Skip to main content
Top
Gepubliceerd in: Neuropraxis 2/1998

01-04-1998 | Artikelen

De ontwikkeling van de hersenen in genetisch perspectief

Elektrofysiologische indices van hersenfunctioneren bij tweelingen van vijf en zeven jaar

Auteur: Caroline van Baal

Gepubliceerd in: Neuropraxis | Uitgave 2/1998

Log in om toegang te krijgen
share
DELEN

Deel dit onderdeel of sectie (kopieer de link)

  • Optie A:
    Klik op de rechtermuisknop op de link en selecteer de optie “linkadres kopiëren”
  • Optie B:
    Deel de link per e-mail

Samenvatting

Interindividuele verschillen in gedrag worden voor een deel verklaard door de invloed van erfelijke factoren. Deze genetisch gemedieerde verschillen in gedrag zouden veroorzaakt kunnen worden door genetische verschillen in hersenfunctioneren. De bestudering van hersenfunctioneren als een intermediair tussen genen en gedrag kan daarom waardevolle informatie opleveren over het mechanisme van genetische beïnvloeding van gedrag.
Literatuur
go back to reference Baal, G. van (1997). A genetic perspective on the developing brain: electrophysiological indices of neural functioning in five to seven year old twins ]proefschrift[. Amsterdam: Vrije Universiteit. Baal, G. van (1997). A genetic perspective on the developing brain: electrophysiological indices of neural functioning in five to seven year old twins ]proefschrift[. Amsterdam: Vrije Universiteit.
go back to reference Baal, G. van, De Geus, E., & Boomsma, D. (1996). Genetic architecture of eeg< power spectra in early life. Electroencephalography and Clinical Neurophysiology, 98, 6, 1–13. Baal, G. van, De Geus, E., & Boomsma, D. (1996). Genetic architecture of eeg< power spectra in early life. Electroencephalography and Clinical Neurophysiology, 98, 6, 1–13.
go back to reference Baal, G. van, De Geus, E., & Boomsma, D. (1998a). Longitudinal study of genetic influences on ERP–P3 during childhood. Developmental Neuropsychology, 14, 19–45. Baal, G. van, De Geus, E., & Boomsma, D. (1998a). Longitudinal study of genetic influences on ERP–P3 during childhood. Developmental Neuropsychology, 14, 19–45.
go back to reference Baal, G. van, De Geus, E., & Boomsma, D. (1998b). Genetic influences on eeg coherence in 5–year–old twins. Behavior Genetics, 28, 9–19. Baal, G. van, De Geus, E., & Boomsma, D. (1998b). Genetic influences on eeg coherence in 5–year–old twins. Behavior Genetics, 28, 9–19.
go back to reference Baal, G. van, De Geus, E., & Boomsma, D. (ingediend). Genetic stability of eeg coherence in young children. Baal, G. van, De Geus, E., & Boomsma, D. (ingediend). Genetic stability of eeg coherence in young children.
go back to reference Beijsterveldt, C. van (1996). The genetics of electrophysiological indices of brain activity [proefschrift]. Amsterdam: Universiteit van Amsterdam. Beijsterveldt, C. van (1996). The genetics of electrophysiological indices of brain activity [proefschrift]. Amsterdam: Universiteit van Amsterdam.
go back to reference Boomsma, D. (1996). Using multivariate genetic modeling to detect pleiotropic quantitative trait loci. Behavior Genetics, 26, 2, 161–166. Boomsma, D. (1996). Using multivariate genetic modeling to detect pleiotropic quantitative trait loci. Behavior Genetics, 26, 2, 161–166.
go back to reference Boomsma, D., & Van Baal, G. (1998). Genetic influences on childhood IQ in 5– and 7–year old Dutch twins. Developmental Neuropsychology, 14, 115–126. Boomsma, D., & Van Baal, G. (1998). Genetic influences on childhood IQ in 5– and 7–year old Dutch twins. Developmental Neuropsychology, 14, 115–126.
go back to reference Cardon, L., Fulker, D., DeFries, J., & Plomin, R. (1992). Continuity and change in general cognitive ability from 1 to 7 years of age. Developmental Psychology, 28, 1, 64–73. Cardon, L., Fulker, D., DeFries, J., & Plomin, R. (1992). Continuity and change in general cognitive ability from 1 to 7 years of age. Developmental Psychology, 28, 1, 64–73.
