582CrossRefPubMed
Zurück zum Zitat Hatfield E, Cacioppo JT, Rapson RL (1994) Emotional contagion. Cambridge University Press, New York Hatfield E, Cacioppo JT, Rapson RL (1994) Emotional contagion. Cambridge University Press, New York
Zurück zum Zitat Herba C, Phillips M (2004) Annotation: development of facial expression recognition from childhood to adolescence: behavioural and neurological perspectives. J Child Psychol Psychiatry 45:1185–1198CrossRefPubMed Herba C, Phillips M (2004) Annotation: development of facial expression recognition from childhood to adolescence: behavioural and neurological perspectives. J Child Psychol Psychiatry 45:1185–1198CrossRefPubMed
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 Iacoboni M, Mazziotta JC (2007) Mirror neuron system: basic findings and clinical applications. Ann Neurol 62:213–218CrossRefPubMed Iacoboni M, Mazziotta JC (2007) Mirror neuron system: basic findings and clinical applications. Ann Neurol 62:213–218CrossRefPubMed
Zurück zum Zitat Iacoboni M, Woods RP, Brass M, Bekkering H, Mazziotta JC, Rizzolatti G (1999) Cortical mechanisms of human imitation. Science 286:2526–2528CrossRefPubMed Iacoboni M, Woods RP, Brass M, Bekkering H, Mazziotta JC, Rizzolatti G (1999) Cortical mechanisms of human imitation. Science 286:2526–2528CrossRefPubMed
Zurück zum Zitat Jabbi M, Swart M, Keysers C (2007) Empathy for positive and negative emotions in the gustatory cortex. Neuroimage 34:1744–1753CrossRefPubMed Jabbi M, Swart M, Keysers C (2007) Empathy for positive and negative emotions in the gustatory cortex. Neuroimage 34:1744–1753CrossRefPubMed
Zurück zum Zitat Kaplan JT, Iacoboni M (2006) Getting a grip on other minds: mirror neurons, intention understanding, and cognitive empathy. Soc Neurosci 1:175–183CrossRefPubMed Kaplan JT, Iacoboni M (2006) Getting a grip on other minds: mirror neurons, intention understanding, and cognitive empathy. Soc Neurosci 1:175–183CrossRefPubMed
Zurück zum Zitat Kaufman J, Birmaher B, Brent D, Rao U, Flynn C, Moreci P, Williamson D, Ryan N (1997) Schedule for Affective Disorders and Schizophrenia for School-Age Children-Present and Lifetime Version (K-SADS-PL): initial reliability and validity data. J Am Acad Child Adolesc Psychiatry 36:980–988CrossRefPubMed Kaufman J, Birmaher B, Brent D, Rao U, Flynn C, Moreci P, Williamson D, Ryan N (1997) Schedule for Affective Disorders and Schizophrenia for School-Age Children-Present and Lifetime Version (K-SADS-PL): initial reliability and validity data. J Am Acad Child Adolesc Psychiatry 36:980–988CrossRefPubMed
Zurück zum Zitat Kilner JM, Blakemore S-J (2007) How does the mirror neuron system change during development? Dev Psychol 10:524–526 Kilner JM, Blakemore S-J (2007) How does the mirror neuron system change during development? Dev Psychol 10:524–526
Zurück zum Zitat Kobayashi C, Glover GH, Temple E (2007) Children′s and adults′ neural bases of verbal and nonverbal “theory of mind”. Neuropsychologia 45:1522–1532CrossRefPubMed Kobayashi C, Glover GH, Temple E (2007) Children′s and adults′ neural bases of verbal and nonverbal “theory of mind”. Neuropsychologia 45:1522–1532CrossRefPubMed
Zurück zum Zitat Kobayashi C, Glover GH, Temple E (2008) Switching language switches mind: linguistic effects on developmental neural bases of “Theory of Mind”. SCAN 3:62–70PubMed Kobayashi C, Glover GH, Temple E (2008) Switching language switches mind: linguistic effects on developmental neural bases of “Theory of Mind”. SCAN 3:62–70PubMed
Zurück zum Zitat Leichnetz GR (2001) Connections of the medial posterior parietal cortex (area 7 m) in the monkey. Anat Rec 263:215–235CrossRefPubMed Leichnetz GR (2001) Connections of the medial posterior parietal cortex (area 7 m) in the monkey. Anat Rec 263:215–235CrossRefPubMed
Zurück zum Zitat Leslie KR, Johnson-Frey SH, Grafton ST (2004) Functional imaging of face and hand imitation: towards a motor theory of empathy. Neuroimage 21:601–607CrossRefPubMed Leslie KR, Johnson-Frey SH, Grafton ST (2004) Functional imaging of face and hand imitation: towards a motor theory of empathy. Neuroimage 21:601–607CrossRefPubMed
Zurück zum Zitat Light SN, Zahn-Waxler C, Frye C, Goldsmith HH, Davidson RJ (2009) Empathy is associated with dynamic change in prefrontal brain electrical activity during positive emotion in children. Child Dev 80:1210–1231CrossRefPubMed Light SN, Zahn-Waxler C, Frye C, Goldsmith HH, Davidson RJ (2009) Empathy is associated with dynamic change in prefrontal brain electrical activity during positive emotion in children. Child Dev 80:1210–1231CrossRefPubMed
