4.3 Article

Elucidating the neurophysiological underpinnings of autism spectrum disorder: new developments

Journal

JOURNAL OF NEURAL TRANSMISSION
Volume 121, Issue 9, Pages 1129-1144

Publisher

SPRINGER WIEN
DOI: 10.1007/s00702-014-1265-4

Keywords

Autism; Visual event-related potential; Mirror neuron; Connectivity; Transcranial magnetic stimulation; Excitation; Inhibition

Funding

  1. German Research Foundation DFG (Deutsche Forschungsgemeinschaft) [FR2069/2-1]
  2. LOEWE programme, Neuronal Coordination Research Focus Frankfurt (NeFF) [B1]

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The study of neurophysiological approaches together with rare and common risk factors for Autism Spectrum Disorder (ASD) allows elucidating the specific underlying neurobiology of ASD. Whereas most neurophysiologically based research in ASD to date has focussed on case-control differences based on the DSM- or ICD-based categorical ASD diagnosis, more recent studies have aimed at studying genetically and/or neurophysiologically defined homogeneous ASD subgroups for specific neuronal biomarkers. This review addresses the neurophysiological investigation of ASD by evoked and event-related potentials, by EEG/MEG connectivity measures such as coherence, and transcranial magnetic stimulation. As an example of classical neurophysiological studies in ASD, we report event-related potential studies which have illustrated which brain areas and processing stages are affected in the visual perception of socially relevant stimuli. However, a paradigm shift has taken place in recent years focussing on how these findings can be tracked down to basic neuronal functions such as deficits in cortico-cortical connectivity and the interaction between brain areas. Disconnectivity, for example, can again be related to genetically induced shifts in the excitation/inhibition balance. Genetic causes of ASD may be grouped by their effects on the brain's system level to identify ASD subgroups which respond differentially to therapeutic interventions.

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