4.7 Article

Sensorimotor Cortical Oscillations during Movement Preparation in 16p11.2 Deletion Carriers

期刊

JOURNAL OF NEUROSCIENCE
卷 39, 期 37, 页码 7321-7331

出版社

SOC NEUROSCIENCE
DOI: 10.1523/JNEUROSCI.3001-17.2019

关键词

16p11.2; autism; beta rhythm; magnetoencephalography; manual; speech

资金

  1. Simons Foundation [220843]
  2. NIH [R01NS050915, K24DC015544, R01DC004855, R01DC010145, R21NS076171, R01DC013979]
  3. Hearing Research
  4. NSF BCS [1262297]
  5. Division Of Behavioral and Cognitive Sci
  6. Direct For Social, Behav & Economic Scie [1262297] Funding Source: National Science Foundation

向作者/读者索取更多资源

Sensorimotor deficits are prevalent in many neurodevelopmental disorders like autism, including one of its common genetic etiologies, a 600 kb reciprocal deletion/duplication at 16p11.2. We have previously shown that copy number variations of 16p11.2 impact regional brain volume, white matter integrity, and early sensory responses in auditory cortex. Here, we test the hypothesis that abnormal cortical neurophysiology is present when genes in the 16p11.2 region are haploinsufficient, and in humans that this in turn may account for behavioral deficits specific to deletion carriers. We examine sensorimotor cortical network activity in males and females with 16p11.2 deletions compared with both typically developing individuals, and those with duplications of 16p11.2, using magnetoencephalographic imaging during preparation of overt speech or hand movements in tasks designed to be easy for all participants. In deletion carriers, modulation of beta oscillations (12-30 Hz) were increased during both movement types over effector-specific regions of motor cortices compared with typically developing individuals or duplication carriers, with no task-related performance differences between cohorts, even when corrected for their own cognitive and sensorimotor deficits. Reduced left hemispheric language specialization was observed in deletion carriers but not in duplication carriers. Neural activity over sensorimotor cortices in deletion carriers was linearly related to clinical measures of speech and motor impairment. These findings link insufficient copy number repeats at 16p11.2 to excessive neural activity (e.g., increased beta oscillations) in motor cortical networks for speech and hand motor control. These results have significant implications for understanding the neural basis of autism and related neurodevelopmental disorders.

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