Zurück zum Zitat Litvack-Miller W, McDougal D, Romney DM (1997) The structure of empathy during middle childhood and its relationship to prosocial behaviour. Genet Soc Gen Psychol Monogr 123:303–325PubMed Litvack-Miller W, McDougal D, Romney DM (1997) The structure of empathy during middle childhood and its relationship to prosocial behaviour. Genet Soc Gen Psychol Monogr 123:303–325PubMed
Zurück zum Zitat Lou HC, Luber B, Crupain M, Keenan JP, Nowak M, Kjaer TW, Sackeim HA, Lisanby SH (2004) Parietal cortex and the representation of the mental Self. Proc Natl Acad Sci USA 27:6832 Lou HC, Luber B, Crupain M, Keenan JP, Nowak M, Kjaer TW, Sackeim HA, Lisanby SH (2004) Parietal cortex and the representation of the mental Self. Proc Natl Acad Sci USA 27:6832
Zurück zum Zitat Maldjian JA, Laurienti PJ, Kraft RA, Burdette JH (2003) An automated method for neuroanatomic and cytoarchitectonic atlas-based interrogation of fMRI data sets. Neuroimage 19:1233–1239CrossRefPubMed Maldjian JA, Laurienti PJ, Kraft RA, Burdette JH (2003) An automated method for neuroanatomic and cytoarchitectonic atlas-based interrogation of fMRI data sets. Neuroimage 19:1233–1239CrossRefPubMed
Zurück zum Zitat Mehrabian A (1997) Relations among personality scales of aggression, violence, and empathy: validational evidence bearing on the risk of eruptive violence scale. Aggress Behav 23:433–445CrossRef Mehrabian A (1997) Relations among personality scales of aggression, violence, and empathy: validational evidence bearing on the risk of eruptive violence scale. Aggress Behav 23:433–445CrossRef
Zurück zum Zitat Monk CS, McClure EB, Nelson EE, Zarahn E, Bilder RM, Leibenluft E, Charney DS, Ernst M, Pine DS (2003) Adolescent immaturity in attention-related brain engagement to emotional facial expressions. Neuroimage 20:420–428CrossRefPubMed Monk CS, McClure EB, Nelson EE, Zarahn E, Bilder RM, Leibenluft E, Charney DS, Ernst M, Pine DS (2003) Adolescent immaturity in attention-related brain engagement to emotional facial expressions. Neuroimage 20:420–428CrossRefPubMed
Zurück zum Zitat Moriguchi Y, Ohnishi T, Mori T, Matsuda H, Komaki G (2007) Changes of brain activity in the neural substrates for theory of mind during childhood and adolescence. Psychiatry Clin Neurosci 61:355–363CrossRefPubMed Moriguchi Y, Ohnishi T, Mori T, Matsuda H, Komaki G (2007) Changes of brain activity in the neural substrates for theory of mind during childhood and adolescence. Psychiatry Clin Neurosci 61:355–363CrossRefPubMed
Zurück zum Zitat Oldfield RC (1971) Assessment and analysis of handedness—Edinburgh Inventory. Neuropsychologia 9:97–113CrossRefPubMed Oldfield RC (1971) Assessment and analysis of handedness—Edinburgh Inventory. Neuropsychologia 9:97–113CrossRefPubMed
Zurück zum Zitat Pfeifer JH, Lieberman MD, Dapretto M (2007) “I know you are but what am I?”: neural bases of self- and social knowledge retrieval in children and adults. J Cogn Neurosci 19:1323–1337CrossRefPubMed Pfeifer JH, Lieberman MD, Dapretto M (2007) “I know you are but what am I?”: neural bases of self- and social knowledge retrieval in children and adults. J Cogn Neurosci 19:1323–1337CrossRefPubMed
Zurück zum Zitat Pfeifer JH, Iacoboni M, Mazziotta JC, Dapretto M (2008) Mirroring others′ emotions relates to empathy and interpersonal competence in children. Neuroimage 39:2076–2085CrossRefPubMed Pfeifer JH, Iacoboni M, Mazziotta JC, Dapretto M (2008) Mirroring others′ emotions relates to empathy and interpersonal competence in children. Neuroimage 39:2076–2085CrossRefPubMed
Zurück zum Zitat Platek SM, Loughead JW, Gur RC, Busch S, Ruparel K, Phend N, Panyavin IS, Langleben DD (2006) Neural substrates for functionally discriminating self-face from personally familiar faces. Hum Brain Mapp 27:91–98CrossRefPubMed Platek SM, Loughead JW, Gur RC, Busch S, Ruparel K, Phend N, Panyavin IS, Langleben DD (2006) Neural substrates for functionally discriminating self-face from personally familiar faces. Hum Brain Mapp 27:91–98CrossRefPubMed
Zurück zum Zitat Premack D, Woodruff G (1978) Does the chimpanzee have a theory of mind? Behav Brain Sci 1:515–526CrossRef Premack D, Woodruff G (1978) Does the chimpanzee have a theory of mind? Behav Brain Sci 1:515–526CrossRef
Zurück zum Zitat Preston SD, de Waal FBM (2002) Empathy: its ultimate and proximate bases. Behav Brain Sci 25:1–72PubMed Preston SD, de Waal FBM (2002) Empathy: its ultimate and proximate bases. Behav Brain Sci 25:1–72PubMed
Zurück zum Zitat Sagi A, Hoffmann ML (1976) Empathic distress in the newborn. Dev Psychol 12:175–176CrossRef Sagi A, Hoffmann ML (1976) Empathic distress in the newborn. Dev Psychol 12:175–176CrossRef