go back to reference Donchin, E., Karis, D., Bashore, T., Coles, M., & Gratton, G. (1986). Cognitive Psychophysiology and Human Information Processing. In: M. Coles, E. Donchin & W. Porges (Eds.), Psychophysiology, Systems, Processes, and Applications (pp. 244–267). Amsterdam, Oxford: Elsevier. Donchin, E., Karis, D., Bashore, T., Coles, M., & Gratton, G. (1986). Cognitive Psychophysiology and Human Information Processing. In: M. Coles, E. Donchin & W. Porges (Eds.), Psychophysiology, Systems, Processes, and Applications (pp. 244–267). Amsterdam, Oxford: Elsevier.
go back to reference Kaiser, J., & Gruzelier, J. (1996). Timing of puberty and eeg coherence during photic stimulation. International Journal of Psychophysiology, 21, 135–149. Kaiser, J., & Gruzelier, J. (1996). Timing of puberty and eeg coherence during photic stimulation. International Journal of Psychophysiology, 21, 135–149.
go back to reference Katsanis, J., Iacono, W., McGue, M., & Carlson, S. (1997). P300 event–related potential heritability in monozygotic and dizygotic twins. Psychophysiology, 34, 47–58. Katsanis, J., Iacono, W., McGue, M., & Carlson, S. (1997). P300 event–related potential heritability in monozygotic and dizygotic twins. Psychophysiology, 34, 47–58.
go back to reference Matoušek, M., & Petersén, I. (1973). Frequency analysis of the eeg in normal children and adolescents. In: P. Kellaway & I. Petersén (Eds.), Automation of Clinical Electroencephalography (pp. 75–102). Matoušek, M., & Petersén, I. (1973). Frequency analysis of the eeg in normal children and adolescents. In: P. Kellaway & I. Petersén (Eds.), Automation of Clinical Electroencephalography (pp. 75–102).
go back to reference O'Connor, S., Morzorati, S., Christian, J., & Li, T. (1994). Heritable features of the auditory oddball event–related potential: Peaks, latencies, morphology and topography. Electroencephalography and Clinical Neurophysiology, 92, 115–125. O'Connor, S., Morzorati, S., Christian, J., & Li, T. (1994). Heritable features of the auditory oddball event–related potential: Peaks, latencies, morphology and topography. Electroencephalography and Clinical Neurophysiology, 92, 115–125.
go back to reference Piaget, J. (1966). The psychology of intelligence. Totowa, NJ: Littlefield, Adams. Piaget, J. (1966). The psychology of intelligence. Totowa, NJ: Littlefield, Adams.
go back to reference Plomin, R., DeFries, J. McClearn, G., & Rutter, M. (1997). Behavioral Genetics: A Primer. New York: Freeman. Plomin, R., DeFries, J. McClearn, G., & Rutter, M. (1997). Behavioral Genetics: A Primer. New York: Freeman.
go back to reference Thatcher, R., Krause, P., & Hrybyk, M. (1986). Cortico–cortical associations and eeg coherence: A two–compartmental model. Electroencephalography and Clinical Neurophysiology, 64, 123–143. Thatcher, R., Krause, P., & Hrybyk, M. (1986). Cortico–cortical associations and eeg coherence: A two–compartmental model. Electroencephalography and Clinical Neurophysiology, 64, 123–143.
go back to reference Thatcher, R. (1994). Cyclic cortical reorganization, origins of human cognitive development. In: G. Dawson & K. Fischer (Eds.), Human behavior and the developing brain (pp. 232–266). New York: Guilford Press. Thatcher, R. (1994). Cyclic cortical reorganization, origins of human cognitive development. In: G. Dawson & K. Fischer (Eds.), Human behavior and the developing brain (pp. 232–266). New York: Guilford Press.
Metagegevens
Titel
De ontwikkeling van de hersenen in genetisch perspectief
Elektrofysiologische indices van hersenfunctioneren bij tweelingen van vijf en zeven jaar
Auteur
Caroline van Baal
Publicatiedatum
01-04-1998
Uitgeverij
Bohn Stafleu van Loghum
Gepubliceerd in
Neuropraxis / Uitgave 2/1998
Print ISSN: 1387-5817
Elektronisch ISSN: 1876-5785
DOI
https://doi.org/10.1007/BF03070916

Andere artikelen Uitgave 2/1998

Neuropraxis 2/1998 Naar de uitgave