Zurück zum Zitat Schulte-Rüther M, Markowitsch HJ, Fink GR, Piefke M (2007) Mirror neuron and theory of mind mechanisms involved in face-to-face interactions: a functional magnetic resonance imaging approach to empathy. J Cogn Neurosci 19:1354–1372CrossRefPubMed Schulte-Rüther M, Markowitsch HJ, Fink GR, Piefke M (2007) Mirror neuron and theory of mind mechanisms involved in face-to-face interactions: a functional magnetic resonance imaging approach to empathy. J Cogn Neurosci 19:1354–1372CrossRefPubMed
Zurück zum Zitat Schulte-Rüther M, Markowitsch HJ, Shah NJ, Fink GR, Piefke M (2008) Gender differences in brain networks supporting empathy. Neuroimage 42:393–403CrossRefPubMed Schulte-Rüther M, Markowitsch HJ, Shah NJ, Fink GR, Piefke M (2008) Gender differences in brain networks supporting empathy. Neuroimage 42:393–403CrossRefPubMed
Zurück zum Zitat Schulte-Rüther M, Greimel E, Markowitsch HJ, Kamp-Becker I, Remschmidt H, Fink GR, Piefke M (in press) Dysfunctions of brain networks supporting empathy—an fMRI investigation in adults with autism spectrum disorder. Soc Neurosci Schulte-Rüther M, Greimel E, Markowitsch HJ, Kamp-Becker I, Remschmidt H, Fink GR, Piefke M (in press) Dysfunctions of brain networks supporting empathy—an fMRI investigation in adults with autism spectrum disorder. Soc Neurosci
Zurück zum Zitat Schultz RT (2005) Developmental deficits in social perception in autism: the role of the amygdala and fusiform face area. Int J Dev Neurosci 23:125–141CrossRefPubMed Schultz RT (2005) Developmental deficits in social perception in autism: the role of the amygdala and fusiform face area. Int J Dev Neurosci 23:125–141CrossRefPubMed
Zurück zum Zitat Shamay-Tsoory SG, Aharon-Peretz J, Perry D (2009) Two systems for empathy: a double dissociation between emotional and cognitive empathy in inferior frontal gyrus versus ventromedial prefrontal lesions. Brain 132:617–627CrossRefPubMed Shamay-Tsoory SG, Aharon-Peretz J, Perry D (2009) Two systems for empathy: a double dissociation between emotional and cognitive empathy in inferior frontal gyrus versus ventromedial prefrontal lesions. Brain 132:617–627CrossRefPubMed
Zurück zum Zitat Strayer J (1993) Children’s concordant emotions and cognitions in response to observed emotions. Child Dev 64:188–201CrossRefPubMed Strayer J (1993) Children’s concordant emotions and cognitions in response to observed emotions. Child Dev 64:188–201CrossRefPubMed
Zurück zum Zitat Thomas KM, Drevets WC, Whalen PJ, Eccard CH, Dahl RE, Ryan ND, Casey BJ (2001) Amygdala response to facial expressions in children and adults. Biol Psychiatry 49:309–316CrossRefPubMed Thomas KM, Drevets WC, Whalen PJ, Eccard CH, Dahl RE, Ryan ND, Casey BJ (2001) Amygdala response to facial expressions in children and adults. Biol Psychiatry 49:309–316CrossRefPubMed
Zurück zum Zitat Uddin LQ, Kaplan JT, Molnar-Szakacs I, Zaidel E, Iacoboni M (2005) Self-face recognition activates a frontoparietal “mirror” network in the right hemisphere: an event-related fMRI study. Neuroimage 25:926–935CrossRefPubMed Uddin LQ, Kaplan JT, Molnar-Szakacs I, Zaidel E, Iacoboni M (2005) Self-face recognition activates a frontoparietal “mirror” network in the right hemisphere: an event-related fMRI study. Neuroimage 25:926–935CrossRefPubMed
Zurück zum Zitat Wang AT, Lee SS, Sigman M, Dapretto M (2006) Developmental changes in the neural basis of interpreting communicative intent. SCAN 1:107–121PubMed Wang AT, Lee SS, Sigman M, Dapretto M (2006) Developmental changes in the neural basis of interpreting communicative intent. SCAN 1:107–121PubMed
Zurück zum Zitat Wechsler D (1991) Manual for the Wechsler Intelligence Scale for Children, 3rd edn. Psychological Corporation, San Antonio Wechsler D (1991) Manual for the Wechsler Intelligence Scale for Children, 3rd edn. Psychological Corporation, San Antonio
Zurück zum Zitat Wechsler D (1997) Manual for the Wechsler Adult Intelligence Scale-III. Psychological Corporation, San Antonio Wechsler D (1997) Manual for the Wechsler Adult Intelligence Scale-III. Psychological Corporation, San Antonio
Zurück zum Zitat Wild B, Erb M, Bartels M (2001) Are emotions contagious? Evoked emotions while viewing emotionally expressive faces: quality, quantity, time course and gender differences. Psychiatry Res 102:109–124CrossRefPubMed Wild B, Erb M, Bartels M (2001) Are emotions contagious? Evoked emotions while viewing emotionally expressive faces: quality, quantity, time course and gender differences. Psychiatry Res 102:109–124CrossRefPubMed
Metadaten
Titel
Development of neural correlates of empathy from childhood to early adulthood: an fMRI study in boys and adult men
verfasst von
E. Greimel
M. Schulte-Rüther
G. R. Fink
M. Piefke
B. Herpertz-Dahlmann
K. Konrad
Publikationsdatum
01.06.2010
Verlag
Springer Vienna
Erschienen in
Journal of Neural Transmission / Ausgabe 6/2010
Print ISSN: 0300-9564
Elektronische ISSN: 1435-1463
DOI
https://doi.org/10.1007/s00702-010-0404-9

Weitere Artikel der Ausgabe 6/2010

Journal of Neural Transmission 6/2010 Zur Ausgabe

Leitlinien kompakt für die Neurologie

Mit medbee Pocketcards sicher entscheiden.

Seit 2022 gehört die medbee GmbH zum Springer Medizin Verlag

Hirnblutung unter DOAK und VKA ähnlich bedrohlich

17.05.2024 Direkte orale Antikoagulanzien Nachrichten

Kommt es zu einer nichttraumatischen Hirnblutung, spielt es keine große Rolle, ob die Betroffenen zuvor direkt wirksame orale Antikoagulanzien oder Marcumar bekommen haben: Die Prognose ist ähnlich schlecht.

Thrombektomie auch bei großen Infarkten von Vorteil

16.05.2024 Ischämischer Schlaganfall Nachrichten

Auch ein sehr ausgedehnter ischämischer Schlaganfall scheint an sich kein Grund zu sein, von einer mechanischen Thrombektomie abzusehen. Dafür spricht die LASTE-Studie, an der Patienten und Patientinnen mit einem ASPECTS von maximal 5 beteiligt waren.

Schwindelursache: Massagepistole lässt Otholiten tanzen

14.05.2024 Benigner Lagerungsschwindel Nachrichten

Wenn jüngere Menschen über ständig rezidivierenden Lagerungsschwindel klagen, könnte eine Massagepistole der Auslöser sein. In JAMA Otolaryngology warnt ein Team vor der Anwendung hochpotenter Geräte im Bereich des Nackens.

Schützt Olivenöl vor dem Tod durch Demenz?

10.05.2024 Morbus Alzheimer Nachrichten

Konsumieren Menschen täglich 7 Gramm Olivenöl, ist ihr Risiko, an einer Demenz zu sterben, um mehr als ein Viertel reduziert – und dies weitgehend unabhängig von ihrer sonstigen Ernährung. Dafür sprechen Auswertungen zweier großer US-Studien.

Update Neurologie

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